Remote Viewing Bob Lazar at Area51/S4
In 2023, I (Daz) tasked the #RemoteViewing team at Future Forecasting Group (& Dimi) with a top-secret project: G7N3 - L2H8.
Their mission? Investigate Bob Lazar's claims about working at S4/Area 51.
Their findings will blow your mind—just like they did for Richard Dolan! 🤯
Watch the full LIVE debrief video, free for the first time here:
https://t.co/Vy18x12SQ5
The most recent Event Horizon Telescope image of polarized light around the Milky Way's nuclear black hole, Sagittarius A*, is a remarkable and stunning image that reveals some of the innermost dynamics of our galactic nucleus; but as well revealing that the physics of black holes are not yet well understood, and challenging the standard models of astrophysics. Astrophysicists are seeing that their previous models, which did not have strong magnetic fields around black holes, are incorrect, and they are reportedly left perplexed by the high level of coherency of the plasma flow dynamics around Sagittarius A*. However, there is a model from which the high coherency and flow dynamics that are being observed are predicted. From our recent study The Origin of Mass and the Nature of Gravity, available to download on the CERN pre-print server Zenodo- https://t.co/eH48qEzjFh - the physics that would explain the remarkable and stunning image are elucidated. Unlike standard models describing black holes as an accumulation of mass in a region of space, here the authors define the discrete fluid structure of spacetime as Planck Plasma flow vortices generating black holes at the origin of mass and forces. From their paper (pg. 22, under the section The Quantum Spacetime Structure):
"Contrary to the classical approach, where one would expect the black hole formation to be the result of an accretion of infalling material to a critical limit, our result demonstrates that black hole formation is the result of a natural spacetime behavior emerging from a state of coherency of the collective quantum vacuum fluctuation oscillators in a region of space at different scales. The mechanism that defines these states of coherency is related to the angular momentum of an oscillator, as described by Max Planck originally. The coupling of the oscillators produces collective behaviors or a quantum vortex in a turbulent flow of the spacetime manifold [Planck Plasma flow] in a region of space generating what we observe as a black hole."
Image Credit: EHT Collaboration. The Event Horizon Telescope (EHT) collaboration, which produced the first-ever image of our Milky Way black hole released in 2022, has captured a new view of the massive object at the center of our Galaxy: how it looks in polarized light.