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Thursday, April 28, 2011

Hi Lloyd,

Still haven't worked through it all as my daily life is taking it's toll. We actually had several tornados hit a few communities last night. One came close to my house and caused a lil leak in the roof. No major damage for me though other than having to be without power for a few more days.

Anyways, I haven't had time to research the specifics, but what I'm thinking is that to further unite RM and QM, we treat a linear absolute distance and time scale as the Bohr model of the atom, whereas each orbital has an energy level allowing the absorption of a photon or emission thereof to discretely alter the electrons orbital relationship. In my scenario, light sets the bar whereby each linear distance represented by a lower velocity ratio thereof has a discrete energy level of seperation. This would extend the EM spectrum to encompass massive systems in a sense, whereby the rest mass of a system is it's default velocity state and the gain or loss of relative mass which can transition a system along the scale is required to alter the energy level of the system as with absorption emission aspects thus allowing various rest mass systems to occupy an absolute energy level along the absolute scale as long as they satisify the energy level required to be there.

If we consider a photon to be a linear extension through time along the scale like a yard stick and a more massive system to be some temporal extension lesser ratio thereof ie shorter larger diameter rod, then we could perhaps account for the reciprocal conserved loss or gain of mass and velocity from system to system as being conserved by way of the extension aspect whereby all systems have a p=1 relationship through an absolute interval of time. The mass variations we find as being presently conserved within various systems ie e=mcc would be the reciprocal of the mass/energy relationship we found expended along the scale. I want to consider this relationship as with linearly extending an electron orbital and considering the various discrete energy level transitions, but haven't had time to do the research. I think you'll get my meaning though.

This would be taking QM aspects and encorporating them into RM aspects whereby establishing them both as fractal methodologies of absolute time and space mechanics. I like the idea of a motion spectrum with discrete energy level intervals as I've referenced similar aspects in the past. I just didn't know how to apply the mechanics. I'm considering the transition of a system in relation to it's rest mass vs relative mass along with the discrete force requirements to change it's linear relationship along the energy spectrum. I'll have to think more on this.

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