8-15. The car has a mass of 1.6 Mg and center of mass at G. If the coefficient of static friction between the shoulder of the road and the tires is µ̟ = 0.4, determine the greatest slope 0 the shoulder can have without causing the car to slip or tip over if the car travels along the shoulder at constant velocity. 2.5 ft Ge B 5 ft

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
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Chapter7: Dry Friction
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Problem 7.75P: The single-plate clutch transmits the torque C from the input shaft on the left to the output shaft...
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8–15. The car has a mass of 1.6 Mg and center of mass
at G. If the coefficient of static friction between the
shoulder of the road and the tires is µ, = 0.4, determine
the greatest slope 0 the shoulder can have without causing
the car to slip or tip over if the car travels along the
shoulder at constant velocity.
2.5 ft
Co
B
5 ft
Transcribed Image Text:8–15. The car has a mass of 1.6 Mg and center of mass at G. If the coefficient of static friction between the shoulder of the road and the tires is µ, = 0.4, determine the greatest slope 0 the shoulder can have without causing the car to slip or tip over if the car travels along the shoulder at constant velocity. 2.5 ft Co B 5 ft
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