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A particle is executing simple harmonic motion with a time period T.  At time t=0, it is at its position of equilibrium. The kinetic energy-time graph of the particle will look like :

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Important Questions on Simple Harmonic Motion

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Two masses m and m2 are connected at the two ends of a massless rigid rod of length . The rod is suspended by a thin wire of torsional constant k at the centre of mass of the rod-mass system (see figure). Because of torsional constant k, the restoring torque is τ=kθ. for angular displacement θ. If the rod is rotated by θ  and released, the tension in it when it passes through its mean position will be : 

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A particle is executing simple harmonic motion (SHM) of amplitude A, along the x -axis, about x=0. When its potential Energy PE equals kinetic energy KE, the position of the particle will be:
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A pendulum is executing simple harmonic motion and its maximum kinetic energy is K1. If the length of the pendulum is doubled and it performs simple harmonic motion with the same amplitude as in the first case, its maximum kinetic energy is K2 Then:
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A highly rigid cubical block A of small mass M and side L is fixed rigidly on to another cubical block B of the same dimensions and of low modulus of rigidity η such that the lower face of A completely covers the upper face of B. The lower face of B is rigidly held on a horizontal surface. A small force F is applied perpendicular to one of the side faces of A. After the force is withdrawn, block A executes small oscillations, the time-period of which is given by

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A cylindrical piston of mass M slides smoothly inside a long cylinder closed at one end, enclosing a certain mass of a gas. The cylinder is kept with its axis horizontal. If the piston is disturbed from its equilibrium position, it oscillates simple harmonically. The period of oscillation will be (process is isothermal)

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A U-tube contains mercury of total length 2l as shown and is disturbed so that it oscillates back and forth from arm to arm. If we neglect friction, the period of oscillation is:

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A body executing simple harmonic motion has a maximum acceleration equal to 24 m s-2 and maximum velocity equal to 16 m s-1. The amplitude of the simple harmonic motion is:
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A particle of mass 10 grams is executing simple harmonic motion with an amplitude of 0.5 m and periodic time of (π/5) seconds. The maximum value of the force acting on the particle is