Cryo EM is a very hot method right now to determine the three-dimensional structure of large molecules like e.g. proteins or protein complexes. Something like 10-15 years ago the best you could get was maybe 1.5 - 2 nm (these are rough numbers from memory), the results described in the article are 0.17 nm.
Cryo-electron microscopy breaks a key barrier
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Re: Cryo-electron microscopy breaks a key barrier
#12Re: Cryo-electron microscopy breaks a key barrier
#13So, pardon my ignorance, but can we finally say that atoms are particles with concrete dimensions? Last time I checked the whole field seemed measuring everything into probabilistic and statistical terms.
If I'm wrong, it would be great if someone could ELI5.
Re: Cryo-electron microscopy breaks a key barrier
#14I'm curious could you use AFM/STM to image molecules? I'm curious how that would compare with this approach.
Re: Cryo-electron microscopy breaks a key barrier
#15I thought an individual atom has been imaged before, at least roughly. Anyway, this is fantastic science. I'm excited to see how imaging atoms affects our understanding of quantum mechanics and atomic structure in general.
[1] https://en.wikipedia.org/wiki/Scanning_tunneling_microscope
Re: Cryo-electron microscopy breaks a key barrier
#16What would be the "realistic" potential use cases?
When the microscope was invented, people made the same question: What is the use of it? Just watching things we already know bigger?
That is a recurring question. So much that Aristotle created the book MetaPhysics(meta meaning different from the Physics book) with the idea that this particular book did not need to be useful to be created. It was a compilation of non useful things.
This non useful compilation helped create science as we know it.
Re: Cryo-electron microscopy breaks a key barrier
#17So, pardon my ignorance, but can we finally say that atoms are particles with concrete dimensions? Last time I checked the whole field seemed measuring everything into probabilistic and statistical terms.
Not an expert, but as far as I understand it, both, i.e. atoms are ("physical") manifestations of (probabilistic) quantum fluctuations. If I'm wrong, it would be great if someone could ELI5.
Re: Cryo-electron microscopy breaks a key barrier
#18What would be the "realistic" potential use cases?
We don't know yet. That is the idea about research. When the microscope was invented, people made the same question: What is the use of it? Just watching things we already know bigger? That is a recurring question. So much that Aristotle created the book MetaPhysics(meta meaning different from the Physics book) with the idea that this particular book did not need to be useful to be created. It was a compilation of no…
Re: Cryo-electron microscopy breaks a key barrier
#19The headline is potentially confusing, it doesn't mean that this is the first time individual atoms were measured, but the first time this particular method has been pushed to such a high resolution that individual atoms could be distinguished. Cryo EM is a very hot method right now to determine the three-dimensional structure of large molecules like e.g. proteins or protein complexes. Something like 10-15 years ago…
This is phenomenal! The title still feels a bit sensationalized, but don't they all?
Re: Cryo-electron microscopy breaks a key barrier
#20Earlier quoted context omitted.
Not an expert, but as far as I understand it, both, i.e. atoms are ("physical") manifestations of (probabilistic) quantum fluctuations. If I'm wrong, it would be great if someone could ELI5.
I hope somebody weighs in because ever since I read that matter is just quantum field excitations I've lost all intuition about what reality is. Everything seems to be nothing.
But, well, I'm having one of those days. :(