Wednesday, July 23, 2014

The Second Part of the Interim Between The Third and the Fourth Sessions of Course 17

So, although a substring may work to vary within closely knit neighborhood in the substringular, the directly associated Lorentz-Four-Contracted-tensors will here bear a permittivity that will bear a topological sway -- that will here have a Yakawa-based effect upon the corroberative superstring, because of the given normalization factors that are caused by the kinematic-based conditions of the strings time-wise differentiation, relative to the correlative Basis of Light.  This happens in a manner which is involved with the recycling of core differential geometries -- that works to allow for an indistinguishably different superstring of discrete energy permittivity in the globally distinguishable, to be able to reiterate in a manner that may or may not bear a flush contour of mappable tracing in the correlative regional substringular neighborhood --which happens as the eigenbase of such a relatively regional substringular neighborhood is centered upon a general locus that is Gliossi at the so-eluded-to elliptical Hamiltonian operand.  This happens in so that the so-eluded-to substringular phenomena may be able to localize at the general conicenter of that state of location, in which the so-stated superstring of discrete energy permittivy is kinematically determined.  This general format of activity will then cause a correlative centering of both the directly associated couterstring, its correlative light-cone-gauge eigenstate, and, its correlative Fadeev-Popov-Trace egienstate -- based upon the same general format of the convergence of that Jacobian eigenbasis, that works to act in so as to delineate the general  so-eluded-to eigenstate of discrete energy -- as being a re-distributed Hamiltonian operator, that is sequentially reiterated over time.  Again, the counterstring acts as the holonomic substrate of the wave-function of discrete energy permittivity, and, the light-cone-gauge acts as the holonomic substrate of the wave-function of discrete energy impedance.  So, superstrings act as the holonomic substrate of the template of the wave-function of discrete energy permittivity, and, the Fadeev-Popov-Trace eigenstates act as the holonomic substrate of the template of the wave-function of discrete energy impedance.

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