A cone filled with water is revolved in a vertical circle of radi

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 Multiple Choice QuestionsMultiple Choice Questions

191.

A body of mass m is moving towards the east and another body of equal mass is moving towards the north. If after collision both stick together, their speed after collision would be :

  • v

  • v/2

  • 2v

  • v2


192.

A body of mass 1 kg is moving in a vertical circular path of radius 1 m. The difference between the kinetic energies at its highest and lowest position is :

  • 20 J

  • 10 J

  • 45 J

  • 10(5 - 1) J


193.

When a man increases his speed by 2 m/s, he finds that his kinetic energy is doubled, the original speed of the man is :

  • 2(2 - 1) m/s

  • 2(2 + 1) m/s

  • 4.5 m/s

  • none of these


194.

A ball falling freely from a height of 4.9 m/s hits a horizontal surface. If e = ¾, then the ball will hit the surface second time after:

  • 0.5 s

  • 1.5 s

  • 3.5 s

  • 3.4 s


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195.

Hailstone at 0°C falls from a height of 1 km on an insulating surface converting the whole of its kinetic energy into heat. What part of it will melt? (g = 10 m/s2)

  • 1/33

  • 1/8

  • 13 × 10-4

  • All of it will melt


196.

Two bodies of masses m and 2 m have equal kinetic energies. The ratio of their linear momenta is :

  • 1

  • 1/2

  • 1/2

  • 2


197.

A ball of mass m elastically collides with a wall with velocity 'v', then change in its momentum is equal to :

  • 2m

  • 2mv

  • + 8mv

  • Zero


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198.

A cone filled with water is revolved in a vertical circle of radius 4 m and the water does not fall down. What must be the maximum period of revolution?

  • 2 sec

  • 4 sec

  • 1 sec

  • 6 sec


B.

4 sec

When a cone filled with water is revolved in a vertical circle, then the velocity at the highest point is given by

v  grv =  = r2πT

Hence, 2T  rg

T  2πrrg = 2πrg

 2 × 3.14 × 0.638 4.0 sec Tmax = 4 sec


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199.

A car and a container, moving with equal kinetic energies are stopped by applying a negative acceleration. Then

  • container will move less distance before being stopped

  • both will become stationary after moving some distance

  • car will move less distance before being stopped

  • none of the above


200.

The momentum of two masses m1 and m2 are same. The ratio of their kinetic energies E1 and E2 is

  • m1 : m2

  • m1 : m2

  • m2 : m1

  • m12 : m22 


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