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Computer simulations and experiments have revealed a new electrolyte for lithium-ion batteries that can contain higher quantities of water.
The team studied an enzyme from the soil bacteria Kitasatospora setae, which carries a key step in carbon fixation faster than plant enzymes do.
A new discovery of an aberrant protein that kills bacterial cells could help unravel mechanism of certain antibiotics and point the way to new drugs.
The factors change over time – from decay driven by the properties of individual electrode particles to how those particles are put together.
Argonne’s software learns from smaller datasets by combining multiple machine learning algorithms and using an AI technique called active learning.
Researchers at Argonne and partner institutions point to the significant implications of “aggregates” for future battery performance.
Collaborators designed magnets with straighter sections that can still confine plasma by using the mathematical technique, “spline representation.”
The development is an example of U.S. investment in joint quantum technology research with partnerships between industry, academia, and government.
New materials with exotic magnetic features could enable the next generation of tiny, fast electronic devices.
KESER constructs a low dimensional vector representation of each medical code, attributes importance and maps attributed relationships as a network.