A disk that has an initial angular velocity of wo= 1.5 rad/s has a constant angular acceleration of a = 5.5 rad/s^2 for a time period of t = 55 seconds. Find an expression and use it to calculate the magnitude of the angular velocity of the disk in rad/s at time t. Write an expression for the magnitude of the angular displacement traveled by a point on the disk during the angular acceleration described in terms of the given parameters. Assume the point starts at an angular displacement of 0 radians. Calculate the magnitude of the angular displacement in radians traveled by a point on the disk during the acceleration described.

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
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A disk that has an initial angular velocity of wo 1.5 rad/s has a constant angular
acceleration of a = 5.5 rad/s^2 for a time period of t = 55 seconds.
Find an expression and use it to calculate the magnitude of the angular velocity of the
disk in rad/s at time t.
Write an expression for the magnitude of the angular displacement traveled by a point
on the disk during the angular acceleration described in terms of the given parameters.
Assume the point starts at an angular displacement of 0 radians.
Calculate the magnitude of the angular displacement in radians traveled by a point on
the disk during the acceleration described.
Transcribed Image Text:A disk that has an initial angular velocity of wo 1.5 rad/s has a constant angular acceleration of a = 5.5 rad/s^2 for a time period of t = 55 seconds. Find an expression and use it to calculate the magnitude of the angular velocity of the disk in rad/s at time t. Write an expression for the magnitude of the angular displacement traveled by a point on the disk during the angular acceleration described in terms of the given parameters. Assume the point starts at an angular displacement of 0 radians. Calculate the magnitude of the angular displacement in radians traveled by a point on the disk during the acceleration described.
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