13. A 4.0-m-long pole of mass 12 kg and uniform density is at rest on an incline of angle 25°. The pole is perpendicular to the incline. It is secured by a horizontal rope. Find the minimum coefficient of static friction that will prevent the pole from slipping. Answer: 0.21.

Physics for Scientists and Engineers, Technology Update (No access codes included)
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Author:Raymond A. Serway, John W. Jewett
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Chapter12: Static Equilibrium And Elasticity
Section: Chapter Questions
Problem 12.23P: One end of a uniform 4.00-m-long rod of weight Fg is supported by a cable at an angle of = 37 with...
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13. A 4.0-m-long pole of mass 12 kg and uniform density is at rest on an incline of angle 25°. The pole
is perpendicular to the incline. It is secured by a horizontal rope. Find the minimum coefficient of static
friction that will prevent the pole from slipping.
Answer: 0.21.
Transcribed Image Text:13. A 4.0-m-long pole of mass 12 kg and uniform density is at rest on an incline of angle 25°. The pole is perpendicular to the incline. It is secured by a horizontal rope. Find the minimum coefficient of static friction that will prevent the pole from slipping. Answer: 0.21.
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