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A mass M is performing linear simple harmonic motion, then correct graph for acceleration 'a' and corresponding linear velocity 'v' is

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Important Questions on Simple Harmonic Motion

HARD
JEE Main/Advance
IMPORTANT
Two identical springs are fixed at one end and masses 1kg and 4kg are suspended at their other ends. They are both stretched down from their mean position and let go simultaneously. If they are in the same phase after every 4 seconds then the springs constant k is
MEDIUM
JEE Main/Advance
IMPORTANT
A particle is subjected to two simple harmonic motions along x and y directions according to, x = 3 sin 100 πt; Y = 4 sin 100πt.
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JEE Main/Advance
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A ball is suspended by a thread of length L at the point O on the wall PQ which is inclined to the vertical through an angle α. The thread with the ball is now displaced through a small angle β away from the vertical and the wall. If β<α, then the time period of oscillation of the pendulum will be

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EASY
JEE Main/Advance
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A cage of mass M hangs from a light spring of force constant k. A body of mass m falls from height h inside the cage and sticks to its floor. 

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In the above problem, the frequency of oscillations of the cage will be:

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JEE Main/Advance
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Two blocks of masses 3kg and 6kg rest on a horizontal smooth surface. The 3kg block is attached to a spring with a force constant k=900Nm-1 which is compressed 2m from beyond the equilibrium position. The 6kg block is at rest at 1m from mean position. 3kg mass strikes the 6kg mass and the two stick together.

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JEE Main/Advance
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The particle executing SHM in a straight line has velocities 8 m s-17 m s-14 m s-1at three points distance one metre fro each other. If maximum velocity of the particle is 13α. Find α
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JEE Main/Advance
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The displacement of a particle varies with time as x=12 sin ωt16 sin3ωt cm. If its motion is SHM, if maximum acceleration 9aω2. Find a
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JEE Main/Advance
IMPORTANT
In the figure shown, the block A collides with the block B and after collision they stick together. Calculate the amplitude of resultant vibration in cm. Given m=1 kg, k=2 N cm1, u=6 cm sec1

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