2. The two blocks are attached to each other by a massless string that is wrapped around a frictionless pulley as shown in figure-2. When the bottom 4.00 kg block is pulled to the left by the constant force P = 45 N, the top 2.00 kg block slides across it to the right. Assume that the coefficient of kinetic friction between all surfaces is uk = 0.400 2.0 kg 4.0 kg Figure 2 Page 1 (a) Draw a complete free body diagram of this system. (b) Find the magnitude and direction of the acceleration of each block. (c) Find the tension T on the rope.
2. The two blocks are attached to each other by a massless string that is wrapped around a frictionless pulley as shown in figure-2. When the bottom 4.00 kg block is pulled to the left by the constant force P = 45 N, the top 2.00 kg block slides across it to the right. Assume that the coefficient of kinetic friction between all surfaces is uk = 0.400 2.0 kg 4.0 kg Figure 2 Page 1 (a) Draw a complete free body diagram of this system. (b) Find the magnitude and direction of the acceleration of each block. (c) Find the tension T on the rope.
College Physics
1st Edition
ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
Publisher:Paul Peter Urone, Roger Hinrichs
Chapter4: Dynamics: Force And Newton's Laws Of Motion
Section: Chapter Questions
Problem 7PE: (a) If the rocket sled shown in Figure 4.32 starts with only one rocket burning, what is the...
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