In a popular amusement park ride, a rotating cylinder of radius  R = 2.00 m  is set in rotation at an angular speed of 6.10 rad/s, as in the figure shown below. The floor then drops away, leaving the riders suspended against the wall in a vertical position. What minimum coefficient of friction between a rider's clothing and the wall is needed to keep the rider from slipping?

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Chapter1: Units, Trigonometry. And Vectors
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In a popular amusement park ride, a rotating cylinder of radius 

R = 2.00 m

 is set in rotation at an angular speed of 6.10 rad/s, as in the figure shown below. The floor then drops away, leaving the riders suspended against the wall in a vertical position. What minimum coefficient of friction between a rider's clothing and the wall is needed to keep the rider from slipping?

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