DOE’s Brookhaven National Laboratory will lead one of the newly funded Quantum Outpost projects, called “Quantum Information Signatures at Colliders,” in collaboration with the University of Pittsburgh.
Particle PhysicsTechnology & Innovation#Brookhaven National Laboratory#Particle Physics#High Energy Physics#advanced materials#innovation
The Department of Energy (DOE) has officially committed funding to establish UNITY-3, a world-class fusion breeding blanket test facility at Oak Ridge National Laboratory (ORNL), with Kyoto Fusioneering (KF) relocating its U.S. headquarters to Tennessee to help build and operate it. The facility is part of the recent public-private strategic partnership established between DOE, ORNL and KF to buil
Fusion EnergyParticle Physics#Oak Ridge National Laboratory#fusion#plasma physics#Particle Physics#High Energy Physics
Eleven Suffolk County Community College students and recent graduates completed an innovative pilot workforce development program shaped by nuclear technology and radiochemistry expertise at Brookhaven Lab.
Fusion EnergySpace & AstronomyParticle Physics#Brookhaven National Laboratory#fusion#plasma physics#astronomy#astrophysics#Particle Physics#High Energy Physics#medical research
A prototype for the world’s biggest neutrino experiment is running under extreme conditions to see how well the technology performs under pressure
Space & AstronomyParticle Physics#Brookhaven National Laboratory#astronomy#astrophysics#Particle Physics#High Energy Physics#Los Alamos National Laboratory#Fermilab
The ISS National Laboratory celebrates 15 years of advancing science in space as Patrick O’Neill reflects on its beginnings, accomplishments, and future. Episode 435
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President Bellamkonda and First Lady Kaligotla greet students and families
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Research NewsLawrence Berkeley National Laboratory
Scientists around the world use the focused beams of light generated by the Advanced Light Source (ALS) synchrotron to study molecules and materials with…
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Is the universe as stable as we think it is? That's one of the big questions that particle physicists worldwide are preparing to answer with the Large Hadron Collider, or LHC—the world's most powerful particle accelerator—when its upgrade is completed in about four years. In the meantime, researchers, including a cohort at the University of Michigan, are working to sharpen their analytical tools and techniques to make the most of LHC's current and future data.
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WashU is committed to providing students, faculty and staff with the knowledge and tools to engage with artificial intelligence (AI) responsibly in academics, research and operations. The university has built momentum in several key areas, maintaining its focus on the WashU mission, the needs of the academic community and the preparation of future-ready leaders. Led by Provost Mark West, the unive
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UAlbany physicist Vivek Jain is part of DUNE, an international experiment studying neutrinos. He works on the project’s Near Detector, which will measure particles before they travel 800 miles through the Earth to South Dakota.
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Adelaide University’s Research Strategy released today is set to accelerate at-scale research and its commercialisation – advancing industries through transformational investments into nation-critical and globally relevant priorities.
ResearchParticle Physics#Adelaide University#Adelaide#Particle Physics#High Energy Physics
The Large High Altitude Air Shower Observatory (LHAASO) revealed that the peculiar binary system Cygnus X-3 in the constellation Cygnus is the highest energy gamma-ray source known to date. The temporal variability and spectral characteristics measured by LHAASO confirmed this object as the source of cosmic rays, with particle energies reaching at least 30 PeV (1PeV=10 15 eV), far exceeding curren
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The Hub builds on the expertise of the Cambridge Stem Cell Institute, in particular around advanced human in vitro models, including organoids and other stem cell-derived systems. It will combine this with AI-powered approaches, bioengineering and clinical research to create more accurate and predictive ways of studying human disease and testing potential treatments before they reach patients.
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