A multimillion-dollar government project is betting that particle accelerators can "burn" through the world's most dangerous ...
Device deemed to burn uranium 100 times more efficiently, while cutting nuclear waste lifespan to less than a thousandth of ...
Visakhapatnam will host a high-energy proton accelerator to boost India's thorium-based nuclear energy program, enhancing scientific and technological advancements.
What Weston really wanted to do was to work as a radio and TV repairman. He was fascinated by how the devices worked. He had ...
Morning Overview on MSN
China’s world-first nuclear reactor aims at a 1,000-year energy source
China’s Institute of Modern Physics, part of the Chinese Academy of Sciences, is building what it calls the world’s first ...
Liquid cooling in transmitters may sound complex, but the principles behind it mirror systems used in computing, government and other applications.
New Scientist on MSN
A miniature magnet rivals behemoths in strength for the first time
Strong magnets tend to be large and power-hungry, but a new design has produced a powerful magnet that fits in the palm of your hand, making it more practical and affordable ...
The merger of xAI and SpaceX, the efforts by some startups, and research by Google have raised the question of when there ...
Yield loss is increasingly driven by molecular variability in thin films, interfaces, and contamination rather than visible defects. Reliability issues often appear first as parametric drift or margin ...
Interesting Engineering on MSN
First proton beams circulate in US test accelerator built to shape future colliders
US researchers have successfully accelerated and stored the first proton beams inside a specialized ...
Interesting Engineering on MSN
‘World-first accelerator-driven nuclear reactor’ nears as China eyes ‘1000-year’ energy source
Researchers at the Chinese Academy of Sciences (CAS) have begun the final installation of ...
U.S. scientists are developing an innovation that could reduce nuclear waste storage time by 99.7%, transmuting long-lived radioactive materials into shorter-lived isotopes. The Jefferson Lab project, ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results