The figure shows three rotating, uniform disks that are coupled by belts. One belt runs around the rims of disks A and C. Another belt runs around a central hub on disk A and the rim of disk B. The belts move smoothly without slippage on the rims and hub. Disk A has radius R; its hub has radius 0.536R; disk B has radius 0.282R; and disk Chas radius 2.03R. Disks B and Chave the same density (mass per unit volume) and thickness. What is the ratio of the magnitude of the angular momentum of disk C to that of disk B? el Beli

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The figure shows three rotating, uniform disks that are coupled by belts. One belt runs around the rims of disks A and C. Another belt
runs around a central hub on disk A and the rim of disk B. The belts move smoothly without slippage on the rims and hub. Disk A has
radius R; its hub has radius 0.536R; disk B has radius 0.282R; and disk Chas radius 2.03R. Disks B and Chave the same density (mass
per unit volume) and thickness. What is the ratio of the magnitude of the angular momentum of disk C to that of disk B?
Hel
Belt
Number
Units
Transcribed Image Text:The figure shows three rotating, uniform disks that are coupled by belts. One belt runs around the rims of disks A and C. Another belt runs around a central hub on disk A and the rim of disk B. The belts move smoothly without slippage on the rims and hub. Disk A has radius R; its hub has radius 0.536R; disk B has radius 0.282R; and disk Chas radius 2.03R. Disks B and Chave the same density (mass per unit volume) and thickness. What is the ratio of the magnitude of the angular momentum of disk C to that of disk B? Hel Belt Number Units
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