1
GATE CE 2016 Set 2
MCQ (Single Correct Answer)
+2
-0.6
For the stress state (in MPa) shown in the figure, the major principal stress is 10 MPa. GATE CE 2016 Set 2 Strength of Materials Or Solid Mechanics - Complex Stress Question 3 English

The shear stress $$\tau $$ is

A
$$10.0$$ $$MPa$$
B
$$5.0$$ $$MPa$$
C
$$2.5$$ $$MPa$$
D
$$0.0$$ $$MPa$$
2
GATE CE 2016 Set 2
Numerical
+2
-0
A $$450$$ $$mm$$ long plain concrete prism is subjected to the concentrated vertical loads as shown in the figure. Cross section of the prism is given as $$150\,\,mm\,\, \times \,\,150\,\,mm.$$ Considering linear stress distribution across the cross-section, the modulus of rupture (expressed in $$MPa$$) is ______________ GATE CE 2016 Set 2 Strength of Materials Or Solid Mechanics - Pure Bending Question 4 English
Your input ____
3
GATE CE 2016 Set 2
MCQ (Single Correct Answer)
+1
-0.3
The kinematic indeterminacy of the plane truss shown in the figure is GATE CE 2016 Set 2 Structural Analysis - Indeterminacy Question 7 English
A
$$11$$
B
$$8$$
C
$$3$$
D
$$0$$
4
GATE CE 2016 Set 2
MCQ (Single Correct Answer)
+2
-0.6
Consider the structural system shown in the figure under the action of weight $$W.$$ All the joints are hinged. The properties of the members in terms of length $$(L),$$ area $$(A)$$ and the modulus of elasticity $$(E)$$ are also given in the figure. Let $$L,A$$ and $$E$$ be $$1$$ $$m,$$ $$0.05$$ $${m^2}$$ and $$30 \times {10^6}\,\,N/{m^2},\,\,$$ respectively, and $$W$$ be $$100$$ $$kN.$$ GATE CE 2016 Set 2 Structural Analysis - Energy Principle Question 1 English

Which one of the following sets gives the correct values of the force, stress and change in length of the horizontal member $$QR$$?

A
Compressive force $$=25$$ $$kN;$$
Stress $$ = 250\,kN/{m^2},$$
Shortening $$=0.0118$$ $$m$$
B
Compressive force $$=14.14$$ $$kN;$$
Stress $$ = 141.4\,kN/{m^2},$$
Shortening $$=0.0118$$ $$m$$
C
Compressive force $$=100$$ $$kN;$$
Stress $$ = 1000\,kN/{m^2},$$
Shortening $$=0.0417$$ $$m$$
D
Compressive force $$=100$$ $$kN;$$
Stress $$ = 1000\,kN/{m^2},$$
Shortening $$=0.0417$$ $$m$$
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