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  1. 04:09. 04:43. Today, one of the biggest paradoxes in the universe threatens to unravel modern science: the black hole information paradox. Every object in the universe is composed of particles with unique quantum properties and even if an object is destroyed, its quantum information is never permanently deleted.

  2. 15 de mar. de 2018 · The Work of Stephen Hawking in. Physical Review. To mark the passing of Stephen Hawking, we gathered together his 55 papers in Physical Review D and Physical Review Letters. They probe the edges of space and time, from "Black holes and thermodynamics” to "Wave function of the Universe." 90 citations.

  3. 28 de ago. de 2019 · Stephen Hawking was a scientist known for his work with black holes and relativity, and the author of popular science books like 'A Brief History of Time.'

  4. These calculations also imply that for sufficiently old black holes, one can perform operations on the Hawking radiation that affect the black hole interior. This result has implications for the related firewall paradox , and provides evidence for the physical picture suggested by the ER=EPR proposal, [7] black hole complementarity , and the Papadodimas–Raju proposal.

  5. 14 de mar. de 2018 · Having tackled single black holes, Hawking turned his attention to the Universe as a whole - the ultimate, inescapable gravitational container. The laws of quantum science are as applicable here ...

  6. Black holes and thermodynamics S. W. Hawking Phys. Rev. D 13, 191 – Published 15 January 1976 An article within the collection: 2015 - General Relativity’s Centennial and the The Work of Stephen Hawking in Physical Review

  7. 23 de sept. de 2019 · Eventually, in theory, black holes will evaporate through Hawking radiation. But it would take much longer than the entire age of the universe for most black holes we know about to significantly evaporate. Black holes, even the ones around a few times the mass of the Sun, will be around for a really, really long time!