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A compressed spring is held near a small toy car of mass 0.15 kg. On the release of the spring, the toy car moves forward with a velocity of 10 ms−1. Find the potential energy of the spring.

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Question

A compressed spring is held near a small toy car of mass 0.15 kg. On the release of the spring, the toy car moves forward with a velocity of 10 ms−1. Find the potential energy of the spring.

Numerical
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Solution

By conservation of energy, the spring’s potential energy changes into the toy car’s kinetic energy.

\[\text{P.E. of spring} = \text{K.E. of car} = \frac{1}{2}mv^2\]

\[= \frac{1}{2} \times 0.15 \times 10^2\]

= 7.5 J

Therefore, the potential energy of the spring is 7.5 J.

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Chapter 2: Work, Power and Energy - NUMERICAL PROBLEMS ON WORK, POWER AND ENERGY [Page 37]

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Goyal Brothers Prakashan A New Approach to ICSE Physics [English] Class 10
Chapter 2 Work, Power and Energy
NUMERICAL PROBLEMS ON WORK, POWER AND ENERGY | Q 1. | Page 37
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