Majorana-Weyl-Invariant-Mode phenomenology, tend to act as nodal Ward-Cauchy-related covariant eigenstates, as taken along the centralized knotting of the Rarita Structure. To Be Continued! Sincerely, SAMUEL.
Showing posts with label centralized knotting. Show all posts
Showing posts with label centralized knotting. Show all posts
Tuesday, February 9, 2021
Majorana-Weyl-Invariant-Mode Phenomenology -- Nodes
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Friday, October 16, 2020
Higgs Boson Eigenstates And Centralized Knotting, A Stipulation
Here's a stipulation:
Could Higgs Boson eigenstates be individually taken nodes in the Rarita Structure, of the centralized knotting that is here to exist, -- between thought waves And gravitational waves? Sam Roach. (PHS1989).
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Saturday, January 26, 2019
Where Mesons Are At
Wherever there are eigenstates at, that are of the centralized knotting of the Rarita Structure -- there are mesons -- of which are the respective given arbitrary bonding cites, -- whereupon subatomic particles are to come together, in so as to work to form the basic building-blocks of atoms and other matter.
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.
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Wednesday, October 24, 2018
Balance Of Cohomological Generation
A Majorana-Weyl-Invariant-Mode is here to tend to be formed, for any one given arbitrary orbifold eigenset -- when a balance is to be struck, between the respective cohomological generation that is of the said orbifold eigenset, and its respective covariant, codeterminable, and codifferentiable tense of cohomological degeneration, that the said orbifold eigenset is here to display over time. Such a balance is here to tend to be struck, when there is a tense of superconformal invariance -- in the group-related action, that is here to be displayed at the internal reference-frame, that is of the directly corresponding eigenstates -- that are of the here directly pertinent centralized knotting of the Rarita Structure-related stratum. So, when the strong force is to be superconformally invariant -- at an internal reference-frame -- this will tend to work to form a tense of a Majorana-Weyl-Invariant-Mode. In a way, basically whenever you are dealing with the strong force, as it is applied to form any viable tense of physical stability -- you are dealing with some sort of a tense of a Majorana-Weyl-Invariant-Mode. The question is, is whether or not one is here to consider a plasma (such as here to have a reverse-fractal, as is with fire and with the stars), to be considered to be as either of a case of superconformal invariance, or of just conformal invariance.
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.
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Friday, October 19, 2018
What I Mean By Centralized Knotting Of The Rarita Structure
What I mean by the centralized knotting of the Rarita Structure eigenstates -- is the presence of kinematic varying nodes of knot-related substringular phenomenology, that are here to exist in the flow of the general gravitational field of space-time-fabric.
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.
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Wednesday, February 21, 2018
Eigenstates Of Centralized Knotting As Crucial Nodes
Eigenstates of the centralized knotting of the Rarita Structure, act as major nodes of the flow of gravitational force transference -- of which act as mini-portals by which mini-stringular segmentation is to be delineated to-and-fro -- in so as to tend to work to act as a Hamiltonian operator -- for the correlative Gaussian distribution of eigenindices and eigenstates of one space of a given universal setting, to what will tend to be a tranferrence of Ward-Cauchy phenomenology to another space of that same universal setting, over time.
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.
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Relatively Dense Centralized Knotting
The strong force is multiplict at a locus, at which there is an eigenstate of the centralized knotting of the Rarita Structure. Gravitational waves tend to move outward and perpendicular to the transversal medium that these are here to be moving through, over time. The strong force is that force that works to inter-bind those subatomic particles together, in so as to work to bring phenomenology together -- such as that force that works to bring quarks and/or leptons together in so as to form protons, neutrons, and electrons. A high density of subatomic particles will tend to mean that there will thereby be a high density of atoms. A relatively high density of atoms eludes to the condition of a relatively high tense of gravity. The more dense that the delineation of eigenstates of the centralized knotting of the Rarita Structure is, the more that the gravitational force will tend to act upon its surroundings -- in so as to work to push-in such external phenomenology upon itself. Therefore -- the more dense that the delineation of the strong force is, the more that the gravitational force will tend to act upon its surroundings -- in so as to work to push-in such external phenomenology upon itself. I will continue with the suspense later! To Be Continued! Sincerely, Samuel David Roach.
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Tuesday, February 20, 2018
Relative Scalar Amplitude Of Centralized Knotting
The higher that the scalar amplitude is, of as to how tight that the centralized knotting of the correlative eigenstates of the Rarita Structure is, in any one given arbitrary case -- the higher that the respective scalar amplitude will be, as to the strength of the directly corresponding gluonic force -- that will then tend to bear a higher scalar amplitude of the strong force, in such a case scenario.
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.
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Thursday, September 21, 2017
The Strong Force And The Basis Of Charge
In a stable atom, a positive charge tends to happen -- when Ward-Cauchy-based eigenstates of the centralized knotting of the Rarita Structure, work to bear torsional eigenindices -- that bear a tendency of aiming to act in the operational direction, of pushing themselves into external phenomenology.
