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The spring shown in figure is unstretche...

The spring shown in figure is unstretched when a man starts pulling on the cord. The mass of the block is `M`. If the man exerts a constant force `F`, find

(a) the amplitude and the time period of the motion of the block,
(b) the energy stored in the spring when the block passes through the equilibrium position and
(c) the kinetic energy of the block at this position.

Text Solution

Verified by Experts

The correct Answer is:
`(F^2/k)`
`1/2F^2/k`

`a`. We hasve `f=kx`
`rarr x=F/k`
Acceleration `=F/m`
Time period `T=2pisqrt`(displacement)/Acceleration)
`=2pi (sqrt(F/k)/(F/m))=2sqrt(m/k)`
Amplitude =max displacement
`=F/k`
The energy stored in the springh when the block passes through the equilibrium position
`=1/2kx^2=1/2(F/k)^2`
`=1/2k(F^2/k^2)=(F^2/k)`
b. At the mean position P.E. is O.K.E. is
` 1/2kx^2=1/2F^2/k`
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HC VERMA-SIMPLE HARMONIC MOTION-Exercises
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  2. Find the time period of the oscillation of mass m in figure a,b,c wha...

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  4. A particle of mass m is attached to three springs A,B and C of equal f...

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  5. Repeat the previous exercise if the angle between each pair of springs...

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  7. Find the elastic potential energy stored in each spring shown in figu...

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  8. The string the spring and the puley shown in figure are light. Find th...

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  9. Solve the previous problem if the pulley has a moment of inertia I abo...

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  10. Consider the situastion shown in figure. Show that if that blocks are ...

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  11. A rectangular plate of sides a and b is suspended from a ceiling by tw...

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  12. A 1kg block is executing simple harmonic motion of amplitude 0.1 m on ...

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  18. State the laws of simple pendulum.

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