A student pushes a 0.40 kg box up a 30° inclined plane at a constant speed of 1.2 m/s. The student performs 5.0 J of work and the block moves a distance s along the incline before he stops pushing the box. The frictional force acting on the box is 0.9ON. Determine the value of s. Ending position Starting position 30° O 1.16 m O 1.65 m O 1.75 m O 1.85 m O 1.04 m

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Chapter8: Conservation Of Energy
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Problem 8.34P: An electric scooter has a battery capable of supplying 120 Wh of energy. If friction forces and...
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A student pushes a 0.40 kg box up a 30° inclined plane at a constant speed of 1.2 m/s. The
student performs 5.0 J of work and the block moves a distance s along the incline before he stops
pushing the box. The frictional force acting on the box is 0.9ON. Determine the value of s.
Ending
position
Starting
30°
position
O 1.16 m
O 1.65 m
O 1.75 m
O 1.85 m
O 1.04 m
Transcribed Image Text:A student pushes a 0.40 kg box up a 30° inclined plane at a constant speed of 1.2 m/s. The student performs 5.0 J of work and the block moves a distance s along the incline before he stops pushing the box. The frictional force acting on the box is 0.9ON. Determine the value of s. Ending position Starting 30° position O 1.16 m O 1.65 m O 1.75 m O 1.85 m O 1.04 m
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