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1. |
A concentrated load P is applied at the end of a cantilever as shown in figure. The cross section of the beam is a square of side ‘a’ with a hole of a dia ‘a/2’. The deflection at the tip of the cantilever is given by |
A. | \(\frac{{3P}}{E}\frac{{{L^3}}}{{{a^4}}}\) |
B. | \(\frac{{1024P}}{{\left( {256 - 3\pi } \right)E}}\frac{{{L^3}}}{{{a^4}}}\) |
C. | \(\frac{{1024P}}{{\left( {256 - \frac{\pi }{{64}}} \right)E}}\frac{{{L^3}}}{{{a^4}}}\) |
D. | \(\frac{{256P}}{{\left( {1025 - 3\pi } \right)}}\frac{{{L^3}}}{{{a^4}}}\) |
Answer» C. \(\frac{{1024P}}{{\left( {256 - \frac{\pi }{{64}}} \right)E}}\frac{{{L^3}}}{{{a^4}}}\) | |