Two wheels of moment of inertia 6 o kg mand 2.2 kg m² are set in rotation with angular speed 3.4 rad/s and 9 9 rad/s, respectively When they are coupled face to face (as shown in the following figure) they rotate with a common angular speed o due to fcuonal forces, then what is the change in kinetic energy 0) of the wheels due to frictional forces? Before coupling After counling

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter8: Rotational Equilibrium And Dynamics
Section8.5: Rotational Kinetic Energy
Problem 8.4QQ: Two spheres, one hollow and one solid, are rotating with the same angular speed around an axis...
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Two wheels of moment of inertia 6 o kg mand 2.2 kg m² are set in rotation with angular speed 3.4 rad/s
and 9 9 rad/s, respectively When they are coupled face to face (as shown in the following figure) they
rotate with a common angular speed o due to fcuonal forces, then what is the change in kinetic energy
0) of the wheels due to frictional forces?
Before coupling
After counling
Transcribed Image Text:Two wheels of moment of inertia 6 o kg mand 2.2 kg m² are set in rotation with angular speed 3.4 rad/s and 9 9 rad/s, respectively When they are coupled face to face (as shown in the following figure) they rotate with a common angular speed o due to fcuonal forces, then what is the change in kinetic energy 0) of the wheels due to frictional forces? Before coupling After counling
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