Morning Overview on MSN
A new plasma simulation just cracked how the universe knits its vast magnetic fields out of pure turbulence — stitching tangled threads across billions of light-years
Magnetic fields thread the largest structures in the observable universe. They trace the filaments of the cosmic web, wind ...
Using HLRS’s Hawk supercomputer, University of Stuttgart scientists have for the first time produced high-resolution simulation data characterizing the transition from low to high Reynolds numbers in ...
Researchers have uncovered a previously hidden heating process that helps explain how the atmosphere that surrounds the Sun called the “solar corona” can be vastly hotter than the solar surface that ...
A new simulation of the galaxy’s magnetic turbulence shakes up how we think about—and visualize—the astrophysical environments. The model was developed by James Beattie, a postdoctoral fellow at the ...
A multi-institution collaboration has been studying turbulence's influence on galaxy formation. The team recently revealed the so-called 'sonic scale' of astrophysical turbulence -- marking the ...
Despite being among the most researched topics on supercomputers, a fundamental understanding of the effects of turbulent motion on fluid flows still eludes scientists. A new approach aims to change ...
Morning Overview on MSN
A new plasma simulation just cracked how the universe builds its vast magnetic fields out of pure turbulence — knitting tangled magnetic threads across the cosmos
The magnetic fields lacing through galaxy clusters and cosmic filaments have no business being there. The early universe was ...
Researchers have uncovered a previously hidden heating process that helps explain how the atmosphere that surrounds the sun called the "solar corona" can be vastly hotter than the solar surface that ...
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