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The mineral boron can vastly improve the ability of some fusion energy devices to contain the heat required to produce fusion reactions on Earth.
Data collected by the Dark Energy Survey confirm the existence of one of the largest supervoids known to humanity, the Eridanus supervoid.
Recent work will use the forthcoming Electron-Ion Collider to investigate what contributes to a neutron’s spin.
William Tang is using artificial intelligence methods to improve predictive capabilities and mitigate large-scale disruptions in tokamak systems.
A team gained insights into the material-vanadium oxide-that might be the missing ingredient needed to complete a reliable neuromorphic recipe.
A new version of the Energy Exascale Earth System Model is two times faster than the previous version.
A new study plumbs the depths of deep learning and could connect the digital synapses toward better, more reliable artificial-intelligence models.
Cryo-EM snapshots of the solid-electrolyte interphase, or SEI, reveal its natural swollen state & offer a new approach to lithium-metal battery design
The international ITER project in France is starting to assemble the world’s most powerful fusion experiment.
One new technology is a battery membrane, which separates the two electrodes of a battery, especially useful for energy-dense lithium-metal batteries.