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Theory of Structures

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/5
L/2
L/4
L/3

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Theory of Structures
The area of the core of a column of cross sectional area A, is

(1/6) A
(1/18) A
(1/3) A
(1/12) A

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Theory of Structures
At yield point of a test piece, the material

Behaves in an elastic manner
Undergoes plastic deformation
Obeys Hooke’s law
Regains its original shape on removal of the load

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Theory of Structures
The moment of inertia of a triangular section (height h, base b) about its base, is

b²h/12
bh²/12
b³h/12
bh³/12

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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

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

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Theory of Structures
A cantilever of length ‘L’ is subjected to a bending moment ‘M’ at its free end. If EI is the flexural rigidity of the section, the deflection of the free end, is

ML²/3EI
ML²/2EI
ML/2EI
ML/EI

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