The selected projects will cover a broad spectrum of research fields from life sciences and engineering to social sciences and humanities. The funding, worth €705 million in total, will support 421 early-career researchers.
Technology & Innovation#University of Cambridge#research#Funding#advanced materials#innovation
The BESIII Collaboration, led by the Institute of High Energy Physics of the Chinese Academy of Sciences, has achieved the world's most precise measurement of the electric dipole moment (EDM) of the Lambda (Λ) hyperon using quantum-entangled Λ–anti-Λ pairs produced in J/ψ decays. The result improves the experimental sensitivity by about three orders of magnitude compared with the previous measurem
Space & AstronomyTechnology & InnovationParticle Physics#Chinese Academy of Sciences#Research News#Particle Physics#astronomy#astrophysics#advanced materials#innovation#Fermilab
NSF transformed materials science from isolated research efforts into a powerful scientific enterprise that drives innovation across industry and everyday life
Medical ResearchTechnology & Innovation#U.S. National Science Foundation#Science Matters#medical research#clinical research#advanced materials#innovation
Brookhaven National Laboratory and PsiQuantum today announced a collaboration that will leverage PsiQuantum’s software platform “Construct” to support Brookhaven Lab scientists.
Technology & Innovation#Brookhaven National Laboratory#advanced materials#innovation
A broken rib from Scotty, the largest Tyrannosaurus rex skeleton discovered, is helping scientists uncover new information about life on Earth 66 million years ago. Scotty's rib preserves something rarely seen in the fossil record: a healing injury frozen in time.
Technology & Innovation#Oak Ridge National Laboratory#advanced materials#innovation
Researchers will develop an AI model to accelerate electric grid expansion planning with optimal accuracy, affordability, and efficiency in operations.
Energy InfrastructureTechnology & Innovation#Brookhaven National Laboratory#grid#energy security#advanced materials#innovation
Imagine swimming in open water and feeling slime brush against your leg. Most people might shake it off without a second thought. But what if the surface of a boat could do the same? Researchers from Washington University in St. Louis’ McKelvey School of Engineering are about to find out, thanks to a $750,000 grant from the U.S. Department of Defense to develop materials that incorporate soft robo
Environment & ClimateTechnology & InnovationEngineering#Washington University in St. Louis#Newsroom#climate#decarbonization#advanced materials#innovation