A car is traveling at constant speed of v= 16.8 m/s. It’s tired have a diameter of d=0.78 m. Randomized variables: v= 16.8 m/s d=0.78m Consider a point on the outer edge of the tire. What is the centripetal acceleration, ac at this point in m/s^2? If the car was traveling twice as fast, what would be the numerical value of the ration of the mew centripetal acceleration, an, to the old centripetal acceleration?
A car is traveling at constant speed of v= 16.8 m/s. It’s tired have a diameter of d=0.78 m. Randomized variables: v= 16.8 m/s d=0.78m Consider a point on the outer edge of the tire. What is the centripetal acceleration, ac at this point in m/s^2? If the car was traveling twice as fast, what would be the numerical value of the ration of the mew centripetal acceleration, an, to the old centripetal acceleration?
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter4: Two-and-three Dimensional Motion
Section: Chapter Questions
Problem 9PQ
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A car is traveling at constant speed of v= 16.8 m/s. It’s tired have a diameter of d=0.78 m. Randomized variables: v= 16.8 m/s d=0.78m
Consider a point on the outer edge of the tire. What is the centripetal acceleration, ac at this point in m/s^2? If the car was traveling twice as fast, what would be the numerical value of the ration of the mew centripetal acceleration, an, to the old centripetal acceleration?
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