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Theory of Structures

Theory of Structures
section modulus of a square section of side B and that of a circular section of the ratio of the diameter D, is

/16
3 /8
2 /15
3 /16

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Theory of Structures
Gradually applied static loads do not change with time their

Magnitude
Point of application
Direction
All of these

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Theory of Structures
The strain energy due to volumetric strain

Is directly proportional to the volume
Is directly proportional to the square of exerted pressure
All of these
Is inversely proportional to Bulk modulus

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Theory of Structures
Inertia of a rectangular section of width and depth about an axis passing the moment of through C.G. and parallel to its width is

BD³/12
BD²/6
BD³/6
B²D/6

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Theory of Structures
There are two hinged semicircular arches A, B and C of radii 5 m, 7.5 m and 10 m respectively and each carries a concentrated load W at their crowns. The horizontal thrust at their supports will be in the ratio of

1 : 1½ : 2
2 : 1½ : 1
None of these
1 : 1 : 2

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Theory of Structures
Shear strain energy theory for the failure of a material at elastic limit, is due to

Rankine
Guest or Trecas
St. Venant
Von Mises

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