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Q.Prove that the principle of conservation of linear momentum. A shell of mass 0.02Kg is fired by a gun of mass 100 Kg. If the muzzle speed of the shell is 80ms^-1, what is the recoil speed of the gun? (3+2=5) OR Explain Newton's second law of motion. A 20gm bullet moving at 300m/s stops after penetrating 3cm of bone. Calculate the average force exerted by the bullet. (3+2=5)

Manipur CohsemCouncil of Higher Secondary Education, Manipur (Higher Secondary 1st Year) 2024Subjective· 5mImportance★★★★★
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Since the gun+shell system starts at rest with zero total momentum, and momentum is conserved (no external horizontal force), the shell's forward momentum must be exactly balanced by the gun's backward (recoil) momentum, giving a recoil speed of 0.016 m/s.

Proof of conservation of linear momentum (for a two-body system):

Consider two bodies of masses m1 and m2 interacting with each other (e.g., during a collision or explosion), with no external force acting on the system. By Newton's third law, the force F12 that body 1 exerts on body 2 is equal and opposite to the force F21 that body 2 exerts on body 1:

F12 = −F21

By Newton's second law, F = dp/dt, so:

dp2/dt = −dp1/dt

⟹ d(p1 + p2)/dt = 0

⟹ p1 + p2 = constant

This shows that the total linear momentum of an isolated system (no external force) remains constant — this is the law of conservation of linear momentum. It holds regardless of the internal forces (however complicated) between the bodies, as long as no external force acts on the system as a whole.

Application — gun and shell: …

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