Mass m, = 13.7 kg is on a horizontal surface. Mass m, = 7.49 kg hangs freely on a rope which is attached to the first mass. The coefficient of static friction between m; and the horizontal surface is Hs = p.618, while the coefficient of kinetic friction is Hk = 0.121. m2 If the system is in motion with m, moving to the left, then what will be the magnitude of the system's acceleration? Consider the pulley to be massless and frictionless. Submit Answer Tries 0/10 If the system is in motion with m, moving to the right, then what will be the magnitude of the system's acceleration? 2.70 m/s^2 are correct. Your receipt no. is 159-1287 O Previous Tries

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
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Mass m, = 13.7 kg is on a horizontal surface. Mass m, = 7.49 kg hangs freely on a rope which is attached to the first mass. The coefficient of static friction between m; and the horizontal surface is Hs =
p.618, while the coefficient of kinetic friction is Hk = 0.121.
m2
If the system is in motion with m, moving to the left, then what will be the magnitude of the system's acceleration? Consider the pulley to be massless and frictionless.
Submit Answer Tries 0/10
If the system is in motion with m, moving to the right, then what will be the magnitude of the system's acceleration?
2.70 m/s^2
are correct.
Your receipt no. is 159-1287 O
Previous Tries
Transcribed Image Text:Mass m, = 13.7 kg is on a horizontal surface. Mass m, = 7.49 kg hangs freely on a rope which is attached to the first mass. The coefficient of static friction between m; and the horizontal surface is Hs = p.618, while the coefficient of kinetic friction is Hk = 0.121. m2 If the system is in motion with m, moving to the left, then what will be the magnitude of the system's acceleration? Consider the pulley to be massless and frictionless. Submit Answer Tries 0/10 If the system is in motion with m, moving to the right, then what will be the magnitude of the system's acceleration? 2.70 m/s^2 are correct. Your receipt no. is 159-1287 O Previous Tries
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