At an effective temperature of 13 million kelvins, the jiggling glass sphere could help scientists understand physics at the microscale.
For 200 years, scientists believed heat always spreads the same way—smoothly, like ink dissolving in water. But at the nanoscale, where the world of tomorrow’s chips and energy devices lives, heat ...
University of Houston researchers have made a discovery in thermal conductivity that overturns an existing theory that boron ...
Scientists from Queensland University of Technology (QUT) have made a small but powerful discovery that could help turn ...
A collaboration between Commonwealth Fusion Systems (CFS), the US Department of Energy’s Princeton Plasma Physics Laboratory ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results