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Theory of Structures

Theory of Structures
A shaft is subjected to bending moment M and a torque T simultaneously. The ratio of the maximum bending stress to maximum shear stress developed in the shaft, is

T/M
M/T
2M/ T
2T/M

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Theory of Structures
The strain energy stored in a spring when subjected to greatest load without being permanently distorted, is called

Proof resilience
Proof load
Stiffness
Proof stress

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Theory of Structures
The ratio of the area of cross-section of a circular section to the area of its core, is

11
14
15
16

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Theory of Structures
A close coil helical spring when subjected to a moment M having its axis along the axis of the helix

It is subjected to pure bending
Its mean diameter will decrease
All of these
Its number of coils will increase

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Theory of Structures
In case of a simply supported rectangular beam of span L and loaded with a central load W, the length of elasto-plastic zone of the plastic hinge, is

L/3
L/2
L/5
L/4

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Theory of Structures
For beams of uniform strength, if depth is constant,

Width b M 2
Width b M
Width b 3 M
Width b 1/M

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