- In the diagram below, a toy car having a mass of 4.00 x 10-2 kilogram starts from rest at point A and travels 3.60 meters along a uniform track until coming to rest at point B. 0.80 m m = 4.00 x 10-² kg B N ground to the thousandths place) 0.50 m Calculate the magnitude of the frictional force acting on the car. [Assume the frictional force is constant.]

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter5: Newton's Law Of Motion
Section: Chapter Questions
Problem 94CP: A 10.0-kg object is initially moving east at 15.0 m/ s. Then a force acts on it for 2.00 s, after...
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Round to the thousandths place
In the diagram below, a toy car having a mass
of 4.00 x 10-2 kilogram starts from rest at
point A and travels 3.60 meters along a
uniform track until coming to rest at point B.
0.80 m
m = 4.00 x 10-² kg
delivery/start/6635
0.50 m
N pound to the thousandths place)
Calculate the magnitude of the frictional force
acting on the car. [Assume the frictional force is
constant.]
Transcribed Image Text:In the diagram below, a toy car having a mass of 4.00 x 10-2 kilogram starts from rest at point A and travels 3.60 meters along a uniform track until coming to rest at point B. 0.80 m m = 4.00 x 10-² kg delivery/start/6635 0.50 m N pound to the thousandths place) Calculate the magnitude of the frictional force acting on the car. [Assume the frictional force is constant.]
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