Monday, March 25, 2019

Some Stuff As To Neutrinos

Neutrinos that are here to be in the process of existing, under the Ward-Cauchy-based conditions, in so as to be Gliosis to the Kahler-Metric -- tend to be differentiating in an isotropic manner, -- in such a manner, in so that such said neutrinos are then to be cycling between oscillating in the direction of its annulus, while then next to be oscillating in the direction of its edge.  This just mentioned substringular tendency, happens to work to help at explaining the physical reason, as to why an individually taken neutrino -- is here to have the general tendency of moving through its multiplicit correlative Fourier Transformation, -- in a minimum of 12 spatial dimensions plus time.  Furthermore -- a neutrino has the tendency of iterating at BRST, in such a way, to where its angular momentum is here to often tend to be able to happen in the direction of its annulus, -- whether or not it is actually to be consistently to be in the process of  being tugged into this general said tense of a holomorphic-related direction, over time.  This general tendency, as to the angular momentum-related tendency of a neutrino -- works to assist at allowing a neutrino to then to be able to act, as one general genus of a Calabi-Yau manifold -- that is here to be propagated through space, via a set of one or more Legendre-related superstrings of discrete energy permittivity, over time -- in so as to be pulled into a commutative tense, of being of one general genus of a field-related energy -- that is here to be existent in the substringular, in so as to be appertaining here to the condition of acting as one respective given arbitrary tense of a general genus of phenomenology, that may here be expressed as a general genus of superstrings of discrete energy permittivity, that are, as is the usual tendency, to come together, in so as to act as a set of such superstrings that act as a "team," that are therefore here to exist, in the form of individually taken orbifold eigensets.
(Again -- orbifold eigensets, are sets of one ore more discrete quanta of energy, -- that are here to operate, in so as to perform one specific function, over time.)
To Be Continued!  Sincerely, Samuel David Roach.

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