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], A. what is the magnitude of the tangential acceleration of the wheel's rim? B. what is the angular speed of the wheel's rim? C. what is the tangential speed of the wheel's rim?

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
Chapter3: Motion In Two Dimensions
Section: Chapter Questions
Problem 30P: A point on a rotating turntable 20.0 cm from the center accelerates from rest to a final speed of...
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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],

A. what is the magnitude of the tangential acceleration of the wheel's rim?

B. what is the angular speed of the wheel's rim?

C. what is the tangential speed of the wheel's rim?

D. what is point P's new angular position from the horizontal in radians?

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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D. what is point P's new angular position from the horizontal in radians?

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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