9. A ride in an amusement park consists of a rotating arm AB that has an angular acceleration of aR =1 rad/s when o = 2 rad/s at the instant shown. Also at this instant the car mounted at the end of the arm has a relative angular acceleration of a =-0.6k rad/s² when o =-0.5k rad/s. Determine the velocity and acceleration of the passenger C at this instant.

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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9. A ride in an amusement park consists of a rotating arm AB that has an angular
acceleration of aR =1 rad/s when wR = 2 rad/s at the instant shown. Also at this
instant the car mounted at the end of the arm has a relative angular acceleration of
a =-0.6k rad/s² when o =-0.5k rad/s. Determine the velocity and acceleration of
the passenger C at this instant.
w' = 0.5 rad/s
В
5m
y
60°
1m
W AB = 2 rad/s
30
[{-3.5i+8.66j} m/s, {-19.42i+3.42j} m/s*]
Transcribed Image Text:9. A ride in an amusement park consists of a rotating arm AB that has an angular acceleration of aR =1 rad/s when wR = 2 rad/s at the instant shown. Also at this instant the car mounted at the end of the arm has a relative angular acceleration of a =-0.6k rad/s² when o =-0.5k rad/s. Determine the velocity and acceleration of the passenger C at this instant. w' = 0.5 rad/s В 5m y 60° 1m W AB = 2 rad/s 30 [{-3.5i+8.66j} m/s, {-19.42i+3.42j} m/s*]
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