Two blocks (m₁ = 8kg,m₂ = 11kg) are connected by a string that passes through a massless pulley as shown in the figure below. The first block with mass m₁ is observed to slide on an inclined plane when the system is released when m₂ is at an height of h from the ground. The inclined plane makes an angle of 0 = 33° with the horizontal and the kinetic friction coefficient between the inclined plane and m₁ is μ = 0.37. Take g = 9.80m/s². Determine the acceleration of the blocks (magnitude) in units of m/s². Round your answer to one decimal place. Answer: mi Uk 0 D m₂ h

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Two blocks (m₁ = 8kg,m₂ = 11kg) are connected by a string that passes through a massless pulley as shown in the figure below. The first block with mass m₁ is
observed to slide on an inclined plane when the system is released when m₂ is at an height of h from the ground. The inclined plane makes an angle of 0 = 33° with
the horizontal and the kinetic friction coefficient between the inclined plane and m₁ is μ = 0.37. Take g = 9.80m/s². Determine the acceleration of the blocks
(magnitude) in units of m/s². Round your answer to one decimal place.
Answer:
mi
Uk
0
D
m₂
h
Transcribed Image Text:Two blocks (m₁ = 8kg,m₂ = 11kg) are connected by a string that passes through a massless pulley as shown in the figure below. The first block with mass m₁ is observed to slide on an inclined plane when the system is released when m₂ is at an height of h from the ground. The inclined plane makes an angle of 0 = 33° with the horizontal and the kinetic friction coefficient between the inclined plane and m₁ is μ = 0.37. Take g = 9.80m/s². Determine the acceleration of the blocks (magnitude) in units of m/s². Round your answer to one decimal place. Answer: mi Uk 0 D m₂ h
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