A space station is to be constructed in the shape of a uniform hollow ring of mass M = 4,750 kg and radius R = 150 m. Members of the crew will walk on a deck formed by the inner surface of the outer cylindrical wall of the ring. The ring will be set to rotate (from rest) about its axis with an angular acceleration of 0.050 rad/s? for 67.1 seconds. What will be the space station's angular momentum L, after it has reached its target rotation? O 4.43 x 108 kg-m²/s O 5.52 x 108 kg-m2/s O 2.81 x 108 kg-m2/s O 3.22 x 107 kg-m2/s O 3.59 x 10 kg-m²/s MacB

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A space station is to be constructed in the shape of a uniform hollow ring of mass M = 4,750 kg and radius R = 150 m. Members of the
crew will walk on a deck formed by the inner surface of the outer cylindrical wall of the ring. The ring will be set to rotate (from rest) about
its axis with an angular acceleration of 0.050 rad/s² for 67.1 seconds. What will be the space station's angular momentum L, after it has
reached its target rotation?
O 4.43 x 108 kg-m²/s
O 5.52 x 108 kg-m²/s
O 2.81 x 108 kg-m²/s
O 3.22 x 107 kg-m²/s
O 3.59 x 10 kg-m²/s'
MacB
W
Transcribed Image Text:A space station is to be constructed in the shape of a uniform hollow ring of mass M = 4,750 kg and radius R = 150 m. Members of the crew will walk on a deck formed by the inner surface of the outer cylindrical wall of the ring. The ring will be set to rotate (from rest) about its axis with an angular acceleration of 0.050 rad/s² for 67.1 seconds. What will be the space station's angular momentum L, after it has reached its target rotation? O 4.43 x 108 kg-m²/s O 5.52 x 108 kg-m²/s O 2.81 x 108 kg-m²/s O 3.22 x 107 kg-m²/s O 3.59 x 10 kg-m²/s' MacB W
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