A ball is thrown upward with a certain speed. It passes through the same point at 3 second and 7 second from the start. The maximum height achieved by the ball is:
1. 500 m
2. 250 m
3. 125 m
4. 450 m
For the following acceleration versus time graph the corresponding velocity versus displacement graph is:
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The displacement xx of a particle moving in one dimension under the action of a constant force is related to time tt by the equation t=√x+3,t=√x+3, where xx is in meters and tt is in seconds. What is the displacement of the particle from t=0 st=0 s to t=6 s?t=6 s?
1. 00
2. 12 m12 m
3. 6 m6 m
4. 18 m18 m
The acceleration aa (in ms-2ms−2) of a body, starting from rest varies with time tt (in ss) as per the equation a=3t+4.a=3t+4. The velocity of the body at time t=2t=2 ss will be:
1. | 10 ms−110 ms−1 | 2. | 18 ms−1 |
3. | 14 ms−1 | 4. | 26 ms−1 |
A body thrown vertically so as to reach its maximum height in t second. The total time from the time of projection to reach a point at half of its maximum height while returning (in second) is:
1. √2t
2. (1+1√2)t
3. 3t2
4. t√2
A stone falls freely from rest from a height h and it travels a distance 9h25 in the last second. The value of h is:
1. 145 m
2. 100 m
3. 125 m
4. 200 ms
A point moves in a straight line under the retardation av2. If the initial velocity is u, the distance covered in t seconds is:
1. (aut)
2. 1aln(aut)
3. 1aln(1+aut)
4. a ln(aut)
A bullet loses 120 of its velocity passing through a plank. The least number of planks required to stop the bullet is: (All planks offers same retardation)
1. 10
2. 11
3. 12
4. 23
A body starts from the origin and moves along the X-axis such that the velocity at any instant is given by (4t3−2t), where t is in sec and velocity in m/s. What is the acceleration of the particle, when it is 2 m from the origin ?
1. 28 m/s2
2. 22 m/s2
3. 12 m/s2
4. 10 m/s2