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  • NEET 2019 MBBS And BDS Entrance Exam Syllabus for Biology

    CONTENTS OF CLASS XI SYLLABUS

    S.No. CLASS XI CLASS XII
    1. Diversity in Living World Reproduction
    2. Structural Organisation in Animals and Plants Genetics and Evolution
    3. Cell Structure and Function Biology and Human Welfare
    4. Plant Physiology Biotechnology and Its Applications
    5. Human physiology Ecology and environment

     

    UNIT I: Diversity in Living World

    What is living? ; Biodiversity; Need for classification; Three domains of life; Taxonomy & Systematics; Concept of
    species and taxonomical hierarchy; Binomial nomenclature; Tools for study of Taxonomy- Museums, Zoos, Herbaria,
    Botanical gardens.

    ï‚· Five kingdom classification; salient features and classification of Monera; Protista and Fungi into major groups; Lichens; Viruses and Viroids.

    ï‚· Salient features and classification of plants into major groups-Algae, Bryophytes, Pteridophytes, Gymnosperms and
    Angiosperms (three to five salient and distinguishing features and at least two examples of each category); Angiosperms- classification up to class, characteristic features and examples).

    ï‚· Salient features and classification of animals-nonchordate up to phyla level and chordate up to classes level (three to five
    salient features and at least two examples).

     

    UNIT II: Structural Organisation in Animals and Plants

    ï‚·Morphology and modifications; Tissues; Anatomy and functions of different parts of flowering plants: Root, stem, leaf,inflorescence- cymose and recemose, flower, fruit and seed (To be dealt along with the relevant practical of the PracticalSyllabus).

    ï‚·Animal tissues; Morphology, anatomy and functions of different systems (digestive, circulatory, respiratory, nervous andreproductive) of an insect (cockroach). (Brief account only)

    UNIT III: Cell Structure and Function

    ï‚·Cell theory and cell as the basic unit of life; Structure of prokaryotic and eukaryotic cell; Plant cell and animal cell; Cellenvelope, cell membrane, cell wall; Cell organelles-structure and function; Endomembrane system-endoplasmic reticulum,Golgi bodies, lysosomes, vacuoles; mitochondria, ribosomes, plastids, micro bodies; Cytoskeleton, cilia, flagella,centrioles (ultra structure and function); Nucleus-nuclear membrane, chromatin, nucleolus.

    ï‚·Chemical constituents of living cells: Biomolecules-structure and function of proteins, carbodydrates, lipids, nucleic acids;Enzymes-types, properties, enzyme action.

    ï‚·B Cell division: Cell cycle, mitosis, meiosis and their significance.

    UNIT IV: Plant Physiology

    ï‚·Transport in plants: Movement of water, gases and nutrients; Cell to cell transport-Diffusion, facilitated diffusion, activetransport; Plant- water relations- Imbibition, water potential, osmosis, plasmolysis; Long distance transport of water-Absorption, apoplast, symplast, transpiration pull, root pressure and guttation; Transpiration-Opening and closing ofstomata; Uptake and translocation of mineral nutrients-Transport of food, phloem transport, Mass flow hypothesis;Diffusion of gases (brief mention).

    ï‚·Mineral nutrition: Essential minerals, macro and micronutrients and their role; Deficiency symptoms; Mineral toxicity;Elementary idea of Hydroponics as a method to study mineral nutrition; Nitrogen metabolism-Nitrogen cycle, biologicalnitrogen fixation.

    ï‚·Photosynthesis: Photosynthesis as a means of Autotrophic nutrition; Site of photosynthesis take place; pigments involvedin Photosynthesis (Elementary idea); Photochemical and biosynthetic phases of photosynthesis; Cyclic and non cyclic andphotophosphorylation; Chemiosmotic hypothesis; Photorespiration C3 and C4 pathways; Factors affecting photosynthesis.

    ï‚·Respiration: Exchange gases; Cellular respiration-glycolysis, fermentation (anaerobic), TCA cycle and electron transportsystem (aerobic); Energy relations-Number of ATP molecules generated; Amphibolic pathways; Respiratory quotient.

