The relation \(3t = \sqrt{3x} + 6\) describes the displacement of a particle in one direction where \(x\) is in metres and \(t\) in seconds. The displacement, when velocity is zero, is:
| 1. | \(24\) metres | 2. | \(12\) metres |
| 3. | \(5\) metres | 4. | zero |
The average velocity of a body moving with uniform acceleration travelling a distance of \(3.06\ \text{m}\) is \(0.34\ \text{ms}^{–1}\). If the change in velocity of the body is \(0.18\ \text{ms}^{–1}\) during this time, its uniform acceleration is:
1. \(0.01\ \text{ms}^{–2}\)
2. \(0.02\ \text{ms}^{–2}\)
3. \(0.03\ \text{ms}^{–2}\)
4. \(0.04\ \text{ms}^{–2}\)
The displacement of a particle is proportional to the cube of the time elapsed. How does the acceleration of the particle depends on time obtained?
1. \(𝑎
∝
t^
2
\)
2. \(𝑎
∝
𝑡^
4
\)
3. \(𝑎
∝
𝑡
^3\)
4. \(𝑎
∝
𝑡
\)
Starting from rest, the acceleration of a particle is \(𝑎 = 2 ( 𝑡 − 1 )\). The velocity of the particle at \(𝑡 = 5\ \text{𝑠}\) is:
1. \(15\ \text{m/s}\)
2. \(25\ \text{m/s}\)
3. \(5\ \text{m/s}\)
4. None of these
A particle moves along the x-axis as \({x}=4({t}-2)+{a}({t}-2)^2.\)Which of the following is true?
| 1. | The initial velocity of the particle is \(4\) |
| 2. | The acceleration of the particle is \(2a\) |
| 3. | The particle is at the origin at \( t = 0\) |
| 4. | None of these |
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. \(10\ \text{s}\)
A ball is dropped on the floor from a height of 10 m. It rebounds to a height of 2.5 m. If the ball is in contact with the floor for 0.01 sec, the average acceleration during contact is
1. 2100 m/sec2 downwards
2. 2100 m/sec2 upwards
3. 1400 m/sec2
4. 700 m/sec2
A ball is released from the top of a tower of height h meters. It takes T seconds to reach the ground. What is the position of the ball in T/3 seconds?
1. h/9 meters from the ground
2. 7h/9 meters from the ground
3. 8h/9 meters from the ground
4. 17h/18 meters from the ground
A particle moving in a straight line covers half the distance with a speed of \(3~\text{m/s}\). The other half of the distance is covered in two equal time intervals with speeds of \(4.5~\text{m/s}\) and \(7.5~\text{m/s}\) respectively. The average speed of the particle during this motion is:
1. \(4.0~\text{m/s}\)
2. \(5.0~\text{m/s}\)
3. \(5.5~\text{m/s}\)
4. \(4.8~\text{m/s}\)
If a ball is thrown vertically upwards with speed u, the distance covered during the last t seconds of its ascent is
1.
2.
3.
4.