Solved: The Case of the Missing “Excited” Nucleons
Discovery could provide a deeper understanding of the dynamics of the three quarks enslaved inside the nucleon.
Discovery could provide a deeper understanding of the dynamics of the three quarks enslaved inside the nucleon.
Thomas Jefferson Laboratory lends expertise in cryogenics developments.
Atmospheric black carbon may not cause as much warming of the climate as we thought.
New microscopy method opens the door to understanding atomic-scale variations in chemistry and improved materials performance in solid oxide fuel cells.
New design significantly increases the lifetime and reduces the platinum content in electrocatalysts needed for advanced fuel cells for automotive applications.
Squeezing creates new class of material built from clusters of carbon atoms.
Nanoscale features in rocks enable more carbon dioxide to be trapped as a solid carbonate material underground.
Enzymes originating from marine sponges were intentionally altered to create a new enzyme that can make semiconductors in artificial cells.
Researchers use NERSC to Create Carbon Dioxide-Separating Polymer.
NERSC helps researchers design new desalination technology.
Cloud-resolving models have difficulty representing the array of processes and scales in tropical storms.
Microbial communities solve environmental contamination.