A small block of mass \(m\) is pulled by a light rope on a quarter circular track, having radius \(R\). If the force applied on the rope is \(F\) always directed horizontally, then the work done by the force till the block reaches from \(A\) to \(B\) is:

                                  

1. \(FR\)
2. \(FR\sqrt{2}\)

3. \(2\pi F R\)
4. zero

Subtopic:  Work Done by Variable Force |
 61%
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A stone of mass m is thrown from the earth's surface at an angle α to the horizontal with an initial velocity v0. Ignoring the air drag, the power developed by gravitational force t second after the beginning of motion is:

(1)  mggt - v0sinα

(2)  mgv0sinα·t

(3)  mgg - vsinα·t

(4)  Zero

Subtopic:  Power |
 62%
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An ideal horizontal spring has been compressed by two masses of 1 kg and 4 kg at its ends placed on a frictionless table. The stored energy is 40 joule. If the spring is released, the lighter mass will acquire a speed of:

(1)  2 m/s

(2)  4 m/s

(3)  8 m/s

(4)  16 m/s

Subtopic:  Collisions |
 60%
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A car of mass 100 kg and traveling at 20 m/s collides with a truck weighing 1 tonne traveling at 9 km/h in the same direction. The car bounces back at a speed of 5 m/s. The speed of the truck after the impact will be:

1.  11.5 m/s

2.  5 m/s

3.  18 m/s

4.  12 m/s

Subtopic:  Collisions |
 70%
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If work done by the string on block A is W, shown in the given arrangement, then the work done by the string on block B is

                    

1.  -W

2.  -2W3

3.  3W2

4.  2W3

Subtopic:  Concept of Work |
 59%
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Which of the following remains unchanged (for the system) during an inelastic collision?

1. Mechanical energy 2. Kinetic energy
3. Momentum 4. All of the above.
Subtopic:  Collisions |
 78%
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The position (in meter) of a particle of mass 1 kg confined to move along the y-axis varies with time (in second) as y= t2 - 4t+ 5. The work done by all the forces acting on the particle during t = 0 to t = 4 s is

(1)  8 J

(2)  16 J

(3)  32 J

(4)  Zero

Subtopic:  Work Energy Theorem |
 61%
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A particle is dropped from a height of 50 m. If the particle loses its 20% mechanical energy during the impact with the ground, up to what height will it rebound after the second impact?

(1)  40 m

(2)  36 m

(3)  32 m

(4)  28 m

Subtopic:  Gravitational Potential Energy |
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A body of mass 2 kg is rotating in a vertical circle of radius 4 m. The difference in its kinetic energy at the top and bottom of the circle is:

(1)  40 J

(2)  80 J

(3)  120

(4)  160 J

Subtopic:  Work Energy Theorem |
 71%
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If a stone is projected vertically upward from the ground with a speed of \(10~\text{m/s}\), then its:
(take \(g=10\) m/s2)

1. Potential energy will be maximum at \(0.5~\text{s}.\)
2. Kinetic energy will be maximum again at \(1~\text{s}.\)
3. Kinetic energy = potential energy at a height of \(2.5~\text{m}\) from the ground.
4. Potential energy will be minimum at \(1~\text{s}.\)
Subtopic:  Gravitational Potential Energy |
 74%
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