A novel apparatus at the U.S. Department of Energy's (DOE) Argonne National Laboratory has made extremely precise ...
In some solid materials under specific conditions, mutual Coulomb interactions shape electrons into many-body correlated ...
These chemical oddities may explain why Earth seems to be deficient in certain elements — and could prove useful in catalysts ...
Researchers have uncovered how atoms subtly rearrange themselves for up to a trillionth of a second before releasing low-energy electrons after X-ray excitation.
Physicists have observed a strange new quantum phase in a graphene-based system, where a superfluid appears to freeze into a solid-like state. Cooling usually pushes matter through a simple sequence.
Morning Overview on MSN
Edison may have accidentally made graphene with an 1879 light bulb
More than a century before graphene was isolated in a modern lab, Thomas Edison may have been unknowingly making the wonder ...
Market valued at $27.64B in 2024, projected 3.94% CAGR growth driven by petroleum refining, green chemistry, biocatalysts, and environmental catalyst demand.
An international collaboration led by the Fritz Haber Institute (FHI) has successfully mapped Electron-Transfer-Mediated ...
Veteran investor Karim Rahemtulla claims one small company has the same potential, offering a unique use case for a material known as gallium nitrate. In this GaN review, I examine those claims and ...
Dot Physics on MSN
Mastering Young’s modulus through atomic-level forces
Unlock the fundamentals of Young’s Modulus by exploring the atomic-level forces that govern material deformation! This video breaks down complex concepts into easy-to-understand explanations, showing ...
Dating to only a billion years after the big bang, JADES-ID1 may be the earliest, most distant galaxy protocluster astronomers have ever seen ...
News-Medical.Net on MSN
Unusual i-DNA structure shown to regulate genes and cancer
DNA's iconic double helix does more than "just" store genetic information. Under certain conditions it can temporarily fold into unusual shapes. Researchers at Umeå University, Sweden, have now shown ...
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