the drawing shows. Suppose the total mass of a chair and its occupant is 179 kg. (a) Determine the tension in the cable attached to the chair. (b) Find the speed of the chair. 60.00 15.0 m PROBLEM 23 .WC AMOIT Section 5.4 Banked Curves 24. E On a banked race track, the smallest circular path on which cars can move has a radius of 112 m, while the largest has a radius of 165 m, as the drawing illustrates. The height of the outer wall is 18 m. Find (a) the smallest and (b) the largest speed at which cars can move on this track without relying on friction.

College Physics
10th Edition
ISBN:9781285737027
Author:Raymond A. Serway, Chris Vuille
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Chapter7: Rotational Motion And The Law Of Gravity
Section: Chapter Questions
Problem 9WUE: A man whirls a 0.20-kg piece of lead attached to the end of a string of length 0.500 m in a circular...
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a "swing" ride at a carnival consists of charis that are swung in a circle by 15.0-m cables attached to a vertical rotating pole, as the drawings shows. Suppose the total mass of a chair and its occupant is 179 kg. (a) Determine the tension in the cable attached to the chair. (b) Find the speed of the chair

the drawing shows. Suppose the total mass of a chair and its occupant is
179 kg. (a) Determine the tension in the cable attached to the chair. (b) Find
the speed of the chair.
60.00 15.0 m
PROBLEM 23
.WC
AMOIT
Section 5.4
Banked Curves
24. E On a banked race track, the smallest circular path on which cars can
move has a radius of 112 m, while the largest has a radius of 165 m, as the
drawing illustrates. The height of the outer wall is 18 m. Find (a) the smallest
and (b) the largest speed at which cars can move on this track without relying
on friction.
Transcribed Image Text:the drawing shows. Suppose the total mass of a chair and its occupant is 179 kg. (a) Determine the tension in the cable attached to the chair. (b) Find the speed of the chair. 60.00 15.0 m PROBLEM 23 .WC AMOIT Section 5.4 Banked Curves 24. E On a banked race track, the smallest circular path on which cars can move has a radius of 112 m, while the largest has a radius of 165 m, as the drawing illustrates. The height of the outer wall is 18 m. Find (a) the smallest and (b) the largest speed at which cars can move on this track without relying on friction.
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