The Uncanny Sight of Waves Breaking on a Star
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Re: The Uncanny Sight of Waves Breaking on a Star
#2Re: The Uncanny Sight of Waves Breaking on a Star
#3The description of the crests lagging the troughs made no sense to me. I have no idea what is meant. Anyone have insight?
Re: The Uncanny Sight of Waves Breaking on a Star
#4Re: The Uncanny Sight of Waves Breaking on a Star
#5The hero image is a HEIF with a PNG extension. Chrome doesn't care, but Safari does.
Re: The Uncanny Sight of Waves Breaking on a Star
#6Stars are balls of glowing plasma. If you were to vacuum it, as another star or black hole too close for comfort would, what would this plasma look like? I reckon it would not be visible, a bit like trying to vacuum fire. All you get is hot, invisible gas.
So effectively, the image at the top of the article is completely unrealistic. Any transfer of matter from a star would be basically invisible to the naked eye. You'd see two stars close by, and one getting imperceptibly smaller than the other that slowly grows.
Is that correct?
Re: The Uncanny Sight of Waves Breaking on a Star
#7The description of the crests lagging the troughs made no sense to me. I have no idea what is meant. Anyone have insight?
In the case of this star simulation they are saying that the wave is crashing, but the crashing part is falling back on the back side of the wave instead of going forward over your head.
Re: The Uncanny Sight of Waves Breaking on a Star
#8Re: The Uncanny Sight of Waves Breaking on a Star
#9Seeing that picture of a star absorbing another, I got a dumb question: Stars are balls of glowing plasma. If you were to vacuum it, as another star or black hole too close for comfort would, what would this plasma look like? I reckon it would not be visible, a bit like trying to vacuum fire. All you get is hot, invisible gas. So effectively, the image at the top of the article is completely unrealistic. Any transfer…
So from that perspective, fire is very much vacuumable.
Re: The Uncanny Sight of Waves Breaking on a Star
#10Seeing that picture of a star absorbing another, I got a dumb question: Stars are balls of glowing plasma. If you were to vacuum it, as another star or black hole too close for comfort would, what would this plasma look like? I reckon it would not be visible, a bit like trying to vacuum fire. All you get is hot, invisible gas. So effectively, the image at the top of the article is completely unrealistic. Any transfer…
I wouldn't recommend trying to vacuum fire... But if you were to do it, you would find you ended up with flames going all the way up your vacuum hose and into the dust collector. So from that perspective, fire is very much vacuumable.
But at astronomical scales, even if vacuum is a good insulator, the glowing plasma would somewhat cool down before it reaches the other star, I imagine.