A suspended homogeneous rod AB of length, 75 cm and mass of 5 kg is rotating about one of its ends (A) at an angular velocity of 10.24 rad s". 1). Calculate the moment of inertia I of this rod. 2) What is the corresponding linear velocity of the free end, B? 3) The end B hits and sticks to a ball of radius R-12.5 cm and mass 850 g moving in the opposite direction with a linear velocity of 5.48 m.s". Use the principle of conservation of momentum to find the linear velocity of the ball-rod system after the collision. (Assume that the collision is inelastic).

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A suspended homogeneous rod AB of length, 75 cm and mass of 5 kg is rotating about one of its ends
(A) at an angular velocity of 10.24 rad s".
1). Calculate the moment of inertia I of this rod.
2) What is the corresponding linear velocity of the free end, B?
3) The end B hits and sticks to a ball of radius R-12.5 cm and mass 850 g moving in the opposite
direction with a linear velocity of 5.48 m.s". Use the principle of conservation of momentum to find
the linear velocity of the ball-rod system after the collision. (Assume that the collision is inelastic).
Transcribed Image Text:A suspended homogeneous rod AB of length, 75 cm and mass of 5 kg is rotating about one of its ends (A) at an angular velocity of 10.24 rad s". 1). Calculate the moment of inertia I of this rod. 2) What is the corresponding linear velocity of the free end, B? 3) The end B hits and sticks to a ball of radius R-12.5 cm and mass 850 g moving in the opposite direction with a linear velocity of 5.48 m.s". Use the principle of conservation of momentum to find the linear velocity of the ball-rod system after the collision. (Assume that the collision is inelastic).
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