Wednesday, July 2, 2014

Part Three of the First Session of Course 17, the Ricci Scalar

Electromagnetic force is energy that fluctuates in both its electric and its magnetic fields.  The magnetic field indices of a quantum of electromagnetic energy act in so as to wrap around the directly corresponding electric field indices in an orthogonal manner -- as is according to the right-hand-rule.  So, electrodynamic energy has magnetic field-based indices that are orphogonal to its directly associated electric field-based indices -- as is according to the right-hand-rule.  As is in going in the relative forward-holomorphic-based direction, both Fadeev-Popov-Trace eigenstates, their respective superstrings, and their respective counterstrings work to form a unit of discrete energy -- as this may be extrapolated in one discrete basis, over the course of one iteration of instanton.  This is during each discrete period of time in which each discrete unit of energy iterates, over the course of  each successive increment of the series of motion -- in which energy happens over time.  A Fadeev-Popov-Trace eigenstate is a discrete unit of energy impedance.  A superstring is a discrete unit of energy permittivity.  A counterstring is the Fock Space increment of a discrete unit of energy permittivity -- that most exhibits the wave characteristics of the so-stated discrete energy permittivity per instanton.  Energy impedance holds back discrete energy wave-tug/wave-pull enough -- so that the so-eluded-to energy will not shatter.  Discrete energy permittivity is the energy characteristic of discrete wave-tug/wave pull in and of itself.  The counterpart of any given arbitrary superstring is the Fock-Space exhibition of the directly affiliated given arbitrary unit of discrete energy permittivity -- that acts as the basis of the wave characteristics of the drive of energy itself.  The light-cone-gauge is that phenomenology that is "plucked" like a harp, in so as to form those discrete vibrations -- that indirectly inter-relate superstrings of discrete energy to their directly corresponding gravity-based superstrings --  so that phenomenology may be held together enough, in so as to allow for enough spontaneous and continuous proximal interactions, so that energy may exist at all.  The so-stated "plucking" of the light-cone-gauge also often works to stimulate those changes in Gaussian-based format that are needed, so that both norm-conditions may change, and, so that the essential fractals of energy may be re-implemented into the Gliossi-based topological contour of the directly affiliated superstrings.  The general core-field-density of the Gliossi-based compactified twining of mini-string segments, that works as a whole -- in-between one given arbitrary Fadeev-Popov-Trace eigenstate and its correlative superstring -- to be plucked like a harp -- in so as to form Schwinger Inidces, is a first-ordered light-cone-gauge eigenstate.  The individual strands of twined compactified mini-string, that form one stratum of holonomic substrate -- that is acted upon by one relative column of gauge-bosons, in so as to form either one of sixty (for two-dimensional superstrings), or, one of 120 (for one-dimensional superstrings) second-ordered Schwinger Indices -- along the topological stratum of the either sinusoidal (for a Yang-Mills topology) or, the supplemental (for a Kaluza-Klein topology) shaft-like twining -- are second-ordered-light-cone-gauge eigenstates.
Enough to absorb for now.  I will continue with the suspense later!  Sincerely, Sam Roach.

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