The flywheel is rotating with an angular velocity wo 1.97 rad/s at time t 0 when a torque is applied to increase its angular velocity. If the torque is controlled so that the angle e between the total acceleration of point A on the rim and the radial line to A is equal to 54° and remains constant, determine the angular velocity and the angular acceleration at time t 0.22 s A Answer: At time t 0.22s, rad/s i W = rad/s2 a =

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The flywheel is rotating with an angular velocity wo 1.97 rad/s at time t 0 when a torque is applied to increase its
angular velocity. If the torque is controlled so that the angle e between the total acceleration of point A on the rim and
the radial line to A is equal to 54° and remains constant, determine the angular velocity and the angular acceleration at
time t 0.22 s
A
Answer: At time t
0.22s,
rad/s
i
W =
rad/s2
a =
Transcribed Image Text:The flywheel is rotating with an angular velocity wo 1.97 rad/s at time t 0 when a torque is applied to increase its angular velocity. If the torque is controlled so that the angle e between the total acceleration of point A on the rim and the radial line to A is equal to 54° and remains constant, determine the angular velocity and the angular acceleration at time t 0.22 s A Answer: At time t 0.22s, rad/s i W = rad/s2 a =
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