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The holographic principle states that the entropy of ordinary mass (not just black holes) is also proportional to surface area and not volume; that volume itself is illusory and the universe is really a hologram which is isomorphic to the information "inscribed" on the surface of its boundary. [10]
Developed by Ervin Laszlo, the connectivity hypothesis describes the universe as consisting of A-dimension (corresponding to Bohm's implicate order) and M-dimension (material). The "A" in "A-dimension" is derived from the Vedic concept of Akasha. The A-dimension is conceived as a holographic informational field (holofield) fundamental to reality.
Two photographs of a single hologram taken from different viewpoints. Holography is a technique that enables a wavefront to be recorded and later reconstructed. It is best known as a method of generating three-dimensional images, and has a wide range of other uses, including data storage, microscopy, and interferometry.
The theory that the universe is a holographic entity was first introduced in the 1990s. This differs from the theory that the earth is a simulation, however.
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A holographic image can also be obtained using a different laser beam configuration to the original recording object beam, but the reconstructed image will not match the original exactly. [2]: Section 2.3 When a laser is used to reconstruct the hologram, the image is speckled just as the original image will have been. This can be a major ...
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According to the Bekenstein bound, the entropy of a black hole is proportional to the number of Planck areas that it would take to cover the black hole's event horizon.. In physics, the Bekenstein bound (named after Jacob Bekenstein) is an upper limit on the thermodynamic entropy S, or Shannon entropy H, that can be contained within a given finite region of space which has a finite amount of ...