'Quantum gravity' could help unite quantum mechanics with general relativity at last
Researchers have measured the gravitational pull exhibited by the smallest mass yet, a breakthrough that could lead to a quantum theory of gravity at last.
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Researchers have measured the gravitational pull exhibited by the smallest mass yet, a breakthrough that could lead to a quantum theory of gravity at last.
The gravitational force, originally discovered by physicist and mathematician Isaac Newton, is known to be fundamentally weak, gaining prominence and being detectable only at macroscopic scales
Scientists have managed to measure gravity at the microscopic scale, a development that could potentially lead to a better understanding of quantum gravity theory.
A device that measures minuscule gravitational forces could help us understand how gravity works on the quantum scale
A bundle of magnets and glass had a slight but detectable gravitational pull, pushing scientists closer to the boundary between classical and quantum physics.