Earlier quoted context omitted.
I don’t have Chrome, could you elaborate? Where is the highlighter and what does it do?
The link points to " https://en.wikipedia.org/wiki/Olbers%27_paradox#:~:text=In%2... ." In case that renders as a link by Hacker News, I've added a space here and removed the https part: en.wikipedia.org/wiki/Olbers%27_paradox #:~:text=In%20astrophysics%20and%20physical%20cosmology,infinite%20and%20eternal%20static%20universe. What it does is that it highlights that text in the page, with a yellow background color. M…
Olbers' Paradox
21–30 of 86 posts
Re: Olbers' Paradox
#22Isn't this just an issue of comparing a countable and uncountable infinity? The number of points on the unit sphere is uncountable, but the number of stars is countable. As such there are in some sense more points on the sphere than there are stars, even though there are an infinite number of each. Take this together with the fact that intensity falls off as the square of the distance and it seems like the sky should…
I agree that countability vs. uncountability seems like it should come into play.
Re: Olbers' Paradox
#23The Hubble was pointed at what appeared to be a black void of space, and revealed lush fields of stars and galaxies. So at one degree of perception, we have an empty void, and at another, a bright flush of light and activity.
There is still plenty of space between the individual stars in the Hubble Deep Field image. From that point of view it just confirms the paradox - even with a powerful telescope stars don't fill up your entire field of view. I think a more fitting example of "an empty void yet a bright flush of light" would be the microwave background. With eyes sensitive to longer wavelengths the entire sky is indeed bright.
Suppose the experiment is repeated on a black pixel from the Deep Field image, and another swell of stars are observed, hinting at a kind of fractal distribution.
Were the universe eternal and static, why could this pattern not repeat indefinitely in infinite time, space and matter? The paradox seems to assume a kind of infinite level of sensitivity of the observer.
Re: Olbers' Paradox
#24That "#:~:text=" highlighter is so annoying it has made me switch from Google Chrome to Firefox.
I don’t have Chrome, could you elaborate? Where is the highlighter and what does it do?
Re: Olbers' Paradox
#25Re: Olbers' Paradox
#26Doesn’t the expansion of the universe explain this? I don’t understand the paradox.
Re: Olbers' Paradox
#27While it's true that the finite age of our universe and the expansion of space explain the paradox in the universe we live in, I don't think those are necessary conditions, nor is the dark sky proof our universe is not infinitely old. What I feel is the core of the resolution of the paradox is (global or local) conservation of energy. Even in an infinitely large eternal steady state universe, if we assume the total e…
Re: Olbers' Paradox
#28Isn't this just an issue of comparing a countable and uncountable infinity? The number of points on the unit sphere is uncountable, but the number of stars is countable. As such there are in some sense more points on the sphere than there are stars, even though there are an infinite number of each. Take this together with the fact that intensity falls off as the square of the distance and it seems like the sky should…
Fall-off of light intensity does not factor in: while the amount of light reaching an observer from any given star does indeed fall off with the square of the distance, so does the apparent size of that star; its apparent surface brightness thus does not change with distance. (Think of day-to-day experience: people who walk away from you do not darken!) I agree that countability vs. uncountability seems like it shoul…
Re: Olbers' Paradox
#29Earlier quoted context omitted.
There is still plenty of space between the individual stars in the Hubble Deep Field image. From that point of view it just confirms the paradox - even with a powerful telescope stars don't fill up your entire field of view. I think a more fitting example of "an empty void yet a bright flush of light" would be the microwave background. With eyes sensitive to longer wavelengths the entire sky is indeed bright.
> even with a powerful telescope stars don't fill up your entire field of view. Suppose the experiment is repeated on a black pixel from the Deep Field image, and another swell of stars are observed, hinting at a kind of fractal distribution. Were the universe eternal and static, why could this pattern not repeat indefinitely in infinite time, space and matter? The paradox seems to assume a kind of infinite level of…
The figure explains it visually - the further away you go from the observer, the more stars you capture in your camera's field of view and the apparent brightness stays the same. The 1/r^2 term for light intensity is cancelled by the r^2 for the number of stars.
It's interesting think what an experimental result you describe would imply. It either contradicts the nature of light or that we're in the center of a cloud of stars where the density of stars falls with distance from us.
Re: Olbers' Paradox
#30That "#:~:text=" highlighter is so annoying it has made me switch from Google Chrome to Firefox.