A 2 kg ball with a radius of 0.35 meters is initially at rest. The rotational inertia equation for the ball is 0.4mr2. A constant torque is applied to the ball at its edge (0.35 meters away from the axis of rotation) so that it accelerates from rest and is able to make 7 revolutions in 3 seconds. Calculate the force applied to the edge of the ball that creates the torque. Round to the nearest tenth.

Physics for Scientists and Engineers: Foundations and Connections
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ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter13: Rotation Ii: A Conservation Approach
Section: Chapter Questions
Problem 7PQ: A 12.0-kg solid sphere of radius 1.50 m is being rotated by applying a constant tangential force of...
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A 2 kg ball with a radius of 0.35 meters is initially at rest. The rotational inertia equation for the ball is 0.4mr2. A constant torque is applied to the ball at its edge (0.35 meters away from the axis of rotation) so that it accelerates from rest and is able to make 7 revolutions in 3 seconds. Calculate the force applied to the edge of the ball that creates the torque. Round to the nearest tenth.

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