As Formula 1 gears up for its massive 2026 technical overhaul, Aston Martin's Fernando Alonso is sounding a spicy alarm.
The team used an AI method known as equation discovery to develop a model to simulate the interactions between small eddies—circular, vortex-like currents—and large-scale ones. These interactions are ...
The Conversation reports on winter jackets, blending old physics and modern materials to efficiently trap heat, ensuring ...
The irregular, swirling motion of fluids we call turbulence can be found everywhere, from stirring in a teacup to currents in the planetary atmosphere. This phenomenon is governed by the Navier-Stokes ...
Mythic's analog compute-in-memory architecture to deliver 100x energy efficiency, targeting 100,000+ TOPS of AI performance for safer, smarter vehicles under Honda's "Carbon Neutral" and "Zero Traffic ...
Learn the fundamentals of energy in an inductor and magnetic field density in this beginner-friendly physics tutorial! In this video, we break down key concepts, formulas, and examples to help you ...
For a century, the Schrödinger equation has been the bedrock of quantum mechanics, successfully predicting how matter behaves as a wave. Yet, physics has lacked a fundamental explanation for why ...
To help make commercial fusion energy a reality, PPPL leads the StellFoundry project, which uses AI to sift through enormous amounts of data to determine which fusion system configurations are best.
This puzzle is known as the problem of time, and it remains one of the most persistent obstacles to a unified theory of ...
Watching, modeling and even playing winter sports help students internalize physics concepts, including acceleration, ...
Long before quantum mechanics existed, a scientist developed a powerful way of describing motion by drawing an analogy between particles and light.
An associate professor in the Department of Physics, Lomsadze uses powerful laser-based tools to capture ultrafast events in quantum materials, work that could shape the future of technology.