    ï‚·Plant growth and development: Seed germination; Phases of Plant growth and plant growth rate; Conditions of growth;Differentiation, dedifferentiation and redifferentiation; Sequence of developmental process in a plant cell; Growthregulators-auxin,gibberellin, cytokinin, ethylene, ABA; Seed dormancy; Vernalisation; Photoperiodism.

    UNIT V: Human Physiology

    ï‚·Digestion and absorption; Alimentary canal and digestive glands; Role of digestive enzymes and gastrointestinalhormones; Peristalsis, digestion, absorption and assimilation of proteins, carbohydrates and fats; Caloric value ofproteins, carbohydrates and fats; Egestion; Nutritional and digestive disorders- PEM, indigestion, constipation,vomiting, jaundice, diarrhea.

    ï‚·Breathing and Respiration: Respiratory organs in animals (recall only); Respiratory system in humans; Mechanism ofbreathing and its regulation in humans-Exchange of gases, transport of gases and regulation of respiration Respiratoryvolumes; Disorders related to respiration-Asthma, Emphysema, Occupational respiratory disorders.

    ï‚·Body fluids and circulation: Composition of blood, blood groups, coagulation of blood; Composition of lymph and itsfunction; Human circulatory system-Structure of human heart and blood vessels; Cardiac cycle, cardiac output, ECG,Double circulation; Regulation of cardiac activity; Disorders of circulatory system-Hypertension, Coronary arterydisease, Angina pectoris, Heart failure.

    ï‚·Excretory products and their elimination: Modes of excretion- Ammonotelism, ureotelism, uricotelism; Human excretorysystem-structure and fuction; Urine formation, Osmoregulation; Regulation of kidney function-Renin-angiotensin, AtrialNatriuretic Factor, ADH and Diabetes insipidus; Role of other organs in excretion; Disorders; Uraemia, Renal failure,Renal calculi, Nephritis; Dialysis and artificial kidney.

    ï‚·Locomotion and Movement: Types of movement- ciliary, fiagellar, muscular; Skeletal muscle- contractile proteins andmuscle contraction; Skeletal system and its functions (To be dealt with the relevant practical of Practical syllabus);Joints; Disorders of muscular and skeletal system-Myasthenia gravis, Tetany, Muscular dystrophy, Arthritis,Osteoporosis, Gout.

    ï‚·Neural control and coordination: Neuron and nerves; Nervous system in humans- central nervous system, peripheralnervous system and visceral nervous system; Generation and conduction of nerve impulse; Reflex action; Sense organs;Elementary structure and function of eye and ear.

    ï‚·Chemical coordination and regulation: Endocrine glands and hormones; Human endocrine system-Hypothalamus,Pituitary, Pineal, Thyroid, Parathyroid, Adrenal, Pancreas, Gonads; Mechanism of hormone action (Elementary Idea);Role of hormones as messengers and regulators, Hypo-and hyperactivity and related disorders (Common disorders e.g.Dwarfism, Acromegaly, Cretinism, goiter, exopthalmic goiter, diabetes, Addison”Ÿs disease).
    (Imp: Diseases and disorders mentioned above to be dealt in brief.)

    CONTENTS OF CLASS XII SYALLBUS

    UNIT I: Reproduction

    ï‚·Reproduction in organisms: Reproduction, a characteristic feature of all organisms for continuation of species; Modes ofreproduction- Asexual and sexual; Asexual reproduction; Modes-Binary fission, sporulation, budding, gemmule,fragmentation; vegetative propagation in plants.

    ï‚·Sexual reproduction in flowering plants: Flower structure; Development of male and female gametophytes; Pollination-types, agencies and examples; Outbreeding devices; Pollen-Pistil interaction; Double fertilization; Post fertilization events-Development of endosperm and embryo, Development of seed and formation of fruit; Special modes-apomixis,parthenocarpy, polyembryony; Significance of seed and fruit formation.

