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  • AKTU B-Tech Last 10 Years 2010-2020 Previous Question Papers || Dr. A.P.J. Abdul Kalam Technical University

    We uploaded AKTU (Dr. A.P.J. Abdul Kalam Technical University, formerly  known as Uttar Pradesh Technical University) BE/B Tech (Bachelor of technology) First Semester , Second Semester, Third Semester and Fourth Semester, Fifth Semester, Sixth Semester, Seventh Semester and Eight Semester  (1st Sem, 2nd sem, 3rd sem1 4th sem, 5th sem, 6th sem, 7th sem & 8th sem) 2020, 2019, 2018, 2017, 2016, 2015, 2014, 2013, 2012, 2011 & 2010 Previous Question Papers. These papers are useful to all the Engineering colleges which are affiliated to Dr. A.P.J. Abdul Kalam Technical University.

     

    We will keep on updating this post with latest papers. So, please bookmark this link and please do share this link with your friends

     

    B.Tech 1st Sem QP

     

    AKTU B Tech  1st Semester 2018-2019 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    Basic Electrical Engineering BEE Download
    Chemistry Download
    Mathematics Download
    Physics Download
    Programming For Problem Solving PFPS Download

     

    AKTU B Tech  1st Semester 2017-2018 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    RAS 102 Engg. Chemistry EC Download
    RAS 103 Engineering Mathe Matics EMM Download
    RAS 104 Professional Communication PC Download
    RAS101 Engineering Physics EP Download
    RCS 101 Computer System Programming In C CSPI Download
    REC101 Basic Electronics BE Download
    REE 101 Basic Electrical Engineering BEE Download
    RME101 Elements Of Mechanical Engineering EME Download

     

    AKTU B Tech  1st Semester 2016-2017 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    RAS 101 Engineering Physics 1 EP Download
    RAS 102 Engineering Chemistry EC Download
    RAS 103 Engineering Mathematics 1 EM Download
    RAS 104 Professional Communication PC Download
    RCS 101 Computer System Programming In C CSPI Download
    REC 101 Basic Electronics BE Download
    REE 101 Basic Electrical Engineering BEE Download
    RME 101 Elements Of Mechanical Engineering EME Download

     

    AKTU B Tech  1st Semester 2015-2016 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    AS 101 Engineering Mathematics I EM Download
    BT 101 Engineering Mathematics I EM Download
    BT 103 Engineering Mechanics EM Download
    BT 11 Biochmistry Biophysics Microbiology BBM Download
    CS 101 Computer Programming CCP Download
    EAS 101 Engineering Physics I EP Download
    EAS 102 Engineering Chemistry I EEC Download
    EAS 103 Mathematics I M Download
    EAS 104 Professional Communication EPC Download
    EAS 105 Environment Ecology EE Download
    EBT 102 Remedial Biology I RB Download
    EC 101 Electronics Engineering EE Download
    ECS 101 Computer Concepts Programming In C CCPI Download
    EEC 101 Electronics Engineering EE Download
    EEE 101 Electrical Engineering EE Download
    EME 101 Manufacturing Process MP Download
    EME 102 Engineering Mechanics EM Download
    ENGINEERING PHYSICS I AS 102 EPA Download
    EPL 051 Operation Research OR Download
    MBTM 015 Business Statistics BS Download
    ME 101 Engineering Mechanics MEM Download
    NAS 101 Engineering Physics 1 EP Download
    NAS 102 Engineering Chemistry EC Download
    NAS 105 Environment And Ecology EE Download
    NAS 301 Engineering Mathematics I EM Download
    NCS 101 Computer System Programming In C CSPI Download
    NEC 101 Electronics Engineering EE Download
    NEE 101 Basic Electrical Engineering BEE Download
    NME 101 Basic Manufacturing Processes BMP Download
    NME 102 Engineering Mechanics EM Download

     

     

    B.Tech 2nd Sem QP

     

    AKTU B Tech 2nd Semester 2018-19 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    KAS201 Physics KP Download
    KAS202 Chemistry KC Download
    KAS203 Mathematics II KMII Download
    KAS204 Professional English KPE Download
    KCS201 Programming Problem Solving KPPS Download
    KEE201 Electrical Engineering KEE Download

     

    AKTU B Tech 2nd Semester 2017-18 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    131241 Basic Electronics BE Download
    140208 Elements Of Mechanical Engineering EME Download
    199222 Engineering Chemistry EC Download
    RAS201 Engineering Physics II REPII Download
    RAS203 Engineering Mathematics II REMII Download
    RAS204 Professional Communication RPC Download
    RCS201 Computer System And Programming In C RCSPI Download
    REE201 Basic Electrical Engineering RBEE Download

     

    AKTU B Tech 2nd Semester 2016-17 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    AS201 Engineering Mathematics II EMDownload
    AS202C Engineering Physics II EPII Download
    AS202E Engineering Physics II AEPII Download
    AS202M Engineering Physics II EPII Download
    AS203 Engineering Chemistry EC Download
    CE201 Energy Environment And Ecology EEE Download
    Computer Based Numerical And Statistical Techniques CBNST Download
    CS201 Computer Programming CP Download
    EAS201 Engineering Physics II EEPII Download
    EAS202 Engineering Chemistry EEC Download
    EAS203 Engineering Mathematics II EEMII Download
    EC201 Electronics Engineering EEE Download
    ECS201 Computer System And Programming In C ECSPI Download
    EE201 Basic Electrical Engineering EBEE Download
    EEC201 Electronics Engineering EEE Download
    EEE201 Basic Electrical Engineering EBEE Download
    EME202 Engineering Mechanics EEM Download
    NAS202 Engineering Chemistry NEC Download
    NAS203 Engineering Mathematics II NEMII Download
    NCS201 Computer System And Programming In C NCSPI Download
    NEC201 Electronics Engineering NEE Download
    NEE201 Basic Electrical Engineering NBEE Download
    NME202 Engineering Mechanics NEM Download
    RAS201 Engineering Physics II REPII Download
    RAS202 Engineering Chemistry REC Download
    RBT201 Elements Of Mechanical Engineering REME Download
    RBT203 Elementary Mathematics II REMII Download
    RCS201 Computer System And Programming In “˜C”™ RCSPI Download
    REC201 Basic Electronics RBE Download
    REE201 Basic Electrical Engineering RBEE Download

     

    AKTU B Tech 2nd Semester 2015-16 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    101EC Electronics Engineering EE Download
    201EAS Engineering Physics Ii EPI Download
    201NCS Computer System Programming In C CSPI Download
    201NEC Electronics Engineering EE Download
    201NEE Basic Electrical Engineering BEE Download
    201NME Basic Manufacturing Process BMP Download
    202EAS Engineering Chemistry EC Download
    202NME Engineering Machanics EM Download
    204NAS Professional Communication PC Download
    AS 203 Engineering Chemistry AEC Download
    CE 201 Energy Environment And Ecology EEE Download
    CS 201 Computer Programming CP Download
    EBT 201 Elementary Mathematics Ii EMI Download
    EME 202 Engineering Mechanics EM Download
    ME 201 Engineering Mechanics EM Download
    ME 202 Manufacturing Practices MP Download
    NBT 201 Remedial Biology Ii RBI Download

     

    AKTU B Tech 2nd Semester 2014-15 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    AS 202 Engineering Physics AEP Download
    EAS 204 Professional Communication EPC Download
    EC 201 Electronics Engineering EEE Download
    EE 201 Electrical Engineering EEE Download
    EEE101 Electrical Engineering EEE Download
    EME 202 Engineering Mechanics EEM Download
    ME 101 Engineering Mechanics MEM Download
    NAS 105 Environment And Ecology NEE Download
    NAS 201 Engineering Physics II NEPII Download
    NAS 202 Engineering Chemistry NEC Download
    NAS 204 Professional Communication NPC Download
    NCS 201 Computer System And Programming In C NCSPI Download
    NEC101 Electronics Engineering NEE Download
    NEE201 Basic Electrical Engineering NBEE Download
    NME101 Basic Manufacturing Process NBMP Download
    NME202 Engineering Mechanics NEM Download

     

    B.Tech 3rd Sem QP

     

    AKTU B Tech 3rd Semester 2018-19 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    Building Materials Construction Rce 301 BMCR Download
    Computer Organization And Architecture Rcs 302 COAR Download
    Data Structures Rcs 305 DSR Download
    Digital Logic Design DLD Download
    Discrete Structures And Theory Of Logic Rcs 301 DSTLR Download
    Electronics Devices And Circuits Rec 302 EDCR Download
    Environment And Ecology Ras 302 EER Download
    Fluid Mechanics Rce 303 FMR Download
    Laser Systems And Applications Roe 033 LSAR Download
    Material Science Rme 301 MSR Download
    Mathematics Iii Ras 301 MIR Download
    Mechanics Of Solids Rme 303 MSR Download
    Network Analysis And Synthesis Ree 305 NASR Download
    Signals And Systems Rec 303 SSR Download
    Surveying Rce 302 SR Download
    Thermodynamics Rme 302 TR Download
    Universal Human Values And Professional Ethics Rve 301 UHVPER Download

     

    AKTU B Tech 3rd Semester 2017-18 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    Manufacturing Science  MS Download
    RAS 301 Mathematics Iii MI Download
    RAS 302 Environment And Ecology EE Download
    RCE 302 Surveying S Download
    RCE301 Building Material And Construction BMC Download
    RCE303 Fluid Mechanics FM Download
    RCS 301 Discrete Structures And Theory Of Logic DSTL Download
    RCS 302 Computer Organization And Architecture COA Download
    RCS305 Data Structures DS Download
    REC301 Digital Logic Design DLD Download
    REC302 Electonic Devices And Circuits EDC Download
    REC303 Signal And System SS Download
    REE305 Network Analysis And Synthesis NAS Download
    RME303 Mechanics Of Solids MS Download
    ROE033 Laser Systems And Applications LSA Download
    RVE301 Universal Human Values And Professional Ethics UHVPE Download
    Thermodynamics Download

     

    AKTU B Tech 3rd Semester 2016-17 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    AUC 001 Human Values Professional Ethics HVPE Download
    AUC 002 Cyber Security CS Download
    NAS 301 Mathematics Iii MI Download
    NCE 30 Surveying I S Download
    NCE 301 Fluid Mechanics FM Download
    NCE 302 Building Material And Construction BMC Download
    NCS 301 Data Structures Using C DSU Download
    NCS 302 Discrete Structures And Graph Theory DSGT Download
    NCS 303 Computer Based Numerical And Statistical Techniques CBNST Download
    NEC 302 Fundamental Of Electronic Devices FED Download
    NEC 303 Signal System SS Download
    NEC 304 Switching Theory And Logic Design STLD Download
    NEC 309 Digital Logic Design DLD Download
    NEE 301 Electro Mechanical Energy Conversion I EMEC Download
    NEE 303EE Basic System Analysis BSA Download
    NHU 301 Industrial Pshychology IP Download
    NHU 302 Industrial Sociology IS Download
    NME 301 Material Science MS Download
    NME 302 Mechanics Of Solids MS Download
    NME 303 Thermodynamics NT Download
    NME 309 Thermal Hydraulic Machine THM Download
    NOE 031 Ntroducation To Soft Computing Neural Networks Fuzzy Logic And Genetic Algorithm NSCNNFLGA Download
    NOE 033 Laser System And Applications LSA Download

     

    AKTU B Tech 3rd Semester 2015-16 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    031EOE Introduction To Soft Computing Neural Networksfuzzy Logic And Genetic Algorithm ISCNNLGA Download
    031NMBA Entrepreneurship Development ED Download
    302EEE Electrical Measurment Measuring Instruments EMMI Download
    ACU 001 Human Values And Professional Ethics HVPE Download
    AS 303 Mathematics Iii MI Download
    AUC 002 Cyber Security CS Download
    EBT 032 Biofuels Alcohal Technology EAT Download
    EEC 301 Fundamentals Of Electronics Devices FED Download
    EEC 302 Digital Electronics DE Download
    EEC 303 Electromagnetic Field Theory EFT Download
    EEC 304 Fundamentals Of Network Analysis And Synthesis FNAS Download
    EOE 033NOE Laser System And Applications LSA Download
    INEE 301 Electro Mechanical Energy Conversion EMEC Download
    ME 302 Fluid Mechanics FM Download
    ME 303 Material Science In Engineering MSIE Download
    NAS 301 Engineering Mathematics Iii EMI Download
    NBT 301 Elementary Mathematics Iii EMI Download
    NBT 302 Fluid Flow And Solid Handling FFSH Download
    NBT 303 Biochemistry B Download
    NBT 305 Genetics Molecular Biology GMB Download
    NCE 301 Fluid Mechanics FM Download
    NCE 302 Building Materials Construction BMC Download
    NCS 301 Data Structures Using C DSU Download
    NCS 302 Discrete Structures And Graph Theory DSGT Download
    NCS 303 Computer Based Numerical And Statistical Techniques CBNST Download
    NEC 302 Fundamental Of Electronic Devices FED Download
    NEC 309 Digital Logic Design DLD Download
    NEE 303 Basic System Analysis Basic Of Signals Systems BSABSS Download
    NHU 301 Industrial Psychology IP Download
    NHU 302 Industrial Sociology IS Download
    NME 301 Material Science MS Download

     

    B.Tech 4th Sem QP

     

    AKTU B Tech 4th Semester 2018-19 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    RAS401 Engineering Mathematics III EMIII Download
    RAS402 Environment Ecology EE Download
    RCE401 Hydraulics Hydraulic Machines HHM Download
    RCE402 Geoinformatics_Decryped G Download
    RCE403 Strucutral Analysis SA Download
    RCS 406 Data Structure And Algorithm DSA Download
    RCS401 Operating System OS Download
    RCS402 Software Engineering SE Download
    RCS403 Theory Of Automata And Formal Languages TAFL Download
    RCS405 Data Structures DS Download
    REC 403 Electronic Measurements Instrumentation EMI Download
    REC 405 Introdcution To Microprocessor  IM Download
    REC401 Microprocessors Microcontrollers MM Download
    REC402 Electromagnetic Field Theory EFT Download
    REC406 Information Theory And Coding ITC Download
    REE409 Electrical Machines And Controls EMC Download
    RME401 Measurement And Metrology MM Download
    RME403 Applied Thermodynamics AT Download
    ROE043 Laser Systems And Applications LSA Download
    RVE401 Universal Human Values And Professaional Ethics UHVPE Download

     

     

    AKTU B Tech 4th Semester 2017-18 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    RAS 402 Environment And Ecology REE Download
    RAS401 Mathematics Iii RMI Download
    RCE 403 Structure Analysis I RSA Download
    RCE401 Hydraulics And Hydraulic Machines RHHM Download
    RCE402 Geoinformatics RG Download
    RCS 406 Data Structure And Algorithm RDSA Download
    RCS401 Operating System ROS Download
    RCS402 Software Engneering RSE Download
    RCS403 Theory Of Automata And Formal Languages RTAFL Download
    RCS405 Data Structure RDS Download
    REC401 Microprocessor And Micro Controller RMMC Download
    REC402 Electromagnetic Field Theory REFT Download
    REC403 Electronic Measurement And Instrumentation REMI Download
    REC405 Introduction To Microprocessors RIM Download
    REC406 Information Theory And Coding RITC Download
    REE409 Electrical Machines And Controls REMC Download
    RME 403 Applied Termodynamics RAT Download
    RME401 Measurement And Metrology RMM Download
    RME402 Manufacturing Science And Technology I RMST Download
    ROE 043 Laser Systems And Applications RLSA Download
    RVE401 Universal Human Values And Professional Ethics RUHVPE Download

     

    AKTU B Tech 4th Semester 2016-17 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    Analog And Digital Electronics ADE Download
    AUC001 Human Values And Professional Ethics AHVPE Download
    Basics Of System Modeling And Simulation BSMS Download
    Building Material And Construction BMC Download
    CE402 Geoinformatics CG Download
    CH401 Heat Transfer CHT Download
    CH404 Material Sceince CMS Download
    Chemical Engineering Thermodynamics I CET Download
    Chemical Technology I CT Download
    Computer Architecture And Organization CAO Download
    Computer Graphics CG Download
    Computer Organization CO Download
    CS403 Object Oriented Programming With C++ COOPWC Download
    Cyber Security CS Download
    Data Structure DS Download
    Database Management System DMS Download
    EAS401 Engineering Mathematics Iii EEMI Download
    EC401 Principle Of Fabric Manufacture EPFM Download
    EC401MTU Electronic Circuits EEC Download
    EC402MTU Electromagnetic Field Theory EEFT Download
    EC404 Physical Chemistry Of Dyeing EPCD Download
    EC404MTU Network Analysis And Synthesis ENAS Download
    ECE402 Geoinformatics EG Download
    ECE403 Hydraulics And Hydraulic Machines EHHM Download
    ECS401 Computer Organization ECO Download
    ECS402 Database Management System EDMS Download
    EE405 Sensor And Instrumentation ESI Download
    EEC401 Electronic Circuits EEC Download
    EEC402 Computer Architecture And Organization ECAO Download
    EEC403 Electronic Measurments And Instrumentation EEMI Download
    EEE401 Electro Mechanical Energy Conversion I EEMEC Download
    EEE402 Network Analysis And Synthesis ENAS Download
    EEE404 Microprocessor EM Download
    EEE409 Electrical Machines And Control EEMC Download
    EHU111 Human Values And Professional Ethics EHVPE Download
    EHU401 Industrial Psychology EIP Download
    EHU402 Industrial Sociology EIS Download
    Electrical And Electronics Engineering Material EEEM Download
    Electrical Instrumentation And Process Control EIPC Download
    Electro Mechanical Energy Conversion I EMEC Download
    Electromechanical Energy Concersion Ii EECI Download
    Elements Of Power System EPS Download
    EME401 Applied Thermodynamics EAT Download
    EME403 Measurement And Metrology EMM Download
    Engineering Geology EG Download
    Environment And Ecology EE Download
    EOE043 Laser Systems And Applications ELSA Download
    EOE045 Polymer Science And Technology EPST Download
    EOE046 Nuclear Science ENS Download
    EOE047 Material Science EMS Download
    Fluid Machinery FM Download
    Human Values And Professional Ethics HVPE Download
    Hydraulics And Hydraulic Machines HHM Download
    Information Theory And Coding ITC Download
    Introduction To Soft Computing ISC Download
    Introdution To Microprocessor IM Download
    ME403 Applied Thermodynamics MAT Download
    Microprocessor Download
    Multimedia And Animation MA Download
    Nano Sciences NS Download
    NAS401 Engineering Mathematics Iii NEMI Download
    NCE402 Geoinformatics NG Download
    NCE403 Hydraulics And Hydraulic Machines NHHM Download
    NCE404 Engineering Geology NEG Download
    NCS401 Operating System NOS Download
    NEC 409 Analog Digital Electronics NADE Download
    NEC402 Electronic Circuits NEC Download
    NEC403 Electronic Measurments And Instrumentation NEMI Download
    NEC404 Electromagnetic Field Theory NEFT Download
    NEC409 Introduction To Microprocessor NIM Download
    NEE402 Network Analysis And Synthesis NNAS Download
    NEE403 Electrical Instrumentation And Process Control NEIPC Download
    NEE409 Electrical Machines And Control NEMC Download
    NHU401 Industrial Psychology NIP Download
    NHU402 Industrial Sociology NIS Download
    NME401 Applied Thermodynamics NAT Download
    NME403 Measurement And Metrology NMM Download
    RAS203 Mathematics Ii RMI Download

     

    AKTU B Tech 4th Semester 2015-16 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    2605 Applied Thermodynamics AT Download
    401AUC Human Values Professional Ethics HVPE Download
    401EHU Industrial Psychology IP Download
    401EME Applied Thermodynamics AT Download
    401MTU Electronics Circuits EC Download
    405EBT Immunology Download
    409 Analog Digital Electronics ADE Download
    409NEE Electric Machine Automatic Control EMAC Download
    AS 402 Basics Of System Modelling And Simulation ABSMS Download
    AUC 002 Cyber Security ACS Download
    EAG 401 Electrical Circuits And Machines EECM Download
    EBT 404 Bioinformatics I EB Download
    EC 402 Electromagnetic Field Theory EEFT Download
    EEC 402EC Computer Architecture And Organisation ECAO Download
    EEE 401 Electromechanical Energy Conversion I EEEC Download
    HU 401 Human Behaviour Including Human Sociologyand Psychology HHBIHSP Download
    HYDRAULICS HYDRAULIC MACHINES NCE 403 (1) HHMN Download
    ME 401 Fluid Machinery MFM Download
    NAS 401EAS Engg Mathematics Iii NEMI Download
    NBT 402 Heat Mass Transfer NHMT Download
    NBT 403EBT Enzyme Engineering NEE Download
    NCE 402 Geoinfomatics NG Download
    NCE 403 Hydraulics Hydraulic Machines NHHM Download
    NCE 404 Engineering Geology NEG Download
    NCS 403 Computer Graphics NCG Download
    NEC 401 Data Structure NDS Download
    NEC 402 Electronic Circuits NEC Download
    NEC 403 Electronic Measurements Instrumentation NEMI Download
    NEC 404 Electromagnetic Field Theory NEFT Download
    NEE 401 Electro Mechanical Energy Conversion Ii NEMECI Download

     

    AKTU B Tech 4th Semester 2014-15 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    Analog And Digital Electronics ADE Download
    Applied Thermodynamics AT Download
    Basics Of System Modelling And Simulation BSMS Download
    Computer Graphics CG Download
    Computer Organizatio CO Download
    Computer Organization CO Download
    Computer Programming CP Download
    Data Structure DS Download
    Database Management Systems DMS Download
    Electric Machine and Automatic Contro EMAC Download
    Electrical and Electronics Engineering Materials EEEM Download
    Electro Mechanical Energy Conversion I EMEC Download
    Electro Mechanical Energy Conversion Ii EMECI Download
    Electromagenetic Field Theory EFT Download
    Electromagnetic Field Theory EFT Download
    Electronic Circuits EC Download
    Electronic Field Theory EFT Download
    Electronic Instrumentation And Measurements EIM Download
    Electronic Measurements And Instrumentation EMI Download
    Electronics Circuits EC Download
    Engineering Geology EG Download
    Geoinformatics Download
    Human Behaviour HB Download
    Hydraulics and Hydraulic Machines HHM Download
    Indroduction To Soft Computing Neural Networks Fuzzy Logic and Genetic Algorithm ISCNNFLGA Download
    Industrial Psychology IP Download
    Industrial Sociology IS Download
    Information Theory IT Download
    Instrumentation and Process Control IPC Download
    Introduction To Microprocessor IM Download
    NME 401 Applied Thermodynamics AT Download

     

    B.Tech 5th Sem QP

     

    AKTU B Tech 5th Semester 2015-16 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    Antenna Wave Propagation Eec 504 AWPE Download
    Antenna Wave Propagation Nec 504 AWPN Download
    Bio Informatics 1 Nbt 502 BIN Download
    Bioprocess Engineering I Ebt 503Nbt 503 BEE Download
    Computer Architecture Ncs 505 CAN Download
    Computer Graphics Ecs 504 CGE Download
    Control System Eee 502 Nee 503 CSEN Download
    Control System I Nic 501 CSN Download
    Data Base Management System Ncs 502 DBMSN Download
    Design And Analysis Of Algorithms Ecs 502 DAAE Download
    Design Of Concrete Structures I Nce 505Ece 505 DCSN Download
    Electromechanical Energy Conversion Ii Eee 501 EECIE Download
    Elements Of Power System Nee 501Eee 503 EPSN Download
    Engineering And Managerial Economics Ehu 501 EMEE Download
    Engineering Chemistry I As 103 ECA Download
    Engineering Economics Nhu 501 EEN Download
    Environmental Engineering I Nce 503 EEN Download
    Fundametals Of E.M. Theory Eec 508 FETE Download
    Fundametals Of E.M. Theory Nec 508 FETN Download
    Genetic Engineering Nbt 501Ebt 501 GEN Download
    Heat Mass Transfer Eme 504 HMTE Download
    Heat Mass Transfer Nme 504 HMTN Download
    I.C. Engines Compressors Eme 505 IECE Download
    I.C. Engines Compressors Nme 505 IECN Download
    Integrated Circuits Eec 501 ICE Download
    Integrated Circuits Nec 501 ICN Download
    Kinematics Of Machines Nme 502 KMN Download
    Machine Design I Eme 501 Nme 501 MDEN Download
    Machine Design I Nme 501 MDN Download
    Management Information System Nit 501 MISN Download
    Manufacturing Science Technology Ii Nme 503 MSTIN Download
    Microprocessor Its Applications Nee 504 MIAN Download
    Microprocessors Eec 503 ME Download
    Microprocessors Nec 503 2 MN Download
    Modern Analytical Techniques Nbt 505 MATN Download
    Object Oriented Techniques Ecs 503 OOTE Download
    Operating System Ecs 501 OSE Download

