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Q.The working of a rocket is based on the principle of (A) Elasticity
(B) Kepler's law
(C) Conservation of momentum
(D) Newton's law of gravitation

Manipur CohsemCouncil of Higher Secondary Education, Manipur (Higher Secondary 1st Year) 2020MCQ· 1mImportance★★★★★
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A rocket works by ejecting mass (exhaust gas) backward; the reaction/conservation of momentum this produces pushes the rocket forward — option (C).

A rocket carries its own fuel and oxidizer, and works by burning this propellant and ejecting the resulting hot gases backward through a nozzle at very high speed.

Consider the rocket + expelled gas as a system. Before ignition, the total momentum of this system (rocket + unburnt fuel) is whatever it was (zero, if initially at rest). As fuel burns and gas is ejected backward with momentum Δpgas\Delta p_{gas} (in the backward direction), conservation of momentum for the isolated rocket-gas system requires that the rocket itself gains an equal and opposite momentum Δprocket=−Δpgas\Delta p_{rocket} = -\Delta p_{gas}, i.e., a forward push.

This is precisely the principle of conservation of linear momentum (which is equivalent, in this context, to Newton's third law — the gas pushed backward by the rocket engine pushes the rocket forward in reaction).

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