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Black holes consume everything—stars, gas, dust, and even the very fabric of reality: information. But what if I told you those cosmic conundrums might not be the ultimate destroyers we’ve made them out to be? The black hole information paradox presents one of the most tantalizing puzzles at the heart of modern physics.

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Produced, directed, and edited by:
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10Comments

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  1. 1
    @ronaldkemp3952

    @ 0:09, the animation was created by EHTC of what would happen to the G02 gas cloud when it neared the supermassive black hole Sagittarius A back in 2011. But it didn’t happen like that. Instead in 2014 the gas cloud orbited the black hole and retained it’s massive spherical shape. it was not spaghettified like their computer model predicted.

    The information paradox arose after first assuming black holes evaporate over time. According to the laws of thermodynamics energy and matter can’t be destroyed. So, where would all the information of energy and matter go if the black hole evaporates? That’s when Hawking proposed the information leaks out through the black hole’s gravity, converting into pairs of elementary particles just outside it’s event horizon, where the differently charged particles react differently to the black hole’s gravity. One particle is negative and is repelled away from the black hole while the other is positive and falls back into it. He claimed over time the black hole would eventually then be able to evaporate without violating thermodynamics. But he was wrong.

    Astronomers do not see particles falling into black holes. According to relativity particles would take a long time to orbit the black hole before reaching the event horizon. Before they reached the point of no return they would be traveling at the speed of light and would instantly convert into energy, producing an effect similar to a single hydrogen atom exploding. Massive amounts of energy and visible light would be released. But telescopes do not detect any visible light radiating from event horizons of black holes. They do however measure massive amounts of high energy light and hot charged particles streaming away from them for several light years in every direction, each pointing back to it. The observational data actually refutes the prediction made by relativity that nothing can escape their gravity because they can see massive amounts of energy and particles streaming away from them in every direction. Astronomers refer to this as a high velocity dispersion of matter in the center of galaxies.

    Hawking’s equations basically debunk Einstein’s relativity claiming nothing, not even light is able to escape their gravity. Information and Hawking radiation “elementary particles” is something, not nothing. Thus if Hawking was right then Einstein was wrong. Things indeed can escape their gravity.

    The truth however is much more mysterious than the information paradox. The JWST recently discovered old, bright, massive galaxies, some even more than 20 times larger than our own galaxy but further than 14 billion light years away. The theoretical foundation and models that make up the walls of physics are weaving and bending, about to snap. The distant galaxies contain black holes much larger than the one in the center of our galaxy. The galaxies are more than 20 times larger than our galaxy and extremely bright. If telescopes are looking back in time then why are they older and larger than our own galaxy, but are less than 200 million years old? Our sun is 4.5 billion years old. It took 4.5 billion years of growing to get to the size and mass it is today. How can the supermassive black hole F200DB-045 be only 168 million years old and be 100 million times the mass of our own old sun? What a conundrum this produces. So they call it the impossible early galaxy paradox. It shattered all predictions.

    In the first book of the series titled SECRET UNIVERSE: GRAVITY by Ron Kemp everything is explained in great detail. Starting with the action creating gravity in mass leading to what the JWST would find in the early universe. On page 48 I wrote quote, “The JWST, James Webb Space Telescope will discover old, fully grown galaxies as far as the telescope can see, further than 13.8 billion light-years away.” I was spot on.

    • 4
      @priyabratadash381

      @pangeaproxima3681 understand the logic..
      The ultimate dustbin is the black hole as per classical theory in which information is forever lost once it enters the event horizon whereas in quantum mechanics information leaks out of the black hole just like we access lost information from recycle bin ♻️

  2. 6
    @ricardomotagomes

    Show !!! … To infinity and to beyond !!! … 🙌🏻🙌🏻🙌🏻🙌🏻🙌🏻🙌🏻 !!! … 👍🏻👍🏻👍🏻👍🏻👍🏻👍🏻 !!! … 👏🏻👏🏻👏🏻👏🏻👏🏻👏🏻 !!! … 🤩🤩🤩🤩🤩🤩 !!! …

  3. 8
    @Or3guns

    0:23 Imagine being on a planet and instead of a sun you have a blackhole you get to look at everyday. I really hope we get to see a supermassive black hole with an accreation disc before I die

  4. 9
    @boonraypipatchol7295

    From beginning of BigBang to the end of the universe,
    From beginning of Blackhole to the end of Hawking Radiation,
    Are…… Implications of……. Nature……. Reality.

    Quantum Information and Quantum Entanglement are Fundamental.

    Quantum Mind emerge.. Collection, Pattern of QuInfo and QuEntang.
    Quantum Body emerge.. Std.Model emerge, DNA, Protein synthesis.
    Mind and Body entanglement.. Consciousness emerge.
    Spacetime emerge.. Mass.. Energy.. Wave fn. Decoherence.
    Mathematics Emerge.. Intrinsic in the fabric of the emergence.
    Holographic Principle.. Information Conservation, Energy Conservation.

  5. 10
    @TaneliLehtonen11235

    What is information, organised matter by the simples way already? If so, it’s very likely(not enough/much at all information inside black holes) breaker down etc destroyed. Or is information something more complex, something else..?

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