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A block of mass m = 14,9 kg is attached to the free end of a light string wrapped around a reel of radius R = 0, 47 m and mass M = 9,1 kg. The reel is a uniform disk and fixed on an axis about which it is free to rotate as shown in the figure below. Determine the tension (magnitude) on the string. Express your answer in units of N using zero decimal places. Take g = 9.80 m/s². Note: The moment of inertia of a uniform disk is I disk = MR². Assume the rope is massless and it does not slip over the pulley. M GG m AR R A block of mass m = 14,9 kg is attached to the free end of a light string wrapped around a reel of radius R = 0, 47 m and mass M = 9,1 kg. The reel is a uniform disk and fixed on an axis about which it is free to rotate as shown in the figure below. Determine the tension (magnitude) on the string. Express your answer in units of N using zero decimal places. Take g = 9.80 m/s². Note: The moment of inertia of a uniform disk is I disk = MR². Assume the rope is massless and it does not slip over the pulley. M GG m AR R A block of mass m = 14,9 kg is attached to the free end of a light string wrapped around a reel of radius R = 0, 47 m and mass M = 9,1 kg. The reel is a uniform disk and fixed on an axis about which it is free to rotate as shown in the figure below. Determine the tension (magnitude) on the string. Express your answer in units of N using zero decimal places. Take g = 9.80 m/s². Note: The moment of inertia of a uniform disk is I disk = MR². Assume the rope is massless and it does not slip over the pulley. M GG m AR R A block of mass m = 14,9 kg is attached to the free end of a light string wrapped around a reel of radius R = 0, 47 m and mass M = 9,1 kg. The reel is a uniform disk and fixed on an axis about which it is free to rotate as shown in the figure below. Determine the tension (magnitude) on the string. Express your answer in units of N using zero decimal places. Take g = 9.80 m/s². Note: The moment of inertia of a uniform disk is I disk = MR². Assume the rope is massless and it does not slip over the pulley. M GG m AR R
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College Physics Reasoning and Relationships
ISBN: 978-0840058195
2nd edition
Authors: Nicholas Giordano
Posted Date:
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