Morning Overview on MSN
Levitated magnet traps plasma in world-first breakthrough for nuclear fusion
OpenStar Technologies, a New Zealand-based fusion energy startup, has trapped plasma inside a levitated superconducting magnet, a feat that no company or laboratory had previously achieved with ...
New Zealand-based fusion energy startup OpenStar Technologies says it has become the first commercial company in the world to successfully create and confine plasma using a levitated dipole reactor.
Amazon S3 on MSN
Magnetic slime swallows giant magnets in a fun experiment
The science pros at TKOR show how magnetic slime interacts with giant magnets.
In collaboration with international partners, researchers at the University of Stuttgart have experimentally demonstrated a ...
Aaron Rossini of Iowa State and Ames National Laboratory with the nuclear magnetic resonance instrument in his Hach Hall lab. Iowa State ...
Interesting Engineering on MSN
German team discovers new type of magnetism in 2D materials to help store future data
Researchers have discovered a new type of magnetism in 2D materials that can help ...
A novel method to manipulate the inner structure of cells connects several scientific fields and could represent a ...
Interesting Engineering on MSN
US lab’s muon conversion experiment reaches key milestone with tracker installation
Researchers in the United States’ Fermilab moved the final subdetector for Mu2e into the ...
In collaboration with international partners, researchers at the University of Stuttgart have experimentally demonstrated a ...
In collaboration with international partners, researchers at the University of Stuttgart have experimentally demonstrated a previously unknown form of magnetism in atomically thin material layers. The ...
For decades, cobalt has served as a benchmark ferromagnet. Its crystal structure and magnetic properties have been extensively documented. However, the new findings show that cobalt hosts a rich ...
As data keeps exploding worldwide, scientists are racing to pack more information into smaller and smaller spaces — and a team at the University of Stuttgart may have just unlocked a powerful new ...
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