• Re: AP correcting his Boltzmann's constant derivation. In my 258th book

    From Archimedes Plutonium@21:1/5 to All on Thu Oct 5 13:53:45 2023
    To prove me correct on this derivation of Boltzmann's constant that there is another set of constants further up in the EM Spectrum scale.

    So that the equation c^2 = 1/(permeability*permittivity) has a thermodynamic equation for the Infrared region of the Spectrum as c^2 = 1/(Boltzmann constant * another constant). And this other constant may not yet be discovered. Although the Thermal
    conductance quantum 9.46*10^-13 W/K^2 is very much close in value to this other constant that is the analog-- or should I say dual, quantum dual to Boltzmann constant.

    Now to check on whether I am on the correct way of derivation, this dual analog should be repeated in the EM Spectrum near the X-ray or Gamma ray region of the Spectrum.

    Where we should have a similar situation of c^2 = 1/(something * another thing). Perhaps near the phenomenon of Pair Production.

    So we would end up with three phenomenon in 3 different regions of the EM Spectrum. We would have c^2 = 1/(permittivity*permeability) and I view that as the Visible Region. Then the Infrared Region is taken up with thermodynamics and Boltzmann's constant
    the analog of permeability. Finally we have a new third region as yet discovered by modern day physics. A region I suspect is in the X-ray to gamma ray region. Or, well, it could be in the Radio wave region, or both.

    So this would be fantastic new discoveries in EM theory.

    AP, King of Science

    --- SoupGate-Win32 v1.05
    * Origin: fsxNet Usenet Gateway (21:1/5)
  • From Archimedes Plutonium@21:1/5 to Archimedes Plutonium on Fri Oct 6 22:39:06 2023
    One of the reasons I wanted to do this book, was because I suspected my Boltzmann constant derivation of a few years back was wrong. There I thought it was a derivation from Conductance Quantum and with the sigma error adjustment of speed of light as 3.
    16*10^8 m/s rather than 2.99*10^8 m/s.

    And so I was anxious to get back in touch.

    And this time around I take a new tactic altogether. For I employ the formula c^2 = 1/(permeability* permittivity) and I replace permeability with Boltzmann constant, asking for research to find the permittivity replacement. We already see glimmers of
    this replacement in what is called --- Thermal conductance quantum 9.46*10^-13 W/K^2.

    And I am far more happy and satisfied with this derivation. For it directly puts Boltzmann constant into the EM Spectrum, and up and down that Spectrum we can find dual pairs of constants such as Boltzmann's for infrared radiation. And I suspect one for
    radio waves and another for Pair Production in X-rays and gamma rays.

    When the primal axiom of physics is --- All is Atom and Atoms are nothing but electricity and magnetism, we need not have to look far to make Thermodynamics an integral part of EM Spectrum and thereby, easily explaining the constant of Boltzmann.


    On Thursday, October 5, 2023 at 3:53:50 PM UTC-5, Archimedes Plutonium wrote:
    To prove me correct on this derivation of Boltzmann's constant that there is another set of constants further up in the EM Spectrum scale.

    So that the equation c^2 = 1/(permeability*permittivity) has a thermodynamic equation for the Infrared region of the Spectrum as c^2 = 1/(Boltzmann constant * another constant). And this other constant may not yet be discovered. Although the Thermal
    conductance quantum 9.46*10^-13 W/K^2 is very much close in value to this other constant that is the analog-- or should I say dual, quantum dual to Boltzmann constant.

    Now to check on whether I am on the correct way of derivation, this dual analog should be repeated in the EM Spectrum near the X-ray or Gamma ray region of the Spectrum.

    Where we should have a similar situation of c^2 = 1/(something * another thing). Perhaps near the phenomenon of Pair Production.

    So we would end up with three phenomenon in 3 different regions of the EM Spectrum. We would have c^2 = 1/(permittivity*permeability) and I view that as the Visible Region. Then the Infrared Region is taken up with thermodynamics and Boltzmann's
    constant the analog of permeability. Finally we have a new third region as yet discovered by modern day physics. A region I suspect is in the X-ray to gamma ray region. Or, well, it could be in the Radio wave region, or both.

    So this would be fantastic new discoveries in EM theory.

    AP, King of Science

    --- SoupGate-Win32 v1.05
    * Origin: fsxNet Usenet Gateway (21:1/5)