The Standard Model - Derivation of Formulae Using Coloured Letter-Block Notation

in either •  5 years ago  (edited)

This Implementation of Quantum Chromo-Dynamics can be used to represent matter as it is perceived at the astronomical and minuscule scales. Particles, atoms, molecules ..even the sun has been represented and colour accurate. This can also be used to elaborate forms of chromatographic analyses.

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Absolutely this needs challenge, testing and implementation.

So far the colourization has allowed me to see into and predict aspects of physics that might have remained more difficult to express.

Ultra-violet radiation from the sun is clearly due to the missing nucleon (neutron, 2 yellow + 1 red) that allows hydrogen electrons to express more purple light than larger atoms of a balanced stable nature (with neutron).

Electrons being many times smaller than particles that comprise the nucleus of an atom, they provide a much more subtle influence yet the wavelength is fast enough to cause U.V. radiation (sun) burns.


The Development Process

ONLY FIVE REMAIN...

There are 17 particles in the current standard model.

12 of which I have already colorized according to colour frequency/wavelength...

..that leaves 4 Guage Bosons and the Higgs Boson.

Four guage bosons are the particles that will add an element of complexity. Guage Bosons will have two or more possible colour mappings due to their root factors, Quarks and Leptons.

Therefore, the 12 Quarks and Leptons of single colouration will produce calculation that can be solved in a mental process, at-a-glance.

The Guage Bosons are momentary and special cases. It will be less of an impedance to workflow that only four particles in the standard model require closer examination of possible values for calculation.

The majority of what the sun contains can be considered at-a-glance, mostly hydrogen. Based on a seconds long mental process that immediately projects one to outer and inner spaces when the perspective is appreciated.

Again, for bosons analysts will need to glance at the list of possible quark and lepton interactions to determine the colourization for the particle.

I think this makes for an effective and intuitive Quantum Chromo-Dynamic representation that most accurately expresses the natural phenomena being analyzed and expressed.

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