Multiple-Concept Example 12 deals with a situation that has similarities to this one and uses some of the same concepts that are needed here. See Concept Simulation 9.4 to review the principles involved in this problem. By means of a rope whose mass is negligible, two blocks are suspended over a pulley, as the drawing shows. The pulley can be treated as a uniform solid cylindrical disk. The downward acceleration of the 44.0-kg block is observed to be exactly 1/2 the acceleration due to gravity. Noting that the tension in the rope is not the same on each side of the pulley, find the mass of the pulley. 11.0 kg 44.0 kg Number Units

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 65P: A long, uniform rod of length L and mass M is pivoted about a frictionless, horizontal pin through...
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Multiple-Concept Example 12 deals with a situation that has similarities to this one and uses some of the same concepts that are needed
here. See Concept Simulation 9.4 to review the principles involved in this problem. By means of a rope whose mass is negligible, two
blocks are suspended over a pulley, as the drawing shows. The pulley can be treated as a uniform solid cylindrical disk. The downward
acceleration of the 44.0-kg block is observed to be exactly 1/2 the acceleration due to gravity. Noting that the tension in the rope is not
the same on each side of the pulley, find the mass of the pulley.
11.0
kg
44.0
kg
Number
Units
Transcribed Image Text:Multiple-Concept Example 12 deals with a situation that has similarities to this one and uses some of the same concepts that are needed here. See Concept Simulation 9.4 to review the principles involved in this problem. By means of a rope whose mass is negligible, two blocks are suspended over a pulley, as the drawing shows. The pulley can be treated as a uniform solid cylindrical disk. The downward acceleration of the 44.0-kg block is observed to be exactly 1/2 the acceleration due to gravity. Noting that the tension in the rope is not the same on each side of the pulley, find the mass of the pulley. 11.0 kg 44.0 kg Number Units
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