Blocks A, B, and C are placed as in the figure below and connected by ropes of negligible mass. Both A and Bhave masses equal to 2.0 kg and the coefficient of friction between each block and the surface is 0.35. Block Cdescends with constant velocity. A 36.9° (a) Draw three separate free-body diagrams showing forces acting on block A, B, and C. (b) What is the tension in the rope connecting blocks A and B? (c) What is the mass of block C? (d) If the rope connecting A and B were cut, what would be the acceleration of C?

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Chapter1: Units, Trigonometry. And Vectors
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Blocks A, B, and Care placed as in the figure below and connected by ropes of negligible
mass. Both A and Bhave masses equal to 2.0 kg and the coefficient of friction between each
block and the surface is 0.35. Block C descends with constant velocity.
36.9°
(a) Draw three separate free-body diagrams showing forces acting on block A, B, and
C.
(b) What is the tension in the rope connecting blocks A and B?
(c) What is the mass of block C?
(d) If the rope connecting A and B were cut, what would be the acceleration of C?
Transcribed Image Text:Blocks A, B, and Care placed as in the figure below and connected by ropes of negligible mass. Both A and Bhave masses equal to 2.0 kg and the coefficient of friction between each block and the surface is 0.35. Block C descends with constant velocity. 36.9° (a) Draw three separate free-body diagrams showing forces acting on block A, B, and C. (b) What is the tension in the rope connecting blocks A and B? (c) What is the mass of block C? (d) If the rope connecting A and B were cut, what would be the acceleration of C?
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