1. | 2. | ||
3. | 4. |
A particle is moving such that its position coordinates (x, y) are ( m, m) at time ( m, m) at time s, and ( m, m) at time s. The average velocity vector from 0 to s is:
1.
2.
3.
4.
A stone falls freely under gravity. It covers distances and in the first seconds, the next seconds and the next seconds respectively. The relation between and is:
1. | |
2. | and |
3. | |
4. |
1. | 2. | zero | |
3. | 4. |
A particle has initial velocity and acceleration . The magnitude of velocity after s will be:
1.The motion of a particle along a straight line is described by the equation where is in meter and in seconds. The retardation of the particle, when its velocity becomes zero, is:
1. ms-2
2. zero
3. ms-2
4. ms-2
1. | 20 m/s | 2. | 40 m/s |
3. | 5 m/s | 4. | 10 m/s |
A particle covers half of its total distance with speed ν1 and the rest half distance with speed ν2.
Its average speed during the complete journey is:
1.
2.
3.
4.
A ball is dropped from a high-rise platform at starting from rest. After seconds, another ball is thrown downwards from the same platform with speed . The two balls meet after seconds. What is the value of ?
1. | ms-1 | 2. | ms-1 |
3. | ms-1 | 4. | ms-1 |
A particle moves a distance in time according to equation The acceleration of the particle is proportional to:
1. (velocity)
2. (distance)
3. (distance)
4. (velocity)