Different ways to make artificial gravity

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This is just another quick video where I talk about a few ways we can simulate gravity in space.

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The fact about gravity being different at your feet vs head in the spin model was really interesting

mdalie
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My most favourite type of gravity is the tethered gravity.
The ring gravity space stations are the best design for interplanetary missions if we become a Star Wars civilian.
What I'd do for a battle station is have a ring in it and other modules on the middle of the ship would have zero gravity but what I would do is have the zero gravity modules having a magnetic place.

itzmclightningcraftyt
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One thing that could make continuous acceleration more feasible would be beam powered propulsion. Something like a large superconducting hoop that produces a magnetic field, which is pushed by particles sent from somewhere else.

transgenderbender
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Just discovered this channel! Pretty nice videos I like that they're not too long.

aunox
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a couple other options:

artificial black hole inside the ship big enough to provide earthlike gravity towards it
freefall towards the sun while accelerating away from it using solar sails
freefall towards the andromedia galaxy while propulsing away from it at F = 2.4 × 10 30 k g

TheBowersj
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Your videos are awesome 😎 keep up the great work ur channel is so cool and informative

darkkfireking
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Bro why the views are so low.. these are well made edited video, which takes effort.are you satisfied with this?

ARMY-ydsc
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The closest to Earth gravity would be acceleration/deceleration gravity.
But as said in this video that would not be practical.
On the tether option, that might be able to come close if you don't try to think of the gravity produced as pulling directly away from center.
It should actually be slightly offset. It has to be due to the rotational aspect. Unlike a car that is moving in one direction, an object swinging in an arc is always changing direction. So walking in the direction of motion in a 2001 styled station would always feel like you were going uphill, and a ball placed on the floor would always roll in the opposite direction of rotation. It may move in the direction of motion but it will be rolling away from it. Basically, the station will always be moving just a little too fast for the ball to stay in place.
No math on this. It just seems correct to me. If I'm wrong I'm wrong.

Stuff_And_Things
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Gonna need LOTS of Dramamine on hand. But hey, ping pong will be CRAZY in spin gravity, so there's that. 🤷‍♀️

thethDoctor
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Why spin 360 degrees? Why not change direction after one degree of a circle?

deathsinger