1. The rotational motion of a particle is defined by the angular velocity as a function of time: w(t) = 3nt + 6nt² Determine (a) the position and acceleration of the particle at the start of motion, (b) time to complete 3 and 1/8 cycles, and (c) the average angular velocity and acceleration from 2 seconds to 4 seconds.

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
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1. The rotational motion of a particle is defined by the angular velocity as a function of time:
w(t) = 3nt
+ 6nt²
Determine (a) the position and acceleration of the particle at the start of motion, (b) time to
complete 3 and 1/8 cycles, and (c) the average angular velocity and acceleration from 2 seconds to 4 seconds.
Transcribed Image Text:1. The rotational motion of a particle is defined by the angular velocity as a function of time: w(t) = 3nt + 6nt² Determine (a) the position and acceleration of the particle at the start of motion, (b) time to complete 3 and 1/8 cycles, and (c) the average angular velocity and acceleration from 2 seconds to 4 seconds.
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