Yesterday @GoogleDeepMind made a toxin-degrading enzyme from scratch. Today @OpenAI solved 370 of the most difficult mathematical problems.
AI has removed intelligence as a differentiator between humans. We are back to living in (modern) caves gazing at stars with nothing to do.
The Plan was to kill the Indian pilot, crash the plane full of passengers over an Israeli city, frame Captain Smit Machchhar for the disaster, and portray the Omani co-pilot as the saviour who resisted unsuccessfully.
But Destiny has a different plan !!
This is an example of natural water filtration. Most of the drinkable water our ancestors consumed in our villages passed through this type of filtration.
appatalo ela teesevaru ra babu devotional films ❤️😭🛐
nijam ga devude daggara undi cheyyinchukune vaadu emo
sriramdasu , annamayya, devullu , anji, sri manjunatha,ammoru etc...
Twitter will never be popular in India, its own users don't want their friends and family here.
Most of us came here because the people we know aren't here. Why would we ruin our only escape
What makes solving Navier-Stokes important?
Fluid dynamics affects more than you realize in your everyday life. This breakthrough — if it is true — gives you:
Cheaper, safer flying and driving. Air over a wing or around a car is a Navier-Stokes problem. Better control of that flow means less drag, so planes and trucks burn less fuel, stay quieter, and stall less often.
Weather you can actually plan around. Storms, jet streams, and ocean currents are giant fluid problems. Sharper turbulence physics is one of the remaining limits on hurricane tracks, heat waves, and flood forecasts. That is the difference between “maybe evacuate” and a clear warning.
Hearts, stents, and artificial valves. Blood is a fluid. Doctors already simulate flow through arteries and implants from CT/MRI scans. A more reliable theory of swirling, high-speed blood flow would help design stents, heart valves, and aneurysm treatments that work better.
Cleaner power from wind and turbines. Wind hitting a turbine blade, steam inside a power plant, and fuel mixing in an engine are all the same equations. Better models mean more electricity from the same wind farm and engines that waste less fuel
Ships, pipes, and dirty air. Oil in a pipeline, water in city mains, smoke over a city, and waves slamming a hull all follow Navier-Stokes. Better predictions cut leaks, pump energy, and help track pollution after a spill or wildfire.
Many other everyday effects: buildings, sports, and rain. The same math decides whether a skyscraper sways in a gale, why a dimpled golf ball flies farther, how air moves through a house’s vents, and even how raindrops form in clouds. Those are not abstract puzzles; they are why planes fly, forecasts exist, and a stadium roof doesn’t peel off.
None of this happens instantly because of a math problem solution by AI. But everything that does happen is going to help engineer a better life for all of us. This is big.
we cant design artificial hearts because unpredictable fluid friction damages red blood cells and causes clots
solving Navier-Stokes allows us to model biological blood flow perfectly, making permanent artificial hearts viable
I want to see the proof
We’re sharing a solution to the Navier-Stokes Millennium Prize Problem, one of the deepest problems at the frontier of mathematics.
The proof was produced by a group of agents, using an OpenAI next-generation model significantly more capable than GPT-6 Astra.
The problem concerns whether the description of smooth three-dimensional fluid motion modeled by the Navier-Stokes equations can break down. It has remained unresolved for roughly 90 years.