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A sphere of mass 10 kg and diameter 10 c...

A sphere of mass 10 kg and diameter 10 cm rolls without slipping with a velocity of 50 cm per second. Calculate its total kinetic energy.

Text Solution

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The correct Answer is:
1.75 J
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A solid sphere of mass 1 kg and radius 10 cm rolls without slipping with the uniform velocity of 100 cm per second along a straight line on a horizontal table. Calculate its total energy.

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Knowledge Check

  • A solid sphere of mass 1 kg and radius 10 cm rolls without slipping on a horizontal surface, with a velocity of 20 cm/s. The total kinetic energy of the sphere is

    A
    0.014 J
    B
    0.028 J
    C
    14 J
    D
    28 J
  • A solid sphere of mass 1 kg and radius 10 cm rolls without slipping on a horizontal surface, with a velocity of 20 cm/s. The total kinetic energy of the sphere is

    A
    0.014 J
    B
    0.028 J
    C
    14 J
    D
    28 J
  • A solid sphere of mass 10 kg and diameter 5 cm rolls without slipping on a smooth horizontal surface with velocity 5 cm/s. Its total kinetic energy is

    A
    `175 xx 10^(-4) J`
    B
    `175 xx 10^(-3) J`
    C
    `175 xx 10^(-5)J`
    D
    `175 xx 10^(-6)J`
  • Similar Questions

    Explore conceptually related problems

    A solid sphere of mass 500 gm and radius 10 cm rolls without slipping with the velocity 20cm/s. The total kinetic energy of the sphere will be

    A circular disc of mass 0.41 kg and radius 10 m rolls without slipping with a velocity of 2 m/s. The total kinetic energy of disc is

    A sphere of mass 0.5 kg and diameter 1 m rolls without sliding with a constant velocity of 5 m/s. What is the ratio of rotational KE to the total kinetic energy of the sphere ?

    If a solid sphere of mass 500 gram rolls without slipping with a velocity of 20 cm/s, then the rolling kinetic energy of the sphere will be

    A disc of mass 2 kg is rolling on a horizontal surface without slipping with a velocity of 0.1 m/s. What is its rotational kinetic energy?