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Jack Egerton

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  1. The rest energy is E0=m0c^2, the total energy, that includes its motion is E=gamma.m0c^2 = mc^2, in my mind, and also how I have described above. Again, I have not fully thought this through yet, but that seems correct to me. I would even suppose that Lorentz may have got his gamma factor from E^2 = (cp)^2 + (m0c^2)^2 by subbing in that p=mv, but I have not read his formulation, only been taught it.
  2. N.b. the Lorentz factor, gamma = 1/sqrt(1-v^2/c^2) maps one inertial frame of reference to another via their relative velocity, again, if I am not mistaken. It has been a few years since I studied this last. I commented it out. I mean that I had written it that way and decided that it seemed superfluous. I had a section that had that form of the energy-momentum relation, and also the Hamiltonian formulation of Schrodinger's equation, but that reached the cutting room floor as well. My main aim was to concisely convey each novel way that the Egertonian quanta and relative relation may be applied and then see where it could be taken from there.
  3. Thank you Mordred, I have also written it with E^2 = (cp)^2 + (m0c^2)^2, but when m=gamma.m0 and m0 can be sum of all rest masses, then it seems general to me, to write it how I did. Have I missed something?
  4. Hi all ! Please read this before reading the attached document ! The mathematical formulations in the attached are logical and rigorous. The physical applications of these mathematical formulations are solely exemplifications of the mathematical formulations and how they can be applied in seeking the Theory of Everything. Please discuss and advise how the Egertonian quanta and Egertonian relative relation could have been and could be applied to physical law description. Disclaimer: The work provided here is by myself, the author and Originator of said work, but is not affiliated with my institution, Imperial College London. This is a work in progress and would require the above stated improvements before publication in a peer reviewed journal. Thank you very much in advance for you help with this! Best wishes Jack S. Egerton egertonian-quanta-tetration.pdf
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