     

    AKTU B Tech 5th Semester 2016-17 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    Computer Architecture Ncs 505 CAN Download
    Control System Nee 503 CSN Download
    Control Systems I Nic 501 CSN Download
    Database Management Systemdbms Ncs 502 DMSN Download
    Design And Analysis Of Algorithm Ncs 501 DAAN Download
    Design Of Concrete Structure I Nce 505 DCSN Download
    Elements Of Power System Nee 501 EPSN Download
    Engineering Economics Nhu 501 EEN Download
    Environmental Engineering I Nce 503 EEN Download
    Fundamentals Of E.M. Theory Nec 508 FETN Download
    Geotechnical Engineering Nce 501 GEN Download
    Heat And Mass Transfer Nme 504 HMTN Download
    I.C. Engines Compressors Nme 505 IECN Download
    Integrated Circuits Nec 501 ICN Download
    Kinematics Of Machines Nme 502 KMN Download
    Machine Design I Nme 501 MDN Download
    Management Information Systems Nit 501 MISN Download
    Manufacturing Science Technology Ii Nme 503 MSTIN Download
    Microprocessor Its Applications Nee 504 MIAN Download
    Microprocessor Nec 503 MN Download
    Power Electronics Nee 502 PEN Download
    Principles Of Communication Nec 502 PCN Download
    Principles Of Programming Language Ncs 503 PPLN Download
    Structural Analysis Ii Nce 50 SAIN Download
    Transportation Engineering I Nce 502 TEN Download
    Web Technology Ncs 504 WTN Download

     

    AKTU B Tech 5th Semester 2017-18 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    EME501 Machine Design I EMD Download
    NCE 501 Geotechnical Engineering NGE Download
    NCE 502 Transportation Engineering I NTE Download
    NCE 503 Environmental Engineering 1 NEE Download
    NCE 504 Structural Analysis Ii NSAI Download
    NCE505 Design Of Concrete Structures I NDCS Download
    NCS 503 Principles Of Programming Languages NPPL Download
    NCS 504 Web Technology NWT Download
    NCS501 Design And Analysis Of Algorithms NDAA Download
    NCS502 Database Management System NDMS Download
    NCS505 Computer Architecture NCA Download
    NEC 504 Antenna And Wave Propagation NAWP Download
    NEC501 Integrated Circuits NIC Download
    NEC502 Principles Of Communication NPC Download
    NEC503 Microprocessor NM Download
    NEC508 Fundamentals Of Electromagnetic Theory NFET Download
    NEE 501 Elements Of Power System NEPS Download
    NEE502 Power Electronics NPE Download
    NEE503 Control System NCS Download
    NEE504 Microprocessor And Its Applications NMIA Download
    NHU 501 Engineering Economics NEE Download
    NIC 501 Control System I NCS Download
    NIT501 Management Informtion System NMIS Download
    NME 502 Kinematics Of Machines NKM Download
    NME 503 Manufacturing Science And Technology Ii NMSTI Download
    NME 504 Heat And Mass Transfer NHMT Download
    NME 505 Engines And Compressors NEC Download

     

    AKTU B Tech 5th Semester 2018-19 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    RAS 501 Managerial Economics RME Download
    RCE 052 Concrete Technology RCT Download
    RCE 501 Geotechnical Engineering RGE Download
    RCE 502 Design Of Structure 1 RDS Download
    RCE 503 Quantity Estimation And Management RQEM Download
    RCS 052 Web Technologies RWT Download
    RCS 501 Data Base Management System RDBMS Download
    RCS 502 Design Analysis Of Algorithms RDAA Download
    RCS 503 Principles Of Programming Languages RPPL Download
    REC 051 Antenna And Wave Propagation RAWP Download
    REC 501 Integrated Circuits RIC Download
    REC 502 Principles Of Communication RPC Download
    REC 503 Digital Signal Processing RDSP Download
    RME 051 Engines Compressors REC Download
    RME 501 Machine Design 1 RMD Download
    RME 502 Heat And Mass Transfer RHMT Download
    RME 503 Manufacturing Science Technology Ii RMSTI Download
    RUC 501 Cyber Security RCS Download

     

    AKTU B Tech 6th Sem

     

    AKTU B Tech 6th Semester 2018-19 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    RAS 602 Sociology RS Download
    RAS 601 Industrial Management RIM Download
    RCE 061 Foundation Design RFD Download
    RCE 602 Environmental Engineering REE Download
    RCE601 Design Of Structure II RDSII Download
    RCE603 Transportation Engineering RTE Download
    RCS061 Internet Of Things RIT Download
    RCS601 Computer Network RCN Download
    RCS602 Compiler Design RCD Download
    RCS603 Computer Graphics RCG Download
    REC 601 Microwave Engineering RME Download
    REC062 Microcontroller For Embedded Systems RMFES Download
    REC602 Digital Communication RDC Download
    RIC603 Control System I RCS Download
    RIT062 Data Warehousing And Data Mining RDWDM Download
    RIT601 Web Technologies RWT Download
    RME 602 Theory Of Machines RTM Download
    RME061 Refrigeration Air Conditioning RRAC Download
    RME601 Fluid Machinery RFM Download
    RME603 Machine Design II RMDII Download

     

    AKTU B Tech 6th Semester 2014-15 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    ADC Eec 609 AE Download
    Advanced Welding Technology AWT Download
    Anteena and Wave Propogation AWP Download
    Compiler Design CD Download
    Computer Network CN Download
    Design Of Concrete Structures II DCSII Download
    Digital Communication DC Download
    Digital Signal Processing DSP Download
    Environmental Engineering 2 EE Download
    ERP Download
    Graph Theory GT Download
    Industrial Management IM Download
    Information Security And Cyber Laws ISCL Download
    Introduction To Electric Drives IED Download
    Microcontrollers Download
    Microwave Engineering ME Download
    Power Electronics PE Download
    Power System Analysis PSA Download
    Principles Of Town Planning And Architecture PTPA Download
    Rural Water Supply and Sanitation RWSS Download
    Software Engineering SE Download
    Software Project Management SPM Download
    Special Electrical Machines SEM Download
    Web Technology WT Download

     

    AKTU B Tech 6th Semester 2015-16 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    ECS 601NCS Computer Networks ECN Download
    EEC 013 Advanced Semiconductor Devices EASD Download
    EEC 014 Microcontroller EM Download
    EEC 603NEC 601 Microwave Engineering EME Download
    EEC 604 Introduction To Electric Drives EIED Download
    EEC 609 Analog Digital Communication EADC Download
    EEE 601 Power System Analysis EPSA Download
    EEE 602 Power Electronics EPE Download
    EHU 601NHU 601 Industrial Management EIM Download
    NBT 012 Biotechnology In Health Care NBIHC Download
    NBT 013 Molecular Modeling Drug Design NMMDD Download
    NBT 022 Developmental Biotechnology NDB Download
    NBT 023 Biofuels Alcohol Technolgy NBAT Download
    NBT 601EBT 601 Fermentation Biotechnology NFB Download
    NBT 602 Environmental Biotechnology NEB Download
    NBT 603 Bioinformatics Ii NBI Download
    NCS 063 Parallel Algorithms NPA Download
    NCS 066 Data Warehousing Data Mining NDWDM Download
    NCS 603ECS Compiler Design NCD Download
    NEC 011 Digital Signal Processing NDSP Download
    NEC 022 Microcontroller Its Applications NMIA Download
    NEC 602EEC 601 Digital Communication NDC Download
    NEC 603 Integrated Circuit Technology NICT Download
    NIT 067 Big Data NBD Download
    NME 011 Engineering Optimization NEO Download
    NME 021 Fluid Machinery NFM Download
    NME 602EME 602 Machine Design Ii NMDI Download
    NME 603 Dynamics Of Machine NDM Download

     

    AKTU B Tech 6th Semester 2016-17 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    EC602 Coating Of Textiles ECT Download
    ECE011 Advanced Foundation Design EAFD Download
    ECE021 Advanced Concrete Design EACD Download
    ECE601 Design Of Concrete Structures Ii EDCSI Download
    ECS603 Compiler Design ECD Download
    EEC011 Analog Signal Processing EASP Download
    EEC013 Advanced Semiconductor Devces EASD Download
    EEC029 Antenna And Wave Propagation Awp EAWPA Download
    EEC601 Digital Communication EDC Download
    EEC602 Digital Signal Processing EDSP Download
    EEC608 Communication Engineering ECE Download
    EEC609 Analog And Digital Communication EADC Download
    EEC609A Communication Engineering ECE Download
    EEE011 Digital Control System EDCS Download
    EME 022 Advance Welding Technology EAWT Download
    NAU601 Automotive Chassis And Suspension NACS Download
    NAU602 Automotive Fuels And Lubricants NAFL Download
    NAU603 Design Of Automotive Components NDAC Download
    NCE011 Advanced Foundation Design NAFD Download
    NCE021 Advanced Concrete Design NACD Download
    NCE601 Design Of Concrete Structures Ii NDCSI Download
    NCS064 Approximation And Randomized Algorithms NARA Download
    NCS067 Distributed Database NDD Download
    NCS069 Advance Dbms NAD Download
    NEC011 Digital Signal Processing NDSP Download
    NEC013 Artificial Neural Network NANN Download
    NEC014 Advance Semiconductor Devices NASD Download
    NEC023 Analog Signal Processing NASP Download
    NEC024R Advance Digital Design Using Verilog NADDUV Download
    NEC602 Digital Communication NDC Download
    NEC609 Communication Engineering NCE Download
    NEE011 Digital Control System NDCS Download
    NEN011 Digital Control System NDCS Download
    NEN023 Antenna And Wave Propagation NAWP Download
    NIT063 Bioinformatics NB Download
    NIT067 Big Data NBD Download
    NME603 Dynamics Of Machine NDM Download

     

    AKTU B Tech 6th Semester 2017-18 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    ECS603 Compiler Design ECD Download
    NCE 601 Design Of Concrete Structure II NDCSII Download
    NCE 014 Principle Of Town Planning And Architecture NPTPA Download
    NCE024 Rural Water Supply And Sanitation NRWSS Download
    NCE602 ECE602 Environmental Engineering II NEEEII Download
    NCE603 Construction Technology And Management NCTM Download
    NCS 066 Datawarehousing And Data Mining NDDM Download
    NCS 601 Computer Networks NCN Download
    NCS 063 Parallel Algorithm NPA Download
    NCS602ECS602 Software Engineering NSE Download
    NEC 011 Digital Signal Processing NDSP Download
    NEC 022R Microcontrollers For Embedded Systems NMFES Download
    NEC 601 Microwave Engineering NME Download
    NEC 603 Integrated Circuit Technology NICT Download
    NEC602 Digital Communication NDC Download
    NEE601 Power System Analysis NPSA Download
    NEE602 Switchgear And Protection NSP Download
    NEN 603 Integrated Circuits NIC Download
    NEN014 Special Electrical Machine NSEM Download
    NHU 601 Industrial Management NIM Download
    NIT 064 Knowledge Based Decision Support System NKBDSS Download
    NIT 067 Big Data NBD Download
    NME 602 Machine Design II NMDII Download
    NME 604 Refrigeration And Air Conditioning NRAC Download
    NME021 Fluid Machinery NFM Download
    NME603 Dynamics Of Machines NDM Download

     

    AKTU B Tech 7th Sem

     

    AKTU B Tech 7th Semester 2018-19 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    ECE 043 Open Channel Flow EOCF Download
    NCE 035 Engineering Hydrology NEH Download
    NCE 701ECE 701 Design Of Steel Structures NDSS Download
    NCE 702ECE 702 Water Resources Engineering NWRE Download
    NCS 071 Software Testing And Audit NSTA Download
    NCS 701 Distributed Systems NDS Download
    NCS 702 Artificial Intelligence NAI Download
    NEC 031 Information Theory And Coding NITC Download
    NEC 701 Optical Communication NOC Download
    NEC 702A Analog And Digital Communication NADC Download
    NEC 702BEEC 702 Data Communication Networks NDCN Download
    NEC 703 Vlsi Design NVD Download
    NEE 702NEN Power Station Practice NPSP Download
    NEN 701 Electric Drives NED Download
    NIT 701 Cryptography And Network Security NCNS Download
    NME 031NPL 031 Computer Aided Manufacturing NCAM Download
    NME 041 Total Quality Management NTQM Download
    NME 702 Automobile Engineering NAE Download
    NOE 071 Entrepreneurship Development NED Download
    NOE 073 Operations Research NOR Download
    NOE 077 Software Project Management NSPM Download

     

    AKTU B Tech 7th Semester 2017-18 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    ECS701 Distributed System EDS Download
    NCE 701 Design Of Steel Structures NDSS Download
    NCE035 Engineering Hydrology NEH Download
    NCE702 Water Resources Engineering NWRE Download
    NCS 702 Artificial Intelligence NAI Download
    NEC 032 Digital Image Processing NDIP Download
    NEC701 Optical Communication NOC Download
    NEC702B Data Communication Networks NDCN Download
    NEE031 Power System Operation And Control NPSOC Download
    NEE702 Power Station Practice NPSP Download
    NEN 701 Electric Drives NED Download
    NIT 701 Cryptography And Network Security NCNS Download
    NME 701 Computer Aided Design NCAD Download
    NME702 Automobile Engineering NAE Download
    NOE 071 Entrepreneurship Development NED Download
    NOE77 Software Project Management NSPM Download

     

    AKTU B Tech 7th Semester 2016-17 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    NCE 034 Industrial Pollution Control And Environmental Audit NIPCEA Download
    NCE 035 Engineering Hydrology NEH Download
    NCE 043 Open Channel Flow NOCF Download
    NCE 044 Tunnel Engineering NTE Download
    NCE 701 Design Of Stell Structures NDSS Download
    NCS 071 Software Testing Audit NSTA Download
    NCS 701 Distributed System NDS Download
    NCS 702 Artificial Intelligence NAI Download
    NEC 032 Digital Image Processing NDIP Download
    NEC 701 Optical Communication NOC Download
    NEC 702 A Analog Digital Communication NADC Download
    NEC 702 B Data Communication Networks NDCN Download
    NEC 703 Vlsi Design NVD Download
    NEN 701NEE 701 Electric Drives NED Download
    NIT 701 Cryptographic And Network Security NCNS Download
    NME 031NPL 031 Computer Aided Manufacturing NCAM Download
    NME 032NPL 032 Project Management NPM Download
    NME 041NPL 041 Total Quality Management NTQM Download
    NME 701NPL 701 Computer Aided Design NCAD Download
    NME 702 Automobile Engineering NAE Download
    NOE 071 Entrepreneurship Development NED Download
    NOE 077 Software Project Management NSPM Download

     

    AKTU B Tech 7th Semester 2015-16 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    EBT 041 Molecular Modeling Drug Design EMMDD Download
    EBT 042 Bioprocess Engineering Ii EBEI Download
    EBT 701 Down Stream Processing EDSP Download
    EBT 702 Bioethicsbiosafety EB Download
    ECE 701 Design Of Steel Structure EDSS Download
    ECS 077 Data Compression EDC Download
    ECS 701 Distributed Systems EDS Download
    ECS 702 Digital Image Processing EDIP Download
    ECS 801 Artificial Intelligence EAI Download
    EEC 702 Data Communication Networks EDCN Download
    EEE 035EEE 702 Electric Drives EED Download
    EEN 701EEE 504 Electrical Instrumentation Process Control EEIPC Download
    EIT 074 It In Forensic Science EIIFS Download
    EIT 701 Cryptography Network Security ECNS Download
    EME 701 Computer Aided Design ECAD Download
    EME 702 Automobile Engineering EAE Download
    EOE 071 Enterpreneurship Development EED Download
    EPL 031EME Computer Aided Manufacturing ECAM Download
    MOLECULAR MODELING DRUG DESIGN EBT 041 (1) MMDDE Download

     

    AKTU B Tech 8th Sem

     

    AKTU B Tech 8th Semester 2018-19 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    ECE064 Earthquake Resistant Design Of Structures EERDS Download
    ECS 087 Mobile Computing EMC Download
    NCE 052 Analysis And Design Of Hydraulic Structures NADHS Download
    NCE 801 Transportation Engineering II NTEII Download
    NCS 085 Data Compression NDC Download
    NCS080 Pattern Recognition NPR Download
    NCS801 Digital Image Processing NDIP Download
    NEC 045 Satellite And Radar System NSRS Download
    NEC801 Wireless Mobile Communication NWMC Download
    NEC802 Optical Networks NON Download
    NEC803 Embedded Systems NES Download
    NEE801 Electrical Electronics Engineering Materials NEEEM Download
    NEN 044 Satellite Communication NSC Download
    NME 065 Non Destructive Testing NNDT Download
    NME055 Advanced Welding Technology NAWT Download
    NME801 Power Plant Engineering NPPE Download

    AKTU B Tech 8th Semester 2014-15 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    ECS 084 Cryptography And Network Security ECNS Download
    ECS 087 Mobile Computing EMC Download
    ECS 801 Artificial Intelligence EAI Download
    EEC 801 Wireless And Mobile Communication EWMC Download
    EEC 802 Electronics Switching EES Download
    EEC 035 Introduction To Radar Systems EIRS Download
    EEC 069 Multimedia Systems EMS Download
    EEC 069B Satellite Communication ESC Download
    EEE 054 Energy Efficiency And Conservation EEEC Download
    EME 051 Operations Research EOR Download
    EME 062 Non Destructive Testing ENDT Download
    EME 801 Power Plant Engineering EPPE Download
    EOE 081 Non Conventional Energy Resources ENCER Download

     

    AKTU B Tech 8th Semester 2017-18 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    NCE 052 Analysis And Design Of Hydraulic Structures NADHS Download
    NCE 064 Earthquake Resistant Of Design Of Structures NERDS Download
    NCE 801 Transportation Engineering III NTEIII Download
    NCS 801 Digital Image Processing NDIP Download
    NCS 080 Pattern Recognition NPR Download
    NCS 085 Data Compression NDC Download
    NEC 801 Wireless And Mobile Communication NWMC Download
    NEC 045 Satellite And Radar Systems NSRS Download
    NEE 801 Electrical And Electronics Engineering Material NEEEM Download
    NEE 043NEC803 Embedded Systems NES Download
    NEN 044 Satellite Communication NSC Download
    NIT 801 Mobile Computing NMC Download
    NME 065 Non Destructive Testing NNDT Download
    NME 051 Operations Research NOR Download
    NME801 Power Plant Engineering NPPE Download

     

    AKTU B Tech 8th Semester 2016-17 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    Additive Manufacturing AM Download
    Advanced Welding Technology AWT Download
    Applied Linear Algebra ALA Download
    Automation And Robotics AR Download
    Computer Aided Process Planniing CAPP Download
    Data Compression DC Download
    Design Of Thermal System DTS Download
    Digital Image Processing DIP Download
    Digital System Design Using Vhdl DSDUV Download
    Discrete Mathematics DM Download
    Distributed System DS Download
    EC801 Technology Of Printing Ii ETPI Download
    EC802 Development Of Wet Processing EDWP Download
    ECE051 Computer Aided Design ECAD Download
    ECE052 Analysis And Design Of Hydraulic Structures EADHS Download
    ECE053 Water Resources Systems EWRS Download
    ECE054 Machine Foundation Design EMFD Download
    ECE061 Ground Improvement Techniques EGIT Download
    ECE062 River Engineering ERE Download
    ECE063 Groundwater Management EGM Download
    ECE064 Earthquake Resistant Design EERD Download
    ECE801 Construction Technology And Management ECTM Download
    ECS082 Software Project Management ESPM Download
    ECS084 Cryptography And Network Security ECNS Download
    ECS085 Neural Network ENN Download
    ECS086 Natural Language Processing ENLP Download
    ECS087 Mobile Computing EMC Download
    ECS088 Soft Computing ESC Download
    ECS801 Artificial Intelligence EAI Download
    EEC031 Optical Networks EON Download
    EEC032 Digital Systems Using Vhdl EDSUV Download
    EEC033 Speech Processing ESP Download
    EEC034 Integrated Circuit Technology EICT Download
    EEC035 Introduction To Radar System EIRS Download
    EEC066 Microwave And Radar EMR Download
    EEC067 Speech Processing ESP Download
    EEC068 Image Processing EIP Download
    EEC069 Multimedia Systems EMS Download
    EEC069B Microwave Engineering And Measurement EMEM Download
    EEC801 Wireless And Mobile Communication EWMC Download
    EEC802 Electronic Switching EES Download
    EEC809 Data Communication Network EDCN Download
    EEE051 Bio Medical Instrumentation EBMI Download
    EEE052 Advance Control System EACS Download
    EEE053 Reliability Engineering ERE Download
    EEE054 Energy Efficiency And Conservation EEEC Download
    EEE061 Power Quality EPQ Download
    EEE062 Scada And Energy Management System ESEMS Download
    EEE063 Power Converter Applications EPCA Download
    EEE801 Utilization Of Electrical Energy And Traction EUEET Download
    Ehv Ac And Dc Transmission EADT Download
    EIT081 Digital Image Processing EDIP Download
    EIT082 Multimedia Systems EMS Download
    Electrical And Electronics Engg. Materials EEEM Download
    EME052 Maintenance Engineering And Management EMEM Download
    EME054 Advance Synthesis Of Mechanisms EASM Download
    EME055 Six Sigma Method And Application ESSMA Download
    EME056 Concepts Of Modern Physics ECMP Download
    EME061 Finit Element Method EFEM Download
    EME063 Advance Material Technology EAMT Download
    EME064 Production And Operations Management EPOM Download
    EME065 Energy Management EEM Download
    EME066 Fundamentals Of Biomedical Engineering EFBE Download
    EOE081 Non Conventional Energy Resources ENCER Download
    EOE085 Industrial Automation Ii EIAI Download
    NCE051 Computer Aided Design NCAD Download
    NCE052 Analysis And Design Of Hydraulic Structures NADHS Download
    NCE053 Water Resources Systems NWRS Download
    NCE054 Machine Foundation Design NMFD Download
    NCE061 Ground Improvement Techniques NGIT Download
    NCE062 River Engineering NRE Download
    NCE063 Groundwater Management NGM Download
    NCE064 Earthquake Resistant Design NERD Download
    NCE801 Transportation Engineering- Ii NTEI Download
    NCS080 Pattern Recognition NPR Download
    NCS081 High Performance Computing NHPC Download
    NCS082 Real Time System NRTS Download
    NCS083 Cluster Computing NCC Download
    NCS084 Grid Computing NGC Download
    NCS087 Embedded Systems NES Download
    NEC041 Electronic Switching NES Download
    NEC043 Speech Processing NSP Download
    NEC044 Advanced Display Technologies And Systems NADTS Download
    NEC802 Optical Networks NON Download
    NEE042 Power Quality NPQ Download
    NEE044 Scada NS Download
    NEN041 Ehv Ac And Dc Transmission NEADT Download
    NEN042 Power Quality NPQ Download
    NEN043 Image Processing NIP Download
    NEN044 Satellite Communication NSC Download
    NIT080 Natural Language Processing NNLP Download
    NIT801 Mobile Computing NMC Download
    NME051 Operation Research NOR Download
    NME052 Design Of Thermal System NDTS Download
    NME053 Advance Synthesis Of Mechanisms NASM Download
    NME054 Industrial Automation I NIA Download
    NME061 Experimental Stress Analysis NESA Download
    NME065 Non Destructive Testing NNDT Download
    NOE048 Discrete Mathematics NDM Download
    NOE081 Non Conventional Energy Resources NNCER Download
    NOE082 Non Linear Dynamics System NNLDS Download
    NOE083 Product Development NPD Download
    NOE084 Automation And Robotics NAR Download
    NOE085 Dbms Data Mining And Warehouse NDDMW Download
    Non Destructive Testing NDT Download
    Non Linear Dynamics System NLDS Download
    Operation Research OR Download
    Plant Layout And Material Handling PLMH Download
    Product Development PD Download
    Real Time System RTS Download
    Satellite And Radar System SRS Download
    Utilization Of Electrical Energy And Traction UEET Download
    Wireless And Mobile Communication WMC Download

