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Theory of Structures

Theory of Structures
The locus of the end point of the resultant of the normal and tangential components of the stress on an inclined plane, is

Circle
Ellipse
Straight line
Parabola

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Theory of Structures
At any point of a beam, the section modulus may be obtained by dividing the moment of inertia of the section by

Maximum tensile stress at the section
Depth of the section
Depth of the neutral axis
Maximum compressive stress at the section

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

St. Venant
Guest or Trecas
Rankine
Von Mises

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Theory of Structures
The assumption in the theory of bending of beams is:

Material is homogeneous
Material is isotropic
All of these
Young’s modulus is same in tension as well as in compression

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Theory of Structures
A cantilever of length 2 cm and depth 10 cm tapers in plan from a width 24 cm to zero at its free end. If the modulus of elasticity of the material is 0.2 × 106 N/mm², the deflection of the free end, is

3 mm
4 mm
5 mm
2 mm

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Theory of Structures
For the close coil helical spring of the maximum deflection is

4W²D3n/d4N
2WD3n/d4N
8WD3n/d4N
WD3n/d4N

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