Showing posts with label Njenhuity. Show all posts
Showing posts with label Njenhuity. Show all posts

Tuesday, June 11, 2013

Formats For Different Types Of Kunneth-Based Formulations

There are 32 spatial dimensions in one set of parallel universes.  This means that there are 16 general genus-formats of Njenhuity in one set of parallel universes.  So, even though there are 9.1*10^(82) universes in one set of parallel universe, these universes that work to comprise this set consist of a total of the said 16 general genus-formats of Njenhuity from within the said set of parallel universes.  This means that even though one could theoretically compare one orbifold that exists in correlation with one other orbifold from a total of the eluded to 9.1*10^(82) different respective universes from within our set of universes, and, such a correspondence -- when in terms of the covariance between these said orbifolds, would involve a Kunneth Formulation in order to work to determine a specific Li-Algebra-based Gaussian spatial relationship between each individual respective orbifold that is being considered here with each other at once -- over a given arbitrary Laplacian Transformation, one may often more specifically compare 16 orbifolds that exist as individual orbifolds that exist in different universes that each bear a different genus of Njenhuity.  Such a correspondence may be used in order to work to compare the covariant Laplacian and the covariant Fourier codeterminable and codifferentible eigenbases that show an actual spatial inter-relationship between universes from the same set that are not only different, yet, also each bear a different tense of complex spatial genus.  I will continue with the suspense later!  Sincerely, Sam Roach.

Thursday, March 21, 2013

A Little Bit Of An Explaination of discrete permittivity and impedance

As superstrings differentiate over time, their discrete permittivity begins to "wear-out."  When the discrete permittivity of superstrings starts to wear-out, the discrete impedance of their directly corresponding Fadeev-Popov-Trace eigenstates begins to wear-out over the course of the same general group metric.  When such an initial loss of discrete permittivity and such a loss of discrete impedance in superstrings and their directly corresponding Fadeev-Popov-Trace eigenstates respecitively happens to the point that such metric-gauge is almost fully depleted, then, the said superstrings and their corresponding Fadeev-Popov-Trace eigenstates go through what is known of as a Kaeler-Metric so that both superstrings may reattain discrete permittivity and so that their field trajectory (PLP) may reattain their discrete impedance.  As this happen, the Kaeler-Metric happens in such a manner so that -- not only will the substringular phenomena that I have just mentioned will reattain their respective permttivity and impedance, yet, also so that norm-conditions may change over the course of  Gaussian Transformation-based metrical activity. Gaussian Transformations that involve the scattering of light are known of as gauge-transformations.  Gauge-Transformations work to allow for entropy -- which is essential so that physical states may change.  The arena of the knowledge of gauge-transformations will be more thoroughly discussed in course 20 about Calabi-Interactions.  The discrete energy permittivity and the discrete energy impedance that the substringular reattains bears the prior mentioned geni of fractaled Njenhuity that is based upon the condition that certain phenomena sometimes may be able to travel to different sets of parallel universes.  Also, this bears upon the condition of what happens during Ultimon Flow.  This way, phenomena may bear some sort of association with all of the other phenomena in space-time-fabric -- so that such a "fabric" may be of a space-time-continuum.  Enough for now!  Sincerely, Samuel David Roach.

Monday, November 16, 2009

Post One of More About Orbifolds

An orbifold may act as a toroidal-disc shell, an orbifold may act as a toroidal-spherical-shell, an orbifold may act as a Hilbert-toroidal-disc, or an orbifold may act as a Hilbert-Toroidal sphere. An orbifold toroidal disc shell is an orbifold that consists of one-dimensional superstrings that involve one universe within its Ward boundaries. Such an orbifold has a gauge-field Njenhuity that is directoralized of cohomological mini-strings that "yarn" together between opposite subtended relative poles based on a translation of theta to Phi multidimensional polar radial delineations, so that the associated orbifold bears an incomplete mobiaty. A complete mobiaty here would undo space-time-fabric, and is impossible here because the given interialized directoralization of these substringular gauge-fields here will always bear an abelian eigenstates no matter whether the associated superstrings along the periphery of this orbifold have a non-abelian or an abelian light-cone-gauge topology in and of themselves. A non-abelian gauge-field eigenbasis at geometrically euler positioning taken Laplacianly, with a partially abelian geometry "welding" the abelian and nonabelian eigenbasis of such to form a stratum that may be interacted upon via the Ricci Scalar with the proper Ante-De-Sitter/De-Sitter mode of operations. This webbing is a translational group operator of gauge-action that hyperbollically transfers point-fill to the operand of the Fourier Series that defines the refurbishment of the space-time-fabric of the periphery of such a toroidal-disc-shell, taken as a regulation group action of the only intertwining that an Imaginary charge under the given Ward conditions may effect to allow for such a Conformally Invariant Series commutation. Such activity also happens with toroidal spherical shells, yet only non-abelianly with toroidal discs and toroidal spheres of the kind that define their respective orbifolds.