     

    AKTU B Tech 8th Semester 2015-16 Question Papers (Dr. A.P.J. Abdul Kalam Technical University)

    051 EME 051 Operations Research EOR Download
    EBT 051 Biotechnology In Health Care EBIHC Download
    EBT 052 Nano Biotechnology ENB Download
    EBT 061 Biomedical Instrumentation EBI Download
    EBT 801 Environmental Biotechnology EEB Download
    ECS 082 Software Project Management ESPM Download
    ECS 084 Cryptography Network Security ECNS Download
    ECS 086 Natural Language Processing ENLP Download
    ECS 087 Mobile Computing EMC Download
    ECS 701 Distributed System EDS Download
    ECS 801 Artificial Intelligence EAI Download
    EEC 035 Introduction To Radar Systems EIRS Download
    EEC 069B Satelite Communication ESC Download
    EEC 801 Wireless Mobile Communication EWMC Download
    EEC 809 Data Communication Networks EDCN Download
    EEE 054 Energy Efficiency Conservation EEEC Download
    EIT 082EEC 069A Multimedia System EMS Download
    EME 055 Six Sigma Methods Applications ESSMA Download
    EME 062 Non Destructive Testing ENDT Download
    EME 064 Production And Operations Management EPOM Download
    EME 801 Power Plant Engineering EPPE Download
    EOE 081 Non Conventional Energy Resources ENCER Download

     

     

     

    aktu question paper 2018-19

    aktu question paper 2016-17

    aktu question paper 2017-18 exam papers

    aktu question paper 2017-18 btech,

    aktu question paper 2018-19 btech

    uptu previous year question papers for b tech 1st semester

    aktu previous year paper 2017-18

     

    Above Question Papers Are Applicable To The Below Colleges Which Are Affiliated To Dr. A.P.J. Abdul Kalam Technical University-[AKTU]

     

    School of Management Sciences
    Late Ravindranand Baronia College of Pharmacy Mahroni
    Pahalwan Gurudeen College of Science and Technology
    Dr. Rizvi College of Engineering, Karari
    S P Memorial Institute of Technology
    Madhu Vachaspati Institute of Engineering and Technology
    Chandra Shekhar Singh College of Pharmacy
    Madhu Vachaspati School of Management
    Sri Sri Institute of Technology & Management
    Bhabha Institute of Technology
    Bhabha College of Engineering
    Prabhat Engineering College
    Devidayal Memorial Institutions
    Kamal Institute of Technology
    Sanskriti College of Higher Education and Studies
    Uttar Pradesh Textile Technology Institute
    Maharana Pratap Engineering College
    Dr. Virendra Swarup Institute of Computer Studies
    Dayanand Academy of Management Studies
    College of Management Studies
    Pranveer Singh Institute of Technology
    Kanpur Institute of Technology
    Dr. Ambedkar Institute of Technology For Handicapped
    S.T.E.P.- H.B.T.I.
    Advanced Institute of Bio-Tech & Paramedical Sciences
    Maharana Pratap College of Pharmacy
    Dayanand Dinanath College, Institute of Pharmacy
    Naraina College of Engineering & Technology
    Dayanad Deena Nath College of Management
    PSIT College of Engineering
    Maharana Institute of Professional Studies
    Indus Institute of Technology & Management
    Krishna Institute of Technology
    Apollo Institute of Technology
    Naraina Vidya Peeth Engineering & Management Institute
    Jagran Institute of Management
    Naraina Vidya Peeth Management Institute
    Allenhouse Institute of Technology
    Maharana Prataap College of Engineering
    Vision Institute of Technology
    Seth Sriniwas Agarwal Institute of Engineering and Technology
    Kanpur Institute of Technology & Pharmacy
    Naraina Vidya Peeth Group of Institutions Faculty of Pharmacy
    Seth Sri Nivas Agarwal Institute of Management
    Banshi College of Management & Technology
    Dr Virendra Swaroop Institute of Professional Studies
    Axis Institute of Technology & Management
    Axis Institute of Fashion Technology
    Axis Institute of Architecture
    Axis Business School
    Axis Institute of Planning and Management
    Asian Institute of Management & Higher Studies
    PSIT COLLEGE OF MANAGEMENT
    NARAINA SCHOOL OF PLANNING & ARCHITECTURE
    VISION INSTITUTE OF MANAGEMENT
    Maharana Pratap College of Pharmaceutical Sciences
    Rajkiya Engineering College, Kannauj
    Bundelkhand Institute of Engineering & Technology
    SR Group of Institutions College of Science and Engineering
    Smt. Vidyawati College of Pharmacy
    SR Group of Institutions College of Pharmacy
    SR Group of Institutions College of Engineering Management & Technology
    Shri Rawatpura Sarkar Institute of Pharmacy
    Doodhnath College of Pharmacy
    M.C.S.College of Science And Technology
    Prasad Institute of Technology
    Kunwar Haribansh Singh College of Pharmacy
    Kunwar Haribansh Singh Institute of Management
    RDS College of Pharmacy
    MASS College of Engineering and Management, Hathras
    Ibne Seena Pharmacy College
    Lord Krishna College of Engineering, Pilkhuwa
    Saraswati Institute of Engineering & Technology, Pilkhuwa
    JMS Group of Institutions
    Vedant Institute of Management & Technology
    Institute of Technology & Management
    Chandra Mauli Institute of Management Sciences & Technology
    Suyash Institute of Information Technology
    Kailash Institute of Pharmacy & Management
    KIPM College of Management
    Buddha Institute of Technology
    Dr. B.R. Ambedkar Pooja College of Pharmacy
    KIPM College of Engineering & Technology
    Purvanchal Institute of Architecture & Design, Gida[]
    tahira institute of medical sciences
    Acharya Narendra Dev College of Pharmacy
    Nandani Nagar Mahavidayala College of Pharmacy
    K.R.S. College of Pharmacy
    K.R.S. College of Management
    Nandini Nagar Technical Campus
    Technical Education & Research Institute
    Lutawan Institute of Pharmacy
    Satyadeo College of Pharmacy
    Krishna Institute of Engineering and Technology
    I.T.S. College of Pharmacy
    KIET School of Pharmacy
    Dr. K.N.Modi institute of Engineering & Technology
    Dr. K.N. Modi Institute of Pharmaceutical Science & Research
    Unique Institute of Management & Technology
    KNGD Modi Engineering College
    D.J.College of Engineering & Technology
    Dr. Ram Manohar Lohia Institute
    K.S. Jain Institute of Engineering & Technology
    R.D. Foundations Group of Institutions, Faculty of Engineering, Kadrabad
    RD Foundation’s Group of Institutions, Faculty of Management
    D.J. College of Pharmacy
    Dr. Ram Manohar Lohia College of Pharmacy
    ABES Institute of Technology
    Ideal Institute of Technology
    Indraprastha Engineering College
    ABES Engineering College
    Raj Kumar Goel Institute of Technology
    Babu Banarasi Das Institute of Technology, Duhai
    Institute of Management Studies, Ghaziabad
    Institute of Management Education
    Institute of Technology & Science, Mohan Nagar
    Institute of Management and Research
    Integrated Academy of Management & Technology{inmantec}
    Institute of Professional Excellence & Management
    Jaipuria institute of management
    Ram Chameli Chaddha Vishwas Girls College
    IMS Engineering College
    Krishna Engineering College
    H.R. Institute of Technology, Morta
    Sanskar College of Engineering & Technology
    Hi-Tech Institute of Engineering & Technology
    Viveknanad Institute of Technology & Science, Jindal Nagar
    R.D. Engineering College, Duhai
    H.R. Institute of Hotel Management, Morta
    Sunderdeep Engineering College, Dasna
    H.R. Institute of Pharmacy, Morta
    Sunderdeep Pharmacy College, Dasna
    Ajay Kumar Garg Engineering College
    Sunder Deep College of Hotel Management, Dasna
    Sunder Deep College of Architecture, Dasna
    Devender Singh Institute of Technology & Management
    Raj Kumar Goel Institute of Technology & Management
    Rishi Chadha Vishvas Girls Institute of Technology for Women
    Oxford College of Pharmacy, Mussori-Gulawati, NTPC Road
    Aryan Institute of Technology, Jindal Nagar
    Bhagwati Institute of Technology and Science, Masuri
    HLM College, km. Delhi-Meerut Road
    Modern Institute of Technology and Management, Duhai
    Ideal Institute of Management and Technology
    ITERC College of Management
    R.D. Engineering College Research Center, Duhai
    Institute of Advanced Management and Research
    Adhunik College of Engineering, Duhai
    Adhunik Institute of Productivity Management and Research
    Nitra Technical Campus
    Ajay Kumar Garg Institute of Management
    Sanskar College of Architecture & Planning
    Integrated Academy of management & Technology
    Bhagwant Institute of Technology
    Sanskar College of Pharmacy & Research
    BBDIT COLLEGE OF PHARMACY
    J.S.S. Academy of Technical Education
    Mahatma Gandhi Mission College of Engineering & Technology
    Institute of Management Studies
    Hierank Business School
    U.P. Institute of Design, Noida
    Apeejay Institute of Technology, School of Architecture & Planning
    IEC College of Engineering and Technology
    Ram-Eesh Institute of Vocational and Technical Education
    Galgotias Institute of Management & Technology
    Galgotia’s College of Engineering and Technology
    Harlal Institute of Management & Technology
    Greater Noida Institute of Technology
    Noida Institute of Engineering and Technology
    IILM College of Engineering and Technology
    Global Institute of Information Technology
    Mangalmay Institute of Engineering & Technology
    Sky line Institute of Engineering & Technology
    Llyod Institute of Management & Technology
    GL Bajaj Institute of Technology and Management
    United College of Engineering and Research
    Rakshpal Bahadur Management Institute
    United Institute of Management
    H.I.M.T. College of Pharmacy
    I.I.M.T. College of Engineering
    I.T.S. Engineering College
    Accurate Institute of Management and Technology
    Innovative College of Pharmacy
    Dronacharya Group of Institutions
    NIMT Institute of Hospital & Pharma Management
    I.I.M.T. College of Pharmacy
    Greater Noida Institute of Technology (MBA Institute)
    Noida Institute of Engineering & Technology (MCA Institute)
    Patronage Institute of Management Studies
    B.B.S. Institute of Pharmaceutical & Allied Science
    Spectrum Institute of Pharmaceutical Science & Research
    KCC Institute of Technology and Management
    Prince Institute of Innovative Technology
    Sarvottam Institute of Technology & Management
    KCC Institute of Management
    Lloyd Business School
    Accurate Institute of Advanced Management
    Sky Line Institute of Management & Technology
    FMG Academy Group of Institutions
    Mangalmay Institute of Engineering and Technology, Knowledge Park
    G.L Bajaj Institute of Management and Research
    Greater Noida Institute of Business Management
    Accurate Institute of Architercture & Panning
    Greater Noida College of Technology
    Metro College of Health Sciences & Research
    Ch. Charan Singh College of Pharmacy
    Skyline Institute of Pharmacy
    Maharishi Institute of Management
    Vishveshwarya Group of Institutions
    R.V. Northland Institute
    Vishveshwarya Institute of Technology
    R.V. Northland Institute of Management
    Amardeep College of Engineering & satna
    Pratap College of Management, Vill.Sindhav
    Trivedi Institute of Management & Technology
    Shiv Bali Singh Group of Educational and Training Institute College of Pharmacy
    Faculty of Management, Jhunjhunwala Degree College
    Bhavdiya Institute of Business Management
    Bhavdiya Institute of Pharmaceutical Sciences and Research
    Shri R.L.T. Institute of Pharmaceutical Science & Technology
    Sri Madan Lal Institute of Pharmacy
    Sir Madan Lal Institute of Management
    Shri RLT Institute of Management
    Ch. Harchand Singh College of Management
    J.K. Institute of Pharmacy and Management, Khurja
    Babu Banarsi Das Institute of Engineering Technology & Research Centre
    Marathwada Institute of Technology
    V.Tech Institute Of Integrated Technology
    Brahmanand Group of Institutions
    G & R Institute of Management and Technology
    School of Business Management and Technology, Khurja Road
    Brahmanand Institute of Research Technology & Management
    D.N. College
    Hillwood Medical School
    North India Institute of Technology
    Vivek College of Technical Education
    Vivek College of Management & Technology
    KLS institute oF Engineering & Technology, Vill- Khudaheri, Bijnor -Hardwar Road
    Veer Kunwar Institute of Technology
    R.V. Institute of Technology
    Rajkiya Engineering College, Bijnor
    Janta College of Pharmacy
    Krishna Pharmacy College
    Krishna Institute
    Kunwar Satya Vira College of Engineering & Management
    Indian Institute of Carpet Technology
    Sagar Institute of Technology & Management
    Sherwood College of Pharmacy
    Sherwood College of Engineering Research & Technology
    Sagar Institute of Technology & Management Department of Pharmacy
    Seth Vishambhar Nath Institute of Engineering & Technology
    Gokaran Narvadeshwar Institute of Technology & Management
    Jahangirabad Educational Trust’s Group of Institutions, Faculty of Engineering
    Jahangirabad Educational Trust’s Group of Institutions, Faculty of Management
    Seth Vishambhar Nath Institute of Management Studies & Research
    Seth Vishambhar Nath Institute of Pharmaceutical Sciences
    Seth Vishambhar Nath Institute of Pharmacy
    TRC MAHAVIDYALAYA, DEPARTMENT OF PHARMACY
    AUROUS INSTITUTE OF MANAGEMENT
    Bareilly
    S.NoInstitute CodeName of College
    Shri Ram Murti Smarak College of Engineering & Technology
    Rakshpal Bahadur Management Institute
    Khandelwal College of Management Science and Technology
    Rakshpal Bahadur College of Pharmacy
    Rakshpal Bahadur College of Engineering & Technology
    Shri Ram Murti Smarak College of Engineering, Technology & Research
    Shri Siddhi Vinayak Institute of Technology
    Shri Jeet Ram Smarak Institute of Engg. and Technology
    Future Institute of Engineering & Technology
    Rajshree Institute of Management & Technology
    A.N.A. College of Engineering & Management
    Future Institute of Management and Technology
    Srajan Institute of Management & Technology
    Khandelwal College of Architecture & Design
    Prem Prakash Gupta Institute of Management
    Jyoti College of Management Science and Technology
    Prem Prakash Gupta Institute of Engineering
    ANA College of Management Studies
    Shri Siddhi Vinayak Institute of Management
    Utkarsh College of Management Education
    Lotus Institute of Management
    Mascot Institute of Management
    Future Institute of Pharmacy
    A.N.A Institute of Pharmaceutical Sciences & Research
    S.R. INSTITUTE OF PHARMACY
    STELLER INSTITUTE OF PHARMACY
    Kritika Pharmacy College
    Kali Charan Nigam Institute of Technology
    Rajkiya Engineering College, Banda
    Shakti College of Pharmacy, Dulhinpur
    Smt.Fulehra Smarak College of Pharmacy
    Shri Gopichand College of Pharmacy
    Shri Krishan College of Engineering, Singhawali Ahir
    JagMohan Institute of Management and Technology, Khekada
    SARAS COLLEGE OF PHARMACY
    Pharmacy College
    R.K Pharmacy College
    Navneet College of Technology & Management
    Rajendra Prasad College of Management
    Rajkiya Engineering College, Azamgarh
    RAHUL SANKRITYAYAN COLLEGE OF PHARMAC
    Institute of Management & Science
    IMS
    DNS College of Engineering & Technology, Didoli
    Maharaja Agrasen College of Engineering & Technology, Dhanaura
    Indraprasth Institute of Technology
    Landmark Technical Campus Didauli
    Amani Group of Institutions, Amroha
    Mesco Institute of Pharmacy
    Yogendra Nath Saxena College of Pharmacy & Research
    Rajarshi Rananjay Singh College of Pharmacy
    Rajarshi Rananjay Singh Institute of Management & Technology
    United College of Engineering & Research
    United Institute of Management
    Institute of Engineering & Rural Technology
    B.B.S.College of Engineering and Technology
    Ewing Christian Institute of Management & Technology
    Shambhunath Institute of Engg. & Technology
    Shambhunath Institute of Pharmacy
    LDC Institute of Technical Studies
    United Institute of Technology
    United Institute of Pharmacy, United College of Engg. & Research
    United College of Engineering & Management
    H.M.F.A.Memorial Institute of Engineering & Technology
    Chatrapati Shahu Ji Maharaj College of Engineering and Technology
    Malti Memorial Trusts CSM “group of Institutions”, Faculty of B. Pharmacy
    Faculty of Management, CSM Group of Institutions
    Sanskar College of Management & Computer Application
    Abhay Memorial Trust Group of Institutions
    Krishnarpit Institute of Pharmacy
    Krishnarpit Institute of Management & Technology
    Devprayag Institute of Management
    Shambhunath Institute of Management
    Prayag Institute of Technology & Management
    Shivadan Singh Institute of Technology and Management
    Aligarh College of Engineering & Technology
    Al Barkat Institute of Management Studies
    Aligarh College of Pharmacy
    ACN College of Engineering & Management Studies, Kasimpur Road, VIll.- Cherrat
    Vivekanand College of Technology & Management, Near Khair Road
    Institute of Technology & Management, Aligarh-Palwal-Delhi Road, Karsua
    SSLD Varshney Engineering College, Aligarh – Kanpur G.T. Road
    Vision Institute of Technology, Shahpur Madrak
    Institute of Information Management & Technology
    SSLD Varshney Institute of Management & Engineering
    Rajkiya Engineering College, Ambedkar Nagar

    Anand Engineering College, Artoni
    Faculty of Engineering & Technology, Agra College
    Raja Balwant Singh Engineering Technical Campus
    Raja Balwant Singh Management Technical Campus
    Agra Public Institute of Technology & Computer Education, Artoni
    College of Pharmacy, Jakhoda
    Anand College of Pharmacy
    Anjali College of Pharmacy & Science Etmadpur
    K.P. Engineering College, Etmadpur
    College of Business Studies, Sikandara
    Neelam College of Engineering & Technology, Kirawali
    Chaudhary Beeri Singh College of Engineering & Management, Near Peeli Pokhar,Teh.- Etmadpur
    Uttam Institute of Management Studies, Runakta, Kirawali Road
    Heritage Institute of Hotel & Tourism
    Agra Public College of Technology & Management
    Agra Vansthali Mahavidyalaya
    Anand college of Architecture
    ACE College of Engineering & Management, Etmadpura
    CBS College of Management
    Institute of Computer Science & Technology
    Rajarshi School of Management and Technology (RSMT)
    Faculty of Management and Technology
    Jeevandeep Institute of Management & Technology
    Institute of Pharmacy
    Society of Advanced Management Studies, Institute of Hotel Management
    Saraswati Higher Education & Technical College of Pharmacy
    Saraswati Higher Education & Technical College of Engineering
    College of Pharmacy
    Kashi Institute of Technology
    Kashi Institute of Pharmacy
    Ashoka Institute of Technology & Management
    Raj School of Management & Sciences
    Institute of Pharmaceutical Sciences & Research
    Mahatma Gandhi Universe Institute
    Institute of Professional Studies & Research (IPSR)
    Sunrise Institute of Engineering Technology & Management
    Dr Virendra Swarup Memorial Trust Group of Institutions
    Kanpur Institute of Management Studies
    Shri Rammurti Smarak College of Engineering & Technology
    Kamla Nehru Institute of Technology
    Kamla Nehru Institute Of Physical & Social Sciences, Management Institute
    Rajarshi Rananjay Singh College of Pharmacy
    Kamla Nehru Institute of Management & Technology
    Kamla Nehru Institute of Physical & Social Sciences
    Rajarshi Rananjay Singh Institute of Management & Technology
    Rajkiya Engineering College, Sonbhadra
    Sacred Heart Institute of Management & Technology
    Institute of Engineering and Technology
    Institute of Pharmacy
    Sun Institute of Management and Technology
    Lakshya Institute of Management & Information Technology
    Lakshya Technical Campus
    Doon College of Education
    Dev Bhoomi Groups of Institutions
    Indraprastha Institute of Management & Technology
    Hari College of Management, Gagalheri
    Dev Bhoomi Groups of Institutions, Faculty of Computer Application
    Dev Bhoomi Groups of Institutions, Faculty of Management
    Saharanpur Institute of Advance Studies, Gokelpur
    Dwarikadheesh Research Education & Management School
    Disha Bharti College of Management & Education
    Forth Dimension College of Architecture
    Devrishi Institute of Management & Technology
    Saharanpur Pharmacy College
    Veer Vijay Pharmacy College
    Doon College of Engg. & Technology
    Apex Institute of Technology
    Feroze Gandhi Institute of Engineering & Technology
    Mahaveer Institute of Technology and Management
    Shri Ram College of Pharmacy
    S.D.College of Engineering and Technology
    Bhagwant Institute of Technology
    S.D.College of Management Studies, Bhopa Road
    S.D. College of Pharmacy & Vocational Studies
    Bhagwant Institute of Pharmacy
    Sri Ram College of Management
    Shri Ram Group of Colleges
    Moradabad Institute of Technology
    R.S.D. Academy, College of Management & Technology
    Kothiwal Institute of Technology & Professional Studies, Pachokara Haridwar Road
    Radha Govind Institute of Pharmacy, Moradabad-Chandausi Road
    Moradabad Educational Trust (MET) Group of Institutions, Faculty of Pharmacy
    Shree Satya Institute of Management, Lodhipur Rajput, Palbara
    Moradabad Educational Trust (MET) Group of Institutions, Faculty of B. Architecture
    MIT College of Management
    R.K. College of Pharmacy
    Ghanshyam Binani Academy of Management Sciences
    Apex Institute of Pharmacy
    Vindhya Gurukul College of Pharmacy
    Meerut Institute of Engineering and Technology
    Radha Govind Group of Institutions
    College of Engineering & Rural Technology
    Dewan Institute of Management Studies
    IIMT Engineering College
    Bharat Institute of Technology
    Forte Institute of Technology
    Institute of Hotel Management, Catering Technology & Applied Nutrition
    J.P. Institute of Hotel Management & Catering Technology
    Kishan Institute of Information Technology
    Kalka Institute for Research & Advanced Studies
    NKBR College of Pharmacy & Research Centre
    Translam Institute of Pharmaceutical Education & Research, Rajpura, Mawana Road
    Vidya College of Engineering
    Vidya School of Business
    LTR Institute of Technology, Dharamsala-Bhagpat Road
    Bharat Institute of Technology (MBA Institute)
    J.P. Institute of Engineering & Technology
    Institute of Technology & Management, Meerut-Baghpat Road, Panchli
    Meerut Institute of Technology, Baral, Partapur
    Deewan V.S. Institute of Engineering & Technology
    ABSS Institute of Technology, Mawana Road
    Vidya Institute of Fashion Technology, Baghpat Road
    Translam Institute of Technology & Management, Mawana Road
    Shanti Institute of Technology, Kurali, Baghpat Road
    KITE Group of Institutions, KITE School of Engineering and Technology
    Neelkanth Institute of Technology, Pawli Khas, Modipuram
    Rishi Institute of Engineering & Technology, Partapur
    Gyan Bharti Institute of Technology, Partapur Bypass Road
    Meerut International Institute of Technology
    Mahaveer Institute of Technology, Sardhana Road
    Panchwati Institute of Engineering & Technology, Delhi- Hardwar Bypass
    Shri Nath Ji Institute for Technical Education, VIll-Ghat, Delhi- Roorkee Bypass
    FIT Engineering College, Kaseru Buxar
    Delhi Institute of Engineering and Technology
    Faculty of Engineering, Shanti Niketan Trust’s Group of Institutions, Mohiuddinpur
    Krishna Institute of Management, Bana, Mawana Road
    Kalka Engineering College, Partapur Bypass Road
    Dewan V.S. Institute of Hotel Management & Technology
    Shanti Niketan Trust’s Group of Institutions, Faculty of Management, Mohiuddinpur
    Vinayak Vidyapeeth, Pawli khas, Modipuram
    J P School of Business, Salarpur, Jalalpur, Rajpura
    Bharti Institute of Management & Technology, Kila Road, Rali Chauhan
    SVS Group of Institutions
    BIMT College
    Gauri Vidya Peeth Business School
    Vishveshwarya College of Education, Mawana
    Mahaveer Institute of Engineering and Technology
    Rudra Group of Institutions
    Dayanand Vidhyapeeth Education
    APS College of Education & Technology
    AR Institute of Management & Technology
    Mahaveer College of Pharmacy
    LTR Institute of Management
    APS College of Education
    Maa Bhagwata Kunwar Institute of Management
    Hindustan College of Science and Technology
    B.S.A. College of Engineering & Technology
    Rajeev Academy for Pharmacy
    Hindustan Institute of Management & Computer Studies
    Sachdeva Institute of Technology
    Rajeev Academy for Technology & Management
    Ishwarchand Vidyasagar Institute of Technology, Akbarpur
    Sanjay College of Pharmacy
    Eshan College of Engineering, Agra-Mathura Highway
    G.L. Bajaj Group of Institutions, Mathura Delhi Highway
    Shree Jee Baba Institute of Professional Studies, Semari Chata
    Shri Giriraj Maharaj Institute of Management, Mundesi Kosi Khurd
    Aashlar Business School, Mahuan, Near Toll Plaza
    Unnati Management College, Daulatpur, Farah
    Edify Institute of Management & Technology
    Shree Jee Goverdhan Maharaj College of Professional Studies
    Hardayal Technical Campus
    Eshan College of Management
    Divya College of Pharmacy
    NSS College of Management
    Rajkiya Engineering College, Mainpuri
    Rajeev Gandhi College of Pharmacy
    Institute of Technology and Management
    ITM College of Pharmacy
    Faculty of Architecture, AKTU(Formerly: Lucknow College of Architecture & GCA)
    Institute of Engineering and Technology(IET)
    Azad Institute of Engineering & Technology
    B.B.D National Institute of Tech. & Management
    Babu Banarasi Das Northern India Institute of Technology
    International Institute For Special Education (IISE)
    Institute of Environment & Management
    Lal Bahadur Shastri Institute of Management & Development Studies
    Sherwood College of Management
    Motilal Rastogi School of Management
    SHRI RAMSWAROOP MEMOIAL INSTITUTE OF TECHNOLOGY
    Saroj Institute of Technology & Management
    Institute of Co-Operative & Corporate Management, Research & Training
    Dr. M.C. Saxena College of Engineering & Technology
    Indira Gandhi Institute of Co-Operative Management
    Central Institute of Plastic Engineering & Technology
    College of Engineering, Science & Technology
    Azad Institute of Pharmacy & Research
    Hygia Institute of Pharmaceutical Education and Research
    Rameshwaram Institute of Technology & Management
    Narmadeshwar Management College
    Dr. M.C.Saxena College of Pharmacy
    Aryakul College of Pharmacy & Research
    Aryavart Institute of Technology & Management
    Rameshwaram Institute of Technology & Management
    Goel Institute of Technology & Management
    R.R. Institute of Modern Technology
    Lucknow Institute of Technology
    Ambalika Institute of Management & Technology
    Mahatma Gandhi Institute of Pharmacy
    Goel Institute of Pharmacy & Sciences
    Aryakul College of Management
    T.D.L. College of Technology & Management
    Bhalchandra Institute of Education & Management
    Bansal Institute of Engineering & Technology
    School of Management Science (SMS Institute of Technology)
    Maharana Institute of Technology & Sciences
    B.N.College of Engineering & Technology
    Central Institute of Management & Technology
    Sardar Bhagat Singh College of Technology & Management
    Himalayan Institute of Technology & Management
    G.C.R.G. Memorial Trust’s Group of Institutions, Faculty of Engineering
    Institute of Technology & Management
    Lucknow Model Institute of Technology & Management
    S.R. Institute of Management & Technology
    Babu Banarasi Das Engineering College
    Saroj Institute of Management & Technology
    AKS Management College, Bakshi-Ka-Talab
    Bora Institute of Management Science
    Lucknow Institute of Pharmacy
    GCRG Memorial Trust’s Group of Institutions, Faculty of Management
    Babu Sundar Singh Institute of Technology & Management
    M.G. Institute of Management & Technology
    Goel Institute of Higher Studies
    S S Institute of Management
    SRM Business School
    Lucknow Model Institute of Management
    ITM School of Architecture and Town Planning
    ITM School of Management
    City College of Management & Technology
    Heeralal Yadav Institute of Technology & Management
    DNM Institute of Engineering & Technology
    Basudev Institute of Management & Technology
    Institute of Management Research & Technology
    Shine College of Management
    Maa Vaishno Devi Educational & Law College
    Noble Institute of Management & Technology
    Remote Sensing Application Centre
    Dayal Group of Institutions
    IILM Academy of Highier Learning
    ISABELLA THOBURN COLLEGE
    Centre for Advance Studies
    F I PHARMACY COLLEGE
    GCRG COLLEGE OF PHARMACY
    GSRM MEMORIAL COLLEGE OF PHARMACY
    HYGIA INSTITUTE OF PHARMACY
    J. P. COLLEGE OF PHARMACY
    Jan Kalyan Institute of Technical Excellence
    YASH RAJ INSTITUTE OF PHARMACY
    Sri Sharda Institute Of Management and Technology5*/

