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At position, the acceleration of a part...

At _____ position, the acceleration of a particle executing SHM becomes zero.

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at equilibrium
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PATHFINDER-OSCILLATION AND WAVES-QUESTION BANK
  1. At points of its path, the velocity of a particle executing SHM becom...

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  2. At position, the velocity of a particle executing SHM becomes maximum...

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  3. At position, the acceleration of a particle executing SHM becomes zer...

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  4. At points of its path, the acceleration of a particle executing SHM b...

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  5. At position, the kinetic energy of a particle executing SHM becomes m...

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  6. At points of its path, the potential energy of a particle executing S...

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  7. Total mechanical energy of a simple pendulum is directly proportional ...

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  8. Total mechanical energy of a simple pendulum is inversely proportional...

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  9. Total mechanical energy of a simple pendulum is directly proportional ...

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  10. The bob of a pendulum is a hollow sphere. If it is filled half by wate...

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  11. The bob of a simple pendulum is mode of iron. A powerful magnetic pole...

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  12. For a particle executing SHM, the effective force is to displacement...

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  13. For a particle executing SHM, the total energy is always

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  14. For a SHM, the plane difference of velocity and displacement is and t...

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  15. M mass is having from a spring of force constant K time period is T =

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  16. The relation between effective maximum force and amplitude of a SHM is

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  17. Resonance is the special property of

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  18. The distance of the particle in simple harmonic motion is 2 cm from eq...

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  19. Time displacement equation of a simple harmonic motion is x=asin(omega...

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  20. Find the time period of a SHM whose equation is (d^2x)/(dt^2)+alphax=0

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