Shown is a brake mechanism used to hold the wheel from rotating when subjected to a moment M. The coefficient of friction between the wheel and the brake pad is 0.3. For r= 1.5 ft, M = 100 ft-lb, a = 5 ft, and b = 2 ft, the minimum force P needed to hold the wheel is best given by P a. 133 lb b. 333 lb c. 88.9 lb d. 222 lb a M b

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter7: Dry Friction
Section: Chapter Questions
Problem 7.3P: Two identical chairs, each weighing 14 lb, are stacked as shown. The center of gravity of each chair...
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Shown is a brake mechanism used to hold the wheel from rotating when subjected to a moment M.
The coefficient of friction between the wheel and the brake pad is 0.3. For r= 1.5 ft, M = 100
ft-lb, a = 5 ft, and b = 2 ft, the minimum force P needed to hold the wheel is best given by
P
a. 133 lb
b. 333 lb
c. 88.9 lb
d. 222 lb
a
-b-
M
Transcribed Image Text:Shown is a brake mechanism used to hold the wheel from rotating when subjected to a moment M. The coefficient of friction between the wheel and the brake pad is 0.3. For r= 1.5 ft, M = 100 ft-lb, a = 5 ft, and b = 2 ft, the minimum force P needed to hold the wheel is best given by P a. 133 lb b. 333 lb c. 88.9 lb d. 222 lb a -b- M
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