  • JNTUA B.Tech First Year R19 First-Year Syllabus And Course-Structures Effective-from-2019-2020

     

    JNTUA B.Tech First Year R19 1st Year Syllabus And Course-Structures Effective-from-2019-2020

     

    JNTU Anantapur (JNTUA) B-Tech 2019-2020 Question Papers First Year R19 Regulation Syllabus

     

    JNTUA B.Tech First Year R19 First Year Syllabus  Download

     

     



    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR

    B.Tech- I Sem                                                                                                                                                   

    (19A54101) Algebra & Calculus

    (Common to all branches of Engineering)

    Course Objectives:

    • This course will illuminate the students in the concepts of calculus and linear algebra.
    • To equip the students with standard concepts and tools at an intermediate to advanced level mathematics to develop the confidence and ability among the students to handle various real world problems and their applications.

    Bridge Course: Limits, continuity, Types of matrices

    Unit 1: Matrices                                                                                                                                                                  10 hrs

    Rank of a matrix by echelon form, solving system of homogeneous and non-homogeneous equations linear equations. Eigen values and Eigen vectors and their properties, Cayley-Hamilton theorem (without proof), finding inverse and power of a matrix by Cayley-Hamilton theorem, diagonalisation of a matrix, quadratic forms and nature of the quadratic forms, reduction of quadratic form to canonical forms by orthogonal transformation.

    Learning Outcomes:

    At the end of this unit, the student will be able to

    • solving systems of linear equations, using technology to facilitate row reduction determine the rank, eigenvalues and eigenvectors, diagonal form and different factorizations of a matrix; (L3)
    • identify special properties of a matrix, such as positive definite, etc., and use this information to facilitate the calculation of matrix characteristics; (L3)

    Unit 2: Mean Value Theorems                                                                                                                    6 hrs

    Rolle”™s Theorem, Lagrange”™s mean value theorem, Cauchy”™s mean value theorem, Taylor”™s and Maclaurin theorems with remainders (without proof);

    Learning Outcomes:

    At the end of this unit, the student will be able to

    • Translate the given function as series of Taylor”™s and Maclaurin”™s with remainders (L3)
    • analyze the behaviour of functions by using mean value theorems (L3)

    Partial derivatives, total derivatives, chain rule, change of variables, Jacobians, maxima and minima of functions of two variables, method of Lagrange multipliers.

    Learning Outcomes:

    At the end of this unit, the student will be able to

    • Find partial derivatives numerically and symbolically and use them to analyze and interpret the way a function varies. (L3)
    • Acquire the Knowledge maxima and minima of functions of several variable (L1)
    • Utilize Jacobian of a coordinate transformation to deal with the problems in change of variables (L3)

    Unit 4: Multiple Integrals                                                                                                                                                10hrs

    Double integrals, change of order of integration, double integration in polar coordinates, areas enclosed by plane curves. Evaluation of triple integrals, change of variables between Cartesian, cylindrical and spherical polar co-ordinates.

    Learning Outcomes:

    • At the end of this unit, the student will be able to
    • Evaluate double integrals of functions of several variables in two dimensions using Cartesian and polar coordinates (L5)
    • Apply double integration techniques in evaluating areas bounded by region (L4)
    • Evaluate multiple integrals in Cartesian, cylindrical and spherical geometries (L5)

    Unit 5: Special Functions                                                                                                                                                6 hrs

    Beta and Gamma functions and their properties, relation between beta and gamma functions, evaluation of definite integrals using beta and gamma functions.

    Learning Outcomes:

    At the end of this unit, the student will be able to

    • understand beta and gamma functions and its relations (L2)
    • Conclude the use of special function in evaluating definite integrals (L4)

    Course Outcomes:

    At the end of the course, the student will be able to

    • develop the use of matrix algebra techniques that is needed by engineers for practical applications (L6)
    • Utilize mean value theorems to real life problems (L3)
    • familiarize with functions of several variables which is useful in optimization (L3)
    • Students will also learn important tools of calculus in higher dimensions. Students will become familiar with 2- dimensional coordinate systems (L5)
    • Students will become familiar with 3- dimensional coordinate systems and also learn the utilization of special functions

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR

    B.Tech- II Sem                                                                                                                                                     L T P C

    3 1 0 4

    (19A54201) Differential Equations and Vector Calculus

    (Civil, Mechanical, EEE, ECE and EIE)

    Course Objectives:

    • To enlighten the learners in the concept of differential equations and multivariable
    • To furnish the learners with basic concepts and techniques at plus two level to lead them into advanced level by handling various real world applications.

    UNIT 1: Linear differential equations of higher order                                         8hrs

    Definitions, complete solution, operator D, rules for finding complimentary function, inverse operator, rules for finding particular integral, method of variation of parameters.

    Learning Outcomes:

    At the end of this unit, the student will be able to

    • identify the essential characteristics of linear differential equations with constant coefficients (L3)
    • solve the linear differential equations with constant coefficients by appropriate method (L3)

    UNIT 2: Equations reducible to Linear Differential Equations                           8hrs

    Cauchy”™s and Legendre”™s linear equations, simultaneous linear equations with constant coefficients, Applications to L-C-R Circuit problems and Mass spring system.

    Learning Outcomes:

    At the end of this unit, the student will be able to

    • classify and interpret the solutions of linear differential equations (L3)
    • formulate and solve the higher order differential equation by analyzing physical situations (L3)

    UNIT 3: Partial Differential Equations                                                                                                     8 hrs

    First order partial differential equations, solutions of first order linear and non-linear PDEs. Solutions to homogenous and non-homogenous higher order linear partial differential equations.

    Learning Outcomes:

    At the end of this unit, the student will be able to

    • apply a range of techniques to find solutions of standard PDEs (L3)
    • outline the basic properties of standard PDEs (L2)

     

    UNIT4: Vector differentiation                                                                                                                     8hrs

    Scalar and vector point functions, vector operator del, del applies to scalar point functions-Gradient, del applied to vector point functions-Divergence and Curl, vector identities.

    Learning Outcomes:

    At the end of this unit, the student will be able to

    • apply del to Scalar and vector point functions (L3)
    • illustrate the physical interpretation of Gradient, Divergence and Curl (L3)

    UNIT 5: Vector integration                                                                                                                           8hrs

    Line integral-circulation-work done, surface integral-flux, Green”™s theorem in the plane (without proof), Stoke”™s theorem (without proof), volume integral, Divergence theorem (without proof) and applications of these theorems.

    Learning Outcomes:

    At the end of this unit, the student will be able to

    • find the work done in moving a particle along the path over a force field (L4)
    • evaluate the rates of fluid flow along and across curves (L4)
    • apply Green”™s, Stokes and Divergence theorem in evaluation of double and triple integrals (L3)

     

    Course Outcomes:

    At the end of the course, the student will be able to

    • solve the differential equations related to various engineering fields (L6)
    • Identify solution methods for partial differential equations that model physical processes (L3)
    • interpret the physical meaning of different operators such as gradient, curl and divergence (L5)
    • estimate the work done against a field, circulation and flux using vector calculus (L6)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- II Sem            L T P C

    3 1 0 4

    (19A54202) Probability and Statistics

    (Common to CSE, IT and Food Technology)

    Course Objectives:

    • To familiarize the students with the foundations of probability and statistical methods
    • To impart probability concepts and statistical methods in various applications Engineering

    Unit 1: Descriptive statistics and methods for data science                                          10 hrs

    Data science, Statistics Introduction, Population vs Sample, Collection of data, primary and secondary data, Type of variable: dependent and independent Categorical and Continuous variables, Data visualization, Measures of Central tendency, Measures of Variability (spread or variance) Skewness Kurtosis, correlation, correlation coefficient, rank correlation, regression coefficients, principle of least squares, method of least squares, regression lines.

    Learning Outcomes:

    At the end of this unit, the student will be able to

    • summarize the basic concepts of data science and its importance in engineering (L2)
    • analyze the data quantitatively or categorically , measure of averages, variability (L4)
    • adopt correlation methods and principle of least squares, regression analysis (L5)

    UNIT 2: Probability                                                                                                                                                     8 hrs

    Probability, probability axioms, addition law and multiplicative law of probability, conditional probability, Baye”™s theorem, random variables (discrete and continuous), probability density functions, properties, mathematical expectation.

    Learning Outcomes:

    At the end of this unit, the student will be able to

    • define the terms trial, events, sample space, probability, and laws of probability (L1)
    • make use of probabilities of events in finite sample spaces from experiments (L3)
    • apply Baye”™s theorem to real time problems (L3)
    • explain the notion of random variable, distribution functions and expected value(L2)

    UNIT 3: Probability distributions                                                                                                                            6 hrs

    Probability distribution – Binomial, Poisson approximation to the binomial distribution and normal distribution-their properties.

    Learning Outcomes:

    At the end of this unit, the student will be able to

    • apply Binomial and Poisson distributions for real data to compute probabilities, theoretical frequencies (L3)
    • interpret the properties of normal distribution and its applications (L2)

    Unit4: Estimation and Testing of hypothesis, large sample tests                                   8 hrs

    Estimation-parameters, statistics, sampling distribution, point estimation, Formulation of null hypothesis, alternative hypothesis, the critical and acceptance regions, level of significance, two types of errors and power of the test. Large Sample Tests: Test for single proportion, difference of proportions, test for single mean and difference of means. Confidence interval for parameters in one sample and two sample problems

    Learning Outcomes:

    At the end of this unit, the student will be able to

    • explain the concept of estimation, interval estimation and confidence intervals (L2) ● apply the concept of hypothesis testing for large samples (L4)

    Unit 5: Small sample tests                                                                                                                                           8 hrs

    Student t-distribution (test for single mean, two means and paired t-test), testing of equality of variances (F-test), χ2 – test for goodness of fit, χ2 – test for independence of attributes.

    Learning Outcomes:

    At the end of this unit, the student will be able to

    • apply the concept of testing hypothesis for small samples to draw the inferences (L3) ● estimate the goodness of fit (L5)

    Course Learning Outcomes:

    Upon successful completion of this course, the student should be able to

    • make use of the concepts of probability and their applications (L3)
    • apply discrete and continuous probability distributions (L3)
    • classify the concepts of data science and its importance (L4)
    • interpret the association of characteristics and through correlation and regression tools (L4)
    • design the components of a classical hypothesis test (L6)
    • infer the statistical inferential methods based on small and large sampling tests (L6)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- I/II Sem        L T P C

    3 0 0 3

    (19A56101T) Applied Physics

    (ECE, CSE, EEE & IT Branches)

    Course Objectives:

    > To identify the importance of the optical phenomenon i.e. interference, diffraction and polarization related to its Engineering applications.

    > To explain the significant concepts of dielectric and magnetic materials this leads to potential applications in the emerging micro devices.

    > To impart knowledge in basic concepts of electromagnetic waves and its propagation in optical fibers along with its Engineering applications.

    > To identify the importance of semiconductors in the functioning of electronic devices.

    > To teach the concepts related to superconductivity which lead to their fascinating applications.

    > To familiarize the applications of nanomaterials relevant to engineering branches.

    Unit-I : Wave Optics                                                                                                                                                         8hrs

    Interference-Principle of Superposition-Interference of light-Conditions for sustained Interference -Interference in thin films (reflected light)-Newton”™s Rings-Determination of Wavelength- Engineering applications of Interference

    Diffraction-Fraunhofer Diffraction-Single and Double slits – Diffraction Grating- Grating Spectrum -Determination of Wavelength – Engineering applications of diffraction

    Polarization-Polarization by double refraction-Nicol”™s Prism–Half wave and Quarter wave plate- Engineering applications of Polarization.

    Unit Outcomes:

    The students will be able to

    > explain the need of coherent sources and the conditions for sustained interference (L2)

    > identify engineering applications of interference including homodyne and heterodyne detection (L3)

    > analyze the differences between interference and diffraction with applications (LA) > illustrate the concept of polarization of light and its applications (L2)

    > classify ordinary polarized light and extraordinary polarized light (L2)

     

    Unit-II : Dielectric and Magnetic Materials                                                                        (8hrs)

    Introduction–Dielectric polarization-Dielectric polarizability, Susceptibility and Dielectric constant- Types of polarizations: Electronic and Ionic, (Quantitative), Orientation Polarizations (Qualitative) – Frequency dependence of polarization-Lorentz (internal) field-Claussius – Mosotti equation-Applications of Dielectrics: Ferroelectricity.

    Introduction-Magnetic dipole moment-Magnetization-Magnetic susceptibility and permeability- Origin of permanent magnetic moment -Classification of Magnetic materials-Weiss theory of ferromagnetism (qualitative)-Hysteresis-soft and hard magnetic materials-Magnetic device applications (Magnetic bubble memory).

    Unit Outcomes:

    The students will be able to

    > explain the concept of dielectric constant and polarization in dielectric materials (L2) > summarize various types of polarization of dielectrics (L2)

    > interpret Lorentz field and Claussius- Mosotti relation in dielectrics (L2)

    > classify the magnetic materials based on susceptibility and their temperature dependence (L2)

    > explain the applications of dielectric and magnetic materials (L2)

    > Apply the concept of magnetism to magnetic devices (L3)

    Unit- III: Electromagnetic Waves and Fiber Optics                                                         10hrs

    Divergence and Curl of Electric and Magnetic Fields- Gauss”™ theorem for divergence and Stokes”™ theorem for curl- Maxwell”™s Equations (Quantitative)- Electromagnetic wave propagation (Non-conducting medium) -Poynting”™s Theorem.

    Introduction to Optical Fibers-Total Internal Reflection-Critical angle of propagation-Acceptance angle-Numerical Aperture-Classification of fibers based on Refractive index profile- Propagation of electromagnetic wave through optical fiber- modes -importance of V-number- Attenuation, Block Diagram of Fiber optic Communication -Medical Applications-Fiber optic Sensors.

    Unit Outcomes:

    The students will be able to

    > apply the Gauss”™ theorem for divergence and Stokes”™ theorem for curl (L3)

    > evaluate the Maxwell”™s equations, Maxwell”™s displacement current and correction in Ampere”™s law (L5)

    ~ asses the electromagnetic wave propagation and its power in non-conducting medium (L5) > explain the working principle of optical fibers (L2)

    > classify optical fibers based on refractive index profile and mode of propagation (L2)

    > identify the applications of optical fibers in medical, communication and other fields (L2) > Apply the fiber optic concepts in various fields (L3).

     

    Unit- IV: Semiconductors                                                                                                                                            8 hrs

    Origin of energy bands – Classification of solids based on energy bands- Intrinsic semiconductors – density of charge carriers-Fermi energy- Electrical conductivity – extrinsic semiconductors – P-type & N-type – Density of charge carriers – Dependence of Fermi energy on carrier concentration and temperature- Direct and Indirect band gap semiconductors-Hall effect- Hall coefficient – Applications of Hall effect – Drift and Diffusion currents – Continuity equation – Applications of Semiconductors.

    Unit Outcomes:

    The students will be able to

    > classify the energy bands of semiconductors (L2)

    > outline the properties of n-type and p-type semiconductors and charge carriers (L2) > interpret the direct and indirect band gap semiconductors (L2)

    > identify the type of semiconductor using Hall effect (L2)

    > identify applications of semiconductors in electronic devices (L2)

    Unit- V: Superconductors and Nanomaterials                                                                                                     8 hrs

    Superconductors-Properties- Meissner”™s effect-BCS Theory-Josephson effect (AC &DC)-Types of Super conductors-Applications of superconductors.

    Nano materials- Significance of nanoscale- Properties of nanomaterials: Physical, Mechanical, Magnetic, Optical- Synthesis of nanomaterials: Top-down-Ball Milling, Bottom-up -Chemical vapour deposition- characterization of nanomaterials: X-Ray Diffraction (XRD), Scanning Electron Microscope (SEM) – Applications of Nano materials.

    Unit Outcomes:

    The students will be able to

    > explain how electrical resistivity of solids changes with temperature (L2) > classify superconductors based on Meissner”™s effect (L2)

    > explain Meissner”™s effect, BCS theory & Josephson effect in superconductors (L2) > identify the nano size dependent properties of nanomaterials (L2)

    > illustrate the methods for the synthesis and characterization of nanomaterials (L2)
    > Apply the basic properties of nanomaterials in various Engineering branches (L3).

     

     

    > identify the wave properties of light and the interaction of energy with the matter (L3) > apply electromagnetic wave propagation in different guided media (L2)

    ~ asses the electromagnetic wave propagation and its power in different media (L5) > calculate conductivity of semiconductors (L3)

    > interpret the difference between normal conductor and superconductor (L2) > demonstrate the application of nanomaterials (L2)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- I/II Sem        L T P C

    0 0 3 1.5

    (19A56101P) Applied Physics Lab

    (ECE, CSE, CSSE, EEE, EIE & IT Branches)

    Course Objectives:

    > Understands the concepts of interference and diffraction and their applications. > Understand the role of optical fiber parameters in communication.

    > Recognize the importance of energy gap in the study of conductivity and hall effect in a semiconductor.

    > Illustrates the magnetic and dielectric materials applications.

    > Apply the principles of semiconductors in various electronic devices.

