3. Consider a ring space station, rotating counterclockwise at 0. 6282 rad/s. C. 0.6282 rad/s thor Fig. 1-a spinning space station. a. What is that angular velocity, 0. 6282 rad/s, in revolutions per minute? b. If the centripetal acceleration at the rim of the station is 9.81m/s2, what is the radius of the structure? A chunk of stuff on the rim of the station breaks off, and flies away at a constant velocity in a straight line. Its velocity will be the linear, tangential velocity v it had the instant it broke away from the rim of the station, at the radius found in (b). How fast is it traveling?

Glencoe Physics: Principles and Problems, Student Edition
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ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter7: Gravitation
Section: Chapter Questions
Problem 62A
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quo 3. Consider a ring space station, rotating counterclockwise at 0. 6282 rad/s.
0.6282 rad/s
C.
nugeh met
Fig. 1 - a spinning space station.
a.
What is that angular velocity, O. 6282 rad/s, in revolutions per minute?
b. If the centripetal acceleration at the rim of the station is 9.81 m/s², what is the
radius of the structure?
A chunk of stuff on the rim of the station breaks off, and flies away at a constant
velocity in a straight line. Its velocity will be the linear, tangential velocity v it had
the instant it broke away from the rim of the station, at the radius found in (b).
How fast is it traveling?
Transcribed Image Text:quo 3. Consider a ring space station, rotating counterclockwise at 0. 6282 rad/s. 0.6282 rad/s C. nugeh met Fig. 1 - a spinning space station. a. What is that angular velocity, O. 6282 rad/s, in revolutions per minute? b. If the centripetal acceleration at the rim of the station is 9.81 m/s², what is the radius of the structure? A chunk of stuff on the rim of the station breaks off, and flies away at a constant velocity in a straight line. Its velocity will be the linear, tangential velocity v it had the instant it broke away from the rim of the station, at the radius found in (b). How fast is it traveling?
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