5. In preliminary design studies for a sun- powered car, it is estimated that the mass of the car and driver will be m kg and the torque produced by the engine will result in a F, newton tangential force on the car. Suppose that the car starts from rest on the track at A and is subjected to a constant F newton tangential force. Determine the magnitude of the car's newton velocity and the normal component of R m END B START m 101 kg Figure 5. F, = 190 l = force on the car when it reaches B. 296 .m R = 94 ..m

Principles of Foundation Engineering (MindTap Course List)
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Chapter14: Sheet-pile Walls
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5. In preliminary design studies for a sun-
powered car, it is estimated that the mass
of the car and driver will be m kg and the
torque produced by the engine will result
in a F, newton tangential force on the car.
Suppose that the car starts from rest on
the track at A and is subjected to a
constant F, newton tangential force.
Determine the magnitude of the car's
.newton velocity and the normal component of
R m
END
A
START •
l m
m =
102
kg
Figure 5.
F. =
120
296
force on the car when it reaches B.
.m
R =
94
.m
Transcribed Image Text:5. In preliminary design studies for a sun- powered car, it is estimated that the mass of the car and driver will be m kg and the torque produced by the engine will result in a F, newton tangential force on the car. Suppose that the car starts from rest on the track at A and is subjected to a constant F, newton tangential force. Determine the magnitude of the car's .newton velocity and the normal component of R m END A START • l m m = 102 kg Figure 5. F. = 120 296 force on the car when it reaches B. .m R = 94 .m
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