Live data from Hacker News

IBM takes first 3D image of atomic bonds

gizmodo.com

1–10 of 63 posts

Re: IBM takes first 3D image of atomic bonds

#5
post #4

Are the samples cooled to near zero when scanning like this? As far as I understand, even slight temperatures cause molecules to move at ridiculous speeds.

Yes, given the resolution of the image, I am guessing it must have been performed at UHV, ULT and vibration free room.

Re: IBM takes first 3D image of atomic bonds

#6
post #3

That is fucking awesome. It's depressing to consider the fact that it would probably get downvoted on the science subreddit.

Second that. Picture of the year as far as I'm concerned. Simply unbelievable. What a time to be alive.

So, now that we can 'see' the 3D arrangement in a manner of speaking is there any way we could feed known protein structure in to neural networks by imaging them in quantity and take some of the sting out of protein folding by identifying likely candidate ways to do the folding ?

Or is that too big of a leap ?

Re: IBM takes first 3D image of atomic bonds

#9
post #6
post #3

That is fucking awesome. It's depressing to consider the fact that it would probably get downvoted on the science subreddit.

Second that. Picture of the year as far as I'm concerned. Simply unbelievable. What a time to be alive. So, now that we can 'see' the 3D arrangement in a manner of speaking is there any way we could feed known protein structure in to neural networks by imaging them in quantity and take some of the sting out of protein folding by identifying likely candidate ways to do the folding ? Or is that too big of a leap ?

I think there would be major issues getting folded protein to 5K. Plus proteins "live" in 300K and the oscillations are probably very important for the function (perhaps even more than a single arbitrary structure you would get from a picture like this).

Re: IBM takes first 3D image of atomic bonds

#10
post #4

Are the samples cooled to near zero when scanning like this? As far as I understand, even slight temperatures cause molecules to move at ridiculous speeds.

They said it was a 20-hour scan, at 5K, with the AFM tip 0.5 nanometers from the pentacene molecule. The molecule itself is 1.4 nm long, so they were only about 30% of its length away from it in the vertical direction.
Post reply on HN