A 2-ringed rotation space station is shown below. The inner ring, labeled ring A, has a radius rA = 320m. The outer ring, labeled ring B, has a radius rB = 1,100m. Occupants of ring B are experiencing an acceleration that is equivalent to Earth's gravitational acceleration. a. Calculate the period of revolution of the space station in seconds b. What is the acceleration of occupants in the inner ring?

University Physics Volume 3
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ISBN:9781938168185
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Chapter9: Condensed Matter Physics
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A 2-ringed rotation space station is shown below. The inner ring, labeled ring A, has a
radius rA = 320m. The outer ring, labeled ring B, has a radius rB = 1,100m. Occupants of
ring B are experiencing an acceleration that is equivalent to Earth's gravitational
acceleration.
a. Calculate the period of revolution of the space station in seconds
b. What is the acceleration of occupants in the inner ring?
Transcribed Image Text:A 2-ringed rotation space station is shown below. The inner ring, labeled ring A, has a radius rA = 320m. The outer ring, labeled ring B, has a radius rB = 1,100m. Occupants of ring B are experiencing an acceleration that is equivalent to Earth's gravitational acceleration. a. Calculate the period of revolution of the space station in seconds b. What is the acceleration of occupants in the inner ring?
rA = 3.20 x 102 m
%3D
A
B
rB = 1.10 x 103 m
%3D
Transcribed Image Text:rA = 3.20 x 102 m %3D A B rB = 1.10 x 103 m %3D
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