You are in a cylinder-shaped space station 120 m in diameter, rotated on its axis to provide 3 m / s2 "artificial gravity" to people walking around the inner wall of the outer rim. Explain by extracting data, diagrams and / or drawing of the problem, the proposed phenomenon. Find the rate of rotation of the cylinder (in revolutions per minute) that would provide this effect. You must raise the equations, make the correct substitution and write down your result with the appropriate units You are asked to achieve an artificial gravity of 9.81 m / s2, give a brief explanation of the implications that this entails.
You are in a cylinder-shaped space station 120 m in diameter, rotated on its axis to provide 3 m / s2 "artificial gravity" to people walking around the inner wall of the outer rim. Explain by extracting data, diagrams and / or drawing of the problem, the proposed phenomenon. Find the rate of rotation of the cylinder (in revolutions per minute) that would provide this effect. You must raise the equations, make the correct substitution and write down your result with the appropriate units You are asked to achieve an artificial gravity of 9.81 m / s2, give a brief explanation of the implications that this entails.
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You are in a cylinder-shaped space station 120 m in diameter, rotated on its axis to provide 3 m / s2 "artificial gravity" to people walking around the inner wall of the outer rim.
Explain by extracting data, diagrams and / or drawing of the problem, the proposed phenomenon.
Find the rate of rotation of the cylinder (in revolutions per minute) that would provide this effect. You must raise the equations, make the correct substitution and write down your result with the appropriate units
You are asked to achieve an artificial gravity of 9.81 m / s2, give a brief explanation of the implications that this entails.
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