New Approach to Radioisotope Power Sources for Improved Efficiency and Long Life
NextGen power sources may satisfy the need for long-term, compact power for use in remote or extreme environments.
NextGen power sources may satisfy the need for long-term, compact power for use in remote or extreme environments.
An enzyme system frees sulfur from small organic compounds to make a surprising gaseous side product.
State-of-the-art X-ray techniques found hidden damage in neutron irradiated silicon carbide, a possible structural material for future fusion reactors.
Liquid acts across multiple scales to reorganize connectivity in networks of artificial microscopic cells.
A team using the nation’s fastest supercomputer to look at protein binding finds that some binding processes are simpler than expected.
The tropical Madden-Julian Oscillation (MJO) rainfall pattern brings change to non-tropical parts of the United States.
Turbulent air in the atmosphere affects how cloud droplets form. New research changes the way scientists model clouds and, therefore, climate.
Scientists measure radioactive molecules at the extremes of physics.
Microscopic features of neptunium dioxide control how contaminants dissolve in underground disposal of spent nuclear fuel.
Measurements of particle “flow” and hot matter created in low-energy collisions provide key data in understanding nuclear phase transition.
A unique coating camouflages the temperature of an underlying material
Nanotubes with designed defects allow better performance for next-generation optical telecommunications.