Two identical discs are spinning on a vertical rod, at different rotation rates. The bottom disc is on a support, and the top disc is sliding down to hit the bottom one. Once they hit, they rotate together as a single object. Calculate the rotation rate just after the collision, in rev/s. • Bottom rotation rate: 5900 rev/s • Top rotation rate: 8000 rev/s • Mass 310 grams • Radius 21 cm

College Physics
10th Edition
ISBN:9781285737027
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter7: Rotational Motion And The Law Of Gravity
Section: Chapter Questions
Problem 69AP: A piece of mud is initially at point A on the rim of a bicycle wheel of radius R rotating clockwise...
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Two identical discs are spinning on a vertical rod, at different rotation rates. The bottom disc
is on a support, and the top disc is sliding down to hit the bottom one.
Once they hit, they rotate together as a single object. Calculate the rotation rate just after
the collision, in rev/s.
• Bottom rotation rate: 5900 rev/s
• Top rotation rate: 8000 rev/s
• Mass 310 grams
• Radius 21 cm
Transcribed Image Text:Two identical discs are spinning on a vertical rod, at different rotation rates. The bottom disc is on a support, and the top disc is sliding down to hit the bottom one. Once they hit, they rotate together as a single object. Calculate the rotation rate just after the collision, in rev/s. • Bottom rotation rate: 5900 rev/s • Top rotation rate: 8000 rev/s • Mass 310 grams • Radius 21 cm
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