The figure shows a block of mass m = 2.60 kg hanging from a thin rope wrapped around a solid, disk-shaped pulley. The pulley has mass M = 8.80 kg, radius R = 0.127 m, and is free to rotate on a frictionless, horizontal axle. If the block is released from rest, determine the magnitude of its downward acceleration. M 3.8 |× m/s²

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
Chapter3: Motion In Two Dimensions
Section: Chapter Questions
Problem 30P: A point on a rotating turntable 20.0 cm from the center accelerates from rest to a final speed of...
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ADDITIONAL PROBLEMS
Question 8.2a:
The figure shows a block of mass m =
2.60 kg hanging from a thin rope wrapped around a solid, disk-shaped pulley. The pulley has mass M = 8.80 kg, radius
0.127 m, and is free to rotate on a frictionless, horizontal axle. If the block is released from rest, determine the magnitude of its downward acceleration.
R =
R
M
3.8
|× m/s²
Transcribed Image Text:ADDITIONAL PROBLEMS Question 8.2a: The figure shows a block of mass m = 2.60 kg hanging from a thin rope wrapped around a solid, disk-shaped pulley. The pulley has mass M = 8.80 kg, radius 0.127 m, and is free to rotate on a frictionless, horizontal axle. If the block is released from rest, determine the magnitude of its downward acceleration. R = R M 3.8 |× m/s²
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