MHT CET · Physics · Mechanical Properties of Solids
A lift is tied with thick iron ropes having mass 'M'. The maximum acceleration of the lift is 'a' \(\mathrm{m} / \mathrm{s}^{2}\) and maximum safe stress is 's' \(\mathrm{N} / \mathrm{m}^{2}\). The minimum diameter of the rope is ( \(\mathrm{g}=\) acceleration due to gravity \()\)
- A \(\left[\frac{2 \mathrm{M}(\mathrm{g}+\mathrm{a})}{\pi \mathrm{s}}\right]^{\frac{1}{2}}\)
- B \(\left[\frac{2 \mathrm{M}(\mathrm{g}-\mathrm{a})}{\pi \mathrm{s}}\right]^{\frac{1}{2}}\)
- C \(\left[\frac{4 \mathrm{M}(\mathrm{g}+\mathrm{a})}{\pi \mathrm{s}}\right] \overline{\frac{1}{2}}\)
- D \(\left[\frac{4 \mathrm{M}(\mathrm{g}-\mathrm{a})}{\pi \mathrm{s}}\right] \frac{1}{2}\)
Answer & Solution
Correct Answer
(C) \(\left[\frac{4 \mathrm{M}(\mathrm{g}+\mathrm{a})}{\pi \mathrm{s}}\right] \overline{\frac{1}{2}}\)
Step-by-step Solution
Detailed explanation
\( T = M(g+a) \) \( d = \left[ \frac{4T}{\pi s} \right]^{\frac{1}{2}} = \left[ \frac{4M(g+a)}{\pi s} \right]^{\frac{1}{2}} \)
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