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The total energy of a particle vibrating...

The total energy of a particle vibrating in SHM is proportional to the square of its………..

A

velocity

B

acceleration

C

amplitude

D

none of these

Text Solution

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The correct Answer is:
A
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Knowledge Check

  • If the velocity of a particle moving along a straight line is directly proportional to the square of its distance from a fixed point on the line . Then its acceleration is proportional to ………………….

    A
    s
    B
    `s^(2)`
    C
    `s^(3)`
    D
    `s^(4)`
  • The allowed energy for the particle for a particular value of n is proportional to

    A
    `a^(-2)`
    B
    `a^(-3/2)`
    C
    `a^(-1)`
    D
    `a^(2)`
  • The speed of the particle, that can take discrete values is proportional to

    A
    `n^(-3/2)`
    B
    `n^(-1)`
    C
    `n^(1/2)`
    D
    n
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    Energy of the sound wave is proportional to ___________ .

    The ratio of kinetic energy to the potential energy of a particle executing SHM at a distance equal to half its amplitude, the distance being measured from its equilibrium position is:

    The kinetic energy of a particle, executing SHM, is 16 J when it is at its mean position. If the amplitude of oscillations is 25 cm, and the mass of the particle is 5.12 kg, the time period of its oscillation is………….