As a car goes up a hill, there is a force of friction between the road and the tires rolling on the road. The maximum force of friction is equal to: the weight of the car. O the normal force of the road times the coefficient of kinetic friction the weight of the car times the coefficient of kinetic friction. O zero. O the normal force of the road times the coefficient of static friction.

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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As a car goes up a hill, there is a
force of friction between the road
and the tires rolling on the road.
The maximum force of friction is
equal to:
O the weight of the car.
O the normal force of the road times
the coefficient of kinetic friction
O the weight of the car times the
coefficient of kinetic friction.
O zero.
O the normal force of the road times
the coefficient of static friction.
Transcribed Image Text:As a car goes up a hill, there is a force of friction between the road and the tires rolling on the road. The maximum force of friction is equal to: O the weight of the car. O the normal force of the road times the coefficient of kinetic friction O the weight of the car times the coefficient of kinetic friction. O zero. O the normal force of the road times the coefficient of static friction.
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