A wheel 2.07 m in diameter lies in a vertical plane and rotates about its central axis with a constant angular acceleration of 3.62 rad/s². The wheel starts at rest at t = 0, and the radius vector of a certain point P on the rim makes an angle of 57.3⁰ with the horizontal at this time. At t = 2.00 s, find the following. (a) the angular speed of the wheel (b) the tangential speed of the point P (a)

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Chapter10: Rotational Motion
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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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A wheel 2.07 m in diameter lies in a vertical plane and rotates about its central axis with a constant angular
acceleration of 3.62 rad/s2. The wheel starts at rest at t = 0, and the radius vector of a certain point P on the rim
makes an angle of 57.3° with the horizontal at this time. At t = 2.00 s, find the following.
(a) the angular speed of the wheel
(b) the tangential speed of the point P
(c) the total acceleration of the point P
(d) the angular position of the point P
Transcribed Image Text:A wheel 2.07 m in diameter lies in a vertical plane and rotates about its central axis with a constant angular acceleration of 3.62 rad/s2. The wheel starts at rest at t = 0, and the radius vector of a certain point P on the rim makes an angle of 57.3° with the horizontal at this time. At t = 2.00 s, find the following. (a) the angular speed of the wheel (b) the tangential speed of the point P (c) the total acceleration of the point P (d) the angular position of the point P
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