1. A uniform rod of length L and mass 2m is free to rotate on a frictionless pin through its center of mass. At the end of rod on each side, there is a ball of radius 1/5 L and mass m attached to it. The system (rod+balls) is initially at rest in a horizontal position. A piece of clay of mass m/10 drops from a height h meters above the center of one of the ball, and sticks to the ball after the collision. Find (a) the rotational inertia of the ball-rod-ball system before the collision. (b) the angular velocity and angular acceleration of the system (ball-rod-ball plus the clay) right after the collision. 2 < clay

University Physics Volume 1
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Chapter11: Angular Momentum
Section: Chapter Questions
Problem 58P: Shown below is a small particle of mass 20 g that is moving at a speed of 10.0 m/s when it collides...
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1. A uniform rod of length L and mass 2m is free to rotate on a frictionless pin through
its center of mass. At the end of rod on each side, there is a ball of radius 1/5 L and
mass m attached to it.
The system (rod+balls) is initially at rest in a horizontal position. A piece of clay of
mass m/10 drops from a height h meters above the center of one of the ball,
and sticks to the ball after the collision.
Find
(a) the rotational inertia of the ball-rod-ball system before the collision.
(b) the angular velocity and angular acceleration of the system (ball-rod-ball plus the
clay) right after the collision.
B = clay
pin
Transcribed Image Text:1. A uniform rod of length L and mass 2m is free to rotate on a frictionless pin through its center of mass. At the end of rod on each side, there is a ball of radius 1/5 L and mass m attached to it. The system (rod+balls) is initially at rest in a horizontal position. A piece of clay of mass m/10 drops from a height h meters above the center of one of the ball, and sticks to the ball after the collision. Find (a) the rotational inertia of the ball-rod-ball system before the collision. (b) the angular velocity and angular acceleration of the system (ball-rod-ball plus the clay) right after the collision. B = clay pin
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