Saturday, February 20, 2016

Increase In Acceleration Of A Superstring

Let us here initially consider one given arbitrary mass-bearing Noether-based superstring of discrete energy permittivity -- that is accelerating through a discrete Lagrangian-based path, over time.  The Lorentz-Four-Contractions that would then be directly applicable to the said respective superstring, will then, proportionably, be increased -- as the so-stated discrete quantum of energy is moving at a higher and higher velocity -- over a sequential series of instantons.  Let us next consider if the so-stated superstring of such a case is to be increasing in its acceleration, as it is moving through the said discrete Lagrangian-based path -- over the so-eluded-to gauged metric-based duration of time, in which the superstring of such a case is differentiating in the so-eluded-to Fourier-based manner.  Not only will the directly applicable Lorentz-Four-Contractions -- that will be in the process of acting upon the directly associated Ward-Caucy-based conditions of the so-stated superstring, be increasing at a higher rate over time, yet, this tense or genus of as to how the correlative Lorentz-Four-Contractions will then be increasing -- will then tend to potentially form an inverse of a Clifford Expansion upon that mappable tracing that may be drawn-out in a Laplacian-based manner -- along either the topological-based surface of the norm-to-forward-holomorphic-based positioning of the holonomic substrate of the said superstring, or, along the topological-based surface of the norm-to-reverse-holomorphic-based positioning of the holonomic substrate of the said superstring, as such a so-stated mappable tracing may be extrapolated as an etching that may be construed along the so-eluded-to slope that would then be formed by the ever contracting tense of the here increasingly accelerated superstring of discrete energy permittivty, over time.  As such a superstring is to here be accelerating in a tense of a Noether-based flow, over time -- it is going to not only consistently bear metrical-based singularities, yet, since the topological-based surface of the Gliosis-based core-field-density of the holonomic substrate, that is of such a said superstring, when one is considering such a kinematic activity at the Poincare level, will be altering in such a perturbative manner -- such a so-stated superstring will then bear a greater expectation value of then working to bear Lagrangian-based Chern-Simons singularities that are Njenhuis to the Hamiltonian-based operand of the so-eluded-to Lagrangian-based path that the said superstring is to her be moving through, than if it were to otherwise not be accelerating as a mass-bearing superstring -- that is to here be undergoing a tense of a Noether-based flow.  Such a pattern would here be limited to the maximum Ward-Caucy-based restraints as to how much of a Lorentz-Four-Contraction would here be able to be applicable to the said string of discrete energy permittivty.
I will continue with the suspense later!  To Be Continued!  Sincerely, Sam Roach.

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