    Note: In the following list, out of 15 experiments, any 12 experiments must be performed in a semester

    List of Physics Experiments

    1. Determine the thickness of the wire using wedge shape method

    Experimental outcomes:

    operates optical instrument like travelling microscope. (L2)

    estimate the thickness of the wire using wedge shape method (L2)

    Identifies the formation of interference fringes due to reflected light from non uniform thin film. (L2)

    1. Determination of the radius of curvature of the lens by Newton”™s ring method Experimental outcomes: operates optical instrument like travelling microscope. (L2)

    estimate the radius of curvature of the lens (L2)

    Identifies the formation of interference fringes due to reflected light from non uniform thin film. (L2)

    plots the square of the diameter of a ring with no. of rings (L3)

    1. Determination of wavelength by plane diffraction grating method

    Experimental outcomes:

    operates optical instrument like spectrometer. (L2)

    estimate the wavelength of the given source (L2)

    Identifies the formation of grating spectrum due diffraction. (L2)

    1. Dispersive power of a diffraction grating

    Experimental outcomes:

    operates optical instrument like spectrometer. (L2)

    estimate the wavelength of the given source (L2)

    Identifies the formation of grating spectrum due diffraction. (L2)

    1. Resolving power of a grating Experimental outcomes: operates optical instrument like spectrometer. (L2)

     

    estimate the resolving power of the grating (L2)

    Illustrates the role of resolving power in various optical instruments. (L3)

    1. Determination of dielectric constant by charging and discharging method. Experimental outcomes:

    operates various instruments and connect them as per the circuit. (L2) estimate the dielectric constant of the given substance. (L2)

    Identifies the significance of dielectric constant in various devices. (L2)

    1. Magnetic field along the axis of a circular coil carrying current. Experimental outcomes:

    operates various instruments and connect them as per the circuit. (L2)

    estimate the magnetic field along the axis of a circular coil carrying current. (L2) plots the intensity of the magnetic field of circular coil carrying current with distance (L3)

    1. To determine the self inductance of the coil (L) using Anderson”™s bridge. Experimental outcomes:

    operates various instruments and connect them as per the circuit. (L2) estimate the self inductance of the coil using Anderson”™s bridge. (L2) Identifies the significance of self inductance of the coil in electric devices. (L2)

    1. Study the variation of B versus H by magnetizing the magnetic material (B-H curve) Experimental outcomes:

    operates various instruments and connect them as per the circuit. (L2)

    estimate the hysteresis loss, coercivity and retentivity of the ferromagnetic material.. (L2)

    classifies the soft and hard magnetic material based on B-H curve. (L2) plots the magnetic field H and flux density B (L3)

    1. To determine the numerical aperture of a given optical fiber and hence to find its acceptance angle

    Experimental outcomes:

    operates various instruments and connect them as per the circuit. (L2)

    estimate the numerical aperture and acceptance angle of a given optical fiber. (L2) Identifies the significance of numerical aperture and acceptance angle of a optical fiber in various engineering applications. (L2)

    1. Measurement of magnetic susceptibility by Gouy”™s method Experimental outcomes:

    operates various instruments and connect them as per the circuit. (L2) estimate the magnetic susceptibility of the given material. (L2)

    Identifies the significance of magnetic susceptibilityin various engineering applications. (L2)

    1. Determination of Hall voltage and Hall coefficient of a given semiconductor using Hall effect.

    Experimental outcomes:

    operates various instruments and connect them as per the circuit. (L2)

    estimate the charge carrier concentration and mobility in a semiconductor. (L2) Illustrates the applications of hall effect. (L3)

    plots the voltage with current and voltage with magnetic field (L3)

     

    1. To determine the resistivity of semiconductor by Four probe method Experimental outcomes:

    operates various instruments and connect them as per the circuit. (L2) estimate the resistivity of a semiconductor. (L2)

    Identifies the importance of Four probe method in finding the resistivity of semiconductor. (L3)

    1. To determine the energy gap of a semiconductor

    Experimental outcomes:

    operates various instruments and connect them as per the circuit. (L2) estimate the energy gap of a semiconductor. (L2)

    Illustrates the engineering applications of energy gap . (L3) plots 1/T with log R (L3)

    1. Measurement of resistance with varying temperature.

    Experimental outcomes:

    operates various instruments and connect them as per the circuit. (L2) estimate the resistance with varying temperature. (L2)

    plots resistance R with temperature T (L3)

    Course Outcomes:

    The students will be able to

    > operate optical instruments like microscope and spectrometer (L2)

    > determine thickness of a hair/paper with the concept of interference (L2)

    > estimate the wavelength of different colors using diffraction grating and resolving power (L2)

    > plot the intensity of the magnetic field of circular coil carrying current with distance (L3) > evaluate the acceptance angle of an optical fiber and numerical aperture (L3)

    > determine magnetic susceptibility of the material and its losses by B-H curve (L3) > determine the resistivity of the given semiconductor using four probe method (L3) > identify the type of semiconductor i.e., n-type or p-type using hall effect (L3)

    > calculate the band gap of a given semiconductor (L3)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR

    B.Tech- I/II Sem                                                                                                                                                  L T P C

    3 0 0 3

    (19A56102T) Engineering Physics

    (Civil, Mechanical and Food Technology)

    Course Objectives:

    > To impart knowledge in basic concepts of mechanics.

    > To familiarize the basic concepts of acoustics and ultrasonics with their Engineering applications.

    > To explain the significant concepts of dielectric and magnetic materials this leads to potential applications in the emerging micro devices.

    > To impart knowledge in basic concepts of optical fibers and LASERs along with its Engineering applications.

    > Familiarize types of sensors for various engineering applications

    Unit-1: MECHANICS                                                                                                                                   (10 hrs)

    Basic laws of vectors and scalars-rotational frames-conservative forces- F = – grad V, torque and angular momentum – Newton”™s laws in inertial and linear accelerating non-inertial frames of reference-rotating frame of reference with constant angular velocity-qualitative explanation of Foucault”™s pendulum-rigid body-angular velocity vector -center of mass- gravitation and Keplar”™s Law (Qualitative).

    Learning Outcomes:

    The students will be able to

    > Identify forces and moments in mechanical systems using scalar and vector techniques (L3)

    > interpret the equation of motion of a rigid rotating body (torque on a rigid body) (L3) > extend Newton”™s second law for inertial and non-inertial frame of reference (L2)

    > explain consideration of Earth’s rotation in designing and launching missiles (L2)

    Unit-2: ACOUSTICS AND ULTRASONICS                                                                                                    (9 hrs)

    Acoustics Introduction- Reverberation- Reverberation time”“ Sabine”™s formula- derivation using growth and decay method- Absorption coefficient and its determination-factors affecting acoustics of buildings and their remedies.

    Ultrasonics- Introduction, Properties and Production by magnetostriction& piezoelectric methods – acoustic grating -Non Destructive Testing- pulse echo system through transmission and reflection modes – A,B and C- scan displays, Medical applications.

     

    Learning Outcomes:

    The students will be able to

    > explain how sound is propagatedin buildings (L2)

    > analyze acoustic properties of typically used materials in buildings (L4)

    > recognize sound level disruptors and their use in architectural acoustics (L2) > identify the use of ultrasonics in different fields (L3)

    Unit-3 : Dielectric and Magnetic Materials                                                                         (8hrs)

    Introduction–Dielectric polarization-Dielectric polarizability, Susceptibility and Dielectric constant- Types of polarizations: Electronic, Ionic, Orientation Polarizations (Qualitative) – Frequency dependence of polarization-Lorentz (internal) field-Claussius -Mosotti equation-Applications of Dielectrics.

    Introduction-Magnetic dipole moment-Magnetization-Magnetic susceptibility and permeability- Origin of permanent magnetic moment -Classification of Magnetic materials-Domain Concepts of ferromagentism-Hysteresis-soft and hard magnetic materials-Magnetic device applications.

    Unit Outcomes:

    The students will be able to

    > explain the concept of dielectric constant and polarization in dielectric materials (L2) > summarize Gauss”™s law in the presence of dielectrics (L2)

    > interpret dielectric loss, Lorentz field and Claussius- Mosotti relation (L2)

    > classify the magnetic materials based on susceptibility and their temperature dependence (L2)

    > explain the applications of dielectric and magnetic materials (L2)

    Unit- IV: Lasers and Fiber Optics                                                             (10hrs)

    Introduction – Characteristics of Laser – Spontaneous and Stimulated emission of radiation – Einstein”™s coefficients – Population inversion – Pumping Mechanisms – He-Ne laser, Nd-YAG laser – Semiconductor laser – Applications of laser.

    Introduction to Optical Fibers-Total Internal Reflection-Construction of optical fibers, Critical angle of propagation-Acceptance angle-Numerical Aperture-Classification of fibers based on Refractive index profile& modes-Propagation of electromagnetic wave through optical fiber- importance of V number- Block Diagram of Fiber optic Communication system -Medical Applications.

    Unit Outcomes:

    The students will be able to

    > Understand the basic concepts of LASER light Sources (L2)

    > Apply the concepts to learn the types of lasers (L3)

    > Identifies the Engineering applications of lasers (L2)

    > explain the working principle of optical fibers (L2)

    > classify optical fibers based on refractive index profile and mode of propagation (L2)

    > identify the applications of optical fibers in medical, communication and other fields (L2)

     

    Unit- V: Sensors                                                                                                                                                 (8 hrs)

    Sensors:(qualitative description only): Different types of sensors and applications; Strain and Pressure sensors- Piezoelectric, magnetostrictive sensors, Fibre optic methods of pressure sensing; Temperature sensors – bimetallic strip, pyroelectric detectors, Hall-effect sensor, smoke and fire detectors.

    Learning Outcomes:

    The students will be able to

    > identify different types of sensors and applications (L3)

    > explain physics behind theworking principles of sensors (L2) > select sensors for different type of applications (L3)

     

    Course Outcomes:

    After completing this course students will be able to

    > explain physics applied to solve engineering problems (L2)

    > apply the principles of acoustics in designing of buildings (L3)

    > explains the applications of ultrasonics in various engineering fields (L2) > apply electromagnetic wave propagation in different Optical Fibers (L2) > Apply the lasers concepts in various applications (L3)

    > Explains the concepts of dielectric and magnetic materials (L2) > identify the sensors for various engineering applications (L3)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR

    B.Tech- I/II Sem                                                                                                                                                  L T P C

    0 0 3 1.5

    (19A56102P) Engineering Physics Lab

    (Civil, Mechanical and Food Technology)

    Course Objectives:

    > Understand the role of Optical fiber parameters in engineering applications.

    > Recognize the significance of laser by studying its characteristics and its application in finding the particle size.

    > Illustrates the magnetic and dielectric materials applications.

    > Identifies the various sensor applications.

    Note: – In the following list of experiments, out of 15 experiments any 12 experiments must be performed in a semester.

    List of Physics Experiments:

    1. Determination of wavelength of LASER light using diffraction grating.

    Experimental outcomes:

    operates various instrument (L2)

    estimate the wavelength of laser source (L2)

    Identifies the formation of grating spectrum due diffraction. (L2)

    1. Determination of particle size using LASER. Experimental outcomes:
    • operates various instrument (L2)
    • estimate the Particles size using laser (L2)
    • Identifies the application of laser (L2)
    1. Determination of spring constant of springs using Coupled Oscillator

    Experimental outcomes:

    operatesvarious instrument. (L2) estimate thespring constant (L2) Identifies the principle of coupled oscillations. (L2)

    1. Determination of Hall voltage and Hall coefficient of a given semiconductor using Hall

    operatesvarious instruments and connect them as per the circuit. (L2)

    estimate thecharge carrier concentration and mobility in a semiconductor. (L2) Illustrates the applications of hall effect. (L3)

    plotsthe voltage with current and voltage with magnetic field (L3)

    1. Determination of Dielectric constant of dielectric material using charging and discharging of

    Experimental outcomes:

    operatesvarious instruments and connect them as per the circuit. (L2)

    estimate the dielectric constant of the given substance. (L2)

     

    Identifies the significance of dielectric constant in various devices. (L2)

    1. Magnetic field along the axis of a circular coil carrying current.

    Experimental outcomes:

    operatesvarious instruments and connect them as per the circuit. (L2)

    estimate the magnetic field along the axis of a circular coil carrying current. (L2) plotsthe intensity of the magnetic field of circular coil carrying current with distance (L3)

    1. Rigidity modulus of material of a wire-dynamic method (Torsional pendulum)

    Experimental outcomes: operatesvarious instruments. (L2)

    estimate therigidity modules of a given wire (L2)

    plotslength of the pendulum (l) with time period T2 (L3)

    1. Determination of hysteresis loss by tracing B-H Curve of ferromagnetic material. Experimental outcomes: operatesvarious instruments and connect them as per the circuit. (L2)

    estimate thehysteresis loss, coercivity and retentivity of the ferromagnetic material.. (L2)

    classifies the soft and hard magnetic material based on B-H curve. (L2)

    plotsthe magnetic field H and flux density B (L3)

    1. To determine the numerical aperture of a given optical fiber and hence to find its acceptance angle

    Experimental outcomes:

    operatesvarious instruments and connect them as per the circuit. (L2)

    estimate thenumerical aperture and acceptance angle of a given optical fiber. (L2) Identifies the significance of numerical aperture and acceptance angle of a optical fiber in various engineering applications. (L2)

    1. Measurement of magnetic susceptibility by Gouy”™s method

    Experimental outcomes:

    operatesvarious instruments and connect them as per the circuit. (L2)

    estimate themagnetic susceptibility of the given material. (L2)

    Identifies the significance of magnetic susceptibilityin various engineering applications. (L2)

    1. Determination of ultrasonic velocity in liquid (Acoustic grating)

    Experimental outcomes: operatesvarious instruments. (L2)

    estimatethe velocity of ultrasonic waves in liquids. (L2)

    Illustrates the basic applications of ultrasonics. (L3)

    1. Determination of pressure variation using Strain Guage sensor.

    Experimental outcomes:

    operatesvarious instruments. (L2)

    estimatethe pressure variation using strain guage sensor. (L2)

    Illustrates the applications of strain gauge sensors. (L3)

    1. Determination of temperature change using Strain Guage sensor.

    Experimental outcomes:

    operatesvarious instruments. (L2)

    estimatethe temperature variation using strain guage sensor. (L2)

    Illustrates the applications of strain gauge sensors. (L3)

    1. Determination of pressure variations using optical fiber sensors. Experimental outcomes:

    operatesvarious instruments. (L2)

    estimatethe pressure variation using Optical fiber sensor. (L2) Illustrates the applications of Optical fiber sensors. (L3)

    1. Determination of temperature changes using optical fiber sensors. Experimental outcomes:

    operatesvarious instruments. (L2)

    estimatethe temperature variation using Optical fiber sensor. (L2) Illustrates the applications of Optical fiber sensors. (L3)

     

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR

    B.Tech- I/II Sem                                                                                                                                                  L T P C

    3 0 0 3

    (19A51101T) Engineering Chemistry

    (MECH and CIVIL)

    Course Objectives:

    • To familiarize engineering chemistry and its applications
    • To impart the concept of soft and hard waters, softening methods of hard water
    • To train the students on the principles and applications of electrochemistry, polymers, surface chemistry, and cement

    Unit 1: Water Technology                                                                                                                                      (8 hrs)

    Introduction-Soft Water and hardness of water, Estimation of hardness of water by EDTA Method – Boiler troubles scale and sludge, Industrial water treatment- specifications for drinking water, Bureau of Indian Standards(BIS) and World health organization(WHO) standards, zeolite and ion-exchange processes – desalination of brackish water, reverse osmosis (RO) and electrodialysis.

    Learning outcomes:

    The student will be able to

    • list the differences between temporary and permanent hardness of water (L1)
    • explainthe principles of reverse osmosis and electrodialysis. (L2)
    • comparequality ofdrinking water with BIS and WHO standards. (L2)
    • illustrateproblems associated with hard water – scale and sludge. (L2)
    • explain the working principles of different Industrial water treatment processes (L2)

    Unit 2: Electrochemistry and Applications:                                                        (10 hrs)

    Electrodes- concepts, electrochemical cell, Nernst equation, cell potential calculations. Primary cells-Leclanche cell, Li Battery

    Secondary cells- lead acid, and lithium ion batteries- working of the batteries including cell reactions.

    Fuel cells- Basic Principles and Working Principles of hydrogen-oxygen, methanol fuel cells Corrosion: Introduction to corrosion, electrochemical theory of corrosion, differential aeration cell corrosion, galvanic corrosion, metal oxide formation by dry electrochemical corrosion, Pilling Bedworth ratios and uses, Factors affecting the corrosion, cathodic and anodic protection, electroplating and electro less plating (Nickel and Copper).

     

    Learning Outcomes:

    At the end of this unit, the students will be able to

    • apply Nernst equation for calculating electrode and cell potentials (L3)
    • apply Pilling Bedworth rule for corrosion and corrosion prevention (L3)
    • demonstrate the corrosion prevention methods and factors affecting corrosion (L2)
    • compare different batteries and their applications (L2)

    Unit 3: Polymers and Fuel Chemistry: (12 hrs)

    Introduction to polymers, functionality of monomers, Mechanism of chain growth, step growth and coordination polymerization,

    Thermoplastics and Thermo-setting plastics-: Preparation, properties and applications of PVC and Bakelite

    Elastomers- Preparation, properties and applications of Buna S, Buna N, Thiokol

    Fuels ““ Types of fuels, calorific value, numerical problems based on calorific value; Analysis of coal, Liquid Fuels refining of petroleum, fuels for IC engines, knocking and anti-knock agents, Octane and Cetane values, cracking of oils; alternative fuels- propane, methanol and ethanol, bio fuels.

    Learning Outcomes:

    At the end of this unit, the students will be able to

    • explain different types of polymers and their applications (L2)
    • Solve the numerical problems based on Calorific value(L3)
    • select suitable fuels for IC engines (L3)
    • explain calorific values, octane number, refining of petroleum and cracking of oils (L2)

    UNIT-4 Advanced Engineering Materials                                                                                               (8 hrs)

    • Composites- Definition, Constituents, Classification- Particle, Fibre and Structural reinforced composites, properties and Engineering applications
    • Refractories- Classification, Properties, Factors affecting the refractory materials and Applications
    • Lubricants- Classification, Functions of lubricants, Mechanism, Properties of lubricating oils and Applications
    • Building materials- Portland Cement, constituents, phases and reactivity of clinker, Setting and Hardening of cement.

    Learning Outcomes:

    At the end of this unit, the students will be able to

    • explain the constituents of Composites and its classification (L2)
    • Identify the factors affecting the refractory material(L3)
    • Illustrate the functions and properties of lubricants (L2)
    • demonstrate the phases and reactivity of concrete formation (L2)
    • identify the constituents of Portland cement (L3)
    • enumerate the reactions at setting and hardening of the cement (L3)

     

    Unit 5: Surface Chemistry and Applications:                                      (10 hrs)

    Introduction to surface chemistry, colloids, micelle formation, synthesis of colloids (any two methods with examples), chemical and electrochemical methods (not more than two methods) of preparation of nanometals and metal oxides, stabilization of colloids and nanomaterials by stabilizing agents, characterization of surface by physicochemical methods (SEM, TEM, X-ray diffraction), solid-gas interface, solid-liquid interface, adsorption isotherm, BET equation (no derivation) applications of colloids and nanomaterials- catalysis, medicine, sensors.

    Learning Outcomes:

    At the end of this unit, the students will be able to

    • summarize the applications of SEM, TEM and X-ray diffraction in surface characterization (L2)
    • explain the synthesis of colloids with examples (L2)
    • outline the preparationof nanomaterials and metal oxides (L2)
    • identify the application of colloids and nanomaterials in medicine, sensors and catalysis (L2)

    Course Outcomes:

    At the end of the course, the students will be able to

    • demonstrate the corrosion prevention methods and factors affecting corrosion (L2)
    • explain the preparation, properties, and applications of thermoplastics & thermosettings, elastomers & conducting polymers. (L2)
    • explain calorific values, octane number, refining of petroleum and cracking of oils (L2)
    • explain the setting and hardening of cement and concrete phase (L2)
    • summarize the application of SEM, TEM and X-ray diffraction in surface characterization (L2)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR

    B.Tech- I/II Sem                                                                                                                                                  L T P C

    0 0 3 1.5

    (19A51101P) Engineering Chemistry Lab

    (MECH and CIVIL)

    Course Objectives:

    • To Verify the fundamental concepts with experiments

    List of Experiments:

    1. Determination of Hardness of a groundwater sample.
    2. pH metric titration of (i) strong acid vs. strong base, (ii) weak acid vs. strong base
    3. Determination of cell constant and conductance of solutions
    4. Potentiometry – determination of redox potentials and emfs
    5. Determination of Strength of an acid in Pb-Acid battery
    6. Preparation of a polymer
    7. Determination of percentage of Iron in Cement sample by colorimetry
    8. Estimation of Calcium in port land Cement
    9. Preparation of nanomaterials
    10. Adsorption of acetic acid by charcoal
    11. Determination of percentage Moisture content in a coal sample
    12. Determination of Viscosity of lubricating oil by Red Viscometer 1 &2
    13. Determination of Calorific value of gases by Junker”™s gas Calorimeter

    Course Outcomes:

    At the end of the course, the students will be able to

    • determine the cell constant and conductance of solutions (L3)
    • prepare advanced polymer materials (L2)
    • determine the physical properties like surface tension, adsorption and viscosity (L3)
    • estimate the Iron and Calcium in cement (L3)
    • calculate the hardness of water (L4)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- I/II Sem         L T P C

    3 0 0 3

    (19A51102T) Chemistry

    (CSE, CSSE, ECE, EIE, EEE and IT)

    Course Objectives:

    • To familiarize engineering chemistry and its applications
    • To train the students on the principles and applications of electrochemistry and polymers ● To introduce instrumental methods, molecular machines and switches

    Unit 1: Structure and Bonding Models:                                                                                    (10 hrs)

    Planck’s quantum theory, dual nature of matter, Schrodinger equation, significance of Ψ and Ψ2 , applications to hydrogen, particle in a box and their applications for conjugated molecules, molecular orbital theory- bonding in homo- and heteronuclear diatomic molecules- energy level diagrams of O2 and CO, etc. Ï€-molecular orbitals of butadiene and benzene, calculation of bond order, crystal field theory- salient features- splitting in octahedral and tetrahedral geometry, magnetic properties and colour, band theory of solids- band diagrams for conductors, semiconductors and insulators, role of doping on band structures.

    Learning Outcomes:

    At the end of this unit, the students will be able to

    • apply Schrodinger wave equation to hydrogen and particle in a box (L3)
    • illustrate the molecular orbital energy level diagram of different molecular species (L2) ● explain the band theory of solids for conductors, semiconductors and insulators (L2)
    • discuss the magnetic behaviour and colour of complexes (L3)

    Unit 2: Electrochemistry and Applications:                                                (10 hrs)

    Electrodes- concepts, reference electrodes (Calomel electrode, Ag/AgCl electrode and glass electrode) electrochemical cell, Nernst equation, cell potential calculations, numerical problems, potentiometry- potentiometric titrations (redox titrations), concept of conductivity, conductivity cell, conductometric titrations (acid-base titrations), photovoltaic cell- working and applications, photogalvanic cells with specific examples. Electrochemical sensors- potentiometric sensors with examples, amperometric sensors with examples.

    Primary cells- Zinc-air battery, Fuel cells, hydrogen-oxygen, methanol fuel cells- working of the cells.

    Secondary cells- lead acid,and lithium ion batteries- working of the batteries including cell reactions.

     

    Learning Outcomes:

    At the end of this unit, the students will be able to

    • apply Nernst equation for calculating electrode and cell potentials (L3)
    • differentiate between pH metry, potentiometric and conductometric titrations (L2)
    • explain the theory of construction of battery and fuel cells (L2)
    • solve problems based on cell potential (L3)

    Unit 3: Polymer Chemistry:                                                                                           (10 hrs)

    Introduction to polymers, functionality of monomers, chain growth and step growth polymerization, coordination polymerization, copolymerization (stereospecific polymerization) with specific examples and mechanisms of polymer formation.

    Plastics – Thermoplastics and Thermosettings, Preparation, properties and applications of- Bakelite, urea-formaldehyde, Nylon-66, carbon fibres, Elastomers”“Buna-S, Buna-N”“preparation, properties and applications.

    Conducting polymers- polyacetylene, polyaniline, polypyrroles- mechanism of conduction and applications.

