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Theory of Structures

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

1.5
2.5
1.25
1

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Theory of Structures
In case of principal axes of a section

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

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Theory of Structures
If Q is load factor, S is shape factor and F is factor of safety in elastic design, the following:

Q = S – F
Q = S + F
Q = F – S
Q = S × F

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Theory of Structures
A truss containing j joints and m members, will be a simple truss if

j = 3m – 2
j = 2m – 3
m = 2j – 3
m = 3j – 2

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Theory of Structures
The general expression for the B.M. of a beam of length l is the beam carries M = (wl/2) x – (wx²/2)

None of these
A load varying linearly from zero at one end to w at the other end
An isolated load at mid span
A uniformly distributed load w/unit length

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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

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

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