The highest-resolution photos of snowflakes (2021)
11–20 of 29 posts
Re: The highest-resolution photos of snowflakes (2021)
#12> device, which stands at about five feet in height off the ground when placed on a table And is about the length of three football fields when dismantled and spaced equally across them?
Re: The highest-resolution photos of snowflakes (2021)
#13Re: The highest-resolution photos of snowflakes (2021)
#14Re: The highest-resolution photos of snowflakes (2021)
#15(2021) Related from then: Photos of Snowflakes Like You've Never Seen Them Before https://www.nytimes.com/2021/03/10/science/snowflakes-photos...
Highest resolution photos ever taken of snowflakes - https://news.ycombinator.com/item?id=25939169 - Jan 2021 (26 comments)
Ultra High Resolution Photos of Snowflakes - https://news.ycombinator.com/item?id=25414579 - Dec 2020 (88 comments)
Re: The highest-resolution photos of snowflakes (2021)
#16Are these really higher resolution than the 2010 scans from an electron microscope[1]? [1] https://www.wired.com/2010/12/snowflakes-by-microscope/
Re: The highest-resolution photos of snowflakes (2021)
#17Re: The highest-resolution photos of snowflakes (2021)
#18Re: The highest-resolution photos of snowflakes (2021)
#19I increasingly find the no two alike thing exasperating. Almost nothing in nature above the subatomic/atomic/molecule level is "alike" in crystals or anything else. Making BIPM spheres of counted atoms does not truly make them identical. Cubic crystals of salt will have differences. At the level of detail most people can discern, I suspect many morphological forms of ice crystal are very alike, and we have to resort…
That's a fun thought experiment: to imagine what level of detail of snowflakes most people are able to discern. Reminds me of a little bit of that one xkcd. https://xkcd.com/2501/
Re: The highest-resolution photos of snowflakes (2021)
#20I don't understand how snowflakes are different to each other and yet also symmetric. Are they always symmetric?