Microgravity 101
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Microgravity 101
1–10 of 12 posts
Re: Microgravity 101
#2Article makes this seem true, regardless of whether or not you are in orbit. But doesn’t this matter of perspective become ridiculous if you are floating freely in space? As in, yes, you’re “falling” but only because Earth is moving away from you or toward you? Honest question here…
Re: Microgravity 101
#3Re: Microgravity 101
#4I'm confused, the article simultaneously claims the ISS isn't "zero-G" and is "0G". Is it possible to conduct a true 0G experiment on the ISS, or is there always microgravity i.e. '10⁻³G to 10⁻⁶G'?
Re: Microgravity 101
#5> Gravity is always present. What you feel as “weightlessness” is actually freefall. Article makes this seem true, regardless of whether or not you are in orbit. But doesn’t this matter of perspective become ridiculous if you are floating freely in space? As in, yes, you’re “falling” but only because Earth is moving away from you or toward you? Honest question here…
Re: Microgravity 101
#6> Gravity is always present. What you feel as “weightlessness” is actually freefall. Article makes this seem true, regardless of whether or not you are in orbit. But doesn’t this matter of perspective become ridiculous if you are floating freely in space? As in, yes, you’re “falling” but only because Earth is moving away from you or toward you? Honest question here…
Re: Microgravity 101
#7I'm confused, the article simultaneously claims the ISS isn't "zero-G" and is "0G". Is it possible to conduct a true 0G experiment on the ISS, or is there always microgravity i.e. '10⁻³G to 10⁻⁶G'?
There is always microgravity, i.e. residual acceleration due to drag and thrusters, and especially vibrations. Worst offenders are actually the astronauts, especially when they work out on one of their exercise devices right next to your experiment
Robert Forward had a scheme for nulling these over a larger volume using a heavy ring, a technology related to the one he used in the novel Dragon's Egg (which used SFnal superdense matter to enable a space station to exist in close orbit to a neutron star without the tidal forces killing the occupants.)
Re: Microgravity 101
#8> Gravity is always present. What you feel as “weightlessness” is actually freefall. Article makes this seem true, regardless of whether or not you are in orbit. But doesn’t this matter of perspective become ridiculous if you are floating freely in space? As in, yes, you’re “falling” but only because Earth is moving away from you or toward you? Honest question here…
It is certainly possible to get far enough away from anything that gravity is far less than one millionth of earth’s gravity, so it’s no longer microgravity by the article’s criteria. Floating freely would be free fall, but that doesn’t exactly mean what it sounds like when gravity is negligible.
The article also didn’t clarify that at our typical orbital distances for ISS and satellites, gravity is not in the microgravity range, it’s still very strong.
Re: Microgravity 101
#9> Gravity is always present. What you feel as “weightlessness” is actually freefall. Article makes this seem true, regardless of whether or not you are in orbit. But doesn’t this matter of perspective become ridiculous if you are floating freely in space? As in, yes, you’re “falling” but only because Earth is moving away from you or toward you? Honest question here…
How to define "floating freely" is not easy to define. The potential energy surface of gravitation extends in 1/r wgich makes it a long range interaction. So if the earth attraction is small enough that you want to neglect it, you may still be trapped in the sun potential well. And if you can escape the sun attraction you are still prisoner of the galaxy. There is no 0 gravity, but there is various levels of neglecta…
What does this mean? Gravity falloff is 1/r^2 right?
Re: Microgravity 101
#10> Gravity is always present. What you feel as “weightlessness” is actually freefall. Article makes this seem true, regardless of whether or not you are in orbit. But doesn’t this matter of perspective become ridiculous if you are floating freely in space? As in, yes, you’re “falling” but only because Earth is moving away from you or toward you? Honest question here…
How to define "floating freely" is not easy to define. The potential energy surface of gravitation extends in 1/r wgich makes it a long range interaction. So if the earth attraction is small enough that you want to neglect it, you may still be trapped in the sun potential well. And if you can escape the sun attraction you are still prisoner of the galaxy. There is no 0 gravity, but there is various levels of neglecta…