Explaining a supernova's 'string of pearls'
Physicists often turn to the Rayleigh-Taylor instability to explain why fluid structures form in plasmas, but that may not be the full story when it comes to th
Stay updated with breaking news from Michael Wadas. Get real-time updates on events, politics, business, and more. Visit us for reliable news and exclusive interviews.
Physicists often turn to the Rayleigh-Taylor instability to explain why fluid structures form in plasmas, but that may not be the full story when it comes to th
Engineers could gain better control over the behavior of vortices in power generation and other applications with a mathematical model linking these vortices with more pedestrian types, like smoke rings. Gaining deeper insight into the formation of vortex rings, which are swirling, ring-shaped d
Ann Arbor MA (SPX) May 19, 2023 - Better understanding the formation of swirling, ring-shaped disturbances - known as vortex rings - could help nuclear fusion researchers compress fuel more efficiently, bringing it closer to becomin
Better understanding the formation of swirling, ring-shaped disturbances -- known as vortex rings -- could help nuclear fusion researchers compress fuel more efficiently, bringing it closer to becoming a viable energy source. A mathematical model linking these vortices with more pedestrian types, like smoke rings, could help engineers control their behavior in power generation and more.
Better understanding the formation of swirling, ring-shaped disturbances—known as vortex rings—could help nuclear fusion researchers compress fuel more efficiently, bringing it closer to becoming a viable energy source.