    Learning Outcomes:

    At the end of this unit, the students will be able to

    • explain the different types of polymers and their applications (L2)
    • explain the preparation, properties and applications of Bakelite, Nylon-66, and carbon fibres (L2)
    • describe the mechanism of conduction in conducting polymers (L2)
    • discuss Buna-S and Buna-N elastomers and their applications (L2)

    Unit 4: Instrumental Methods and Applications                                        (10 hrs)

    Electromagnetic spectrum. Absorption of radiation: Beer-Lambert”™s law. Principle and applications of pH metry, potentiometry, conductometry, UV-Visible, IR and NMR Spectroscopies. Principles of Gas Chromatography (GC) and High Performance Liquid Chromatography (HPLC), separation of gaseous mixtures and liquid mixtures

    Learning outcomes:

    After completion of Module IV, students will be able to

    • explain the different types of spectral series in electromagnetic spectrum (L2)
    • understand the principles of different analytical instruments (L2)
    • explain the different applications of analytical instruments (L2)

    Unit 5: Molecular Machines and Molecular Switches:                               (10 hrs)

    Concepts and terms of supra molecular chemistry, complementarity, Basic Lock and Key principle, examples of Supramolecules, Molecular recognition- cation binding, anion binding, simultaneous cation and anion binding, supramolecular reactivity and catalysis

    Self assembly in biological systems, Synthetic systems- catenanes, rotaxanes, metal ion assisted assemblies, template synthesis of macrocyclic ligands

    Applications of Supramolecular Devices- Ionic devices, Electronic devices, Switching devices

     

    Learning Outcomes:

    At the end of this unit, the students will be able to

    • explain the band theory of solids for conductors, semiconductors and insulators (L2)
    • explainsupramolecular chemistry and self assembly (L2)
    • demonstrate the application of Rotaxanes and Catenanes as artificial molecular machines (L2)

    Course Outcomes:

    At the end of the course, the students will be able to

    • compare the materials of construction for battery and electrochemical sensors (L2)
    • explainthe preparation, properties, and applications of thermoplastics &thermosettings, elastomers & conducting polymers. (L2)
    • explain the principles of spectrometry, GC and HPLC in separation of gaseous and liquid mixtures (L2)
    • apply the principle of supramolecular chemistry in application of molecular machines and switches (L3)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- I/II Sem      L T P C

    0 0 3 1.5

    (19A51102P) Chemistry Lab

    (CSE, CSSE, ECE, EIE, EEE and IT)

    Course Objectives:

    • Verify the fundamental concepts with experiments

    List of Experiments:

    1. Measurement of 10Dq by spectrophotometric method
    2. Models of potential energy surfaces
    3. Conductometrictitration of (i) strong acid vs. strong base, (ii) weak acid vs. strong base
    4. Determination of cell constant and conductance of solutions
    5. Potentiometry – determination of redox potentials and emfs
    6. Determination of Strength of an acid in Pb-Acid battery
    7. Preparation of a polymer
    8. Verify Lambert-Beer”™s law
    9. Thin layer chromatography
    10. Identification of simple organic compounds by IR and NMR
    11. HPLC method in separation of gaseous and liquid mixtures
    12. Estimation of Ferrous Iron by Dichrometry.

    Course Outcomes:

    At the end of the course, the students will be able to

    • determine the cell constant and conductance of solutions (L3) ● prepare advanced polymer materials (L2)
    • measure the strength of an acid present in secondary batteries (L3) ● analyse the IR and NMR of some organic compounds (L3)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR

    B.Tech- I Sem                                                                                                                                                      L T P C

    3 0 0 3

    (19A51103T) Fundamental Chemistry

    (Food Technology)

    Course Objectives:

    • To familiarize engineering chemistry and its applications
    • To train the students on the principles and applications of electrochemistry and polymers ● To introduce instrumental methods, molecular machines and switches

    Unit 1: Structure and Bonding Models:                                                                                    (10 hrs)

    Planck’s quantum theory, dual nature of matter, Schrodinger equation, significance of Ψ and Ψ2 , applications to hydrogen, particle in a box and their applications for conjugated molecules, molecular orbital theory- bonding in homo- and heteronuclear diatomic molecules- energy level diagrams of O2 and CO, etc. Ï€-molecular orbitals of butadiene and benzene, calculation of bond order, crystal field theory- salient features Crystal field splitting in octahedral and tetrahedral geometry, magnetic properties and colour, band theory of solids- band diagrams for conductors, semiconductors and insulators, Effect of doping on band structures.

    Learning Outcomes:

    At the end of this unit, the students will be able to

    • apply Schrodinger wave equation to hydrogen and particle in a box (L3)
    • illustrate the molecular orbital energy level diagram of different molecular species (L2) ● explain the band theory of solids for conductors, semiconductors and insulators (L2)
    • discuss the magnetic behaviour and colour of complexes (L3)

    Unit 2: Electrochemistry and Applications:                                                (10 hrs)

    Electrodes- concepts, reference electrodes (Calomel electrode, Ag/AgCl electrode and glass electrode) electrochemical cell, Nernst equation, cell potential calculations, numerical problems, concept of pH, pH meter and applications of pH metry (acid-base titrations), potentiometry- potentiometric titrations (redox titrations), concept of conductivity, conductivity cell, conductometric titrations (acid-base titrations), photovoltaic cell- working and applications, photogalvanic cells with specific examples.Electrochemical sensors- potentiometric sensors with examples, amperometric sensors with examples.

    Primary cells- Zinc-air battery, alkali metal sulphide batteries, Fuel cells, hydrogen-oxygen, methanol fuel cells- working of the cells.

    Secondary cells- lead acid, nickel-metal hydride and lithium ion batteries- working of the batteries including cell reactions, button cells,

    Learning Outcomes:

    At the end of this unit, the students will be able to

    • apply Nernst equation for calculating electrode and cell potentials (L3)
    • differentiate between pH metry, potentiometric and conductometric titrations (L2)
    • explain the theory of construction of battery and fuel cells (L2)
    • solve problems based on cell potential (L3)

    Unit 3: Polymer Chemistry:                                                                                          (10 hrs)

    Introduction to polymers, functionality of monomers, chain growth and step growth polymerization, coordination polymerization, copolymerization (stereospecific polymerization) with specific examples and mechanisms of polymer formation.

    Plastics – Thermoplastics and Thermosettings, Preparation, properties and applications of- Bakelite, urea-formaldehyde, Nylon-66, carbon fibres, Elastomers”“Buna-S, Buna-N”“preparation, properties and applications.

    Conducting polymers- polyacetylene, polyaniline, polypyrroles- mechanism of conduction and applications.

    Learning Outcomes:

    At the end of this unit, the students will be able to

    • explain the different types of polymers and their applications (L2)
    • explain the preparation, properties and applications of Bakelite, Nylon-66, and carbon fibres (L2)
    • describe the mechanism of conduction in conducting polymers (L2)
    • discuss Buna-S and Buna-N elastomers and their applications (L2)

    Unit 4: Instrumental Methods and Applications                                        (10 hrs)

    Electromagnetic spectrum. Absorption of radiation: Beer-Lambert”™s law. Principle and applications of pH metry, potentiometry, conductometry, UV-Visible, IR and NMR spectroscopies. Principles of Gas Chromatography (GC) and High Performance Liquid Chromatography (HPLC), separation of gaseous mixtures and liquid mixtures

    Learning outcomes:

    After completion of Module IV, students will be able to

    • explain the different types of spectral series in electromagnetic spectrum (L2)
    • understand the principles of different analytical instruments (L2)
    • explain the different applications of analytical instruments (L2)

    Unit 5: Surface Chemistry and Applications:                                      (10 hrs)

    Introduction to surface chemistry, colloids, nanometals and nanometal oxides, micelle formation, synthesis of colloids (any two methods with examples), chemical and electrochemical methods (not more than two methods) of preparation of nanometals and metal oxides, stabilization of colloids and nanomaterials by stabilizing agents, characterization of surface by physicochemical methods (SEM, TEM, X-ray diffraction), solid-gas interface, solid-liquid interface, adsorption isotherm, BET equation (no derivation), calculation of specific surface area of solids, numerical problems, functionalization of surface of nanomaterials”“ applications of colloids and nanomaterials- catalysis, medicine, sensors, etc.

    Learning Outcomes:

    At the end of this unit, the students will be able to

    • summarize the applications of SEM, TEM and X-ray diffraction in surface characterization (L2)
    • explain the synthesis of colloids with examples (L2)
    • outline the preparationof nanomaterials and metal oxides (L2)
    • identify the application of colloids and nanomaterials in medicine, sensors and catalysis (L2)

    Text Books:

    1. Jain and Jain, Engineering Chemistry, 16/e, DhanpatRai, 2013.
    2. Peter Atkins, Julio de Paula and James Keeler, Atkins”™ Physical Chemistry, 10/e, Oxford University Press, 2010.

    Reference Books:

    1. D. Lee, Concise Inorganic Chemistry, 5/e, Oxford University Press, 2008.
    2. Skoog and West, Principles of Instrumental Analysis, 6/e, Thomson, 2007.
    3. J. Shaw, Introduction to Colloids and Surface Chemistry, Butterworth-Heineman,1992

    Course Outcomes:

    At the end of the course, the students will be able to

    • compare the materials of construction for battery and electrochemical sensors (L2)
    • explainthe preparation, properties, and applications of thermoplastics &thermosettings, elastomers & conducting polymers. (L2)
    • explain the principles of spectrometry, GC and HPLC in separation of gaseous and liquid mixtures (L2)
    • apply the principle of supramolecular chemistry in application of molecular machines and switches (L3)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR

    B.Tech- I Sem                                                                                                                                                      L T P C

    0 0 3 1.5

    (19A51103P) Fundamental Chemistry Lab

    (Food Technology)

    Course Objectives:

    • Verify the fundamental concepts with experiments

    List of Experiments:

    1. Measurement of 10Dq by spectrophotometric method
    2. Models of potential energy surfaces
    3. pH metric titration of (i) strong acid vs. strong base, (ii) weak acid vs. strong base
    4. Determination of cell constant and conductance of solutions
    5. Potentiometry – determination of redox potentials and emfs
    6. Determination of Strength of an acid in Pb-Acid battery
    7. Preparation of a polymer
    8. Determination of viscosity of polymer solution using survismeter
    9. Verify Lambert-Beer”™s law
    10. Thin layer chromatography
    11. Identification of simple organic compounds by IR and NMR
    12. HPLC method in separation of gaseous and liquid mixtures
    13. Preparation of nanomaterials
    14. Adsorption of acetic acid by charcoal

    Course Outcomes:

    At the end of the course, the students will be able to

    • determine the cell constant and conductance of solutions (L3) ● prepare advanced polymer materials (L2)
    • measure the strength of an acid present in secondary batteries (L3) ● analyse the IR and NMR of some organic compounds (L3)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR

    B.Tech- I/II Sem                                                                                                                                                  L T P C

    2 0 0 2

    (19A52101T) Communicative English I

    (Common to All Branches of Engineering)

    Introduction

    The course is designed to train students in receptive (listening and reading) as well as productive and interactive (speaking and writing) skills by incorporating a comprehensive, coherent and integrated approach that improves the learners”™ ability to effectively use English language in academic/ workplace contexts. The shift is from learning about the language to using the language. On successful completion of the compulsory English language course/s in B.Tech., learners would be confident of appearing for international language qualification/proficiency tests such as IELTS, TOEFL, or BEC, besides being able to express themselves clearly in speech and competently handle the writing tasks and verbal ability component of campus placement tests. Activity based teaching-learning methods would be adopted to ensure that learners would engage in actual use of language both in the classroom and laboratory sessions.

    Course Objectives

    ➢ Facilitate effective listening skills for better comprehension of academic lectures and English spoken by native speakers

    ➢ Focus on appropriate reading strategies for comprehension of various academic texts and authentic materials

    ➢ Help improve speaking skills through participation in activities such as role plays, discussions and structured talks/oral presentations

    ➢ Impart effective strategies for good writing and demonstrate the same in summarizing, writing well organized essays, record and report useful information

    ➢ Provide knowledge of grammatical structures and vocabulary and encourage their appropriate use in speech and writing

    Unit 1

    Listening: Identifyingthe topic, the context and specific pieces of information by listening to short audio texts and answering a series of questions. Speaking:Asking and answering general questions on familiar topics such as home, family, work, studies and interests; introducing oneself and others. Reading: Skimming to get the main idea of a text; scanning to look for specific pieces of information. Reading for Writing:Beginnings and endings of paragraphs – introducing the topic, summarizing the main idea and/or providing a transition to the next paragraph. Grammar and Vocabulary: Content words and function words; word forms: verbs, nouns, adjectives and adverbs; nouns: countables and uncountables; singular and plural; basic sentence structures; simple question form – wh-questions; word order in sentences.

     

    Learning Outcomes

    At the end of the module, the learners will be able to

    > understand social or transactional dialogues spoken by native speakers of English and identify the context, topic, and pieces of specific information

    > ask and answer general questions on familiar topics and introduce oneself/others

    > employ suitable strategies for skimming and scanning to get the general idea of a text and locate specific information

    > recognize paragraph structure and be able to match beginnings/endings/headings with paragraphs

    > form sentences using proper grammatical structures and correct word forms

    Unit 2

    Listening: Answering a series of questions about main idea and supporting ideas after listening to audio texts. Speaking: Discussion in pairs/ small groups on specific topics followed by short structured talks.Reading: Identifying sequence of ideas; recognizing verbal techniques that help to link the ideas in a paragraph together. Writing: Paragraph writing (specific topics) using suitable cohesive devices; mechanics of writing – punctuation, capital letters. Grammar and Vocabulary: Cohesive devices – linkers, sign posts and transition signals; use of articles and zero article; prepositions.

     

    Unit 3

    Listening: Listening for global comprehension and summarizing what is listened to. Speaking: Discussing specific topics in pairs or small groups and reporting what is discussed Reading: Reading a text in detail by making basic inferences -recognizing and interpreting specific context clues; strategies to use text clues for comprehension.Writing: Summarizing – identifying main idea/s and rephrasing

     

    Unit4

    Listening: Making predictions while listening to conversations/ transactional dialogues without video; listening with video. Speaking: Role plays for practice of conversational English in academic contexts (formal and informal) – asking for and giving information/directions. Reading:Studying the use of graphic elements in texts to convey information, reveal trends/patterns/relationships, communicate processes or display complicated data.Writing: Information transfer; describe, compare, contrast, identify significance/trendsbased on information provided in figures/charts/graphs/tables.Grammar and Vocabulary:Quantifying expressions – adjectives and adverbs; comparing and contrasting; degrees of comparison; use of antonyms

    Learning Outcomes

    At the end of the module, the learners will be able to

    > infer and predict about content of spoken discourse

    > understand verbal and non-verbal features of communication and hold formal/informal conversations

    > interpret graphic elements used in academic texts

    > produce a coherent paragraph interpreting a figure/graph/chart/table

    > use language appropriate for description and interpretation of graphical elements

    Unit 5

    Listening: Identifying key terms, understanding concepts and answering a series of relevant questions that test comprehension. Speaking: Formal oral presentations on topics from academic contexts – without the use of PPT slides. Reading: Reading for comprehension. Writing: Writing structured essays on specific topics using suitable claims and evidencesGrammar and Vocabulary: Editing short texts-identifying and correcting common errors in grammar and usage (articles, prepositions, tenses, subject verb agreement)

     

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR

    B.Tech- I/II Sem                                                                                                                                                   L T P C

    0 0 2 1

    (19A52101P) Communicative English I Lab

    (Common to All Branches of Engineering)

    Introduction

    The course is designed to train students in receptive (listening and reading) as well as productive and interactive (speaking and writing) skills by incorporating a comprehensive, coherent and integrated approach that improves the learners”™ ability to effectively use English language in academic/ workplace contexts. The shift is from learning about the language to using the language. On successful completion of the compulsory English language course/s in B.Tech., learners would be confident of appearing for international language qualification/proficiency tests such as IELTS, TOEFL, or BEC, besides being able to express themselves clearly in speech and competently handle the writing tasks and verbal ability component of campus placement tests. Activity based teaching-learning methods would be adopted to ensure that learners would engage in actual use of language both in the classroom and laboratory sessions.

    Course Objectives

    ➢ To expose the students to variety of self instructional, learner friendly modes of language learning

    ➢ To help the students cultivate the habit of reading passages from the computer monitor. Thus providing them with the required facility to face computer based competitive exams like GRE, TOEFL, and GMAT etc.

    ➢ To enable them to learn better pronunciation through stress, intonation and rhythm

    ➢ To train them to use language effectively to face interviews, group discussions, public speaking

    ➢ To initiate them into greater use of the computer in resume preparation, report writing, format making etc

    Course Outcomes

    > CO1: To remember and understand the different aspects of the English language proficiency with emphasis on LSRW skills

    > CO2: To apply communication skills through various language learning activities

    > CO3: To analyze the English speech sounds, stress, rhythm, intonation and syllable division for better listening and speaking comprehension.

    > CO4: To evaluate and exhibit acceptable etiquette essential in social and professional settings

    > CO5: To create awareness on mother tongue influence and neutralize it in order to improve fluency in spoken English.

     

    Unit 1

    1. Phonetics for listening comprehension of various accents
    2. Reading comprehension
    3. Describing objects/places/persons

    Learning Outcomes

    At the end of the module, the learners will be able to

    > understand different accents spoken by native speakers of English

    > employ suitable strategies for skimming and scanning on monitor to get the general idea of a text and locate specific information

    > learn different professional registers and specific vocabulary to describe different persons, places and objects

    Unit 2

    1. JAM
    2. Small talks on general topics
    3. Debates

    Learning Outcomes

    At the end of the module, the learners will be able to

    > produce a structured talk extemporarily

    > comprehend and produce short talks on general topics

    > participate in debates and speak clearly on a specific topic using suitable discourse markers

    Unit 3

    1. Situational dialogues- Greeting and Introduction
    2. Summarizing and Note making
    3. Vocabulary Building

    Learning Outcomes

    At the end of the module, the learners will be able to

    > Learn different ways of greeting and introducing oneself/others

    > summarize the content with clarity and precision and take notes while listening to a talk/lecture and make use of them to answer questions

    > replenish vocabulary with one word substitutes, homonyms, homophones, homographs to reduce errors in speech and writing

    Unit4

    1. Asking for Information and Giving Directions
    2. Information Transfer
    3. Non-verbal Communication- Dumb Charade

     

    Unit 5

    1. Oral Presentations
    2. Précis Writing and Paraphrasing
    3. Reading Comprehension and spotting errors

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- I Sem                                                                                                                                                                                     L T P C

    3 1 0 4

    (19A05101T) Problem Solving and Programming

    (Common to All Branches of Engineering)

    Course Objectives:

    1. Introduce the internal parts of a computer, and peripherals.
    2. Introduce the Concept of Algorithm and use it to solve computational problems
    3. Identify the computational and non-computational problems
    4. Teach the syntax and semantics of a C Programming language
    5. Demonstrate the use of Control structures of C Programming language
    6. Illustrate the methodology for solving Computational problems

    Unit 1:

    Computer Fundamentals: What is a Computer, Evolution of Computers, Generations of Computers, Classification of Computers, Anatomy of a Computer, Memory revisited, Introduction to Operating systems, Operational overview of a CPU.

    Introduction to Programming, Algorithms and Flowcharts: Programs and Programming, Programming languages, Compiler, Interpreter, Loader, Linker, Program execution, Fourth generation languages, Fifth generation languages, Classification of Programming languages, Structured programming concept, Algorithms, Pseudo-code, Flowcharts, Strategy for designing algorithms, Tracing an algorithm to depict logic, Specification for converting algorithms into programs.

    Unit Outcomes:

    Student should be able to

    1. Identify the different peripherals, ports and connecting cables in a PC (L2)
    2. Illustrate the working of a Computer (L3)
    3. Select the components of a Computer in the market and assemble a computer (L4)
    4. Solve complex problems using language independent notations (L3)

    Unit 2:

    Introduction to computer problem solving: Introduction, the problem-solving aspect, top-down design, implementation of algorithms, the efficiency of algorithms, the analysis of algorithms.

    Fundamental algorithms: Exchanging the values of two variables, counting, summation of a set of numbers, factorial computation, sine function computation, generation of the Fibonacci sequence, reversing the digits of an integer.

     

    Learning Outcomes: Student should be able to

    1. Solve Computational problems (L3)
    2. Apply Algorithmic approach to solving problems (L3)
    3. Analyze the algorithms (L4)

    Unit 3:

    Types, Operators, and Expressions: Variable names, data types and sizes, constants, declarations, arithmetic operators, relational and logical operators, type conversions, increment and decrement operators, bitwise operators, assignment operators and expressions, conditional expressions precedence and order of evaluation.

    Input and output: standard input and output, formatted output-Printf, formatted input-Scanf.

    Control Flow: Statements and blocks, if-else, else-if, switch, Loops-while and for, Loops-Do­while, break and continue, Goto and labels.

    Functions and Program Structure: Basics of functions, functions returning non-integers, external variables, scope variables, header variables, register variables, block structure, initialization, recursion, the C processor.

    Learning Outcomes: Student should be able to

    1. Recognize the programming elements of C Programming language (L1)
    2. Select the control structure for solving the problem (L4)
    3. Apply modular approach for solving the problem (L3)

    Unit 4:

    Factoring methods: Finding the square root of a number, the smallest divisor of a number, the greatest common divisor of two integers, generating prime numbers.

    Pointers and arrays: Pointers and addresses, pointers and function arguments, pointers and arrays, address arithmetic, character pointers and functions, pointer array; pointers to pointers, Multi-dimensional arrays, initialization of arrays, pointer vs. multi-dimensional arrays, command line arguments, pointers to functions, complicated declarations.

    Array Techniques: Array order reversal, finding the maximum number in a set, removal of duplicates from an order array, finding the kth smallest element

    Learning Outcomes: Student should be able to

    1. Solve mathematical problems using C Programming language (L3)
    2. Structure the individual data elements to simplify the solutions (L6)
    3. Facilitate efficient memory utilization (L6)

     

    Unit 5:

    Sorting and Searching: Sorting by selection, sorting by exchange, sorting by insertion, sorting by partitioning, binary search.

    Structures: Basics of structures, structures and functions, arrays of structures, pointers to structures, self-referential structures, table lookup, typedef, unions, bit-fields.

    Some other Features: Variable-length argument lists, formatted input-Scanf, file access, Error handling-stderr and exit, Line Input and Output, Miscellaneous Functions.

    Learning Outcomes: Student should be able to

    1. Select sorting algorithm based on the type of the data (L4)
    2. Organize heterogeneous data (L6)
    3. Design a sorting algorithm (L6)

    Course Outcomes:

    1. Construct his own computer using parts (L6).
    2. Recognize the importance of programming language independent constructs (L2)
    3. Solve computational problems (L3)
    4. Select the features of C language appropriate for solving a problem (L4)
    5. Design computer programs for real world problems (L6)
    6. Organize the data which is more appropriated for solving a problem (L6)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- I Sem                                                                                                                                                                                     L T P C

    0 0 3 1.5

    (19A05101P) Problem Solving and Programming Lab

    (Common to All Branches of Engineering)

    Laboratory Experiments #

    1. Assemble and disassemble parts of a Computer
    2. Design a C program which reverses the number
    3. Design a C program which finds the second maximum number among the given list of
    4. Construct a program which finds the kth smallest number among the given list of

    numbers.

    1. Design an algorithm and implement using C language the following exchanges

    a – b E- c E d

    1. Develop a C Program which counts the number of positive and negative numbers separately and also compute the sum of them.
    2. Implement the C program which computes the sum of the first n terms of the series Sum = 1- 3 + 5 -7 + 9
    3. Design a C program which determines the numbers whose factorial values are between 5000 and 32565.
    4. Design an algorithm and implement using a C program which finds the sum of the infinite series

    1- x2/2! + x4/4!- x6/6! + ….

    10 Design a C program to print the sequence of numbers in which each number is the sum of the three most recent predecessors. Assume first three numbers as 0, 1, and 1.

    1. Implement a C program which converts a hexadecimal, octal and binary number to decimal number and vice versa.
    2. Develop an algorithm which computes the all the factors between 1 to 100 for a given number and implement it using C.
    3. Construct an algorithm which computes the sum of the factorials of numbers between m and n.
    4. Design a C program which reverses the elements of the array.

     

    1. Given a list of n numbers, Design an algorithm which prints the number of stars equivalent to the value of the number. The starts for each number should be printed
    2. Implement the sorting algorithms a. Insertion sort b. Exchange sort c. Selection sort . Partitioning sort.
    3. Illustrate the use of auto, static, register and external variables.
    4. Design algorithm and implement the operations creation, insertion, deletion, traversing on a singly linked list.
    5. Develop a C program which takes two numbers as command line arguments and finds all the common factors of those two numbers.
    6. Design a C program which sorts the strings using array of pointers.

    # The above list is not exhaustive. Instructors may add some experiments to the above list. Moreover, 50% of the experiments are to be changed every academic year. Instructors can choose the experiments, provided those experiments are not repetitions.