    ï‚·Human Reproduction: Male and female reproductive systems; Microscopic anatomy of testis and ovary; Gametogenesis-spermatogenesis & oogenesis; Menstrual cycle; Fertilisation, embryo development upto blastocyst formation, implantation;Pregnancy and placenta formation (Elementary idea); Parturition (Elementary idea); Lactation (Elementary idea).

    ï‚·Reproductive health: Need for reproductive health and prevention of sexually transmitted diseases (STD); Birth control-Need and Methods, Contraception and Medical Termination of Pregnancy (MTP); Amniocentesis; Infertility and assistedreproductive technologies- IVF, ZIFT, GIFT (Elementary idea for general awareness).

    UNIT II: Genetics and Evolution

    ï‚·Heredity and variation: Mendelian Inheritance; Deviations from Mendelism-Incomplete dominance, Co-dominance,Multiple alleles and Inheritance of blood groups, Pleiotropy; Elementary idea of polygenic inheritance; Chromosometheory of inheritance; Chromosomes and genes; Sex determination-In humans, birds, honey bee; Linkage and crossingover; Sex linked inheritance-Haemophilia, Colour blindness; Mendelian disorders in humans-Thalassemia; Chromosomaldisorders in humans; Down”Ÿs syndrome, Turner”Ÿs and Klinefelter”Ÿs syndromes.

    ï‚·Molecular basis of Inheritance: Search for genetic material and DNA as genetic material; Structure of DNA and RNA;DNA packaging; DNA replication; Central dogma; Transcription, genetic code, translation; Gene expression andregulation-Lac Operon; Genome and human genome project; DNA finger printing.

    ï‚·Evolution: Origin of life; Biological evolution and evidences for biological evolution from Paleontology, comparativeanatomy, embryology and molecular evidence); Darwin”Ÿs contribution, Modern Synthetic theory of Evolution; Mechanismof evolution-Variation (Mutation and Recombination) and Natural Selection with examples, types of natural selection;Gene flow and genetic drift; Hardy-Weinberg”Ÿs principle; Adaptive Radiation; Human evolution.

    UNIT III: Biology and Human Welfare
    ï‚·Health and Disease; Pathogens; parasites causing human diseases (Malaria, Filariasis, Ascariasis. Typhoid, Pneumonia,common cold, amoebiasis, ring worm); Basic concepts of immunology-vaccines; Cancer, HIV and AIDS; Adolescence,drug and alcohol abuse.

    ï‚·Improvement in food production; Plant breeding, tissue culture, single cell protein, Biofortification; Apiculture and Animalhusbandry.

    ï‚·Microbes in human welfare: In household food processing, industrial production, sewage treatment, energy generation andas biocontrol agents and biofertilizers.

    UNIT IV: Biotechnology and Its Applications

    ï‚·Principles and process of Biotechnology: Genetic engineering (Recombinant DNA technology).

    ï‚·Application of Biotechnology in health and agriculture: Human insulin and vaccine production, gene therapy; Geneticallymodified organisms-Bt crops; Transgenic Animals; Biosafety issues-Biopiracy and patents.

    UNIT V: Ecology and environment

    ï‚·Organisms and environment: Habitat and niche; Population and ecological adaptations; Population interactions-mutualism,competition, predation, parasitism; Population attributes-growth, birth rate and death rate, age distribution.

    ï‚·Ecosystem: Patterns, components; productivity and decomposition; Energy flow; Pyramids of number, biomass, energy;Nutrient cycling (carbon and phosphorous); Ecological succession; Ecological Services-Carbon fixation, pollination,oxygen release.

    ï‚·Biodiversity and its conservation: Concept of Biodiversity; Patterns of Biodiversity; Importance of Biodiversity; Loss ofBiodiversity; Biodiversity conservation; Hotspots, endangered organisms, extinction, Red Data Book, biosphere reserves,National parks and sanctuaries.

