A block (mass = 1.9 kg) is hanging from a massless cord that is wrapped around a pulley (moment of inertia = 1.2  10-3 kg · m2), as the drawing shows. Initially the pulley is prevented from rotating and the block is stationary. Then, the pulley is allowed to rotate as the block falls. The cord does not slip relative to the pulley as the block falls. Assume that the radius of the cord around the pulley remains constant at a value of 0.045 m during the block's descent. Find the angular acceleration of the pulley and the tension in the cord.

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter10: Rotational Motion
Section: Chapter Questions
Problem 46P: A playground merry-go-round of radius R = 2.00 m has a moment of inertia I = 250 kg m2 and is...
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A block (mass = 1.9 kg) is hanging from a massless cord that is wrapped around a pulley (moment of inertia = 1.2  10-3 kg · m2), as the drawing shows. Initially the pulley is prevented from rotating and the block is stationary. Then, the pulley is allowed to rotate as the block falls. The cord does not slip relative to the pulley as the block falls. Assume that the radius of the cord around the pulley remains constant at a value of 0.045 m during the block's descent. Find the angular acceleration of the pulley and the tension in the cord.

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