Question 19: A particle of mass m coming with velocity vo hits the center of mass of a uniform rod of mass M and length L on a horizontal frictionless table as shown in Figure 11. The collision is completely inelastic. The rod is pivoted at point P, the left end. The moment of inertia of the rod about the pivot is Ip =ML². Find the angular velocity of the system after the collision. М, L P L/2 Figure 11

University Physics Volume 1
18th Edition
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 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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Question 19: A particle of mass m coming with velocity vo hits the center of
mass of a uniform rod of mass M and length L on a horizontal frictionless table
as shown in Figure 11. The collision is completely inelastic. The rod is pivoted
at point P, the left end. The moment of inertia of the rod about the pivot is
Ip = ML². Find the angular velocity of the system after the collision.
M, L
P
L/2
Figure 11
Transcribed Image Text:Question 19: A particle of mass m coming with velocity vo hits the center of mass of a uniform rod of mass M and length L on a horizontal frictionless table as shown in Figure 11. The collision is completely inelastic. The rod is pivoted at point P, the left end. The moment of inertia of the rod about the pivot is Ip = ML². Find the angular velocity of the system after the collision. M, L P L/2 Figure 11
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