A motorcyclist in a circus rides his motorcycle within the confines of the hollow sphere. If the coefficient of static friction between the wheels of the motorcycle and the sphere is µ, = 0.4, determine the minimum speed at which he must travel if he is to ride along the wall when e = 90°. The mass of the motorcycle and rider is 250 kg, and the radius of curvature to the center of gravity is p = 20 ft. Neglect the size of the motorcycle for the calculation.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A motorcyclist in a circus rides his motorcycle
within the confines of the hollow sphere. If the coefficient of
static friction between the wheels of the motorcycle and the
sphere is µ, = 0.4, determine the minimum speed at which
he must travel if he is to ride along the wall when e = 90°.
The mass of the motorcycle and rider is 250 kg, and the
radius of curvature to the center of gravity is p = 20 ft.
Neglect the size of the motorcycle for the calculation.
Transcribed Image Text:A motorcyclist in a circus rides his motorcycle within the confines of the hollow sphere. If the coefficient of static friction between the wheels of the motorcycle and the sphere is µ, = 0.4, determine the minimum speed at which he must travel if he is to ride along the wall when e = 90°. The mass of the motorcycle and rider is 250 kg, and the radius of curvature to the center of gravity is p = 20 ft. Neglect the size of the motorcycle for the calculation.
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