Extending the Classic Conclusions in Lorentz Transformation to the Relativity with Super Space Time
J. S. Huang, Q. Zou, J. M. Huang
Physical Science International Journal · pp. 1–7 · Published 26 Nov 2015
10.9734/PSIJ/2016/21549Abstract
Albert Einstein found that, for two particles coming from the same source, when the state of one changes, that of the other may change at the same time, no matter how far they are apart from each other. This superluminal quantum entanglement phenomenon totally violates both the special and general theories of relativity where nothing speed exceeds the light speed. We believe that the entanglement is caused by the twist of the inhomogeneous space in different direction, and thus this speed is the same as the space vibration speed, which is way faster than the light, and we call this angle of view as the relativity with super natural space time coordinate, where time is derived from the space, and space is in turn derived from the mass. Based on the latest observations made by astronomer, there is an evidence suggesting that our universe, in large scale, is indeed a flat body, which agrees with above inhomogeneous hypothesis. One of the mathematical frameworks of relativity is related to Lorentz transformation, in this paper, we extend it for such relativity.
Cited by 1
Dongrui Huang, Zhehan Wang, Jiamin Moran Huang · Lecture Notes in Electrical Engineering · 2024
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