    ï‚·Environmental issues: Air pollution and its control; Water pollution and its control; Agrochemicals and their effects; Solidwaste management; Radioactive waste management; Greenhouse effect and global warning; Ozone depletion;Deforestation; Any three case studies as success stories addressing environmental issues

     

    NEET 2019 Syllabus for Biology  Download

  • NEET 2019 MBBS And BDS Entrance Exam Syllabus for Physics

    CORE SYLLABUS for NATIONAL ELIGIBILITY CUM ENTRANCE TEST
    for Admission to MBBS/BDS Courses 2019

     

    The Medical Council of India (MCI) recommended the following syllabus for NATIONAL ELIGIBILITY CUM ENTRANCE TEST for admission to MBBS/BDS courses across the country after review of various State syllabi as well as those prepared by CBSE, NCERT and COBSE. This is to establish uniformity across the country keeping in view the relevance of different areas in Medical Education.

     

    S.No. CLASS XI CLASS XII
    1. Physical world and measurement Electrostatics
    2. Kinematics Current Electricity
    3. Laws of Motion Magnetic Effects of Current and Magnetism
    4. Work, Energy and Power Electromagnetic Induction and Alternating Currents
    5. Motion of System of Particles and Rigid Body Electromagnetic Waves
    6. Gravitation Optics
    7. Properties of Bulk Matter Dual Nature of Matter and Radiation
    8. Thermodynamics Atoms and Nuclei
    9. Behaviour of Perfect Gas and Kinetic Theory Electronic Devices
    10. Oscillations and Waves

     

    UNIT I: Some Basic Concepts of Chemistry

    ï‚· General Introduction: Important and scope of chemistry.

    ï‚· Laws of chemical combination, Dalton”™s atomic theory: concept of elements, atoms and molecules.
    ï‚· Atomic and molecular masses. Mole concept and molar mass; percentage composition and empirical and molecular
    formula; chemical reactions, stoichiometry and calculations based on stoichiometry.

    UNIT II: Structure of Atom

    ï‚· Atomic number, isotopes and isobars. Concept of shells and subshells, dual nature of matter and light, de Broglie”Ÿs
    relationship, Heisenberg uncertainty principle, concept of orbital, quantum numbers, shapes of s,p and d orbitals, rules for
    filling electrons in orbitals- Aufbau principle, Pauli exclusion principles and Hund”Ÿs rule, electronic configuration of
    atoms, stability of half filled and completely filled orbitals.

    UNIT III: Classification of Elements and Periodicity in Properties

    ï‚· Modern periodic law and long form of periodic table, periodic trends in properties of elements- atomic radii, ionic radii,
    ionization enthalpy, electron gain enthalpy, electronegativity, valence

    UNIT IV: Chemical Bonding and Molecular Structure

    ï‚· Valence electrons, ionic bond, covalent bond, bond parameters, Lewis structure, polar character of covalent bond, valence
    bond theory, resonance, geometry of molecules, VSEPR theory, concept of hybridization involving s, p and d orbitals and
    shapes of some simple molecules, molecular orbital theory of homonuclear diatomic molecules (qualitative idea only).
    Hydrogen bond.

     

    UNIT V: States of Matter: Gases and Liquids
    ï‚·Three states of matter, intermolecular interactions, types of bonding, melting and boiling points, role of gas laws ofelucidating the concept of the molecule, Boyle”Ÿs law, Charle”Ÿs law, Gay Lussac”Ÿs law, Avogadro”Ÿs law, ideal behaviour ofgases, empirical derivation of gas equation. Avogadro number, ideal gas equation. Kinetic energy and molecular speeds(elementary idea), deviation from ideal behaviour, liquefaction of gases, critical temperature.

    ï‚·Liquid State- Vapour pressure, viscosity and surface tension (qualitative idea only, no mathematical derivations).

    UNIT VI : Thermodynamics

    ï‚·First law of thermodynamics-internal energy and enthalpy, heat capacity and specific heat, measurement of ΔU and ΔH,Hess”Ÿs law of constant heat summation, enthalpy of : bond dissociation, combustion, formation, atomization, sublimation,phase transition, ionization, solution and dilution.
    ï‚·Introduction of entropy as state function, Second law of thermodynamics, Gibbs energy change for spontaneous and non-spontaneous process, criteria for equilibrium and spontaneity.
    ï‚·Third law of thermodynamics- Brief introduction.

