Download PTU (I.K. Gujral Punjab Technical University) B-Arch (Bachelor of Architecture) 2019 May 1st Sem AR 135 Theory Of Structure Previous Question Papers
Roll No. Total No. of Pages :02
Total No. of Questions : 08
B. Architecture (Sem.?1)
THEORY OF STRUCTURE
Subject Code : AR-135
M.Code : 45009
Time : 3 Hrs. Max. Marks : 50
INSTRUCTION TO CANDIDATES :
1. Attempt FIVE questions out of EIGHT Questions.
2. All questions carry equal marks
3. Question No. 1 is compulsory
1. a. Draw & specify various types .of frames.
b. What is perfect frame?
c. Differentiate between bending stress and compressive stress.
d. What is section modulus ?
e. What do you mean by Moment of resistance of section?
2. Find forces in each member of following?
Fig.1
3. What are coplanar forces, explain triangle law of forces?
4. Derive Moment of Inertia of rectangle by integration method?
6.0m
3.0m 3.0m
10-Kn
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1 | M-45009 (S17)-2713
Roll No. Total No. of Pages :02
Total No. of Questions : 08
B. Architecture (Sem.?1)
THEORY OF STRUCTURE
Subject Code : AR-135
M.Code : 45009
Time : 3 Hrs. Max. Marks : 50
INSTRUCTION TO CANDIDATES :
1. Attempt FIVE questions out of EIGHT Questions.
2. All questions carry equal marks
3. Question No. 1 is compulsory
1. a. Draw & specify various types .of frames.
b. What is perfect frame?
c. Differentiate between bending stress and compressive stress.
d. What is section modulus ?
e. What do you mean by Moment of resistance of section?
2. Find forces in each member of following?
Fig.1
3. What are coplanar forces, explain triangle law of forces?
4. Derive Moment of Inertia of rectangle by integration method?
6.0m
3.0m 3.0m
10-Kn
2 | M-45009 (S17)-2713
5. Draw B.M.D a shear force diagram for following cantilever case.
Fig.2
6. Find centre of gravity for following figure.
Fig.3
7. Find Moment of ineritia about c.g of above planer section.
8. Explain theory of bending in rectangular beam section.
NOTE : Disclosure of Identity by writing Mobile No. or Making of passing request on any
page of Answer Sheet will lead to UMC against the Student.
UDL-6Kn/m
5.0m
?
100mm
300mm
100mm
400mm
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This post was last modified on 03 April 2020