2. Two blocks of masses m, = 1 kg and m, = 0.30 kg are connected by a light inextensible cord passing around a fixed frictionless pulley as shown in the figure below. The coefficient of kinetic friction between all surface is given by u = 0.3. The horizontal force F = 6.00 N, causes to drag block 2 to the left at a constant acceleration. F 2 1 (a) Draw the free-body diagram of each block (b) What is the tension on the cord that connects the two blocks? (Ans: 5.02 N) (c) What is the magnitude of the acceleration of the blocks? (Ans: 0.31 m/s)

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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2. Two blocks of masses m, = 1 kg and m2 = 0.30 kg are connected by a light inextensible
cord passing around a fixed frictionless pulley as shown in the figure below. The
coefficient of kinetic friction between all surface is given by µ = 0.3. The horizontal force,
F = 6.00 N, causes to drag block 2 to the left at a constant acceleration.
RING
F
2
1
(a) Draw the free-body diagram of each block
(b) What is the tension on the cord that connects the two blocks? (Ans: 5.02 N)
(c) What is the magnitude of the acceleration of the blocks? (Ans: 0.31 m/s³)
Transcribed Image Text:2. Two blocks of masses m, = 1 kg and m2 = 0.30 kg are connected by a light inextensible cord passing around a fixed frictionless pulley as shown in the figure below. The coefficient of kinetic friction between all surface is given by µ = 0.3. The horizontal force, F = 6.00 N, causes to drag block 2 to the left at a constant acceleration. RING F 2 1 (a) Draw the free-body diagram of each block (b) What is the tension on the cord that connects the two blocks? (Ans: 5.02 N) (c) What is the magnitude of the acceleration of the blocks? (Ans: 0.31 m/s³)
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