Copy of Consider the system shown below, where m5.6kg and ma18.5kg are attached to the ends of a massless string passing through a pulley of mass M7.Skg. The Inclined plane is frictionless and makes an angle of en420, The pulley is in the shape of a disk with radius R44 cm and the moment of inertia of a disk is MR-/2. If the system is released from rest when mg is at an height of h-18.2m, determine the angular speed of the pulley right before mg hits the ground. Express your answer using SI units with one decimal place. Take g-9.8 m/s m2 h
Copy of Consider the system shown below, where m5.6kg and ma18.5kg are attached to the ends of a massless string passing through a pulley of mass M7.Skg. The Inclined plane is frictionless and makes an angle of en420, The pulley is in the shape of a disk with radius R44 cm and the moment of inertia of a disk is MR-/2. If the system is released from rest when mg is at an height of h-18.2m, determine the angular speed of the pulley right before mg hits the ground. Express your answer using SI units with one decimal place. Take g-9.8 m/s m2 h
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Consider the system shown below, where m5.6kg and ma18.5kg are attached to the ends of a massless string passing through a pulley of mass M7.Skg. The
Inclined plane is frictionless and makes an angle of en420, The pulley is in the shape of a disk with radius R44 cm and the mornent of inertia of a disk is MR-/2. If
the system is released from rest when mg is at an height of h-18.2m, determine the angular speed of the pulley right before mg hits the ground. Express your
answer using SI units with one decimal place. Take g-9.8 m/s
m2
h](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0cab7183-39ed-445e-9366-4a2d9af04dc8%2F6cd7ba47-69bc-4929-b9f5-a2b552b2b2f5%2Fc3hcee8_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Copy of
Consider the system shown below, where m5.6kg and ma18.5kg are attached to the ends of a massless string passing through a pulley of mass M7.Skg. The
Inclined plane is frictionless and makes an angle of en420, The pulley is in the shape of a disk with radius R44 cm and the mornent of inertia of a disk is MR-/2. If
the system is released from rest when mg is at an height of h-18.2m, determine the angular speed of the pulley right before mg hits the ground. Express your
answer using SI units with one decimal place. Take g-9.8 m/s
m2
h
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