    UNIT VII: Equilibrium

    ï‚·Equilibrium in physical and chemical processes, dynamic nature of equilibrium, law of chemical equilibrium, equilibriumconstant, factors affecting equilibrium-Le Chatelier”Ÿs principle; ionic equilibrium- ionization of acids and bases, strong andweak electrolytes, degree of ionization, ionization of polybasic acids, acid strength, concept of PH., Hydrolysis of salts(elementary idea), buffer solutions, Henderson equation, solubility product, common ion effect (with illustrativeexamples).

    UNIT VIII: Redox Reactions

    ï‚·Concept of oxidation and oxidation and reduction, redox reactions oxidation number, balancing redox reactions in terms ofloss and gain of electron and change in oxidation numbers.

    UNIT IX: Hydrogen

    ï‚·Occurrence, isotopes, preparation, properties and uses of hydrogen; hydrides-ionic, covalent and interstitial; physical andchemical properties of water, heavy water; hydrogen peroxide-preparation, reactions, uses and structure;

    UNIT X: s-Block Elements (Alkali and Alkaline earth metals)

    ï‚·Group I and group 2 elements:
    ï‚·General introduction, electronic configuration, occurrence, anomalous properties of the first element of each group,diagonal relationship, trends in the variation of properties (such as ionization enthalpy, atomic and ionic radii), trends inchemical reactivity with oxygen, water, hydrogen and halogens; uses.
    ï‚·Preparation and Properties of Some important Compounds:
    ï‚·Sodium carbonate, sodium chloride, sodium hydroxide and sodium hydrogencarbonate, biological importance of sodiumand potassium.
    ï‚·Industrial use of lime and limestone, biological importance of Mg and Ca.

     

    UNIT XI: Some p-Block Elements

    ï‚·General Introduction to p-Block Elements.
    ï‚·Group 13 elements: General introduction, electronic configuration, occurrence, variation of properties, oxidation states,trends in chemical reactivity, anomalous properties of first element of the group; Boron, some important compounds:borax, boric acids, boron hydrides. Aluminium: uses, reactions with acids and alkalies.
    ï‚·General 14 elements: General introduction, electronic configuration, occurrence, variation of properties, oxidation states,trends in chemical reactivity, anomalous behaviour of first element. Carbon, allotropic forms, physical and chemicalproperties: uses of some important compounds: oxides.
    ï‚·Important compounds of silicon and a few uses: silicon tetrachloride, silicones, silicates and zeolites, their uses.

     

    UNIT XII: Organic Chemistry- Some Basic Principles and Techniques

    ï‚·General introduction, methods of purification qualitative and quantitative analysis, classification and IUPAC nomenclatureof organic compounds.
    ï‚·Electronic displacements in a covalent bond: inductive effect, electromeric effect, resonance and hyper conjugation.
    ï‚·Homolytic and heterolytic fission of a covalent bond: free radials, carbocations, carbanions; electrophiles and nucleophiles,types of organic reactions.

    UNIT XIII: Hydrocarbons

    ï‚·Alkanes- Nomenclature, isomerism, conformations (ethane only), physical properties, chemical reactions including freeradical mechanism of halogenation, combustion and pyrolysis.
    ï‚·Alkanes-Nomenclature, structure of double bond (ethene), geometrical isomerism, physical properties, methods ofpreparation: chemical reactions: addition of hydrogen, halogen, water, hydrogen halides (Markovnikov”Ÿs addition andperoxide effect), ozonolysis, oxidation, mechanism of electrophilic addition.
    ï‚·Alkynes-Nomenclature, structure of triple bond (ethyne), physical properties, methods of preparation, chemical reactions:acidic character of alkynes, addition reaction of- hydrogen, halogens, hydrogen halides and water.
    ï‚·Aromatic hydrocarbons- Introduction, IUPAC nomenclature; Benzene; resonance, aromaticity; chemical properties:mechanism of electrophilic substitution- Nitration sulphonation, halogenation, Friedel Craft”Ÿs alkylation and acylation;directive influence of functional group in mono-substituted benzene; carcinogenicity and toxicity.

