A mass ‘\(m\)’ is supported by a massless string wound around a uniform hollow cylinder of mass \(m\) and radius \(R\). If the string does not slip on the cylinder, with what acceleration will the mass fall on release?
1. \(\frac{g}{2}\)
2. \(\frac{5g}{6}\)
3. \(g\)
4. \(\frac{2g}{3}\)
1. | Weight of the objects everywhere on the earth will decrease |
2. | Weight of the objects everywhere on the earth will increase |
3. | Except at the poles weight of the object on the earth will decrease |
4. | There will be no change in weight anywhere on the earth. |
1. | \(12\) | 2. | \(14\) |
3. | \(16\) | 4. | \(18\) |
1. | \(94.10\) rad/s2 | 2. | \(72.5\) rad/s2 |
3. | \(14.50\) rad/s2 | 4. | \(94.50\) rad/s2 |