Use conservation of energy to determine the angular speed of the spool shown in figure below after the 3.00-kg bucket has fallen 4.00 m, starting from rest. The light string attached to the bucket is wrapped around the spool and does not slip as it unwinds. The mass of the stool is M = 5.00kg and the radius is r 0.600m. The moment of inertia for %3D 1 the stool is I = -Mr2. %3D
Use conservation of energy to determine the angular speed of the spool shown in figure below after the 3.00-kg bucket has fallen 4.00 m, starting from rest. The light string attached to the bucket is wrapped around the spool and does not slip as it unwinds. The mass of the stool is M = 5.00kg and the radius is r 0.600m. The moment of inertia for %3D 1 the stool is I = -Mr2. %3D
Glencoe Physics: Principles and Problems, Student Edition
1st Edition
ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter8: Rotational Motion
Section8.2: Rotational Dynamics
Problem 36SSC
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