Figure P8.74 shows a vertical force applied tangentially to a uniform cylinder of weight w. The coefficient of static friction between the cylinder and all surfaces is 0.380. Find, in terms of w, the maximum force F that can be applied without causing the cylinder to rotate. (Hint: When the cylinder is on the verge of slipping, both friction forces are at their maximum values.) Figure P8.74

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter10: Rotational Motion
Section: Chapter Questions
Problem 82P: Figure P10.82 shows a vertical force applied tangentially to a uniform cylinder of weight Fg. The...
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Figure P8.74 shows a vertical force applied tangentially to a uniform cylinder of weight w. The coefficient of static friction between the cylinder and all surfaces is 0.380. Find, in terms of w, the maximum force
F that can be applied without causing the cylinder to rotate. (Hint: When the cylinder is on the verge of slipping, both friction forces are at their maximum values.)
Figure P8.74
Transcribed Image Text:Figure P8.74 shows a vertical force applied tangentially to a uniform cylinder of weight w. The coefficient of static friction between the cylinder and all surfaces is 0.380. Find, in terms of w, the maximum force F that can be applied without causing the cylinder to rotate. (Hint: When the cylinder is on the verge of slipping, both friction forces are at their maximum values.) Figure P8.74
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