Wednesday, July 27, 2011

How the Bases of Light Are Fractored By the Planck-Related-Phenomena

When the Bases of Light are retied -- via the quaternionic-instanton-field-impulse-mode -- the same basic type of morphological nature of each Basis of Light taken individually is fractored by the corresponding Planck-Related-Phenomena.  Aside from the 159,000 different types of Planck-Related-Phenomena morphologies that may be generalized by what I had discussed in my previous post, there are close to one trillion manners in which the hyperbolically concave up morphologies of the "Chi" shapes of the given mini-traces may formulate in terms of the intensity of such a prior mentioned type of curvature that may be mapped out under any given Laplacian condition of such Planck-Related-Phenomena that involves forward moving time during BRST.  Likewise, there are also close to one trillion manners in which the hyperbolically concave down morphologies of the "Chi" shapes of the given mini-traces may formulate in terms of the intensity of such a prior mentiones type of curvature that may be mapped out under any given Laplacian condition of such Planck-Related-Phenomena that involves backward moving time during BRST.  In the region to where the Bases of Light moves primarily forward, there is one Basis of Light that involves forward and backward moving time equally.  In the region to where the Bases of Light moves primarily backward, there is one Basis of Light that involves forward and backward moving time equally.  So, one not only has the 159,000 basic variations of Planck-Related-Phenomena as I described in my previous post, yet, there are three different general types of intensity in terms of the hyperbollic nature of the basic curvature of the "Chi" shapes that are an integral part of the mentioned Bases of Light as may be determined by the detection of the corresponding mini-traces.  Regular mini-traces bear a hyperbollic concave curvature along the mapping out of the "Chi" shapes under Laplacian conditions that is strictly eucildean and hermitian.
Virtual mini-traces bear a hyperbollic concave curvature along the mapping ot of the "Chi" shapes under Laplacian conditions that is determined via a power series of observed extension. While Planck-phenemenoa visages bear a Laplacian tracing that is exponential in terms of how one may map it out from the center of a mini-trace to its exterior Ward Neumman bounds.  Likewise, for every Regular-Planck-Phenomena, or, RPP, there are 10,000 times as many total RPP and virtual PP combined, and, for every RPP, there are 100,000,000 total virtual PRP, visage PRP and RPP combined. Virtual visage Planck-Related-Phenomena, or, VVPRP, bear an exponential mapping as before, except, the related traces bear a Laplacian condion of extended sub-mini-string in-between the second-ordered point particles that comprise the traces that comprise the mentioned "Chi" shapes. Again, for every RPP, there are one trillion total RPP, virtual PRP, visage PRP, and VVPRP.  You have a phenomenal day, and I will continue with the suspence later!  Sincerely, Sam Roach.                                                                                                       

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