There is a 2 block system in the picture below, the top block is held stationary by the rope and has a mass of 27.0kg. The bottom block has a mass of 9.00kg and slips down the 35.0degree incline at a constant speed. assume the coefficient of kinetic friction is the same between all the surfaces that touch. a) Draw a detailed free-bond diagram for each block in the system (2 separate free body diagrams) b) Determine the coefficient of kinetic friction c) Figure out the tension in the cord. Constant speed m₂ m₂

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There is a 2 block system in the picture below, the top block is held
stationary by the rope and has a mass of 27.0kg. The bottom block has a
mass of 9.00kg and slips down the 35.0degree incline at a constant speed.
assume the coefficient of kinetic friction is the same between all the
surfaces that touch.
a) Draw a detailed free-bond diagram for each block in the system (2
separate free body diagrams)
b) Determine the coefficient of kinetic friction
c) Figure out the tension in the cord.
Constant speed
m₂
m₂
Transcribed Image Text:There is a 2 block system in the picture below, the top block is held stationary by the rope and has a mass of 27.0kg. The bottom block has a mass of 9.00kg and slips down the 35.0degree incline at a constant speed. assume the coefficient of kinetic friction is the same between all the surfaces that touch. a) Draw a detailed free-bond diagram for each block in the system (2 separate free body diagrams) b) Determine the coefficient of kinetic friction c) Figure out the tension in the cord. Constant speed m₂ m₂
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