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Read the assertion and reason carefully to mark the correct option out of the options given below:

Assertion (A): The average and instantaneous velocities have the same value in a uniform motion.
Reason (R): In uniform motion, the velocity of an object increases uniformly.
 
1. Both (A) and (R) are true and (R) is the correct explanation of (A).
2. Both (A) and (R) are true but (R) is not the correct explanation of (A).
3. (A) is true but (R) is false.
4. (A) is false but (R) is true.

Subtopic:  Average Speed & Average Velocity |
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A car travels a distance S on a straight road in two hours and then returns to the starting point in the next three hours. Its average velocity is

1. S/5

2. 2S/5

3. S/2 + S/3

4. None of the above

Subtopic:  Average Speed & Average Velocity |
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A particle moves along the sides \(AB,BC,CD\) of a square of side \(25~\text{m}\) with a speed of \(15~\text{ms}^{-1}\). Its average velocity is:


1. \(15~\text{ms}^{-1}\)
2. \(10~\text{ms}^{-1}\)
3. \(7.5~\text{ms}^{-1}\)
4. \(5~\text{ms}^{-1}\)

Subtopic:  Average Speed & Average Velocity |
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A body has speed V, 2V and 3V in first 1/3 of distance S, second 1/3 of S and third 1/3 of S respectively. Its average speed will be

1. V

2. 2V

3. 1811V

4. 1118V 

Subtopic:  Average Speed & Average Velocity |
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If the body covers one-third distance at speed v1, next one third at speed v2 and last one third at speed v3, then average speed will be

1. v1v2+v2v3+v3v1v1+v2+v3

2. v1+v2+v33

3. v1v2v3v1v2+v2v3+v3v1

4. 3v1v2v3v1v2+v2v3+v3v1  

Subtopic:  Average Speed & Average Velocity |
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The displacement of the particle varies with time according to the relation x=kb[1ebt]. Then the velocity of the particle is

1. k(ebt)

2. kb2ebt

3. kbebt

4. None of these 

Subtopic:  Instantaneous Speed & Instantaneous Velocity |
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The acceleration of a particle starting from rest varies with time according to the relation \(A= - a\omega^2\sin \omega t\). The displacement of this particle at a time \(t\) will be:
1. \(-\frac{1}{2}\left(a\omega^2\sin\omega t\right)t^2\) 2. \(a\omega \sin \omega t\)
3. \(a\omega \cos \omega t\) 4. \(a\sin \omega t\)
Subtopic:  Non Uniform Acceleration |
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If the velocity of a particle is (10 + 2t2) m/s, then the average acceleration of the particle between 2 sec and 5 sec is:

1. 2 m/s2

2. 4 m/s2

3. 12 m/s2

4. 14 m/s2

Subtopic:  Acceleration |
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A thief is running away on a straight road in a jeep moving with a speed of \(9\) m/s. A policeman chases him on a motorcycle moving at a speed of \(10\) m/s. If the instantaneous separation of the jeep from the motorcycle is \(100\) m, how long will it take for the policeman to catch the thief?
1. \(1\) s
2. \(19\) s
3. \(90\) s
4. \(100\) s

Subtopic:  Relative Motion in One Dimension |
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A car A is travelling on a straight level road with a uniform speed of 60 km/h. It is followed by another car B which is moving with a speed of 70 km/h. When the distance between them is 2.5 km, the car B is given a deceleration of 20 km/h2. After how much time will B catch up with A

1. 1 hr

2. 1/2 hr

3. 1/4 hr

4. 1/8 hr

Subtopic:  Acceleration |
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