A 2000 kg car going at a steady speed of 18.0 m/s takes a curve with a 50.0 m radius. The road is level. 1. Draw an FBD. 2. Find the centripetal force of the car. 3. Find the frictional force of the car.

Physics for Scientists and Engineers: Foundations and Connections
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ISBN:9781133939146
Author:Katz, Debora M.
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Chapter6: Applications Of Newton’s Laws Of Motion
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A 2000 kg car going at a steady speed of 18.0 m/s takes a curve with a 50.0 m radius. The road is level.
1. Draw an FBD.
2. Find the centripetal force of the car.
3. Find the frictional force of the car.
4. Find the weight of the car.
5. What is the minimum value that the coefficient of static friction between the tires and the road must
have so that the car takes this curve without slipping?
Transcribed Image Text:A 2000 kg car going at a steady speed of 18.0 m/s takes a curve with a 50.0 m radius. The road is level. 1. Draw an FBD. 2. Find the centripetal force of the car. 3. Find the frictional force of the car. 4. Find the weight of the car. 5. What is the minimum value that the coefficient of static friction between the tires and the road must have so that the car takes this curve without slipping?
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