Two wheels A and B in the figure are connected by a belt that does not slip. The radius of B is 6.03 times the radius of A. What would be the ratio of the rotational inertias lA/Ig if the two wheels had (a) the same angular momentum and (b) the same rotational kinetic energy? B • (a) Number i Units (b) Number i Units >

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter12: Rotation I: Kinematics And Dynamics
Section: Chapter Questions
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Two wheels A and B in the figure are connected by a belt that does not slip. The radius of B is 6.03 times the radius of A. What would be the ratio of the rotational inertias IA/IB if the two wheels had (a) the same angular momentum and (b) the same rotational kinetic energy?

Two wheels A and B in the figure are connected by a belt that does not slip. The radius of B is 6.03
times the radius of A. What would be the ratio of the rotational inertias lA/Ig if the two wheels had (a)
the same angular momentum and (b) the same rotational kinetic energy?
B •
(a) Number
i
Units
(b) Number
i
Units
>
Transcribed Image Text:Two wheels A and B in the figure are connected by a belt that does not slip. The radius of B is 6.03 times the radius of A. What would be the ratio of the rotational inertias lA/Ig if the two wheels had (a) the same angular momentum and (b) the same rotational kinetic energy? B • (a) Number i Units (b) Number i Units >
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