When a sub-atomic particle is to bear what would here amount to of as having a recessive bonding cite, during which directly associated group-metric -- the other one or more sub-atomic particles that are to bond to the initially so-stated sub-atomic particle, are to bear what would here amount to of as having a phenotypical bonding cite -- then, that holonomic substrate as to the "fitting" of the bonding cite that is recessive, will not tend to bear an adequate Hodge-Index of that mini-stringular segmentation that is immediately Yukawa to the Fourier-based activity of the bonding by which the two so-eluded-to sets of sub-atomic particles are to bond -- via that Gliosis-based inter-relation, in which what is here to be the phenotypical bonding cite, is to, instead, work to bear that adequate scalar magnitude of a Hodge-Index of that mini-stringular segmentation that is immediately Yukawa to the Fourier-based activity of the said bonding of the two so-stated sets of sub-atomic particles, that are here to work to form a less fractaled composition, as to this tending to be of a higher order of the building blocks of the construction of a given arbitrary respective atom.
I will continue with the suspense later! To Be Continued! Sincerely, Samuel David Roach.
Showing posts with label phenotypical. Show all posts
Showing posts with label phenotypical. Show all posts
Wednesday, September 7, 2016
More As To Both Phenotypical And Recessive Bonding Cites
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11:45 AM
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atoms,
Fourier,
Gliosis,
group-metric,
Hodge-Index,
holonomic substrate,
phenotypical,
recessive,
Yukawa
Monday, September 5, 2016
As To Phenotypical And Recessive Bonding Cites
Think of the general condition of both phenotypical and recessive genes, at the level of the nuclei of living cells. Now, think of such a general condition -- as a fractal that is to here be taken at the sub-atomic level. Whenever a quark works to bond to another sub-atomic particle -- the bonding cite is always on the quark -- at the gluon of the respective quark. So, whenever a quark is to bond to another sub-atomic particle -- the bonding cite of the quark, which is at the gluon of the said quark -- is of a phenotypical nature. So, whenever one or more leptons are to bond to one or more quarks -- the bonding cite that is of such a said set of letpons, is always to tend to be of a recessive nature. Yet, when two or more leptons bond to one another -- the bonding cites of the said two or more leptons, instead of being of a recessive nature, are to here be of a phenotypical nature. That's all for now!
I will continue with the suspense later! To Be Continued! Sincerely, Samuel David Roach.
I will continue with the suspense later! To Be Continued! Sincerely, Samuel David Roach.
Posted by
samsphysicsworld
at
10:46 AM
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comments
Labels:
bonding cites,
genes,
gluons,
leptons,
phenotypical,
quarks,
recessive
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