     

    UNIT XIV: Environmental Chemistry

    Environmental pollution: Air, water and soil pollution, chemical reactions in atmosphere, smogs, major atmosphericpollutants; acid rain ozone and its reactions, effects of depletion of ozone layer, greenhouse effect and global warming-pollution due to industrial wastes; green chemistry as an alternative tool for reducing pollution, strategy for control ofenvironmental pollution.

    CONTENTS OF CLASS XII SYLLABUS 

    UNIT I: Solid State

    ï‚·Classification of solids based on different binding forces; molecular, ionic covalent and metallic solids, amorphous andcrystalline solids (elementary idea), unit cell in two dimensional and three dimensional lattices, calculation of density ofunit cell, packing in solids, packing efficiency, voids, number of atoms per unit cell in a cubic unit cell, point defects,electrical and magnetic properties, Band theory of metals, conductors, semiconductors and insulators.

    UNIT II: Solutions

    ï‚·Types of solutions, expression of concentration of solutions of solids in liquids, solubility of gases in liquids, solidsolutions, colligative properties- relative lowering of vapour pressure, Raoult”Ÿs law, elevation of boiling point, depressionof freezing point, osmotic pressure, determination of molecular masses using colligative properties abnormal molecularmass. Van Hoff factor.

    UNIT III: Electrochemistry
    ï‚·Redox reactions, conductance in electrolytic solutions, specific and molar conductivity variation of conductivity withconcentration, kohlrausch”Ÿs Law, electrolysis and Laws of electrolysis (elementary idea), dry cell- electrolytic cells andGalvanic cells; lead accumulator, EMF of a cell, standard electrode potential, Relation between Gibbs energy change andEMF of a cell, fuel cells; corrosion.

    UNIT IV: Chemical Kinetics
    ï‚·Rate of a reaction (average and instantaneous), factors affecting rates of reaction; concentration, temperature, catalyst;order and molecularity of a reaction; rate law and specific rate constant, integrated rate equations and half life (only forzero and first order reactions); concept of collision theory ( elementary idea, no mathematical treatment). Activationenergy, Arrhenious equation.

     

    UNIT V: Surface Chemistry

    ï‚·Adsorption-physisorption and chemisorption; factors affecting adsorption of gases on solids, catalysis homogeneous andheterogeneous, activity and selectivity: enzyme catalysis; colloidal state: distinction between true solutions, colloids andsuspensions; lyophillic, lyophobic multimolecular and macromolecular colloids; properties of colloids; Tyndall effect,Brownian movement, electrophoresis, coagulation; emulsions- types of emulsions.

    UNIT VI: General Principles and Processes of Isolation of Elements
    ï‚·Principles and methods of extraction- concentration, oxidation, reduction electrolytic method and refining; occurrence andprinciples of extraction of aluminium, copper, zinc and iron.

    UNIT VII: p- Block Elements

    ï‚·Group 15 elements: General introduction, electronic configuration, occurrence, oxidation states, trends in physical andchemical properties; preparation and properties of ammonia and nitric acid, oxides of nitrogen (structure only);Phosphorous- allotropic forms; compounds of phosphorous: preparation and properties of phosphine, halides (PCI3, PCI5)and oxoacids (elementary idea only).

    ï‚·Group 16 elements: General introduction, electronic configuration, oxidation states, occurrence, trends in physical andchemical properties; dioxygen: preparation, properties and uses; classification of oxides; ozone. Sulphur- allotropicforms; compounds of sulphur: preparation, preparation, properties and uses of sulphur dioxide; sulphuric acid: industrialprocess of manufacture, properties and uses, oxoacids of sulphur (structures only).

    ï‚·Group 17 elements: General introduction, electronic configuration, oxidation states, occurrence, trends in physical andchemical properties; compounds of halogens: preparation, properties and uses of chlorine and hydrochloric acid,interhalogen compounds oxoacids of halogens (structures only).

    ï‚·Group 18 elements: General introduction, electronic configuration, occurrence, trends in physical and chemical properties,uses.

