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Problem # 2 The sled dog in figure drags sleds A and B across the snow using ropes 1 and 2. The coefficient of friction between the sleds and the snow is 0.15. The acceleration of the entire system is 0.6 m/s². 1. Draw a combined free body diagram of the sleds and find the tension in rope 2. 2. Draw a free body diagram of sled A and find the tension in rope 1.

          Problem # 2
The sled dog in figure drags sleds A and B across the snow using ropes 1 and 2. The coefficient of friction between the sleds and the snow is 0.15. The acceleration of the entire system is 0.6 m/s².
1. Draw a combined free body diagram of the sleds and find the tension in rope 2.
2. Draw a free body diagram of sled A and find the tension in rope 1.
        
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Problem # 2
The sled dog in figure drags sleds A and B across the snow using ropes 1 and 2. The coefficient of friction between the sleds and the snow is 0.15. The acceleration of the entire system is 0.6 m/s².
1. Draw a combined free body diagram of the sleds and find the tension in rope 2.
2. Draw a free body diagram of sled A and find the tension in rope 1.

Added by Marilyn M.

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University Physics with Modern Physics
University Physics with Modern Physics
Hugh D. Young 14th Edition
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Problem # 2 The sled dog in figure drags sleds A and B across the snow using ropes 1 and 2. The coefficient of friction between the sleds and the snow is 0.15. The acceleration of the entire system is 0.6 m/s². 1. Draw a combined free body diagram of the sleds and find the tension in rope 2. 2. Draw a free body diagram of sled A and find the tension in rope 1.
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Problem # 2 The sled dog in figure drags sleds A and B across the snow using ropes 1 and 2. The coefficient of friction between the sleds and the snow is 0.15. The acceleration of the entire system is 0.6 m/s². 1. Draw a combined free body diagram of the sleds and find the tension in rope 2. 2. Draw a free body diagram of sled A and find the tension in rope 1.

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Transcript

-
00:01 For question a or question 1, we're asked to draw the combined free body diagram.
00:07 So this is my depiction of the free body diagram.
00:10 We have this tension right here connecting these two blocks.
00:13 We have a tension t2 pulling on the right.
00:16 We have our normal forces, n -a and nb.
00:19 We have a friction force here and a friction force here as well.
00:23 So now we can make some equations to solve for the tension in rope 2.
00:28 So t2 minus f -a minus t1 is equal to m -b times a...
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