A solid disc of mass m1 = 9.0 kg and radius ri = 0.25 m is rotating with an angular velocity equal to w = 40 rad/s . A thin rod of mass M2= 3.1 kg and length L2= 2R is dropped on top of the solid disc sticks to the disc so they rotate together. %3D m, 2. m1 f What is the final angular velocity of the system?

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Chapter10: Fixed-axis Rotation
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Problem 63P: A system consists of a disk of mass 2.0 kg and radius 50 cm upon which is mounted an annular...
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A solid disc of mass M1 = 9.0 kg and radius r1 = 0.25 m is rotating with an angular
velocity equal to w = 40 rad/s . A thin rod of mass M2= 3.1 kg and length L2= 2R is
dropped on top of the solid disc sticks to the disc so they rotate together.
%D
m.
m1
What is the final angular velocity of the system?
The moment of inertia of a disc rotating about its center is:
Idisc
MR²
and the moment of inertia of a thin rod rotating about its center is:
Irod
37 rad/s
O 26 rad/s
40 rad/s
33 rad/s
10 rad/s
Transcribed Image Text:A solid disc of mass M1 = 9.0 kg and radius r1 = 0.25 m is rotating with an angular velocity equal to w = 40 rad/s . A thin rod of mass M2= 3.1 kg and length L2= 2R is dropped on top of the solid disc sticks to the disc so they rotate together. %D m. m1 What is the final angular velocity of the system? The moment of inertia of a disc rotating about its center is: Idisc MR² and the moment of inertia of a thin rod rotating about its center is: Irod 37 rad/s O 26 rad/s 40 rad/s 33 rad/s 10 rad/s
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