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Direct visualization of quantum zero-point motion in complex molecule reveals eternal dance of atoms
Most of us find it difficult to grasp the quantum world. According to Heisenberg's uncertainty principle, it's like observing ...
Scientists had theorized about the possibility of a plasma physics phenomenon, but their AI system discovered the real thing.
The new measurement from LHCb has found differences between baryons and antibaryons, which are made of three quarks and three antiquarks respectively. Significantly, baryons make up most of the known ...
Microrobots formed in droplets could enable precision-targeted drug delivery, improving on I.V. drug delivery that sends only ...
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IFLScience on MSNScientists Succeed In Capturing Elusive "Ghost Particles" Escaping Nuclear Reactor
Neutrinos are fundamental particles with a tiny mass and no electric charge. This allows them to move undisturbed through ...
A compact 3 kg (6.6 lbs) detector has allowed scientists to detect elusive antineutrinos from a nuclear reactor.
Dell’s 14 Plus is a good-value 14-inch laptop for home or school, particularly if you catch it discounted. Its long battery ...
If true, this could overturn our current model of dark energy and cause "Big Crunch" sooner than previously thought. Dark ...
Collapsing stars might act as cosmic laboratories for discovering hidden neutrino interactions. Neutrinos are among the most puzzling particles in the universe. Nearly massless and incredibly elusive, ...
New research predicts surprisingly large CP violation effects in charmed baryon decays, an essential step toward solving the universe's matter-antimatter imbalance. Scientists have long been intrigued ...
Physicists would dearly love to find new particles, but there's no sign of them in colliders like the LHC. Now we have found ...
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