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Black hole is zero Vacuum: T=0K
Black hole is zero Vacuum: T=0K
1. A black hole has a temperature within a few millionths of a degree above absolute zero: T=0K / Oxford. Dictionary./ 2. A stellar black hole of one solar mass has a Hawking temperature of about 100 nanokelvins. This is far less than the 2.7 K temperature of the cosmic microwave background Black hole - Wikipedia 3. Previous Picture of the Day articles about black holes suggested that the terminology used to describe “gravitational point sources” is highly speculative: space/time, singularities, and infinite density are abstract concepts, precluding a realistic investigation into the nature of the Universe. / Black hole theory contradicts itself, by Stephen Smith. Oct 12, 2011 / 4. Book: ''' Stephan Hawking, A life in science,'' / by Michael White and John Gribbin./ # ''Together with Brandon Carter and Jim Bardeen, Hawking wrote a paper, published in Communications in Mathematical Physics , pointing out . . . . . the team commented, '' In fact the effective temperature of a black hole is absolute zero . . . . No radiation could be emitted from the hole.'' / page 156./ But later (!) , . . using concept of entropy and Heisenberg uncertainty principle and quantum fluctuations (!) Hawking changed his mind and wrote that black hole can emit ( Hawking radiation ) # So, in the beginning (according to calculations) the ''black hole'' had absolute zero temperature T=0K but . . . thanks to entropy, HUP and quantum fluctuations Hawking radiations was arisen. In others words: ''black holes'' are local micro- scheme of absolute zero vacuum: T=0K ''black hole'' is only another name of ''true vacuum'' : T=0K Homogeneous zero Vacuum is an absolute ''spacetime'' between Galaxies. Somehow different kinds of radiations, particles, heat can arise from T=0K. “Now we know that the vacuum can have all sorts of wonderful effects over an enormous range of scales, from the microscopic to the cosmic”, said Peter Milonni from the Los Alamos National Laboratory in New Mexico. Therefore only Vacuum can* be the real basic structure of Nature and Physics. =============
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Last edited by socratus; 04-26-2018 at 02:17 AM. |
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How Do Black Holes Form?
Primordial black holes are thought to have formed in the early universe, soon after the big bang. Stellar black holes form when the center of a very massive star collapses in upon itself. This collapse also causes a supernova, or an exploding star, that blasts part of the star into space. https://www.nasa.gov/audience/forstu...k-hole-58.html Soon after the big bang a very Primordial massive star collapses in upon itself . . . # By absorbing other stars and merging with other black holes, supermassive black holes of millions of solar masses (M☉) may form. https://en.wikipedia.org/wiki/Black_hole Questions: 1 - In which Reference Frame the very Primordial massive Star collapsed, soon after the big-bang ? 2 - What was temperature of the RF where the very Primordial massive Star was collapsed ? ===============
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June 4, 2014
How Big Are Black Holes? # '' The largest black holes are called "supermassive." These black holes have masses greater than 1 million suns . . . The supermassive black hole at the center of the Milky Way galaxy is called Sagittarius A. It has a mass equal to about 4 million suns . . .'' https://www.nasa.gov/audience/forstu...k-hole-58.html # '' By absorbing other stars and merging with other black holes, supermassive black holes of millions of solar masses (M☉) may form.'' # From Primordial - "Micro black hole" / would have a mass >~ 10^-5 gram / to Supermassive about 4 million suns . . . after big-bang . . . === P.S. Avogadro constant https://en.wikipedia.org/wiki/Avogadro_constant ===
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REALITY
Black hole swallowing and ripping apart star captured for first time The star was the size of the Earth's sun and 375 million light years away when it was seen being drawn in by the black hole. Friday 27 September 2019 11:58, UK https://news.sky.com/story/black-hol...-time-11820432 ======
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Quote:
cosmological billion years effect in 1 minute # god needed 6 days to create everything, NASA needs 1 minute to show and explain the destruction of his work ===
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Wednesday, October 16, 2019
Dark matter nightmare: What if we are just using the wrong equations? --- Einstein’s theory of general relativity is an extremely well-confirmed theory. Countless experiments have shown that its predictions for our solar system agree with observation to utmost accuracy. But when we point our telescopes at larger distances, something is amiss. Galaxies rotate faster than expected. Galaxies in clusters move faster than they should. The expansion of the universe is speeding up. General relativity does not tell us what is going on. / Posted by Sabine Hossenfelder at 10:05 AM / Sabine Hossenfelder: Backreaction: Dark matter nightmare: What if we are just using the wrong equations?
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Black holes stunt growth of dwarf galaxies
Astronomers find large-scale winds associated with active black holes in small galaxies suppress star formation Date: October 11, 2019 Source: University of California - Riverside Summary: Astronomers have discovered that powerful winds driven by supermassive black holes in the centers of dwarf galaxies have a significant impact on the evolution of these galaxies by suppressing star formation. https://www.sciencedaily.com/release...1011165322.htm === Gulliver's Travels ( 1726 - 2019 ) -- Gulliver in the land of the Dwarf galaxy Gulliver in the land of the Giant galaxy Gulliver in the land of the Balnibarbi Gulliver in the land of the Yahoo ====
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A Black Hole Threw a Star Out of the Milky Way Galaxy
So long, S5-HVS1, we hardly knew you. By Dennis Overbye Nov. 14, 2019 https://www.nytimes.com/2019/11/14/s...milky-way.html
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Holographic Duality Yields Breakthrough in Black Hole Physics
By Skolkovo Institute of Science and Technology (Skoltech) November 5, 2019 --- The physics of black holes remains an elusive chapter of modern physics. It is the sharpest point of tension between quantum mechanics and the theory of general relativity. According to quantum mechanics, black holes should behave like other ordinary quantum systems. Yet, there are many ways in which this is problematic from the point of view of Einstein’s theory of general relativity. Therefore, the question of understanding black holes quantum mechanically remains a constant source of physical paradoxes. The careful resolution of such paradoxes should provide us a clue as to how quantum gravity works. That is why the physics of black holes is the subject of active research in theoretical physics. https://scitechdaily.com/holographic...-hole-physics/
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Three supermassive black holes found at center of unusual, smashed galaxy
https://www.msn.com/en-gb/news/techa...cid=spartandhp
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black, hole, t=0k, vacuum, hawking, absolute, temperature, entropy, radiations, fluctuations, quantum, radiation, nature, wrote, physics, holes, calculations, arisen, words, hup, uncertainty, page, emitted, concept, heisenberg |
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