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A passenger with mass 85 kg rides in a Ferris wheel like

University Physics | 13th Edition | ISBN: 9780321675460 | Authors: Hugh D. Young, Roger A. Freedman ISBN: 9780321675460 31

Solution for problem 116P Chapter 5

University Physics | 13th Edition

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University Physics | 13th Edition | ISBN: 9780321675460 | Authors: Hugh D. Young, Roger A. Freedman

University Physics | 13th Edition

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Problem 116P

A passenger with mass 85 kg rides in a Ferris wheel like that in Example 5.23 (Section 5.4). The seats travel in a circle of radius 35 in. The Ferris wheel rotates at constant speed and makes one complete revolution every 25 s. Calculate the magnitude and direction of the net force exerted on the passenger by the seat when she is (a) one-quarter revolution past her lowest point and (b) one-quarter revolution past her highest point.

Step-by-Step Solution:
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Chapter16 -Lecture Fri,January13,2016:28PM Monday: 1/9/17 *wentoversyllabus* Wednesday: 1/11/17 Thislectureisabout: Anatomy of the Industrial Revolution (IR) Theindustrialrevolutionisalong,gradualprocess.s eiesofevents Themainideahere: (sidenote)...

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Chapter 5, Problem 116P is Solved
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Textbook: University Physics
Edition: 13
Author: Hugh D. Young, Roger A. Freedman
ISBN: 9780321675460

Since the solution to 116P from 5 chapter was answered, more than 595 students have viewed the full step-by-step answer. The full step-by-step solution to problem: 116P from chapter: 5 was answered by , our top Physics solution expert on 05/06/17, 06:07PM. This textbook survival guide was created for the textbook: University Physics, edition: 13. University Physics was written by and is associated to the ISBN: 9780321675460. This full solution covers the following key subjects: revolution, point, Quarter, wheel, past. This expansive textbook survival guide covers 26 chapters, and 2929 solutions. The answer to “A passenger with mass 85 kg rides in a Ferris wheel like that in Example 5.23 (Section 5.4). The seats travel in a circle of radius 35 in. The Ferris wheel rotates at constant speed and makes one complete revolution every 25 s. Calculate the magnitude and direction of the net force exerted on the passenger by the seat when she is (a) one-quarter revolution past her lowest point and (b) one-quarter revolution past her highest point.” is broken down into a number of easy to follow steps, and 77 words.

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