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Students receive tours of laboratory facilities and one-on-one mentoring from Lab staff while participating in hands-on scientific projects.
The team validated a systematic approach to tailoring magnetic field imperfections (error fields) to make plasma suitable for use as a power source.
A team created a new lithium battery that can charge in under five minutes with stable performance over extended cycles of charging and discharging.
Using electrochemistry, University of Oregon researchers have developed a way to make iron metal for steel production without burning fossil fuels.
Ole Miss is among the institutions partnering on Fermilab's Deep Underground Neutrino Experiment, or DUNE.
Scientists supported by Q-NEXT have found a way to engineer a high-performing niobium-based qubit & so take advantage of niobium’s superior qualities.
Data from heavy ion collisions give new insight into electromagnetic properties of quark-gluon plasma.
Experimentalists & theorists collaborate to develop critical detector components, data analysis tools, and theoretical models for the HL-LHC upgrade.
Decades of research supported by the Department of Energy informed a national strategy to measure and monitor greenhouse gas emissions.
The finding provides insights into the ultrafast control of magnetic materials, with potential to enable next-generation information processing tech.