Clip transcript
- 0:00In September 2026, mathematicians Tristan Buckmaster and Levent Alpughe, working with
- 0:06AI models, found a way forward.
- 0:10They were able to smooth out the external force, causing the Euler equations to blow
- 0:14up.
- 0:15Then, in a stunning development, OpenAI claimed it had achieved the same result for Navier-Stokes.
- 0:24The company deployed roughly 10,000 AI agents working in parallel, which arrived at the
- 0:29proposed solution in just 88 hours.
- 0:33The solution appears to show that, mathematically, a fluid can form a vortex that spirals inward,
- 0:39moving faster and faster as it shrinks, until its velocity blows up to infinity.
- 0:46The proof has been formalized in LEAN, a mathematical language that verifies each logical step.
- 0:54If the result withstands further scrutiny, it answers the million-dollar Millennium
- 0:58Prize question.
- 1:00Under some conditions, the Navier-Stokes equations have solutions that break down mathematically.
My students are going to remember '88 hours' from this clip. I'd rather they remembered 'under some conditions', from the very last sentence. Lean checking every step is real, but Lean only checks the statement it's handed, and this one needs a smoothed-out external force pushing on the fluid. Fair answer to the Clay question. Much thinner answer to whether the equations blow up for water left to itself.