16-146. A ride in an amusement park consists of a rotating arm AB that has an angular acceleration of aдB = 1 rad/s² QAB when @AB = 2 rad/s at the instant shown. Also at this instant the car mounted at the end of the arm has an angular acceleration of a = {-0.6k) rad/s² and angular velocity of w' (-0.5k) rad/s, measured relative to the arm. Determine the velocity and acceleration of the passenger C at this instant. = w' = 0.5 rad/s 10 ft 60° y WAB = 2 rad/s 30° x Probs. 16-145/146 B 2 ft

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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16-146. A ride in an amusement park consists of a rotating
arm AB that has an angular acceleration of aдB = 1 rad/s²
QAB
when @AB
= 2 rad/s at the instant shown. Also at this instant
the car mounted at the end of the arm has an angular
acceleration of a = {-0.6k) rad/s² and angular velocity of w'
(-0.5k) rad/s, measured relative to the arm. Determine
the velocity and acceleration of the passenger C at this instant.
=
w' = 0.5 rad/s
10 ft
60°
y
WAB = 2 rad/s
30°
x
Probs. 16-145/146
B
2 ft
Transcribed Image Text:16-146. A ride in an amusement park consists of a rotating arm AB that has an angular acceleration of aдB = 1 rad/s² QAB when @AB = 2 rad/s at the instant shown. Also at this instant the car mounted at the end of the arm has an angular acceleration of a = {-0.6k) rad/s² and angular velocity of w' (-0.5k) rad/s, measured relative to the arm. Determine the velocity and acceleration of the passenger C at this instant. = w' = 0.5 rad/s 10 ft 60° y WAB = 2 rad/s 30° x Probs. 16-145/146 B 2 ft
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