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Theory of Structures

Theory of Structures
In plastic analysis, the shape factor for a triangular section, is

1.34
2.34
1.5
2.5

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Theory of Structures
A rolled steel joist is simply supported at its ends and carries a uniformly distributed load which causes a maximum deflection of 10 mm and slope at the ends of 0.002 radian. The length of the joist will be,

16 m
13 M
15 M
14 M

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Theory of Structures
In case of principal axes of a section

Sum of moment of inertia is zero
Difference of moment inertia is zero
Product of moment of inertia is zero
None of these

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Theory of Structures
The eccentricity (e) of a hollow circular column, external diameter 25 cm, internal diameter 15 cm for an eccentric load 100 t for non-development of tension, is

3.50 cm
2.75 cm
3.00 cm
4.25 cm

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Theory of Structures
An isolated load W is acting at a distance a from the left hand support, of a three hinged arch of span 2l and rise h hinged at the crown, the horizontal reaction at the support, is

Wa/2h
2W/ha
Wa/h
2h/Wa

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

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

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