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Hubble telescope, for the first time ever, watched a star’s final moments in detail as a black hole twisted it into a donut shape.
Source:
https://www.nasa.gov/feature/goddard/2023/hubble-finds-hungry-black-hole-twisting-captured-star-into-donut-shape

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Graphics:
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14Comments

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  1. 2
    @ScareCrowInAnF16

    How long will it be before you stop with this bullshit clickbait as if you are going to show us a real time clip of a star’s final moments rather than show us some animation that we’ve all seen only a hundred billion times

    • 11
      @possumking3914

      No the gravitational forces from the black hole are just so strong that not even the massless photons of light can escape it

  2. 12
    @BigNewGames

    Where’s the Hubble images showing the star being shredded? If spaghettification really happens then why isn’t the star S4916 shredded when it gets close to Sgr A*? It is the closest star to the supermassive black hole Sgr A*. It has an orbital period of 4 years. It reaches a whopping 5,000 mi/s when it gets extremely close but it’s not spaghettified and shredded. Why didn’t the G-02 gas cloud in get shredded by the supermassive black hole? G-02 orbited Sgr A* in 2014 and retained it’s spherical shape. It wasn’t spaghettified. So, if radio telescopes can’t detect spaghettification occurring to stars in a tight orbit around Sgr A* 26,000 light years away how can they be so certain a star some 244,000,000 light years away is being spaghettified? All the evidence indicates spaghettification doesn’t happen. Research High Velocity Dispersion of Matter in Galaxies.

    The matter in galaxies moves rapidly away from their cores. Our solar system is 26,000 light years away from the black hole Sgr A* and we’re receding away from it an nearly 900,000 mi/h while orbiting it at roughly 536,000 mi/h. We’re receding away from it at almost twice the velocity we’re orbiting it. This motion cannot be explained by the laws of motion or general relativity. According to theory and evolutionary models of the universe space is supposed to be contracting towards the largest concentration of mass, particularly upon the dense supermassive black hole located in the cores of every galaxy. But the opposite is occurring. Matter and energy flows rapidly away from the black hole, not towards it.

  3. 14
    @SubparFiddle

    It’s important to remember that everything described is still just theoretical, that even black holes are still unobserved artifacts of a mathematical system. The EU model has a good explanation for these massive objects in the centers of galaxies with their Birkeland current “z pinch”.

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