Disks A and B separately rotate without friction about a pole that goes through their centers. Both rotate in the same direction (see fig.). Disk A has a mass MA = 2.00 kg, radius RA = 0.600 m, and an initial angular speed wA = 20.0 rad/s. Disk B has MB = 4.00 kg, RB = 1.00 m, and wB = 7.24 rad/s. The disks slide freely along the pole toward each other and they stick together, afterward rotating as a single combined unit. Given that the moment of inertia about the center of a disk is I = ½ MR², the angular speed of the disks wAB after they are joined is

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
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Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter12: Rotation I: Kinematics And Dynamics
Section: Chapter Questions
Problem 20PQ: A wheel starts from rest and in 12.65 s is rotating with an angular speed of 5.435 rad/s. a. Find...
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Disks A and B separately rotate without friction about a pole that goes through their centers. Both rotate in the
same direction (see fig.). Disk A has a mass MA = 2.00 kg, radius RA = 0.600 m, and an initial angular speed wA
20.0 rad/s. Disk B has MB = 4.00 kg, RB = 1.00 m, and wB
= 7.24 rad/s. The disks slide freely along the pole toward
each other and they stick together, afterward rotating as a single combined unit. Given that the moment of inertia
about the center of a disk is | = ½ MR2, the angular speed of the disks wAB after they are joined is
A
Transcribed Image Text:Disks A and B separately rotate without friction about a pole that goes through their centers. Both rotate in the same direction (see fig.). Disk A has a mass MA = 2.00 kg, radius RA = 0.600 m, and an initial angular speed wA 20.0 rad/s. Disk B has MB = 4.00 kg, RB = 1.00 m, and wB = 7.24 rad/s. The disks slide freely along the pole toward each other and they stick together, afterward rotating as a single combined unit. Given that the moment of inertia about the center of a disk is | = ½ MR2, the angular speed of the disks wAB after they are joined is A
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