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Q.Define coefficient of restitution and obtain its value for an elastic collision and a perfectly inelastic collision.

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The COEFFICIENT OF RESTITUTION e, for a head-on collision, is defined as the negative of the ratio of the relative velocity of separation (after collision) to the relative velocity of approach (before collision): e=−v2−v1u2−u1e=-\frac{v_2-v_1}{u_2-u_1} (4.8.3). For a PERFECTLY ELASTIC collision, both momentum and kinetic energy are conserved; combining these two conservation laws algebraically shows the relative velocity of approach exactly equals the relative velocity of separation in magnitude, giving e=1e=1. For a PERFECTLY INELASTIC collision, the two bodies move off together with a single common final velocity (v1=v2v_1=v_2), so the relative velocity of separation is exactly zero, giving e=0e=0. Since real collisions always dissipate some energy, the coefficient of restitution for any …

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