    UNIT VIII: d and f Block Elements

    General introduction, electronic configuration, characteristics of transition metals, general trends in properties of the firstrow transition metals- metallic character, ionization enthalpy, oxidation states, ionic radii, colour, catalytic property,magnetic properties, interstitial compounds, alloy formation. Preparation and properties of K2Cr2O7 and KMnO4.
    ï‚·Lanthanoids- electronic configuration, oxidation states, chemical reactivity, and lanthanoid contraction and itsconsequences.
    ï‚·Actinoids: Electronic configuration, oxidation states and comparison with lanthanoids.

    UNIT IX: Coordination Compounds

    ï‚·Coordination compounds: Introduction, ligands, coordination number, colour, magnetic properties and shapes, IUPACnomenclature of mononuclear coordination compounds, isomerism (structural and stereo) bonding, Werner”Ÿs theoryVBT,CFT; importance of coordination compounds (in qualitative analysis, biological systems).

    UNIT X: Haloalkanes and Haloarenes

    ï‚·Haloalkanes: Nomenclature, nature of C-X bond, physical and chemical properties, mechanism of substitution reactions.Optical rotation.
    ï‚·Haloarenes: Nature of C-X bond, substitution reactions (directive influence of halogen for monosubstituted compoundsonly).
    ï‚·Uses and environment effects of- dichloromethane, trichloromethane, tetrachloromethane, iodoform, freons, DDT.

    UNIT XI: Alcohols, Phenols and Ethers

    Alcohols: Nomenclature, methods of preparation, physical and chemical properties (of primary alcohols only);identification of primary, secondary and tertiary alcohols; mechanism of dehydration, uses with special reference tomethanol and ethanol.

    ï‚·Phenols: Nomenclature, methods of preparation, physical and chemical properties, acidic nature of phenol, electrophillicsubstitution reactions, uses of phenols.

    ï‚·Ethers: Nomenclature, methods of preparation, physical and chemical properties uses.

     

    UNIT XII: Aldehydes, Ketones and Carboxylic Acids

    ï‚·Aldehydes and Ketones: Nomenclature, nature of carbonyl group, methods of preparation, physical and chemicalproperties; and mechanism of nucleophilic addition, reactivity of alpha hydrogen in aldehydes; uses.
    ï‚·Carboxylic Acids: Nomenclature, acidic nature, methods of preparation, physical and chemical properties; uses.

    UNIT XIII: Organic Compounds Containing Nitrogen

    ï‚·Amines: Nomenclature, classification, structure, methods of preparation, physical and chemical properties, uses,identification of primary secondary and tertiary amines.

    ï‚·Cyanides and Isocyanides- will be mentioned at relevant places.

    ï‚·Diazonium salts: Preparation, chemical reactions and importance in synthetic organic chemistry.

    UNIT XIV: Biomolecules
    ï‚·Carbohydrates- Classification (aldoses and ketoses), monosaccharide (glucose and fructose), D.L. configuration,oligosaccharides (sucrose, lactose, maltose), polysaccharides (starch, cellulose, glycogen): importance.
    ï‚·Proteins- Elementary idea of- amino acids, peptide bond, polypeptides, proteins, primary structure, secondary structure,tertiary structure and quaternary structure (qualitative idea only), denaturation of proteins; enzymes.
    ï‚·Hormones- Elementary idea (excluding structure).
    ï‚·Vitamins- Classification and function.
    ï‚·Nucleic Acids: DNA and RNA

     

    UNIT XV: Polymers
    ï‚·Classification- Natural and synthetic, methods of polymerization (addition and condensation), copolymerization. Someimportant polymers: natural and synthetic like polyesters, bakelite; rubber, Biodegradable and non-biodegradablepolymers.

    UNIT XVI: Chemistry in Everyday Life

    ï‚·Chemicals in medicines- analgesics, tranquilizers, antiseptics, disinfectants, antimicrobials, antifertility drugs, antibiotics,antacids, antihistamines.
    ï‚·Chemicals in food- preservatives, artificial sweetening agents, elementary idea of antioxidants.
    ï‚·Cleansing agents- soaps and detergents, cleansing action.

    NEET 2019 Syllabus for Physics Download

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