A uniform solid disk of mass m = 3.04 kg and radius r = 0.200 m rotates about a fixed axis perpendicular to its face with angular frequency 5.90 rad/s. (a) Calculate the magnitude of the angular momentum of the disk when the axis of rotation passes through its center of mass. | kg - m2/s (b) What is the magnitude of the angular momentum when the axis of rotation passes through a point midway between the center and the rim? kg - m2/s
A uniform solid disk of mass m = 3.04 kg and radius r = 0.200 m rotates about a fixed axis perpendicular to its face with angular frequency 5.90 rad/s. (a) Calculate the magnitude of the angular momentum of the disk when the axis of rotation passes through its center of mass. | kg - m2/s (b) What is the magnitude of the angular momentum when the axis of rotation passes through a point midway between the center and the rim? kg - m2/s
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(a) Calculate the magnitude of the angular momentum of the disk when the axis of rotation passes through its center of mass.
|kg · m2/s
(b) What is the magnitude of the angular momentum when the axis of rotation passes through a point midway between the center and the rim?
|kg - m?/s"
Transcribed Image Text:A uniform solid disk of mass m = 3.04 kg and radius r = 0.200 m rotates about a fixed axis perpendicular to its face with angular frequency 5.90 rad/s.
(a) Calculate the magnitude of the angular momentum of the disk when the axis of rotation passes through its center of mass.
|kg · m2/s
(b) What is the magnitude of the angular momentum when the axis of rotation passes through a point midway between the center and the rim?
|kg - m?/s
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