Civil Engineering (Semester 5)
Total marks: 70
Total time: 3 Hours
INSTRUCTIONS
(1) Question 1 is compulsory.
(2) Attempt any three from the remaining questions.
(3) Draw neat diagrams wherever necessary.
1.a.
Analyze the frame shown in fig. by slope deflection method. Draw BMD. Take EI = const.
(10 marks)
00
1.b.
Analyze the continuous beam shown in fig. using flexibility method & draw the BDM .
(10 marks)
00
OR
2.a.
analyze the continuous beam shown in fig. by slope deflection method.
(10 marks)
00
2.b.
Analyze the frame shown in fig. by moment distribution method. Draw BMD.
(10 marks)
00
3.
Analyze the continuous beam by stiffness matrix method. Draw BDM.
(16 marks)
00
OR
4.
Analyze the beam shown in fig. by stiffness matrix method. Draw BDM.
(16 marks)
00
5.a.
Determine the approximate values of moment, shear & axial forces of the frame loaded & supported as shown in fig. using cantilever method.
(10 marks)
00
5.b.
Using finite difference method find nodal displacement for cantilever as shown in fig.
(8 marks)
00
OR
6.a.
analyze the frame giver inn Q.5 (a) by portal method. Draw BMD.
(10 marks)
00
6.b.
Determine maximum deflection for cantilever beam of 2 m span carrying 100 kN load at free end. Take 4 Nodes.
(8 marks)
00
7.a.
Explain constant strain triangle & linear strain triangle.
(8 marks)
00
7.b.
Explain convergence criteria of FEM.
(8 marks)
00
OR
8.a.
Using La Grange function find shape function for four noded rectanglular element.
(8 marks)
00
8.b.
Discuss Axisymmetric & Isoparametric elements.
(8 marks)
00