    Course outcomes: Student should be able to

    1. Construct a Computer given its parts (L6)
    2. Select the right control structure for solving the problem (L6)
    3. Analyze different sorting algorithms (L4)
    4. Design solutions for computational problems (L6)
    5. Develop C programs which utilize the memory efficiently using programming constructs like pointers.

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- I/II Sem                                                                                                                                                                                    L T P C

    0 0 2 1

    (19A03101) Engineering Workshop

    (Common to all branches)

    Course Objective:

    To familiarize students with wood working, sheet metal operations, fitting and electrical house wiring skills

    Wood Working:

    Familiarity with different types of woods and tools used in wood working and make following joints

    1. Half- Lap joint
    2. Mortise and Tenon joint
    3. Corner Dovetail joint or Bridle joint

    Sheet Metal Working:

    Familiarity with different types of tools used in sheet metal working, Developments of following sheet metal job from GI sheets

    1. a) Tapered tray b) Conical funnel c) Elbow pipe                      d) Brazing

    Fitting:

    Familiarity with different types of tools used in fitting and do the following fitting exercises a) V-fit     b) Dovetail fit                    c) Semi-circular fit

    1. Bicycle tire puncture and change of two wheeler tyre

    Electrical Wiring:

    Familiarities with different types of basic electrical circuits and make the following connections

    1. a) Parallel and series b) Two way switch c) Godown lighting d) Tube light
    2. Three phase motor f) Soldering of wires

    Course Outcomes:

    After completion of this lab the student will be able to

    1. apply wood working skills in real world applications. (L3)
    2. build different parts with metal sheets in real world applications. (L3)
    3. apply fitting operations in various applications. (L3)
    4. apply different types of basic electric circuit connections. (L3)
    5. demonstrate soldering and brazing. (L2)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- II Sem          L T P C

    3 0 0 3

    (19A02201T) Basic Electrical & Electronics Engineering

    Part A: Basic Electrical Engineering
    (Civil, Mechanical, CSE, CSSE, IT and Food Technology)

    Course Objectives:

    1. To introduce basics of electric circuits.
    2. To teach DC and AC electrical circuit analysis.
    3. To explain working principles of transformers and electrical machines.
    4. To impart knowledge on low voltage electrical installations

    Unit 1                    DC & AC Circuits:

    Electrical circuit elements (R – L and C) – Kirchhoff laws – Series and parallel connection of resistances with DC excitation. Superposition Theorem – Representation of sinusoidal waveforms – peak and rms values – phasor representation – real power – reactive power – apparent power – power factor – Analysis of single-phase ac circuits consisting of RL – RC – RLC series circuits.

    Unit Outcomes: Able to

    • Recall Kirchoff laws (L1)
    • Analyze simple electric circuits with DC excitation (L4)
    • Apply network theorems to simple circuits (L3)
    • Analyze single phase AC circuits consisting of series RL – RC – RLC combinations (L4)

    Unit 2                    DC & AC Machines:

    Principle and operation of DC Generator – EMF equations – OCC characteristics of DC generator- principle and operation of DC Motor- Performance Characteristics of DC Motor – Speed control of DC Motor- Principle and operation of Single Phase Transformer – OC and SC test on transformer – principle and operation of Induction Motor [ Elementary treatment only ]

    Unit Outcomes: Able to

    • Explain principle and operation of DC Generator & Motor.
    • Perform speed control of DC Motor (L2)
    • Explain operation of transformer and induction motor. (L2)
    • Explain construction & working of induction motor – DC motor

    Unit 3                     Basics of Power Systems:

    Layout & operation of Hydro, Thermal, Nuclear Stations – Solar & wind generating stations- Typical AC Power Supply scheme- Elements of Transmission line- Types of Distribution systems: Primary & Secondary distribution systems.

     

    Unit Outcomes: Able to

    • Understand working operation of various generating stations (L2)
    • Explain the types of Distribution systems

    Course Outcomes:

    • Apply concepts of KVL/KCL in solving DC circuits (L3)
    • Choose correct rating of a transformer for a specific application (L5)
    • Illustrate working principles of induction motor – DC Motor (L3)
    • Identify type of electrical machine based on their operation.(L1)
    • Describe working principles of protection devices used in electrical circuits. (L2)

    Part B: Basic Electronics Engineering

    Course Objectives:

    • To provide comprehensive idea about working principle, operation and applications of PN junction & zener diodes, BJT, FET, MOSFET and operational amplifier
    • To introduce fundamentals of digital electronics
    • To educate on principles of various communication systems
    • To teach efficacy of electronic principles which are pervasive in engineering applications

    Unit I                     Analog Electronics

    Overview of Semiconductors, PN junction diode, Zener diode, Applications of diode as switch and rectifier, Zener diode as regulator, special purpose diodes: schottky diode, tunnel diode, varactor diode, photodiode, phototransistor and LED.

    BJT construction, operation, configuration and characteristics, JFET and MOSFET construction, operation, characteristics (CS configuration), applications

    Operational Amplifiers: Introduction, block diagram, basic op-amp circuits: Inverting, Non Inverting, summer, subtractor, voltage follower.

    Unit Outcomes:

    • Describe operation and characteristics of diodes and transistors (L2)
    • Make use of diodes and transistors in simple, typical circuit applications (L3)
    • Understand operation of basic op-amp circuits (L2)

     

    Unit II                    Digital Electronics

    Introduction, Switching and Logic Levels, Digital Waveform, characteristics of digital ICs, logic gates, number systems, combinational circuits – adders, multiplexers, decoders; introduction to sequential circuits, flip flops, shift register, binary counter.

    Unit Outcomes:

    • Explain different logic gates using truth table (L2)
    • Distinguish combinational and sequential circuits (L2)
    • Analyze various combinational circuits such as adders, multiplexers and decoders (L4)
    • Understand functionality of flip-flops, shift registers and counters (L2)

    Unit III                                  Communication Systems

    Introduction, Elements of Communication Systems, EM spectrum, basics of electronic communication, Amplitude and Frequency modulation, Pulse modulation, Communication receivers, Examples of communication systems: Microwave & Satellite, Fibre optic, Television, mobile communication (block diagram approach).

    Unit Outcomes:

    • Describe basic elements of a communication system (L2)
    • Explain need for modulation and different modulation techniques (L2)
    • Understand functioning of various communication systems (L2)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- II Sem            L T P C

    0 0 3 1.5

    (19A02201P)Basic Electrical & Electronics Engineering Lab

    (Civil, Mechanical, CSE, CSSE, IT and Food Technology)

    Part A: Electrical Engineering Lab

    Course Objectives:

    1. To Verify Kirchoff”™s laws
    2. To verify Superposition theorem.
    3. To learn performance characteristics of DC Machines.
    4. To perform open circuit & Short Circuit test on 1- Phase Transformer.
    5. To Study the I- V Characteristics of Solar PV Cell

    List of experiments:

    1. Verification of Kirchhoff laws.
    2. Verification of Superposition Theorem.
    3. Open circuit characteristics of a DC Shunt Generator.
    4. Speed control of DC Shunt Motor.
    5. OC & SC test of 1- Phase Transformer.
    6. Brake test on 3 – Phase Induction Motor.
    7. I- V Characteristics of Solar PV cell
    8. Brake test on DC Shunt Motor.

    Course Outcomes: Able to

    1. Verify Kirchoff”™s Laws & Superposition theorem.
    2. Perform testing on AC and DC Machines.
    3. Study I- V Characteristics of PV Cell

    Part B: Electronics Engineering Lab

    Course outcomes:

    • Describe construction, working and characteristics of diodes, transistors and operational amplifiers (L2)
    • Demonstrate how electronic devices are used for applications such as rectification, switching and amplification (L2)
    • Build different building blocks in digital electronics using logic gates (L3)
    • Explain functionality of flip-flops, shift registers and counters for data processing applications (L2)
    • Explain functioning of various communication systems (L2)

     

    List of Experiments:

    1. Draw and study the characteristics of Semi-conductor diode and Zener Diode
    2. Draw and study the input and output characteristics of Transistor in Common Emitter configuration
    3. Draw and study the static and transfer characteristics of FET in Common Source Configuration
    4. Construct half wave and full wave rectifier circuits. Find ripple factor and plot their output waveforms with and without filters
    5. Study the application of Op-amp as an Inverting amplifier, Non-inverting amplifier, Voltage follower, Summer and Subtractor
    6. Realization of logic gates, AND, OR, NOT, NAND, NOR, XOR
    7. Realization of Adders, Multiplexers and Decoders using logic gates.
    8. Realization of flip-flops using logic gates.
    9. Conduct an experiment on AM & FM modulation & demodulation, Plot the corresponding modulated and demodulated signals

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- II Sem            L T P C

    3 0 0 3

    (19A04201T) Network Theory

    (ECE)

    Course Objectives:

    • To introduce basic laws, mesh & nodal analysis techniques for solving electrical circuits
    • To impart knowledge on applying appropriate theorem for electrical circuit analysis
    • To explain transient behavior of circuits in time and frequency domains
    • To teach concepts of resonance
    • To introduce open circuit, short circuit, transmission, hybrid parameters and their

    UNIT 1                        Introduction to Electrical Circuits

    Passive components and their V-I relations, Energy sources – Ideal, Non-ideal, Independent and dependent sources, Source transformation Kirchoff”˜s laws, Star”“to-Delta or Delta-to-Star Transformations, Mesh analysis and Nodal analysis problem solving, Super node and Super mesh for DC Excitations.

    Unit Outcomes

    • Gain knowledge on basic network elements, voltage and current laws (L1)
    • Apply Kirchoff”™s laws, network reduction techniques on simple electrical circuits with dependent & independent sources (L3)
    • Solve complex circuits using mesh and nodal analysis techniques (L3)

    UNIT 2                                Network Theorems

    Superposition theorem, Thevenin & Norton theorems, Maximum power transfer theorem, Reciprocity theorem, Millman theorem, Miller Theorem, Tellegan”™s Theorem, Compensation theorem – problem solving using dependent sources also, Duality and dual networks.

    Unit Outcomes:

    • Understand significance of duality and dual networks (L2)
    • Select appropriate theorem for network simplification (L5)
    • Determine maximum power transfer to the load (L5)

    UNIT 3                                 Transients

    First order differential equations, Definition of time constants, R-L circuit, R-C circuit with DC excitation, Evaluating initial conditions procedure, second order differential equations, homogeneous, non-homogenous, problem solving using R-L-C elements with DC excitation and AC (sinusoidal) excitation, Response as related to s-plane rotation of roots. Solutions using Laplace transform method.

    Unit Outcomes:

    • Understand behavior of circuit elements under switching conditions (L1)
    • Analyze response of RL, RC & RLC circuits in time & frequency domains (L4)
    • Evaluate initial conditions in RL, RC & RLC circuits (L5)

    UNIT 4                                Resonance and Coupled Circuits

    Self inductance, Mutual inductance, dot rule, coefficient of coupling, Analysis of multi-winding coupled circuits, series & parallel connection of coupled inductors.

    Resonance: Introduction, Definition of Q, Series resonance, Bandwidth of series resonance, Parallel resonance, Condition for maximum impedance, current in anti resonance, Bandwidth of parallel resonance, general case resistance present in both branches, anti resonance at all frequencies.

    Unit Outcomes:

    • Understand magnetically coupled circuits (L1)
    • Determine resonant frequency and bandwidth of a simple series or parallel RLC circuit (L5)
    • Determine voltages and currents in a resonant circuit (L5)

    UNIT 5                                Two Port Networks & Network Functions

    Two Port Networks, relationship of two port variables, impedance parameters, admittance parameters, transmission parameters, hybrid and inverse hybrid parameters, relationship between parameters, interconnection of two port networks.

    Concept of complex frequency, driving point and transfer functions for one port and two port network, poles & zeros of network functions, Restriction on Pole and Zero locations of network function

    Unit Outcomes:

    • Determine network parameters for given two port network (L5)
    • Relate different two port network parameters (L4)
    • Represent transfer function for the given network (L4)

     

    Course Outcomes:

    • Solve network problems using mesh and nodal analysis techniques (L3)
    • Analyze networks using Thevenin, Norton, Maximum power transfer, Superposition, Miller and Millman theorems (L4)
    • Compute responses of first order and second order networks using time & frequency domain analysis (L5)
    • Design resonant circuits for given bandwidth (L6)
    • Utilize z, y, ABCD and h parameters for analyzing two port circuit behavior (L3)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- II Sem            L T P C

    0 0 3 1.5

    (19A04201P) Network Theory Lab

    (ECE)

    Course Objectives:

    • To gain hands on experience in verifying Kirchoff”™s laws and network theorems
    • To analyze transient behavior of circuits
    • To study resonance characteristics
    • To determine 2-port network parameters

    List of Experiments:

    Any 10 of the following experiments are to be conducted in Hardware & Simulation (Multisim/Open source software):

    1. Verification of Kirchoff”™s Laws
    2. Apply Mesh & Nodal Analysis techniques for solving electrical circuits (problems with dependent sources also)
    3. Verification of Superposition & Reciprocity Theorem
    4. Verification of Thevenin”™s and Norton”™s Theorem
    5. Verification of Maximum Power Transfer Theorem
    6. Verification of Millman and Miller Theorm
    7. Measure and calculate RC time constant for a given RC circuit
    8. Measure and calculate RL time constant for a given RL circuit
    9. Measure and analyze (settling time, overshoot, undershoot, etc.) step response of for a given series RLC circuit for following cases:
    • ζ =1 (critically damped system)
    • ζ >1(over damped system)
    • ζ<1 (under damped system)

    Choose appropriate values of R, L, and C to obtain each of above cases one at a time.

    1. Design a series RLC resonance circuit. Plot frequency response and find resonance frequency , Bandwidth , Q- factor.
    2. Design a parallel RLC resonance circuit. Plot frequency response and find resonance frequency , Bandwidth , Q- factor.
    3. Measure and calculate Z, Y parameters of two-port network.
    4. Measure and calculate ABCD & h parameters of two-port network.

    Course Outcomes:

    • Verify Kirchoff”™s laws and network theorems (L4)
    • Measure time constants of RL & RC circuits (L3)
    • Analyze behavior of RLC circuit for different cases (L4)
    • Design resonant circuit for given specifications (L6)
    • Characterize and model the network in terms of all network parameters (L3)

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- II Sem            L T P C

    3 0 0 3

    (19A02202T) Principles of Electrical Engineering

    (EIE)

    Course Objectives:

    • To introduce basics of electric & magnetic circuits.
    • To teach DC and AC electrical circuit analysis.
    • To explain working principles of transformers and electrical machines.
    • To impart knowledge on low voltage electrical installations

    Unit 1                    DC Circuits

    Electrical circuit elements (R, L and C), voltage and current sources, Kirchoff current and voltage laws, analysis of simple circuits with dc excitation. Superposition, Thevenin and Norton Theorems, Maximum power transfer theorem & Reciprocity theorem – Time-domain analysis of first-order RL and RC circuits.

    Unit Outcomes:

    • Recall Kirchoff Voltage and Current laws (L1)
    • Analyze simple electric circuits with dc excitation (L4)
    • Apply network theorems to simple circuits with independent sources (L3)
    • Analyze first order RL & RC circuits in time domain (L4)

    Unit 2                    AC Circuits

    Representation of sinusoidal waveforms, peak and rms values, phasor representation, real power, reactive power, apparent power, power factor, Analysis of single-phase ac circuits consisting of R, L, C, RL, RC, RLC combinations (series and parallel), Concept of Resonance in series & parallel circuits, bandwidth and quality factor, Three-phase balanced circuits, voltage and current relations in star and delta connections.

    Unit Outcomes:

    • Analyze single phase AC circuits consisting of series and parallel RL, RC, RLC combinations (L4)
    • Determine conditions for resonance in the series and parallel circuits (L5)
    • Interpret voltages and currents in three-phase star – delta connections (L2)
    • Solve simple balanced three-phase ac systems (L3)

    Unit 3                    Transformers

    Magnetic materials, BH characteristics, Mutual coupled circuits, Dot Convention in coupled circuits, ideal and practical transformer, equivalent circuit, losses in transformers, regulation and efficiency, Auto-transformer and three-phase transformers connections.

     

    Unit Outcomes:

    • Understand magnetic materials and their characteristics (L2)
    • Compare ideal and practical transformers (L2)
    • Determine losses, efficiency, and voltage regulation of a transformer under specific

    operating conditions (L5)

    • Identify the connections of a three phase transformer (L3)

    Unit 4                     Electrical Machines

    Generation of rotating magnetic fields, Construction and working of a three-phase induction motor, Significance of torque-slip characteristic. Loss components and efficiency, starting and speed control of induction motor, Single-phase induction motor, construction, working, torque-speed characteristic and speed control of separately excited dc motor, construction and working of synchronous generators.

    Unit Outcomes:

    • Illustrate effects of magnetic induction on moving parts (L2)
    • Explain construction & working of induction motor, DC motor & synchronous generator (L2)
    • Determine motor losses and efficiency (L5)

    Unit 5                     Electrical Installations

    Components of LT Switchgear: Switch Fuse Unit (SFU), MCB, ELCB, MCCB, Types of Wires and Cables, Earthing, Types of Batteries, Important Characteristics for Batteries, Elementary calculations for energy consumption, power factor improvement and battery backup.

    Unit Outcomes:

    • Understand working principles of LT Switchgear components (L2)
    • Perform elementary calculations for energy consumption, power factor improvement and battery backup (L3)

    Course Outcomes:

    • Apply concepts of KVL/KCL and network theorems in solving DC circuits (L3)
    • Analyze steady state behavior of single phase and three phase AC electrical circuits (L4)
    • Choose correct rating and characteristics of a transformer for a specific application (L5)
    • Illustrate working principles of induction motor, dc motor and synchronous (L3)
    • Identify type of electrical machine based on their construction.(L1)
    • Describe working principles of protection devices used in electrical circuits. (L2)

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- II Sem           

     

    (19A02202P) Principles of Electrical Engineering Lab

    (EIE)

    List of experiments:

    1. Basic safety precautions. Introduction and use of measuring instruments- voltmeter, ammeter, multi-meter, oscilloscope. Real-life resistors, capacitors and inductors.
    2. Verification of Thevenin”™s and Norton Theorems.
    3. Measuring the steady-state and transient time-response of R-L, R-C, and R-L-C circuits to a step change in voltage (transient may be observed on a storage oscilloscope). Sinusoidal steady state response of R-L, and R-C circuits- impedance calculation and verification. Observation of phase differences between current and voltage. Resonance in R-L-C circuits.
    4. Transformers: Observation of the no-load current waveform on an oscilloscope (non-sinusoidal wave-shape due to B-H curve nonlinearity should be shown along with a discussion about harmonics). Loading of a transformer: measurement of primary and secondary voltages and currents, and power.
    5. Three-phase transformers: Star and Delta connections. Voltage and Current relationships (line-line voltage, phase to-neutral voltage, line and phase currents). Phase-shifts between the primary and secondary side. Cumulative three-phase power in balanced three-phase
    6. Verification of Superposition theorem for DC and AC Networks.
    7. Verification of Maximum power transfer theorem for DC and AC Networks.
    8. Verification of Reciprocity theorem.
    9. To determine the performance characteristics of a Shunt Motor.
    10. To determine the performance characteristics of a Compound Motor.
    11. To determine speed control of DC Shunt Motor.
    12. To determine the load characteristics of a Shunt Generator.
    13. Synchronous Machine operating as a generator: stand-alone operation with a load. Control of voltage through field excitation.
    14. Demonstration of components of LT switchgear.
    15. 3- Phase Power Measurements for balanced loads

    Unit Outcomes:

    • Get exposure to common electrical components and their ratings (L2) ● Make electrical connections by wires of appropriate ratings (L3)
    • Understand usage of common electrical measuring instruments (L2)
    • Determine performance characteristics of transformers and electrical machines (L5)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- II Sem  

     

    (19A01201T) Basic Civil & Mechanical Engineering
    (EEE)

    Course Objectives:

    • Impart basic principles of stress, strain, shear force, bending moment and torsion.
    • To teach principles of strain measurement using electrical strain gauges
    • Describe technical details of power plants, gas turbines, hydro power plants and non-conventional energy sources.
    • Teach different types of drives for power transmission
    • Impart concepts of CAD, CAM & CIM

    PART – A

    UNIT- I:

    Basic Definitions of Force- Stress- Strain- Elasticity. Shear force- Bending Moment- Torsion . Simple problems on Shear force Diagram and Bending moment Diagram for cantilever and simply supported beams.

    • understand principles of Stress and Strain.
    • able to draw SFD & BMD for simply supported beams and cantilever beams. UNIT- II:

    Measurement of Strain – Electrical Capacitance and Resistance Strain gauges- multi channel strain indicators. Rosette analysis- Rectangular and Triangular strain rosettes- Wheatstone bridge.

    • understand basic principles of Strain Measurement.
    • Apply the concepts of Strain Rosettes for strain measurement .

    UNIT- III:

    Characteristics of common building materials- Brick- Types- Testing; Timber- Classification- Seasoning- Defects in Timber ; Glass- Classification- uses; steel and its applications in construction industry.

    • understand common building materials used in construction.
    • Analyze charactestics of common building materials .

     

    Course Outcomes:

    At the end of the course, student is able to

    • Draw SFD and BMD for cantilever and Simply supported beams. (L.1)
    • Understand the working principles of electrical resistors and capacitors. (L.2)
    • Apply concepts of Rosetta analysis for strain measurements. (L.3)

    PART- B

    Course Objectives

    • Familiarize the sources of energy, power plant economics and environmental aspects.
    • Outline the working components of different power plant.
    • To teach working principle of hydraulic machinery.
    • To familiarize the developments in IC engines.
    • To teach combustion process in SI and CI engines.
    • Explain the principles of refrigeration and air conditioning.

    UNIT- 1

    Power Plant Engineering: Introduction- Energy Renewable and Non- Renewable Energy, Sources- Classification of Power Plants based on Sources of Energy- Thermal Power Plant or Steam Power Plant- Hydro Electric Power- Nuclear Fission, Chain Reaction, Layout of Nuclear Power Plant- Diesel Power Plant- Gas Turbine Power Plant- Open Cycle Gas Turbine, Closed Cycle Gas Turbine Power Plant, Comparison of Diesel Power Plant with Gas Turbine Power Plant- Pumps- Classification of Pumps, Centrifugal Pump, Applications of Centrifugal Pump, Priming, Reciprocating Pumps, Single Acting Reciprocating Pump, Working of a Double acting Reciprocating Pump, Comparison of Reciprocating Pump with Centrifugal Pump-Hydraulic Turbine- Classification of Hydraulic Turbines, Impulse Turbine, Reaction Turbine, Difference between Impulse and Reaction Turbine.

    Learning Outcomes

    At the end of this unit, the student will be able to

    • Outline sources of energy, compare and selection of types of power plants (L2).
    • Explain working principle and compare types of diesel power plant (L2).
    • Explain construction and operation of different pumps (L2).
    • Classify pumps based on principle of operation (L1).
    • Classify turbines based on principle of operation (L1).

     

    UNIT- 2

    I.C Engine: Heat Engine- Types of Heat Engine- External Combustion Engine, IC Engine (Internal Combustion), Classification of I.C. Engine, Two Stroke Petrol Engine, Four Stroke Engine, Valve Timing Diagram, Port Timing Diagram, Comparison of Two Stroke and Four Stroke Engines, Comparison of Petrol Engine and Diesel Engine, Fuel System of a Petrol Engine, Ignition Systems.

    Boilers: Classification of Boilers- Simple Vertical Boiler- Cochran Boiler- Babcock and Wilcox Boiler- Benson Boiler- Difference between Fire Tube and Water Tube Boilers- Boiler Mountings- Boiler Accessories- Difference between Boiler Mountings and Accessories. Learning outcomes:

    After completion of this unit, students will be able to

    • Understand classification and working of IC engines (L1).
    • Compare 2 stroke and 4 stroke, petrol and diesel engines (L3).
    • Understand classification and construction of boilers (L1).
    • Compare boiler mountings and accessories (L3).

    UNIT- 3

    Refrigeration and Air Conditioning: Introduction- Terminology of Refrigeration and Air Conditioning- Properties of Refrigerants- List of Commonly used Refrigerants- Types of Refrigerating System- Vapour Compression Refrigeration System- Vapour Absorption Refrigerator- Domestic Refrigerator- Air Conditioning- Application of Air Conditioning- Psychrometry- Window Air Conditioning.

