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Q.A ball is drop from height h, it bounces 80% of its original height. How much mechanical energy lost?

Manipur CohsemCouncil of Higher Secondary Education, Manipur (Higher Secondary 1st Year) 2025Subjective· 1mImportance★★★★★
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The ball's height after the bounce is 80% of the original, so its energy after the bounce is 80% of the original — meaning 20% of the mechanical energy is lost.

Before the bounce, the ball is dropped from height hh, so all its energy at that point is gravitational potential energy:

Ei=mghE_i = mgh

After the bounce, it rises to only 80% of the original height, i.e. h′=0.8hh' = 0.8h. At that new maximum height, all its (reduced) kinetic energy from the bounce has again converted to potential energy:

Ef=mg(0.8h)=0.8 mghE_f = mg(0.8h) = 0.8\,mgh

The mechanical energy lost (converted to heat, sound, and deformation during the bounce) is: …

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