Earlier quoted context omitted.
So the author is saying fields are already filling things up, right? To compare this to the "we can pack them atoms tighter" model seems to be confusing the author's model with another, separate mental model, one in which we can fill up more. But the author's model says we're full. Full of this field stuff. Not so? IANAS
Yeah, they're probability distributions, not fields. So electrons, protons and neutrons are still tiny, even though their positions are uncertain. And so atoms are still mostly empty space.
We are not mostly empty space
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Re: We are not mostly empty space
#92Earlier quoted context omitted.
Yeah, they're probability distributions, not fields. So electrons, protons and neutrons are still tiny, even though their positions are uncertain. And so atoms are still mostly empty space.
This is what I took from the article as well. Though, it's important to note that the 'billiard ball' particle model is just a model also. On a related note, as a physics grad, I've been looking into growing evidence that shows consciousness affecting what we observe (i.e. wave-particle duality in this case). Have you seen Steven Greer's latest film (CE5)?
Re: We are not mostly empty space
#93Excellent explanation. My question after this is, at a macro level,how much of space is actual pure space. Pardon the childish question but how exactly would one measure space (nothing exists at this point) without introducing something that might be displaced by the measurement,or how can one be sure space isn't made up of lower energy qanta that are displaced by higher energy particles,much like how solids displace…
To the point about "pure space"- I suspect the colloquial answer is that there isn't any pure/just space. I know that Wolfram is also not respected on here much but I like his- not intentionally metaphorical- arrival at a story for space being a process.
Re: We are not mostly empty space
#94Earlier quoted context omitted.
Call me old fashion but I don't consider anything inside the perimeter of an atom as empty space.
Atoms don’t have a “perimeter”. That’s the point. Atoms are mostly "empty space" in the same way that the gap between a maglev train and its track is empty space (ignoring the air).
Re: We are not mostly empty space
#95Earlier quoted context omitted.
Yeah, they're probability distributions, not fields. So electrons, protons and neutrons are still tiny, even though their positions are uncertain. And so atoms are still mostly empty space.
Rather than thinking of space as empty vs non-empty, it might be better to think of space as a relationship between things. I think you make less commitments of space this way.
Re: We are not mostly empty space
#96Earlier quoted context omitted.
Rather than thinking of space as empty vs non-empty, it might be better to think of space as a relationship between things. I think you make less commitments of space this way.
In the model you propose, what would I think instead of “this box is full of water”?
But you might also think, “this eyebrow is hairs with not too much space between.”, or “this box is hydrogen and oxygen without too much space between.”
An eyebrow is hairs with a certain spatial density and distance (space) from the eyes. Water is hydrogen and oxygen with relatively less space between than say water vapor.
If I think of space as a magnitude, all the math and forces still work out, but there is “room” for other stuff.
Re: We are not mostly empty space
#97Earlier quoted context omitted.
Depending on the conditions, it is through that neutrinos can pass through even very degenerate matter like that which forms neutron stars. "Empty space" really doesn't mean all that much if the thing that is interacting with it does so weakly.
Does this mean a black hole is "full"?
Re: We are not mostly empty space
#98Re: We are not mostly empty space
#99Earlier quoted context omitted.
Atoms don’t have a “perimeter”. That’s the point. Atoms are mostly "empty space" in the same way that the gap between a maglev train and its track is empty space (ignoring the air).
If atoms don't have perimeters then no objects made of atoms have perimeter.
Re: We are not mostly empty space
#100Earlier quoted context omitted.
Yeah, they're probability distributions, not fields. So electrons, protons and neutrons are still tiny, even though their positions are uncertain. And so atoms are still mostly empty space.
Rather than thinking of space as empty vs non-empty, it might be better to think of space as a relationship between things. I think you make less commitments of space this way.
But there are other trade-offs.