    Learning outcomes:

    After completion of this unit, students will be able to

    1. Analyze the basics cycles of Refrigeration and Air Conditioning Systems (L4).
    2. Outline the operation of refrigerators (L2).
    3. Identify different refrigerants and applications (L1).

    Course Outcomes:

    At the end of this course, the student will be able to

    • Outline sources of energy, power plant economics, and environmental aspects (L2).
    • Describe working components of a steam power plant (L2).
    • Illustrate the working mechanism of Diesel and Gas turbine power plants (L2).
    • Explain different types of pumps and their application (L2).
    • Explain working of IC engines with combustion process (L2).
    • Possess the knowledge of system components of refrigeration and air conditioning (L3)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- II Sem       

     

    (19A01201P) Basic civil & Mechanical Engineering Lab

    (EEE)

    Part A

    Laboratory Experiments:

    1. Bending test on (Steel/Wood) Cantilever beam.
    2. Bending test on (Steel/Wood) simply supported beam.
    3. Use of electrical resistance strain gauges.
    4. Compression test on Bricks
    5. Water absorption test on Bricks
    6. Torsion test.
    7. Tests on closed coiled and open coiled helical springs

    Part B

    Course Objectives:

    • Understand the functioning and performance of I.C. Engines ● To find heat losses in various engines

    List of Experiments:

    1. Load test on four stroke Diesel Engine with mechanical loading.
    2. Load test on four stroke Diesel Engine with DC Generator loading.
    3. Heat balance test on Four Stroke Diesel Engine.
    4. Load test on two stroke petrol engine.
    5. A) Study of Valve & Port diagram.
    6. B) Study of boilers.
    7. Performance test on vapour compression refrigeration system.
    8. Performance test on vapour absorption refrigeration system.

    Course Outcomes:

    Upon the successful completion of course, students will be able to ● Explain different working cycles of engine.

    • Illustrate the working of refrigeration systems
    • Evaluate heat balance sheet of IC engine.

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR

    B.Tech- I/II Sem                                                                                                                                                  L T P C

    1 0 4 3

    (19A03102) Engineering Graphics Lab

    (Common to All Branches of Engineering)

    Course Objectives:

    • Bring awareness that Engineering Drawing is the Language of Engineers.
    • Familiarize how industry communicates technical information.
    • Teach the practices for accuracy and clarity in presenting the technical information.
    • Develop the engineering imagination essential for successful design.
    • Instruct the utility of drafting & modeling packages in orthographic and isometric
    • Train the usage of 2D and 3D modeling.
    • Instruct graphical representation of machine components.

    Part A: Manual Drawing: (7 Classes)

    Introduction to Engineering graphics: Principles of Engineering Graphics and their significance-Conventions in drawing-lettering – BIS conventions.

    1. Conic sections including the rectangular hyperbola- general method only,
    2. Cycloid, epicycloids and hypocycloid
    3. Involutes (2L + 6P hrs)

    Projection of points, lines and planes: Projection of points in any quadrant, lines inclined to one or both planes, finding true lengths, angle made by line. Projections of regular plane surfaces. (2L + 6P hrs)

    Projections of solids: Projections of regular solids inclined to one or both planes by rotational or auxiliary views method.                                                  (1L + 3P hrs)

    Sections of solids: Section planes and sectional view of right regular solids- prism, cylinder, pyramid and cone. True shapes of the sections.                                                 (1L + 3P hrs)

    Development of surfaces: Development of surfaces of right regular solids-prism, cylinder, pyramid, cone and their sectional parts.                                                 (1L + 6P hrs)

    Part B: Computer Aided Drafting: (6 Classes)

    Introduction to AutoCAD: Basic drawing and editing commands: line, circle, rectangle, erase, view, undo, redo, snap, object editing, moving, copying, rotating, scaling, mirroring, layers, templates, polylines, trimming, extending, stretching, fillets, arrays, dimensions. (1L + 3P hrs)

     

    Dimensioning principles and conventional representations.

    Orthographic Projections: Systems of projections, conventions and application to orthographic projections. (3L + 9P hrs)

    Isometric Projections: Principles of isometric projection- Isometric scale; Isometric views: lines, planes, simple solids. (2L + 6P hrs)

    Text Books:

    1. L.Narayana & P.Kannaiah, Engineering Drawing, 3/e, Scitech Publishers, Chennai, 2012.
    2. Venugopal, Engineering Drawing and Graphics, 3/e, New Age Publishers, 2000

    Reference Books:

    1. Dhanajay A Jolhe, Engineering Drawing, Tata McGraw-Hill, Copy Right, 2009
    2. D.Bhatt, Engineering Drawing, 53/e, Charotar Publishers, 2016.
    3. Shah and Rana, Engineering Drawing, 2/e, Pearson Education, 2009
    4. C.John, Engineering Graphics, 2/e, PHI, 2013
    5. Basant Agarwal & C.M.Agarwal, Engineering Drawing, Tata McGraw-Hill, Copy Right,

    Course Outcomes:

    After completing the course, the student will be able to

    • draw various curves applied in engineering. (L2)
    • show projections of solids and sections graphically. (L2)
    • draw the development of surfaces of solids. (L3)
    • use computers as a drafting tool. (L2)
    • draw isometric and orthographic drawings using CAD packages. (L3)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR

    B.Tech- II Sem                                                                                                                                                     L T P C

    3 0 0 3

    (19A05201T) Data Structures

    (Common to All Branches of Engineering)

    Course Objectives:

    1. To teach the representation of solution to the problem using algorithm
    2. To explain the approach to algorithm analysis
    3. To introduce different data structures for solving the problems
    4. To demonstrate modeling of the given problem as a graph
    5. To elucidate the existing hashing techniques

    Unit- 1: Introduction

    Algorithm Specification, Performance analysis, Performance Measurement. Arrays: Arrays, Dynamically Allocated Arrays. Structures and Unions. Sorting: Motivation, Quick sort, How fast can we sort, Merge sort, Heap sort

    Learning Outcomes :

    Student should be able to

    1. Analyze the given algorithm to find the time and space complexities.(L4)
    2. Select appropriate sorting algorithm (L4)
    3. Design a sorting algorithm (L6)

    Unit- 2: Stack, Queue and Linked lists

    Stacks, Stacks using Dynamic Arrays, Queues, Circular Queues Using Dynamic Arrays, Evaluation of Expressions, Multiple Stacks and Queues. Linked lists: Singly Linked Lists and Chains, Representing Chains in C, Linked Stacks and Queues, Additional List Operations, Doubly Linked Lists.

    Learning outcomes: Student should be able to

    1. Evaluate expressions (L5)
    2. Develop the applications using stacks and queues (L3)
    3. Construct the linked lists for various applications (L6)

    Unit- 3 :Trees

    Introduction, Binary Trees, Binary Tree Traversals, Additional Binary Tree Operations, Binary Search Trees, Counting Binary Trees, Optimal Binary search Trees, AVL Trees. B-Trees: B-Trees, B + Trees.

     

    Learning outcomes

    1. Explain the concept of a tree (L2)
    2. Compare different tree structures (L4)
    3. Apply trees for indexing (L3)

    Unit- 4 : Graphs and Hashing

    The Graph Abstract Data Type, Elementary Graph Operations, Minimum Cost Spanning Trees, Shortest Paths and Transitive Closure

    Hashing: Introduction to Hash Table, Static Hashing, Dynamic Hashing.

    Learning outcomes:

    Student should be able to

    1. Recognize the importance of Graphs in solving real world problems (L2)
    2. Apply various graph traversal methods to applications (L3)
    3. Design a minimum cost solution for a problem using spanning trees (L6)
    4. Select the appropriate hashing technique for a given application (L5)
    5. Design a hashing technique (L6)

    Unit- 5: Files and Advanced sorting

    File Organization: Sequential File Organization, Direct File Organization, Indexed Sequential File Organization.

    Advanced sorting: Sorting on Several keys, List and Table sorts, Summary of Internal sorting, External sorting.

    Learning outcomes: Student should be able to

    1. Organize data in the form of Files (L6)
    2. Apply sorting on large amount of data (L3)

    Course Outcomes:

    Students should be able to

    1. Select Appropriate Data Structure for solving a real world problem (L4)
    2. Select appropriate file organization technique depending on the processing to be done (L4)
    3. Construct Indexes for Databases (L6)
    4. Analyse the Algorithms (L4)
    5. Develop Algorithm for Sorting large files of data (L3)

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR

    B.Tech- II Sem                                                                                                                                                    L T P C

    0 0 3 1.5

    (19A05201P) Data Structures Lab

    (Common to All Branches of Engineering)

    Course Objectives:

    1. To introduce to the different data structures
    2. To elucidate how the data structure selection influences the algorithm complexity
    3. To explain the different operations that can be performed on different data structures
    4. To introduce to the different search and sorting algorithms.

    Laboratory Experiments

    1. String operations using array of pointers
    2. Searching Algorithms (With the Number of Key Comparisons) Sequential, Binary and Fibonacci Search Algorithms.
    3. Sorting Algorithms: Insertion Sort, Selection Sort, Shell Sort, Bubble Sort, Quick Sort, Heap Sort, Merge Sort, and Radix Sort. Using the system clock, compute the time taken for sorting of elements. The time for other operations like I/O etc should not be considered while computing time.
    4. Implementation of Singly Linked List, Doubly Linked List, Circular Linked List
    5. Stack implementation using arrays
    6. Stack implementation using linked lists
    7. Queue implementation using arrays. Implement different forms of queue. While implementing you should be able to store elements equal to the size of the queue. No positions should be left blank.
    8. Queue implementation using linked lists
    9. Creation of binary search tree, performing operations insertion, deletion, and
    10. Breadth first search
    11. Depth first search
    12. Travelling sales man problem
    13. File operations
    14. Indexing of a file
    15. Reversing the links (not just displaying) of a linked list.
    16. Consider a linked list consisting of name of a person and gender as a node. Arrange the linked list using “˜Ladies first”™ principle. You may create new linked lists if necessary.
    17. An expression can be represented in three ways: infix, prefix and postfix. All the forms are necessary in different contexts. Write modules to convert from one form to another form.

     

    1. A table can be defined as a collection of rows and columns. Each row and column may have a label. Different values are stored in the cells of the table. The values can be of different data types. Numerical operations like summation, average etc can be performed on rows/columns which contain numerical data. Such operations are to be prevented on data which is not numeric. User may like to insert row/columns in the already existing table. User may like to remove row/column. Create table datatype and support different operations on it.

    Course Outcomes:

    At the end of the course students should be able to

    1. Select the data structure appropriate for solving the problem (L5)
    2. Implement searching and sorting algorithms (L3)
    3. Design new data types (L6)
    4. Illustrate the working of stack and queue (L4)
    5. Organize the data in the form of files (L6)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR

    B.Tech- I Sem (Civil Engineering)                                                                                                                 L T P C

    0 0 2 1

    (19A01201) Civil Engineering Workshop

    • Setting out of a building: The student should set out a building (single room only) as per the given building plan using tape only.
    • Setting out of a building: The student should set out a building (single room only) as per the given building plan using tape and cross staff.
    • Construct a wall of height 50 cm and wall thickness 11/2 bricks using English bond (No mortar required) – corner portion- length of side walls 60 cm.
    • Construct a wall of height 50 cm and wall thickness 2 bricks using English bond (No mortar required) – corner portion- length of side walls 60 cm.
    • Computation of Centre of gravity and Moment of inertia of a given rolled steel section by actual measurements.
    • Installation of plumbing and fixtures like Tap, T-Joint, Elbow, Bend, Threading etc;
    • Plastering and Finishing of wall
    • Application of wall putty and painting a wall
    • Application of base coat and laying of Tile flooring of one square meter
    • Preparation of soil cement blocks for masonry and testing for compressive strength
    • Casting and testing of Fly ash Blocks
    • Preparation of cover blocks for providing cover to reinforcement

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- I Sem (Electrical & Electronics Engineering)                                                                                                                  L T P C

    0 0 2 1

    (19A02101) Electrical & Electronics Engineering Workshop

    Course Objectives :

    1. To know about different tools, abbreviations and symbols in Electrical Engineering
    2. To learn about types of measuring instruments to measure electrical quantities
    3. To gain knowledge on different types of earthing and earth resistance
    4. To study different types of wiring

    List of Exercises / Experiments:

    1. Study of Introduction to Electrical tools, symbols and abbreviations
    2. Study of types of sizes of wires and making “T” joint and straight joint for wires
    3. Measurements of Electrical quantities (like Voltage, Current, Power, Power factor in RLC circuits)
    4. Study of measurements of Energy (using Single phase and Three phase Energy meter) by connecting different loads
    5. Study of earthing and measurement of earth resistance
    6. Study and performance of residential wiring (using Energy meter, Fuses, Switches, Indicator, Lamps, etc.)
    7. Study of Fluorescent lamp wiring
    8. Study of various electrical gadgets (CFL and LED)
    9. Study of PV Cell
    10. Study of Induction motor and Transformer
    11. Assembly of choke or small transformer
    12. Study of trouble shooting of electrical equipments (fan, iron box, mixer-grinder, etc.)
    13. Introduction to basics of Electronic components: Solder practice, Multi meter, Power supply
    14. Measurement of wire guages using guage meter
    15. Identification of color code, resistors, ICs, Transistors, capacitors, diodes, SCRs, IGBTs

    References:

    1. Lab manual of Electrical Engineering by TTTI, Chennai.

     

    Course Outcomes:

    1. Able to demonstrate knowledge on different tools, abbreviations and symbols used in Electrical Engineering
    2. Able to measure different electrical quantities using measuring instruments
    3. Able to demonstrate how to trouble shoot the electrical equipments (like fan, grinder, motor, etc.)
    4. Able to do wiring and earthing for residential houses

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR

    B.Tech- II Sem (Mechanical Engineering)                                                                                                 L T P C

    0 0 2 1

    (19A03201) Mechanical Engineering Workshop

    Course Objectives:

    1. Familiarize moulding and casting skills.
    2. Train on different types welding joints.
    3. Develop assemble or disassembly skills.
    4. Make plastic components.
    5. Familiarize with use power tools.
    6. Demonstrate assembly of computer and installation of software

    Foundry Practice: (2 Sessions)

    1. a) Determination of average grain size for sand sample using sieve shaker
    2. b) Preparation of a green sand mould using single piece pattern
    3. Preparation of a green sand mould using split piece pattern with core and demonstration of casting.

    Welding Practice: (2 Sessions)

    1. Lap joint, butt joint and T joint using arc welding.
    2. a) Lap joint using resistance spot welding b) Lap and butt joints using gas welding

    Assembling/Disassembling Practice: (3 Sessions)

    1. Bicycle
    2. Clutch and carburetor
    • Two wheeler engine parts
    1. Desktop Computer and installation of Operating system Software

    Manufacture of a Plastic Component (2 Sessions)

    1. Use of injection moulding machine
    2. FRP composite using hand layup method
    • Joining of plastic components

    Manufacturing any two domestic utility products with any material by above methods (2 Sessions) Use of Power Tools (2 Sessions)

    Drilling, Cutting, Planing, Finishing, Etc,. on wood or metals

    Text Books:

    1. Venkata Reddy Workshop Mannual 6th Ed., B.S. Publishers, 2013.
    2. L. Juneja Workshop practice 1st Ed., Cengage, 2015.

     

    Course Outcomes:

    After completion of this lab student will be able to

    • make moulds for sand casting. (L3)
    • develop different weld joints. (L3)
    • assemble or disassemble of machine components. (L3)
    • make plastic components. (L3)
    • use power tools for different applications. (L3)
    • Assemble computer and installation of software (L3)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- I Sem             L T P C

    0 0 2 1

    (19A04101) Electronics & Communication Engineering Workshop
    (19A10101) Electronics & Instrumentation Engineering Workshop

    Course Objectives:

    • To introduce electronic components, measuring instruments and tools used in electronic
    • To equip with the knowledge of understanding data sheets of electronic components
    • To give practical experience on soldering the electronic components on a PCB
    • To introduce EDA tools
    • To know about the internal parts of a computer, assembling a computer from the parts, preparing a computer for use by installing the operating system
    • To provide training on Productivity tools like word processors, spreadsheets, presentations
    • To provide knowledge in understanding working of various communication systems

    List of Exercises / Experiments:

    1. Familiarization of commonly used Electronic Workshop Tools : Bread board, Solder, cables, relays, switches, connectors, fuses, Cutter, plier, screwdriver set, wire stripper, flux, knife/blade, soldering iron, de-soldering pump etc.
    • Provide some exercises so that electronics hardware tools and instruments are learned to be used by the students
    1. Familiarization of Electronic Measuring Instruments like Voltmeters, Ammeters, multimeter, LCR-Q meter, Power Supplies, CRO, DSO, Function Generator, Frequency counter.
    • Provide some exercises so that electronic measuring instruments are learned to be used by the students
    1. Electronic Components:
      Familiarization/Identification of electronic components (Resistors, Capacitors, Inductors, Diodes, transistors, IC”™s etc.)- Functionality, type, size, color coding, package, symbol, cost etc.
    2. Testing of electronic components like Resistor, Capacitor, Diode, Transistor, ICs etc.
    • Compare values of components like resistors, inductors, capacitors etc with the measured values by using electronic instruments

     

    1. Study of Cathode Ray Oscilloscope (CRO)
    • Find the Amplitude and Frequency of a signal
    • Measure the Unknown Frequency & Phase difference of signals using Lissajous figures
    1. Interpret data sheets of discrete components and IC”™s.
    • Write important specifications/ratings of components & ICs and submit it in the form of a report
    1. Introduction to EDA Tools: MULTISIM/PSPICE/TINA schematic capture tool, Learning of basic functions of creating a new project, getting and placing parts, connecting placed parts, simulating the schematic, plotting and analyzing the results.
    • Provide some exercises so that students are familiarized in using EDA tools
    1. Assembling and Testing of simple electronic circuits on breadboards; identifying the components and its location on the PCB, soldering of the components, testing the assembled circuit for correct functionality.
    2. Familiarization with Computer Hardware & Operating System:
    • Identify the internal parts of a computer, and its peripherals. Represent the same in the form of diagrams including Block diagram of a computer. Write specifications for each part of a computer including peripherals and specification of Desktop computer. Submit it in the form of a report.
    • Disassemble and assemble the PC back to working condition. Students should be able to trouble shoot the computer and identify working and non-working parts. Student should identify the problem correctly by various methods available (eg: beeps). Students should record the process of assembling and trouble shooting a computer.
    • Install Operating system on the computer. Students should record the entire installation process.
    1. Familiarization with Office Tools
    • Word Processor: Able to create documents using the word processor tool. Students should be able to prepare project cover pages, content sheet and chapter pages at the end of the task using the features studied.
    • Spreadsheet: Able to create, open, save the application documents and format them as per the requirement. Some of the tasks that may be practiced are Managing the worksheet environment, creating cell data, inserting and deleting cell data, format cells, adjust the cell size, applying formulas and functions, preparing charts, sorting
    • Presentations: creating, opening, saving and running the presentations, Selecting the style for slides, formatting the slides with different fonts, colors, creating charts and tables, inserting and deleting text, graphics and animations, bulleting and numbering, hyper-linking, running the slide show, setting the timing for slide show.

     

    1. Familiarization of PA system with different microphones, loud speakers, mixer etc. Represent the same in the form of diagrams, write specifications and submit it in the form of a report.
    2. Understand working of various Communication Systems like Television, Satellite Transmitter & Receiver, Radio Receiver, Mobile Phone. Prepare demo boards/charts of various communication systems.

    Course Outcomes:

    • Identify discrete components and ICs (L3)
    • Assemble simple electronic circuits over a PCB (L3)
    • Testing of various components (L4)
    • Interpret specifications (ratings) of the component (L5)
    • Demonstrate disassembling and assembling a Personal Computer and make the computer ready to use (L2)
    • Make use of Office tools for preparing documents, spread sheets and presentations (L3)
    • Demonstrate working of various communication systems (L2)

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR B.Tech- II Sem            L T P C

    0 0 2 1

    (19A05202) Computer Science and Engineering Workshop
    (19A15201) Computer Science & Systems Engineering Workshop
    (19A12201) Information Technology Workshop

    Course Objectives:

    • To provide Technical training to the students on Productivity tools like Word processors, Spreadsheets, Presentations
    • To make the students know about the internal parts of a computer, assembling a computer from the parts, preparing a computer for use by installing the operating system
    • Teach them how to connect two or more computers
    • Introduce to the Raspberry Pi board
    • Explain storytelling by creating Graphics, Webpages and Videos

    Preparing your Computer

    Task 1: Learn about Computer: Identify the internal parts of a computer, and its peripherals. Represent the same in the form of diagrams including Block diagram of a computer. Write specifications for each part of a computer including peripherals and specification of Desktop computer. Submit it in the form of a report.

    Task 2: Assembling a Computer: Disassemble and assemble the PC back to working condition. Students should be able to trouble shoot the computer and identify working and non-working parts. Student should identify the problem correctly by various methods available (eg: beeps). Students should record the process of assembling and trouble shooting a computer.

    Task 3: Install Operating system: Student should install Linux on the computer. Student may install another operating system (including proprietary software) and make the system dual boot or multi boot. Students should record the entire installation process.

    Task 4: Operating system features: Students should record the various features that are supported by the operating system(s) installed. They have to submit a report on it. Students should be able to access CD/DVD drives, write CD/DVDs, access pen drives, print files, etc. Students should install new application software and record the installation process.

    Productivity tools

    Task 5: Word Processor: Students should be able to create documents using the word processor tool. Some of the tasks that are to be performed are inserting and deleting the characters, words and lines, Alignment of the lines, Inserting header and Footer, changing the font, changing the colour, including images and tables in the word file, making page setup, copy and paste block of

     

    text, images, tables, linking the images which are present in other directory, formatting paragraphs, spell checking, etc. Students should be able to prepare project cover pages, content sheet and chapter pages at the end of the task using the features studied. Students should submit a user manual of the word processor considered.

    Task 6: Spreadsheet: Students should be able to create, open, save the application documents and format them as per the requirement. Some of the tasks that may be practiced are Managing the worksheet environment, creating cell data, inserting and deleting cell data, format cells, adjust the cell size, applying formulas and functions, preparing charts, sorting cells. Students should submit a user manual of the Spreadsheet application considered.

    Task 7: Presentations: creating, opening, saving and running the presentations, Selecting the style for slides, formatting the slides with different fonts, colours, creating charts and tables, inserting and deleting text, graphics and animations, bulleting and numbering, hyperlinking, running the slide show, setting the timing for slide show. Students should submit a user manual of the Presentation tool considered.

    Networking

    Task 8: Wired network: Select a LAN cable, Identify the wires in the cable, Define the purpose of each wire, Study the RJ45 connecter, Use crimping tool to fix the cable to the connecter, Test the cable using LAN tester, Connect two or more computers using cross and straight cables, Configure the computers, share the data between the computers.

    Task 9: Wireless network Connect the wireless LAN card or identify the built-in wireless LAN card, configure four computers using adhoc mode and share the data, connect four computers using infrastructure mode (Access point) and share the data.

    IoT

    Task 10: Raspberry Pi

    Study the architecture of Raspberry pi, configure software, Install SD card, Connect the cables, Install Raspbian (or any other) operating system, Configure Wi-Fi, Remotely connect to your Raspberry Pi.

     

    JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY ANANTAPUR

    B.Tech- II Sem (Food Technology)                                                                                                               L T P C

    0 0 2 1

    (19A27201) Food Technology Workshop

    Course Objectives:

    1. To create basic awareness on traditional processing methods and their importance in processing of foods.
    2. To know physico-chemical changes during these processing methods.

    List of Exercises / Experiments:

    1. Soaking
    2. Boiling
    3. Smoking
    4. Curing
    5. Grilling
    6. Drying
    7. Steaming
    8. Roasting
    9. Simmering
    10. Stewing
    11. Frying

    Learning Outcomes:

    • Gain knowledge on primary processing methods
    • Learn the changes occurred during processing
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