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Theory of Structures

Theory of Structures
The ratio of maximum and average shear stresses on a rectangular section, is

2.5
1.5
1.25
1

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Theory of Structures
The horizontal deflection of a parabolic curved beam of span 10 m and rise 3 m when loaded with a uniformly distributed load l t per horizontal length is (where Ic is the M.I. at the crown, which varies as the slope of the arch).

150/EIc
100/EIc
200/EIc
50/EIc

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Theory of Structures
A material is said to be perfectly elastic if

None of these
It regains its original shape partially on removal of the load
It does not regain its original shape at all
It regains its original shape on removal of the load

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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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Theory of Structures
The load on a spring per unit deflection, is called

Proof stress
Stiffness
Proof load
Proof resilience

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Theory of Structures
The ratio of the length and depth of a simply supported rectangular beam which experiences maximum bending stress equal to tensile stress, due to same load at its mid span, is

1/4
1/2
2/3
1/3

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