A research team led by Professor Hyung-Joon Shin from the Department of Materials Science and Engineering at UNIST has succeeded in elucidating the quantum phenomenon occurring within a triangular ...
A method to successfully predict pressure-dependent chemical reaction rates has been demonstrated by scientists for the first time. It’s an important breakthrough in combustion and atmospheric ...
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Supercomputer simulations show how to speed up chemical reaction rates at air-water interface
Using the now-decommissioned Summit supercomputer, researchers at the Department of Energy's Oak Ridge National Laboratory ran the largest and most accurate molecular dynamics simulations yet of the ...
Researchers have devised a new theoretical method for calculating the speediness of reactions whose rates depend strongly on pressure. In the past, such calculations have always needed at least a bit ...
Hybrid traps for laser-cooled ions and neutral atoms make excellent cold-chemistry laboratories. Experiments now show that engineering quantum states can provide additional control for accessing and ...
At the air-water interface, a negatively charged amino acid carries out a nucleophile attack on a gas molecule to convert it into a product. The reaction rate is enhanced due to significant reduction ...
LIVERMORE, Calif. -- Researchers at Sandia and Argonne national laboratories have demonstrated, for the first time, a method to successfully predict pressure-dependent chemical reaction rates. It's an ...
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