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A particle performs SHM of amplitude A a...

A particle performs `SHM` of amplitude `A` along a straight line .When it is at a distance of `sqrt(3)/(2)`A from mean position its kinetic energy gets increased by an amount of `(1)/(2) m omega^(2)A^(2)` due to an impulsive force. Then its new amplitude becomes

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A particle performs SHM of amplitude A along a straight line .When it is a distance sqrt(3)/(2) A from mean position its kinetic energy gats increase by on amount (1)/(2) m omega^(2)A^(2) due to an implusive force. Then its new amplitude because

A particle performs SHM of amplitude A along a straight line. When it is at distance sqrt(3)/2 A from mean position, its kinetic energy gets increased by an amount 1/2momega^(2)A^(2) due to an impulsive force. Then its new amplitude becomes.

A particle performs SHM of amplitude A along a straight line. When it is at distance sqrt(3)/2 A from mean position, its kinetic energy gets increased by an amount 1/2momega^(2)A^(2) due to an impulsive force. Then its new amplitude becomes.

A particle performing SHM with amplitude 10cm . At What distance from mean position the kinetic energy of the particle is thrice of its potential energy ?

A particle performing SHM with amplitude 10cm . At What distance from mean position the kinetic energy of the particle is thrice of its potential energy ?

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A particle is executing SHM along a straight line. Its velocities at distance X_(1) and X_(2) from mean position are V_(1) and V_(2) , respectively. Its time period is :

If A is amplitude of a particle in SHM, its displacement from the mean position when its kinetic energy is thrice that to its potential energy

If A is amplitude of a particle in SHM, its displacement from the mean position when its kinetic energy is thrice that to its potential energy