Three blocks are connected on the table as shown below. The coefficient of kinetic friction between the block of mass m2 and the table is 0.400. The objects have masses of m1 = 4.25 kg, m2 = 1.25 kg, and m3 = 1.90 kg, and the pulleys are frictionless. (a) Determine the acceleration of each object, including its direction. (b) Determine the tensions in the two cords. (left and right) (c) If the tabletop were smooth, would the tensions increase, decrease, or remain the same? Possible answers: The tensions in the both cords will remain the same. The tension in the left cord will decrease while the tension in the right cord will increase.     The tension in the left cord will increase while the tension in the right cord will decrease.

College Physics
11th Edition
ISBN:9781305952300
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Chapter1: Units, Trigonometry. And Vectors
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Three blocks are connected on the table as shown below. The coefficient of kinetic friction between the block of mass m2 and the table is 0.400. The objects have masses of m1 = 4.25 kg, m2 = 1.25 kg, and m3 = 1.90 kg, and the pulleys are frictionless.

(a) Determine the acceleration of each object, including its direction.

(b) Determine the tensions in the two cords. (left and right)

(c) If the tabletop were smooth, would the tensions increase, decrease, or remain the same? Possible answers:
The tensions in the both cords will remain the same.

The tension in the left cord will decrease while the tension in the right cord will increase.    

The tension in the left cord will increase while the tension in the right cord will decrease.

 

Three blocks are connected on the table as shown below. The coefficient of kinetic friction between the block of mass m, and the table is 0.400. The objects have masses of m, = 4.25 kg, m, = 1.25 kg, and m, = 1.90 kg, and the
pulleys are frictionless.
Transcribed Image Text:Three blocks are connected on the table as shown below. The coefficient of kinetic friction between the block of mass m, and the table is 0.400. The objects have masses of m, = 4.25 kg, m, = 1.25 kg, and m, = 1.90 kg, and the pulleys are frictionless.
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