Learning Goal: To be able to set up and analyze the free-body diagrams and equations of motion for a system of particles. Consider the mass and pulley system shown. Mass m₁ = 35 kg and mass m2 = 12 kg. The angle of the inclined plane is given, and the coefficient of kinetic friction between mass m2 and the inclined plane is μ = 0.19. Assume the pulleys are massless and frictionless. (Figure 1) Figure 12 32 my < mi 1 of 1

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Learning Goal:
To be able to set up and analyze the free-body
diagrams and equations of motion for a system of
particles.
Consider the mass and pulley system shown. Mass
m₁ = 35 kg and mass m2 = 12 kg. The angle of
the inclined plane is given, and the coefficient of
kinetic friction between mass m2 and the inclined
plane is μ = 0.19. Assume the pulleys are
massless and frictionless. (Figure 1)
Figure
12
32
my
<
mi
1 of 1
Transcribed Image Text:Learning Goal: To be able to set up and analyze the free-body diagrams and equations of motion for a system of particles. Consider the mass and pulley system shown. Mass m₁ = 35 kg and mass m2 = 12 kg. The angle of the inclined plane is given, and the coefficient of kinetic friction between mass m2 and the inclined plane is μ = 0.19. Assume the pulleys are massless and frictionless. (Figure 1) Figure 12 32 my < mi 1 of 1
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