The block moves up an incline with constant speed. What is the total work, W, total done on the block by all forces as the block moves a distance L = 3.10 m up the incline? a)What is Wg, the work done on the block by the force of gravity w⃗ as the block moves a distance L=3.10 m up the incline? b)What is WF, the work done on the block by the applied force F⃗ as the block moves a distance L=3.10 m up the incline? c) What is WN, the work done on the block by the normal force as the block moves a distance L=3.10m up the inclined plane?

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Chapter1: Units, Trigonometry. And Vectors
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The block moves up an incline with constant speed. What is the total work, W, total done on the block by all forces as the block moves a distance L = 3.10 m up the incline? a)What is Wg, the work done on the block by the force of gravity w⃗ as the block moves a distance L=3.10 m up the incline? b)What is WF, the work done on the block by the applied force F⃗ as the block moves a distance L=3.10 m up the incline? c) What is WN, the work done on the block by the normal force as the block moves a distance L=3.10m up the inclined plane?
A block of weight w = 35.0 N sits on a frictionless
inclined plane, which makes an angle = 27.0° with
respect to the horizontal, as shown in the figure. A force
0
of magnitude F = 15.9 N, applied parallel to the incline,
is just sufficient to pull the block up the plane at constant
speed.
Transcribed Image Text:A block of weight w = 35.0 N sits on a frictionless inclined plane, which makes an angle = 27.0° with respect to the horizontal, as shown in the figure. A force 0 of magnitude F = 15.9 N, applied parallel to the incline, is just sufficient to pull the block up the plane at constant speed.
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