The coefficients of static A car drives around a turn with a radius of curvature of and kinetic friction between the road and the tires are 0.875 and 0.725 respectively. a) If the road is horizontal, what is the maximum speed that the car can take the turn without sliding? b) The car leaves the turn at the speed from part a, and immediately slams on its brakes, skidding to a stop. How far does it travel while braking? c) If the turn were banked at 25.0°, how fast could the car go without sliding?

Principles of Physics: A Calculus-Based Text
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ISBN:9781133104261
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Chapter5: More Applications Of Newton’s Laws
Section5.3: Nonuniform Circular Motion
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In all questions, you may ignore the effects of air resistance and assume ideal strings and pulleys.
1)
A car drives around a turn with a radius of curvature of 75.0 m. The coefficients of static
and kinetic friction between the road and the tires are 0.875 and 0.725 respectively.
a) If the road is horizontal, what is the maximum speed that the car can take the turn without
sliding?
b) The car leaves the turn at the speed from part a, and immediately slams on its brakes,
skidding to a stop. How far does it travel while braking?
c) If the turn were banked at 25.0°, how fast could the car go without sliding?
Transcribed Image Text:In all questions, you may ignore the effects of air resistance and assume ideal strings and pulleys. 1) A car drives around a turn with a radius of curvature of 75.0 m. The coefficients of static and kinetic friction between the road and the tires are 0.875 and 0.725 respectively. a) If the road is horizontal, what is the maximum speed that the car can take the turn without sliding? b) The car leaves the turn at the speed from part a, and immediately slams on its brakes, skidding to a stop. How far does it travel while braking? c) If the turn were banked at 25.0°, how fast could the car go without sliding?
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