A cord is wound around the circumference of a wheel of radius . The axis of the wheel is horizontal and the moment of inertia about it is. A weight is attached to the cord at the end. The weight falls from rest. After falling through a distance ‘’, the square of the angular velocity of the wheel will be: (there is no slipping between the wheel and the cord).
Step 1. Given data and free body diagram:
Initial potential energy of the (block + pulley) system
Final potential energy of the (block + pulley) system
Initial kinetic energy of the system
Final kinetic energy of the system
Radius of wheel
Moment of inertia of wheel
Distance through which weight falls from A to B.
Step 2. Applying energy conservation between point A and B, we get:
Thus, the square of the angular velocity of the wheel will be, .
Hence, correct option is (C).