Assume the three blocks (m, = 1.0 kg, m, = 2.0 kg, and mz = 3.5 kg) portrayed in the figure below move on a frictionless surface and a force F = 48 N acts as shown on the 3.5-kg block. m2 (a) Determine the acceleration given this system. m/s? (to the right) (b) Determine the tension in the cord connecting the 3.5-kg and the 1.0-kg blocks. (c) Determine the force exerted by the 1.0-kg block on the 2.0-kg block.

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter4: Newton's Laws Of Motion
Section: Chapter Questions
Problem 73AP: Three objects are connected on a table as shown in Figure P4.73. The coefficient of kinetic friction...
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Ássume the three blocks (m,
= 1.0 kg, m, = 2.0 kg, and m, = 3.5 kg) portrayed in the figure below move on a frictionless surface and a force F = 48 N acts as shown on the 3.5-kg block.
F
m2
(a) Determine the acceleration given this system.
m/s? (to the right)
(b) Determine the tension in the cord connecting the 3.5-kg and the 1.0-kg blocks.
(c) Determine the force exerted by the 1.0-kg block on the 2.0-kg block.
Transcribed Image Text:Ássume the three blocks (m, = 1.0 kg, m, = 2.0 kg, and m, = 3.5 kg) portrayed in the figure below move on a frictionless surface and a force F = 48 N acts as shown on the 3.5-kg block. F m2 (a) Determine the acceleration given this system. m/s? (to the right) (b) Determine the tension in the cord connecting the 3.5-kg and the 1.0-kg blocks. (c) Determine the force exerted by the 1.0-kg block on the 2.0-kg block.
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