A uniform thin spherical shell of mass M and radius R rotates about a vertical axis on frictionless bearings.  A massless cord passes around the equator of the shell, over a pulley of rotational inertia I and radius r, and is attached to a small object of mass m.  There is no friction on the pulley’s axle; the cord does not slip on the pulley.  Determine the expression for the speed of the object after it falls a distance h from rest.

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter13: Rotation Ii: A Conservation Approach
Section: Chapter Questions
Problem 49PQ: A turntable (disk) of radius r = 26.0 cm and rotational inertia0.400 kg m2 rotates with an angular...
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A uniform thin spherical shell of mass M and radius R rotates about a vertical axis on frictionless bearings.  A massless cord passes around the equator of the shell, over a pulley of rotational inertia I and radius r, and is attached to a small object of mass m.  There is no friction on the pulley’s axle; the cord does not slip on the pulley.  Determine the expression for the speed of the object after it falls a distance h from rest.

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