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A particle executes SHM with frequency f. The frequency of its kinetic energy is

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Important Questions on Simple Harmonic Motion

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When the kinetic energy of a body executing SHM is 13 of the potential energy, the displacement of the body is x percent of the amplitude where x is,
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A body executing SHM passes through its equilibrium. At this instant, it has,
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The total mechanical energy of a spring-mass system in simple harmonic motion is, E=12mω2A2. Suppose the oscillating particle is replaced by another particle of double mass while the amplitude A remains the same. The new mechanical energy will,
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The average energy in one time period in simple harmonic motion is,
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The displacement of a particle between maximum potential energy position and maximum kinetic energy position in simple harmonic motion
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The potential energy of a simple harmonic oscillator when the particle is halfway to its endpoint is where E is the total energy (Take potential energy to be zero at the mean position)

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A mass of 1 kg is suspended from a spring of force constant 400 N m-1, executing SHM total energy of the body is 2 J, then the maximum acceleration of the spring will be