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qUESTIONS

12th-cet

The frequency f of oscillation of the two spring-mass system as shown is

12th-cet

A particle is executing simple harmonic motion with an amplitude A and time period T. The displacement of the particle after 2 period from its initial position is

12th-cet

The mass M shown in the figure oscillates in simple harmonic motion with amplitude A. The amplitude of the point P is

12th-cet

A body executing simple harmonic motion has a maximum acceleration equal to 24 ms¯² and maximum velocity of 16 ms-¹, the amplitude of the simple harmonic motion is

12th-cet

Two simple harmonic motions of angular frequency 100 rad/sec and 1000 rad/s have the same displacement amplitude. The ratio of their maximum acceleration is

12th-cet

If a body is executing simple harmonic motion then

12th-cet

The total energy of a simple harmonic oscillator is proportional to

12th-cet

A body executes simple harmonic motion. The potential energy (PE), the kinetic energy (KE) and total energy (TE) are measured as function of displacement x. Which of the following statement is true?

12th-cet

A particle performing SHM has time period 2π / √3 and path length 4 cm. The displacement from mean position at which acceleration is equal to velocity is

12th-cet

For a particle executing SHM, the displacement x is given by x = A cosωt. Identify the graph which represents the variation of potential energy (PE) as a function of time t and displacement x.

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