Question

A space station, in the form of a wheel 118 m in diameter, rotates to provide...

A space station, in the form of a wheel 118 m in diameter, rotates to provide an "artificial gravity" of 2.90 m/s2 for persons who walk around on the inner wall of the outer rim. Find the rate of the wheel's rotation in revolutions per minute that will produce this effect.
? rev/min

0 0
Add a comment Improve this question Transcribed image text
Answer #1

radius, r= 118/2= 59 m

expression for acceleration in rotating motion

a= r*w^2

2.9= 59*w^2

w= 0.2217 rad/sec

w= 2.118 rev/min

plz rate

Add a comment
Know the answer?
Add Answer to:
A space station, in the form of a wheel 118 m in diameter, rotates to provide...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • A space station in the form of a large wheel, 185 m in diameter, rotates to...

    A space station in the form of a large wheel, 185 m in diameter, rotates to provide an “artificial gravity” of 9.2 m/s^2 for people located on the outer rim. Find the rotational frequency of the wheel that will produce this effect. Answer in units of rpm.

  • 018 10.0 points A space station in the form of a large wheel, 180 m in...

    018 10.0 points A space station in the form of a large wheel, 180 m in diameter, rotates to provide an artificial gravity” of 8.6 m/s? for people located at the outer rim. What is the frequency of the rotational mo- tion for the wheel to produce this effect? Answer in units of rev/min.

  • Engineers and science fiction writers have proposed designing space stations in the shape of a rotating...

    Engineers and science fiction writers have proposed designing space stations in the shape of a rotating wheel or ring, which would allow astronauts to experience a sort of artificial gravity when walking along the inner wall of the station's outer rim (a) Imagine one such station with a diameter of 114 m, where the apparent gravity is 280 m/s" at the outer rim. How fast is the station rotating in revolutions per minute? rev/min (b) What If? How fast would...

  • 015 10.0 points A space station in the form of a large wheel, 185 m in...

    015 10.0 points A space station in the form of a large wheel, 185 m in diameter, rotates to provide an "ar- tificial gravity" of 9.2 m/s for people located on the outer rim Find the rotational frequency of the wheel that will produce this effect Answer in units of rpm.

  • One problem for humans living in outer space is that they are apparently weightless. One way...

    One problem for humans living in outer space is that they are apparently weightless. One way around this problem is to design a space station that spins about its center at a constant rate. This creates "artificial gravity" at the outside rim of the station. Part A If the diameter of the space station is 900 m , how many revolutions per minute are needed for the "artificial gravity" acceleration to be 9.80m/s2? Part B If the space station is...

  • A space station is designed in the form of a large, hollow donut that rotates evenly....

    A space station is designed in the form of a large, hollow donut that rotates evenly. The outer radius of the station is 350 meters. With what period should the station rotate for a person sitting on the outer wall to experience "artificial gravity," that is, an acceleration of 9.8 m / s ^ 2

  • 4. A proposed space station has the shape of a large wheel with the living and...

    4. A proposed space station has the shape of a large wheel with the living and working space at the very outside edge (the rim) of the wheel. The space station rotates about an axis through the center, resulting in a normal force on the people inside, simulating gravity. The radius of the wheel is R = 44.6 m. When a person inside the station with a mass M = 65.4 kg steps on a scale, the measured "weight" is...

  • 4. A proposed space station has the shape of a large wheel with the living and...

    4. A proposed space station has the shape of a large wheel with the living and working space at the very outside edge (the rim) of the wheel. The space station rotates about an axis through the center, resulting in a normal force on the people inside, simulating gravity. The radius of the wheel is R = 44.6 m. When a person inside the station with a mass M = 65.4 kg steps on a scale, the measured "weight" is...

  • QUESTION: Part A: A Ferris wheel has diameter of 5.1 m and makes one revolution in...

    QUESTION: Part A: A Ferris wheel has diameter of 5.1 m and makes one revolution in 5.9 seconds. A person weighing 696 N is sitting on one of the benches attached at the rim of the wheel. What is the apparent weight (that is, the normal force exerted on her by the bench) of the person as she passes through the highest point of her motion? Part B: Future space stations will create an artificial gravity by rotating. Consider a...

  • You have designed a space station that rotates on its axis in order to produce "...

    You have designed a space station that rotates on its axis in order to produce " artificial gravity." The space station has tree levels consisting of rings connected to spokes that rotate about a single axis as shown in the figure. The outer ring has a radius of 245 m. a. what must the angular velocity of the space station be to simulate the acceleration due to gravity on Earth's surface on the outer ring of the space station? b....

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT