Examveda
Examveda

$${\text{P}} = \frac{{4{\pi ^2}{\text{E}}I}}{{{{\text{L}}^2}}}$$   is the equation of Euler's crippling load if

A. Both the ends are fixed

B. Both the ends are hinged

C. One end is fixed and other end is free

D. One end is fixed and other end is hinged

Answer: Option A


This Question Belongs to Civil Engineering >> Theory Of Structures

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Comments ( 1 )

  1. Algaj Hossain
    Algaj Hossain :
    3 years ago

    k=0.5 for fixed support and thereby A is the correct ans

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Y are the bending moment, moment of inertia, radius of curvature, modulus of If M, I, R, E, F and elasticity stress and the depth of the neutral axis at section, then

A. $$\frac{{\text{M}}}{{\text{I}}} = \frac{{\text{R}}}{{\text{E}}} = \frac{{\text{F}}}{{\text{Y}}}$$

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