I'll start taking a look at the BCS Theory of Super Conductivity. I need to acquaint myself with the ideas.
My initial thoughts are that there are many properties covered under two words: Temperature and SuperConductivity
I'll look into breaking this down into its constitiuent parts proper
Electric-Charge effect
Gravity-Mass effect
Particle Effect
Field/Boson Effect
I also want try and define clearly "What is temperature in Pi-Space?"
I'll map it to the wave-within-wave notation and show at what level it belongs.
Hint: Present thinking is that there is Electrical Temperature, Particle Temperature and Field Temperature. All combine to form our concept of hot and cold. All are essentially waves at the respective Nx(0) layer.
I will build this Superconductivity approach based on my Standard Model work. Therefore I will extend the wave-within-wave model.
More later.
BCS Nobel Winners
John Bardeen, Leon Neil Cooper, and John Robert Schrieffer (BCS) in 1957
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