Introduction To A Systems Model Of The Universe |
Structured By Base-2 Exponential Notation, Planck Units, And Embedded Geometries, Historically the small-scale universe started in the range of quarks, strings, fermions, and protons. Nothing below 5.96272544x10-16 meters (the 65th doubling of the Planck Length) could actually be measured by a physical instrument. The Large Hadron Collider (LHC) Compact Muon Solenoid (CMS) at CERN labs in Geneva shows effects The top end or largest size for this small-scale universe was a squishy variable, but generally accepted to be smaller than anything visible to the human eye. Once it was visible, it was part of the human-scale universe. The top end of the human-scale universe was also a variable. At one time it was limited to the earth. Then in 1969, for some, it was extended A Proposed Symmetrical System Trisect the known universe into three approximately equal parts. Of course, the question must be raised, "Equal according to what parameters?"
There are just 201+ base-2 doublings so each scale would necessarily have just 67 doublings. These doublings will also be referred to as clusters, domains, groups, layers, notations, and steps. Each designation represented its own special perspective and necessary parameters. An article to analyze each scale will be forthcoming: 1. The Small-Scale Universe (in process) 2. The Human-Scale Universe (proposed future page) 3. The Large-Scale Universe (proposed - until then, please go to the Big Board-little universe |
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