A string is wrapped around a thin-walled cylinder pulley of radius 10.4 cm and mass of 14.6 kg. If the string is pulled by a force that is tangent to a point on the rim of the pulley, how much force is exerted to cause it to rotate at a constant rate of 3.87 rad/s²? The moment of inertia for thin-walled cylinder is I = mr². 543 N O 0.611N O 5.88 N O 56.5 N

Physical Chemistry
2nd Edition
ISBN:9781133958437
Author:Ball, David W. (david Warren), BAER, Tomas
Publisher:Ball, David W. (david Warren), BAER, Tomas
Chapter6: Equilibria In Single-component Systems
Section: Chapter Questions
Problem 6.52E
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A string is wrapped around a thin-walled cylinder pulley of radius 10.4 cm and mass of 14.6
kg. If the string is pulled by a force that is tangent to a point on the rim of the pulley, how
much force is exerted to cause it to rotate at a constant rate of 3.87 rad/s²? The moment of
inertia for thin-walled cylinder is I = mr².
543 N
O 0.611N
O 5.88 N
O 56.5 N
Transcribed Image Text:A string is wrapped around a thin-walled cylinder pulley of radius 10.4 cm and mass of 14.6 kg. If the string is pulled by a force that is tangent to a point on the rim of the pulley, how much force is exerted to cause it to rotate at a constant rate of 3.87 rad/s²? The moment of inertia for thin-walled cylinder is I = mr². 543 N O 0.611N O 5.88 N O 56.5 N
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