Take Home Question: An amusement park ride called the "Rotor" is a very large cylinder, oriented vertically, and is made to spin up to a speed sufficient to allow people (their weight) to be balanced by friction after the floor is dropped out. Two people are shown in the Figure below, one weighing 120 lbs, the other 240 lbs. The drum rotates at an angular speed of w = 25 revolutions/minute, determine the coefficient of static friction s that would minimally provide the riders a non-slip experience. Plan: Identify forces on either person and use Newton's 2nd Law to generate a relationship that includes speed. 1
Take Home Question: An amusement park ride called the "Rotor" is a very large cylinder, oriented vertically, and is made to spin up to a speed sufficient to allow people (their weight) to be balanced by friction after the floor is dropped out. Two people are shown in the Figure below, one weighing 120 lbs, the other 240 lbs. The drum rotates at an angular speed of w = 25 revolutions/minute, determine the coefficient of static friction s that would minimally provide the riders a non-slip experience. Plan: Identify forces on either person and use Newton's 2nd Law to generate a relationship that includes speed. 1
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![Take Home Question: An amusement park ride called the "Rotor" is a very large cylinder, oriented vertically,
and is made to spin up to a speed sufficient to allow people (their weight) to be balanced by friction after the
floor is dropped out. Two people are shown in the Figure below, one weighing 120 lbs, the other 240 lbs. The
drum rotates at an angular speed of w = 25 revolutions/minute, determine the coefficient of static friction s
that would minimally provide the riders a non-slip experience. Plan: Identify forces on either person and use
Newton's 2nd Law to generate a relationship that includes speed.
1](https://content.bartleby.com/qna-images/question/4a2bd348-d826-4056-b9ee-5fd404bc60f1/a27a77de-1acd-4923-a814-9ed1ec3e912b/3f7sma2_thumbnail.jpeg)
Transcribed Image Text:Take Home Question: An amusement park ride called the "Rotor" is a very large cylinder, oriented vertically,
and is made to spin up to a speed sufficient to allow people (their weight) to be balanced by friction after the
floor is dropped out. Two people are shown in the Figure below, one weighing 120 lbs, the other 240 lbs. The
drum rotates at an angular speed of w = 25 revolutions/minute, determine the coefficient of static friction s
that would minimally provide the riders a non-slip experience. Plan: Identify forces on either person and use
Newton's 2nd Law to generate a relationship that includes speed.
1
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