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Question 53 of 59

Q.(a) State and explain work energy principle. Mention any three examples for it. OR

(b) Define coefficient of Performance. Explain in detail the working of a refrigerator.
Puducherry TnboardTamil Nadu HSC First Year (DGE) Board 2024Subjective· 5mImportance★★★★★
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The work-energy theorem states that the net work done on a body by all forces equals the change in its kinetic energy, W_net = KE_final − KE_initial.

Statement: The work done by the net force acting on a body is equal to the change produced in the kinetic energy of the body.

Proof: Consider a body of mass m moving under a net force F, with instantaneous velocity v and acceleration a = F/m.

The small work done over a small displacement dx is:

dW = F dx = m a dx = m (dv/dt) dx = m dv (dx/dt) = m v dv

Integrating as the body's speed changes from an initial value vi to a final value vf:

W = ∫(vi to vf) m v dv = m [v^2/2] from vi to vf = (1/2) m vf^2 - (1/2) m vi^2

So:

W_net = KE_final - KE_initial = ΔKE

This is the work-energy theorem/principle.

Examples:

  1. A moving car applies its brakes: the work done by the (negative) frictional force removes kinetic energy until the car stops. …

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