1. A thin stick (m, ) has a pin through the bottom about which it can freely rotate and a massless rubber bumper at the top. The stick is released from rest in the vertical orientation and falkto the horizontal floor below. (It falls because a fly nearby burps.) The coefficient of restitution between the rubber bumper and floors is 1/3. Determine the angular speed of the stick immediately after it bounces from the floor.

University Physics Volume 1
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ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter11: Angular Momentum
Section: Chapter Questions
Problem 83AP: A 4.0-kg particle moves in a circle of radius 2.0 m. The angular momentum of the particle varies in...
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1. A thin stick (m, ) has a pin through the bottom about which it can freely rotate and a massless rubber bumper
at the top. The stick is released from rest in the vertical orientation and falkto the horizontal floor below. (It falls
because a fly nearby burps.) The coefficient of restitution between the rubber bumper and floors is 1/3.
Determine the angular speed of the stick immediately after it bounces from the floor.
Transcribed Image Text:1. A thin stick (m, ) has a pin through the bottom about which it can freely rotate and a massless rubber bumper at the top. The stick is released from rest in the vertical orientation and falkto the horizontal floor below. (It falls because a fly nearby burps.) The coefficient of restitution between the rubber bumper and floors is 1/3. Determine the angular speed of the stick immediately after it bounces from the floor.
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