結び目の“複雑さ”は数学的に解きほどけるか?
https://web.brid.gy/r/https://wired.jp/article/a-simple-way-to-measure-knots-has-come-unraveled/
No One Is Quite Sure Why Ice Is Slippery
https://fed.brid.gy/r/https://www.wired.com/story/no-one-is-quite-sure-why-ice-is-slippery/
「知識蒸留」がAIモデルをさらに小さく安価にする
https://web.brid.gy/r/https://wired.jp/article/how-distillation-makes-ai-models-smaller-and-cheaper/
量子科学が切り拓く、暗号理論の新しい数学
https://web.brid.gy/r/https://wired.jp/article/the-new-math-of-quantum-cryptography/
A New Bridge Links the Strange Math of Infinity to Computer Science
Here’s the Quanta Magazine review article about the year in Mathematics. There’s also a video on their YouTube Channel, and embedded in this article.
#QuantaMagazine #Maths #Math #ReviewOfTheYear
https://www.quantamagazine.org/the-year-in-mathematics-20251218/
Here’s the Quanta Magazine review article about the year in Physics. There’s also a video on their YouTube Channel, and embedded in this article.
#QuantaMagazine #Physics #ReviewOfTheYear
https://www.quantamagazine.org/the-year-in-physics-20251217/
Quanta Magazine picks for the top stories in bioscience this year. I assume there will be a video about the top 3 at some point. The Maths and Physics videos are already available.
#QuantaMagazine #Biology #Bioscience #ReviewOfTheYear https://www.quantamagazine.org/the-year-in-biology-20251215/
Quanta Magazine picks for the top stories in Computer Science this year. I assume there will be a video about the top 3 at some point. The Maths and Physics videos are already available.
#QuantaMagazine #CompSci #ComputerScience #ReviewOfTheYear https://www.quantamagazine.org/the-year-in-computer-science-20251216/
Listening to The Quanta Podcast (Audio Edition: The Core of Fermat’s Last Theorem Just Got Superpowered): https://play.prx.org/listen?ge=prx_11709_3c29c512-c7bd-4db0-8e93-3703634ce159&uf=https%3A%2F%2Fquantapodcast.quantamagazine.org%2F
By extending the scope of the key insight behind Fermat’s Last Theorem, four mathematicians have made great strides toward building a “grand unified theory” of math.
Behold the Manifold, the Concept that Changed How Mathematicians View Space
👨🔬🔬 Quanta Magazine unveils the shocking secret: dad bods might be the ultimate genetic hand-me-down! 🏋️♂️ Because clearly, all life's mysteries can be solved by scaring dads into jogging. 😂
https://www.quantamagazine.org/how-dads-fitness-may-be-packaged-and-passed-down-in-sperm-rna-20251222/ #dadbods #geneticresearch #fitnesshumor #QuantaMagazine #healthmysteries #HackerNews #ngated
Dad's Fitness May Be Packaged and Passed Down in Sperm RNA
#HackerNews #DadsFitness #SpermRNA #GeneticInheritance #HealthResearch #QuantaMagazine
Research Reveals the Optimal Way to Optimize
https://fed.brid.gy/r/https://www.wired.com/story/researchers-discover-the-optimal-way-to-optimize/
The Math(s) Quanta Magazine 2025 Breakthroughs video is available. And it melted part of my brain.
20-minute video: https://youtu.be/hRpcWpAeWng
なぜAIは学習していない画像を生成できるのか?──創造性をめぐる最新研究
For the First Time, AI Analyzes Language as Well as a Human Expert
#QuantaMagazine String Theory Inspires a Brilliant, Baffling New Math Proof https://www.quantamagazine.org/string-theory-inspires-a-brilliant-baffling-new-math-proof-20251212/ "An audacious Fields medalist outlined a sweeping program that, he claimed, could be used to resolve a major problem in algebraic geometry. Now he says he has a proof.
Homological mirror symmetry has its roots in string theory. An algebraic object associated to the mirror image, called a Hodge structure, could reveal the number of curves on the original manifold. The reverse was also true: If you count the curves on the mirror image, you’ll get information about the original manifold’s Hodge structure."
#QuantaMagazine String Theory Inspires a Brilliant, Baffling New Math Proof www.quantamagazine.org/string-theor... An audacious Fields medalist outlined a sweeping program that, he claimed, could be used to resolve a major problem in algebraic geometry. Now he says he has a proof.