Living cells pay a hidden energy price not just to run chemical reactions, but to keep them on track and block all the ...
There are "costs of life" that mechanical physics cannot calculate. A clear example is the energy required to keep specific ...
In medicinal chemistry, the binding affinity of a small-molecule scaffold (possibly discovered through a fragment-based approach) for a therapeutic target is optimized from millimolar to nanomolar ...
Hosted on MSN
A thermodynamic approach to machine learning: How optimal transport theory can improve generative models
Joint research led by Sosuke Ito of the University of Tokyo has shown that nonequilibrium thermodynamics, a branch of physics that deals with constantly changing systems, explains why optimal ...
Hosted on MSN
Thermodynamic computing claims 10,000x AI efficiency
Thermodynamic computing is making waves in the world of artificial intelligence (AI), boasting a staggering 10,000x efficiency gain in AI processing. This innovative approach leverages probabilistic ...
Jan. 23, 2024, NEW YORK — Normal Computing, a deep tech AI startup founded by former Google Brain and Alphabet X engineers to develop full-stack applications with enterprise reliability, today ...
What if the future of artificial intelligence wasn’t just faster or smarter, but fundamentally more sustainable? Picture this: a world where the energy demands of AI no longer threaten to outpace our ...
Guillaume Verdon stands before me with a new kind of computer chip in his hand—a piece of hardware he believes is so important to the future of humanity that he’s asked me not to reveal our exact ...
What just happened? Normal Computing, a young company founded by alumni of Google Brain, Google X, and Palantir, has introduced what it calls a new era in computing. The startup announced the ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results