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PNNL-industry collaboration aims to connect memory across processors, supercharging artificial intelligence applications on high-performance computers
The new discovery by MIT physicists shows for the first time that multiferroic properties can exist in a two-dimensional material.
Researchers found the ideal atomic interaction and the best place to start is the catalytic conversion of lignin to ingredients for aviation fuels.
Strong interactions between electrons in graphene drive them to form a crystal structure with a complex pattern determined by quantum superposition
Undergraduate Natalia Escobar is looking for a possible explanation of the matter-antimatter imbalance in the Standard Model of particle physics.
X-ray technique reveals irregularities and dead spots arise due to incomplete lithium stripping from anode during battery discharge.
A research team's discovery reveals role of oxygen impurities in semiconductor properties.
Researchers used artificial intelligence to analyze new kinds of atomic-scale microscopic images to understand exactly why batteries wear out.
Case Western Reserve U research aligns with Biden Administration order to increase domestic sources for metals—especially for clean-energy uses.
Rice University lab’s RAMBO reveals unexpected influence on compound’s crystal lattice.