Tuesday, September 15, 2020

Topological Manifold Of External Shell Of Cohesive Set Of Energy

 Let us initially consider a mass-bearing cohesive set of discrete energy quanta. It is here, in this particular given arbitrary case, to be both isotropically stable, to also reverse-fractal into working to display a high tense of magnetism, as well as it is here to bear a relatively high scalar amplitude of a Majorana-Weyl-Invariant-Mode.  Those multiple spin-orbital tensors that such a said cohesive set of discrete energy quanta are to work to display, are consequently to tend to continuously shift in their spatial delineation, -- to where the external shell of the said cohesive set of discrete energy quanta, is here to slide through those inferred respective radial directional shifts, that are of their directly corresponding tense of a Calabi-Yau Manifold, in such a general manner -- to where the resultant kinematic activity, that is of the continual multi-varied rotational displacement, that is here to be appertaining to the inferred general motion which is to happen, in order for the earlier stated spin-orbital tensors to be exhibited via a correlative Fourier Transform, -- will consequently tend to happen, via a tense of group action, that is here to be working to involve the continual multi-varied delineation of a single unique topological manifold. To Be Contiued! Sincerely, Samuel David Roach.

No comments: