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A group of researchers has introduced a novel seven-dimensional physics framework that could potentially address the enduring black hole information dilemma initially brought to light by Stephen Hawking. According to this theory, three unseen spatial dimensions might create a torsion field that stops black holes from completely evaporating. Scientists theorize that minuscule remnants could retain information previously considered irretrievable due to Hawking radiation. Furthermore, this model seeks to clarify particle mass within the same geometric context. If future research supports it, this theory could revolutionize our comprehension of gravity, quantum mechanics, and the very fabric of the universe.
Transcript
00:00What if black holes never actually destroy anything?
00:02Scientists may have finally solved one of physics' biggest mysteries.
00:06It's called the black hole information paradox.
00:10Stephen Hawking believed black holes slowly disappear over time.
00:13But there was one huge problem.
00:16If a black hole vanishes, where does all the information inside it go?
00:20And according to quantum physics, information can never truly be destroyed.
00:25Now researchers think the answer could be hidden in seven dimensions.
00:30Not four, it's seven.
00:31The theory suggests our universe may contain three invisible extra dimensions.
00:36These hidden dimensions create something called a torsion field,
00:40a strange twist in space and time itself.
00:43And this twist may stop black holes from fully evaporating.
00:47Instead of disappearing forever, they leave behind tiny remnants,
00:51tiny cosmic vaults storing all the information they swallowed.
00:55If true black holes may not be destroyers at all,
00:58they could be the universe's ultimate memory devices.
01:02And this discovery could completely change physics forever.
01:05And this discovery could be the universe's ultimate memory of a different memory of a different memory of a different
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01:05memory of a different memory of a different memory of a different memory of a different memory of a different
01:05memory of a different memory of a different memory of a different memory of a different memory of a different
01:05memory of a different memory of a different memory of a different memory of a different memory of a different
01:05memory of a different memory of a different memory of a different memory of a different memory of a different
01:05memory of a different memory of a different memory of a different memory of a different memory of a different
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