[1] https://x.com/AndrewCurran_/status/2096062392442724805 for example
[2] https://en.wikipedia.org/wiki/Navier%E2%80%93Stokes_existenc...
v64 4 days ago
[1] https://x.com/AndrewCurran_/status/2096062392442724805 for example
[2] https://en.wikipedia.org/wiki/Navier%E2%80%93Stokes_existenc...
CSMastermind 4 days ago
krackers 4 days ago
Arodex 4 days ago
sawjet 4 days ago
perching_aix 4 days ago
nozzlegear 3 days ago
bilsbie 4 days ago
margorczynski 4 days ago
The question is basically a pure math question about PDEs.
lumost 3 days ago
Minimally. It could say that no such analytic function can ever exist. Which would be rather boring.
Turbulent fluids look awfully predictable with their spirals….
amluto 3 days ago
neutrinobro 3 days ago
yossarian88 3 days ago
bee_rider 4 days ago
cacio-e-pepe 4 days ago
goldenarm 3 days ago
bobmarleybiceps 4 days ago
hodgehog11 3 days ago
lumost 3 days ago
adrianN 3 days ago
hodgehog11 3 days ago
zarzavat 3 days ago
wiz21c 3 days ago
Of course there may be errors in lean, of course AI can take advantage of it, of course "carefully" is full of errors. So the only thing left is waiting to see if the result holds. And yes, it may take 30 years...
krainboltgreene 3 days ago
eru 3 days ago
Making an ill-advised press release hardly dooms the company. Just like the hugging face incident hasn't doomed OpenAI.
Almondsetat 3 days ago
Also, if a bug is found, all previosuly proven theorems can be reproven to immediately and conclusively find out if things went wrong somewhere
levocardia 3 days ago
strangescript 3 days ago
throwaway81523 3 days ago
Even simpler, imagine Anthropic announces Goldbach's conjecture is false and they have a billion digit counterexample. Anyone can download it (300MB compressed), but how do you check it?
Doron Zeilberger for decades has expected incomprehensible computer proofs to eventually take over mathematics.
goldenarm 4 days ago
thomasahle 4 days ago
MeteorMarc 4 days ago
tacomonstrous 4 days ago
gus_massa 4 days ago
Sharlin 4 days ago
> The following year, we managed to finally prove the full conjecture without the epsilon loss, and decided to try submitting to the highly reputable journal again. This time, the paper was rejected for only being an epsilon improvement over the previous literature!
hodgehog11 3 days ago
At this scale, peer review happens by the audience. They don't need a journal to get people reviewing their work.
tacomonstrous 3 days ago
hodgehog11 3 days ago
tacomonstrous 3 days ago
hodgehog11 3 days ago
To be clear, the colleagues I am referring to mostly work in math phys. They are sole author papers, but I refer to them as first author, since that is the language I am now accustomed to.
And no, the culture in maths vs. theoretical stats is not really that different at the end of the day, and the latter is most assuredly like other STEM fields. I still collaborate on pure math papers (geometric analysis and PDEs mostly) from time to time, and it isn't really a different head space. My name is typically later in the alphabet, so I never even think about the alphabetical ordering.
amai 3 days ago
Fluids without internal friction or viscosity are described by the Euler equations. Therefore, singularities (finite time blowups) occur there, which has recently been shown with a computer assisted proof:
https://www.quantamagazine.org/computer-helps-prove-long-sou...
The Navier-Stokes equations are the Euler equations plus friction/viscosity: As a physicist, I do not expect singularities there, since energy is always lost due to friction.
amai 3 days ago
immmmmm 4 days ago
cacio-e-pepe 4 days ago
immmmmm 2 days ago
amluto 3 days ago
Euler’s equations and NS have this pesky velocity field, which requires the fluid’s state to be well described by a velocity at each point in space (and a density and a pressure, but I think GR has no problem with those). This means that you need some kind of interaction between particles to get them to exchange energy so that they thermalize instead of staying in the collisionless regime. (In other words, if you have two blobs of fluid collide, you need them to not go right through each other.) And I don’t think that GR is dissipating on the relevant scales.
As a real-world example, the universe contains neat structures (the horsehead nebula is a somewhat famous example) that are consistent with dark matter distributions that don’t really resemble fluids.
immmmmm 2 days ago
yes you can : https://arxiv.org/abs/1211.1983
but you might need to understand it in the context of holography
in some frame you can recover non-relativistic symmetries, we got a paper on this back then, but so hardcore i only understand parts of it https://arxiv.org/abs/1205.5777
immmmmm 2 days ago
Research on the topic seems to have stalled a decade ago. Probably for a good reason.
immmmmm 2 days ago
Somewhere somehow dualities seems to relate completely different systems, that non relativistic dissipative systems happen in all generality somewhere in that mess is barely a surprise.
I mean, if one believes ER=EPR GR and quantum mechanics are just the same thing.
amelius 4 days ago
auntienomen 4 days ago