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A particle of mass m is released from re...

A particle of mass m is released from rest and follows a parabolic path as shown. Assuming that the displacement of the mass from the origin is small, which graph correctly depicts the position of the particle as a function of time?

A

B

C

D

Text Solution

Verified by Experts

The correct Answer is:
A

Graph of velocity versus position is parabolic.
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KUMAR PRAKASHAN-OSCILLATIONS-SECTION-E (MCQs ASKED IN GUJARAT BOARD AND COMPETITIVE EXAMS)
  1. A block of mass M is attached to the lower end of a vertical spring. T...

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  2. The displacement of particle along the X-axis is given by x= a sin^(2)...

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  3. A particle of mass m is released from rest and follows a parabolic pat...

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  4. Out of the following functions representing motion of a particle which...

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  5. Two particle are oscillating along two close parallel straight lines s...

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  6. What is the maximum speed of a particle executing SHM with amplitude o...

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  7. A large horizontal surface moves up and down in SHM with an amplitude ...

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  8. If a simple pendulum oscillates with an amplitude of 50 mm and time pe...

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  9. If the period of oscillation of mass m suspended from a spring 2s, the...

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  10. A particle executes simple harmonic motion with an angular velocity an...

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  11. Two springs are connected to a block of mass M is placed on a friction...

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  12. Which of the following functions of time represent (a) simple harmonic...

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  13. A horizontal surface moves up and down in SHM with an amplitude of 1 c...

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  14. A particle executes SHM of period T and amplitude l along a rod AB of ...

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  15. A ball is suspended by a thread of length L at the point O on a wall w...

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  16. Let T(1)" and "T(2) be the time periods of spring A and B when mass M ...

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  17. In the equation of motion of waves in x-direction is given by y= 10^(-...

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  18. Total energy of SHM particle…….

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  19. Two springs of spring constant k(1)" and "k(2) are joined in series. H...

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  20. Two simple harmonic motion are represented by the equation y(1)= 0.1 s...

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