A 5.0 kg toy car can move along an x-axis. The figure below shows force, Fx, acting on the car. The car starts from rest at t=0 s. The scale on the graph is given by Fxs = 5.0 N. In unit vector notation, what is the p at a) t = 4.0 s, and b) t = 7.0 s, and c) what is the at t = 9.0 s? F, (N) F 1(s)
A 5.0 kg toy car can move along an x-axis. The figure below shows force, Fx, acting on the car. The car starts from rest at t=0 s. The scale on the graph is given by Fxs = 5.0 N. In unit vector notation, what is the p at a) t = 4.0 s, and b) t = 7.0 s, and c) what is the at t = 9.0 s? F, (N) F 1(s)
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
Transcribed Image Text:A 5.0 kg toy car can move along an x-axis. The figure below shows force, Fx, acting on the car. The car
starts from rest at t = 0 s. The scale on the graph is given by Fxs = 5.0 N. In unit vector notation, what is
the p at a) t = 4.0 s, and b) t = 7.0 s, and c) what is the ✓ at t = 9.0 s?
Fx (N)
F
-Fxs
9
6
t(s)
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