Important note: Unless otherwise stated, your answer must be in SI units. A bicycle wheel 67.0 [cm] in diameter rotates about its central axis with a constant angular acceleration of 4.48 [rad/s²]. It starts from rest at time t = 0 [s], and a reference point on the wheel's rim P makes an angle of 60.0° above the horizontal at this time. When the wheel starts rotating, at time t = 3.70 [s], At t = 1.50 [s], a small, 92.5 [g] pebble got stuck on the rim of the wheel. E What is the pebble's moment of inertia with respect to the wheel's axis of rotation? F At t = 3.70 [s], what is the pebble's rotational kinetic energy?

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
Chapter10: Rotational Motion
Section: Chapter Questions
Problem 10P: A wheel 2.00 m in diameter lies in a vertical plane and rotates about its central axis with a...
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Important note: Unless otherwise stated, your answer must be in SI units.
A bicycle wheel 67.0 [cm] in diameter rotates about its central axis with a constant angular acceleration of 4.48 [rad/s²]. It starts from rest at
time t = 0 [s], and a reference point on the wheel's rim P makes an angle of 60.0° above the horizontal at this time. When the wheel starts
rotating, at time t = 3.70 [s],
At t = 1.50 [s], a small, 92.5 [g] pebble got stuck on the rim of the wheel.
E What is the pebble's moment of inertia with respect to the wheel's axis of rotation?
F
At t = 3.70 [s], what is the pebble's rotational kinetic energy?
Transcribed Image Text:Important note: Unless otherwise stated, your answer must be in SI units. A bicycle wheel 67.0 [cm] in diameter rotates about its central axis with a constant angular acceleration of 4.48 [rad/s²]. It starts from rest at time t = 0 [s], and a reference point on the wheel's rim P makes an angle of 60.0° above the horizontal at this time. When the wheel starts rotating, at time t = 3.70 [s], At t = 1.50 [s], a small, 92.5 [g] pebble got stuck on the rim of the wheel. E What is the pebble's moment of inertia with respect to the wheel's axis of rotation? F At t = 3.70 [s], what is the pebble's rotational kinetic energy?
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