A man is \(45\ \text{m}\) behind the bus when the bus starts accelerating from rest with an acceleration of \(2.5\ \text{m/s}^2\). With what minimum velocity should the man start running to catch the bus?
1. \(12\ \text{m/s}\)
2. \(14\ \text{m/s}\)
3. \(15\ \text{m/s}\)
4. \(16\ \text{m/s}\)
A \(120\ \text{m}\) long train is moving in a direction with speed \(20\ \text{m/s}\). A train \(B\), moving with \(30\ \text{m/s}\) in the opposite direction and \(130\ \text{m}\) long, crosses the first train in a time:
1. \(4\ \text{s}\)
2. \(36\ \text{s}\)
3. \(38\ \text{s}\)
4. \(5\ \text{s}\)
A \(210\) meter long train is moving due north at a speed of \(25\ \text{m/s}\). A small bird is flying due South a little above the train with a speed of \(5\ \text{m/s}\). The time taken by the bird to cross the train is:
1. \(6\ \text{s}\)
2. \(7\ \text{s}\)
3. \(9\ \text{s}\)
4. \(10\ \text{s}\)
The distance between two particles is decreasing at the rate of \(6\) m/sec when they are moving in the opposite directions. If these particles travel with the same initial speeds and in the same direction, then the separation increases at the rate of \(4\) m/sec. It can be concluded that particles' speeds could be:
1. \(5\) m/sec, \(1\) m/sec
2. \(4\) m/sec, \(1\) m/sec
3. \(4\) m/sec, \(2\) m/sec
4. \(5\) m/sec, \(2\) m/sec
A man in a balloon rising vertically with an acceleration of releases a ball 2 sec after the balloon is let go from the ground. The greatest height above the ground reached by the ball is
1. 14.7 m
2. 19.6 m
3. 9.8 m
4. 24.5 m
| 1. | It reaches \(\frac{H}{2}\) in \(\frac{T}{2}\) sec |
| 2. | It acquires velocity \(\frac{u}{2}\) in \(\frac{T}{2}\) |
| 3. | Its velocity is \(\frac{u}{2}\) at \(\frac{H}{2}\) |
| 4. | Same velocity at \(2T\) |
A ball of mass m1 and another ball of mass m2 are dropped from equal height. If time taken by the balls are t1 and t2 respectively, then
1.
2.
3.
4.
Velocity of a body on reaching the point from which it was projected upwards, is
1.
2.
3.
4.
Time taken by an object falling from rest to cover the height of h1 and h2 is respectively t1 and t2 . Then the ratio of t1 to t2 is
1. h1 : h2
2.
3. h1 : 2h2
4. 2h1 : h2
A particle when thrown moves such that it passes from the same height at 2 sec and 10 sec, the height is:
1. g
2. 2g
3. 5g
4. 10g