1) A 1500 kg car makes a turn on a horizontal curve that has a radius of 35.0 m. The coefficient of static friction between the road and the tires is 0.56. a) Using the figure provided, draw a free body diagram for the car as it makes this circular turn. b) Derive the expression for the maximum tangential speed that the car can have and still complete the turn successfully. c) How does the mass of the car does affect the maximum speed? d) Calculate the maximum tangential speed if the car can complete the turn successfully.

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Chapter7: Rotational Motion And The Law Of Gravity
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Problem 51AP: An athlete swings a 5.00-kg ball horizontally on the end of a rope. The ball moves in a circle of...
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1) A 1500 kg car makes a turn on a horizontal curve that has a radius of 35.0 m. The coefficient of static
friction between the road and the tires is 0.56.
a) Using the figure provided, draw a free body diagram for the car as it makes this circular turn.
b) Derive the expression for the maximum tangential speed that the car can have and still complete
the turn successfully.
c) How does the mass of the car does affect the maximum speed?
d) Calculate the maximum tangential speed if the car can complete the turn successfully.
Transcribed Image Text:1) A 1500 kg car makes a turn on a horizontal curve that has a radius of 35.0 m. The coefficient of static friction between the road and the tires is 0.56. a) Using the figure provided, draw a free body diagram for the car as it makes this circular turn. b) Derive the expression for the maximum tangential speed that the car can have and still complete the turn successfully. c) How does the mass of the car does affect the maximum speed? d) Calculate the maximum tangential speed if the car can complete the turn successfully.
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