Monday, April 21, 2014

My problem with the vacuum fluaction is perfect entropy

I started this project with a single quant rate, 3/2, and found out it was a Nyquist rate after all, when the ratio was factored out. The system cannot have perfect wave/mass matches, there would be no room for kinetic energy. Also, it assumes fore knowledge of the system, and the vacuum cannot have that. So, ultimately, we are stuck with a split quant rate, and the necessity of kinetic energy to maintain light speed.

Outside of the proton realm where light speed is less than the proton precision, we can have different quant rates for structure.  But you still need a second rate,a Boltzman constant, and Shannon still applies.

Even in the manufacturing of shoes, we cannot be perfectly uncertain, always having just the right excess capacity to say within variation.  There has to be just the slightest bit of variance in uncertainty as we move up the scale, thus we can always calibrate our uncertainty.

Plank, our certainty about the uncertainty of matter, needs to vary ever so slightly so that phase can keep it calibrated.

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