36. A 5.00-kg block is placed on top of a 10.0-kg block (Fig P5.36). A horizontal force of 45.0 N is applied to the 10-kg block, and the 5.00-kg block is tied to the wall. The coef ficient of kinetic friction between all moving surfaces is 0.200. (a) Draw a free-body diagram for each block and identify the action-reaction forces between the blocks. (b) Determine the tension in the string and the magnitude of the acceleration of the 10.0-kg block. 5.00 kg 10.0 kg F= 45.0 N

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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36. A 5.00-kg block is placed on top of a 10.0-kg block (Fig
P5.36). A horizontal force of 45.0 N is applied to the 10-kg
block, and the 5.00-kg block is tied to the wall. The coef
ficient of kinetic friction between all moving surfaces is
0.200. (a) Draw a free-body diagram for each block and
identify the action-reaction forces between the blocks. (b)
Determine the tension in the string and the magnitude of
the acceleration of the 10.0-kg block.
5.00
kg
10.0 kg
F= 45.0 N
Transcribed Image Text:36. A 5.00-kg block is placed on top of a 10.0-kg block (Fig P5.36). A horizontal force of 45.0 N is applied to the 10-kg block, and the 5.00-kg block is tied to the wall. The coef ficient of kinetic friction between all moving surfaces is 0.200. (a) Draw a free-body diagram for each block and identify the action-reaction forces between the blocks. (b) Determine the tension in the string and the magnitude of the acceleration of the 10.0-kg block. 5.00 kg 10.0 kg F= 45.0 N
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