In a stable atom, a negative charge tends to happen -- when Ward-Cauchy-based eigenstates of the centralized knotting of the Rarita Structure, work to bear torsional eigenindices -- that bear a tendency of aiming to act in the operational direction, of pushing external phenomenology into the so-eluded-to internal phenomenology of the initially said general genus of Ward-Cauchy-based eigenstates.
So, one may say, that a positive charge is as a "dot-product"-based tendency, whereas, one may say that a negative charge in as a "cross-product"-based tendency.
I will continue with the suspense later! To Be Continued! Sincerely, Samuel David Roach.
In a stable atom, a negative charge tends to happen -- when Ward-Cauchy-based eigenstates of the centralized knotting of the Rarita Structure, work to bear torsional eigenindices -- that bear a tendency of aiming to act in the operational direction, of pushing external phenomenology into the so-eluded-to internal phenomenology of the initially said general genus of Ward-Cauchy-based eigenstates.
So, one may say, that a positive charge is as a "dot-product"-based tendency, whereas, one may say that a negative charge in as a "cross-product"-based tendency.
I will continue with the suspense later! To Be Continued! Sincerely, Samuel David Roach.
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Monday, August 22, 2016
Test Solution 6 Of The Last Test Of Course 19 -- The Klein Bottle And Orbifold Differentiation
6) The general tense of those eigenstates that are of the holonomic substrate of the strong force, when this is taken in terms of the Rarita Structure -- is the respective multiplicit eigenstate of the centralized knotting of the said Rarita Structure. The multifarious loci, at which there are such eigenstates that are of the so-stated centralized knotting -- are proximal localizations to where there are those cites, to where the forces that work to bind the phenomenology of those sub-atomic particles, that work to come together in so as to work to form the basic building blocks of what work to form atoms -- come into a Gliosis-related manner, by which the so-eluded-to "gluing" of the said sub-atomic particles is to happen, to where such an activity is to then occur, in so as to help to form those atomic fields that operate in so as to work to help to form our physical world. As the said eigenstates of the centralized knotting of the Rarita Structure work, to differentiate in a kinematic manner, in so as to tend to bear what may here be termed of as torsional eigenindices, such so-eluded-to twisting and spinning will here, help to cause what would arise here as what may be termed of as electrostatic charges -- that is to here be involved with the Fourier-based activity of the electromotive force. Such a so-eluded-to spin-related motility -- that tends to push in a "cross-product"- manner -- as this may be taken from the central conipoint of an atom, could here be deemed of as a "negative" charge. And, such a so-eluded-to spin-related motility -- that tends to push in a "dot-product"-based manner, as this may be taken from the central conipoint of an atom as well, could then be deemed of as a "positive" charge.
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.
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Monday, July 18, 2016
Centralized Knotting Versus Superstrings
Those first-ordered point particles that work to comprise superstrings of discrete energy permittivity, work to bear a point-fill that is of a factor of a half full compactification. This is at any spot in any superstring of discrete energy permittivity, for any of such superstrings -- no matter what the degree of either the scalar amplitude of the correlative compactification is, or, no matter what the degeree of the inverse relationship of the scalar amplitude of the correlative Lorentz-Four-Contraction is. Again, this is for any superstring that is of either a Calabi-Yau manifold, a Calabi-Wilson-Gordan manifold, or of a Calabi-Calabi manifold. On the other hand, the eigenstates of the centralized knotting of the Rarita Structure, are holonomic substrate-based phenomenology -- that tend to bear a point-fill that is of a relative scalar amplitude, that is over one-half of full compactification. The phenomenology that is correlative to the eigenstates of the centralized knotting of the Rarita Structure, are strictly associated more to a Calabi-Yau tense of manifolds -- than of rather being associated to either a Calabi-Wilson-Gordan or to a Calabi-Calabi tense of manifolds. Calabi-Yau manifolds are strictly manifolds that are of a mass-bearing nature. This then works to mean, that the centralized knotting of the Rarita Structure -- works to bear its eigenstates most specifically to be associated with the bearings of both mass-related superstrings and mass-related manifolds. The Rarita Structure is what most specifically works to link the activity of superstrings with the activity of both gravitons and gravitinos. The "heart" of the Rarita Structure eigenstates, are due to its centralized knotting. This then works to clarify as to why -- it is the properties of mass-bearing manifolds, that tend to more directly associate with both the activity and the force of gravity -- than the other general genre of superstring-related manifolds do. I will continue with the suspense later! To Be Continued! Sincerely, Samuel David Roach.
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Cites Where Mini-Stringular Segmentation Is Pushed Into And Out Of
The eigenstates of the centralized knotting of the Rarita Structure -- are the holonomic substrate-based entities, that act in so as to be of that phenomenology of the strong force, that works to imbue the Fourier-based general conditions -- that act in so as to help to piece together those multivarious sub-atomic particles together, in so as to work at helping to form the basic particles that work to form the multiplicit mass of atoms. Such so-stated eigenstates of the centralized knotting of the Rarita Structure, are the main cites to where these act as the multivarious loci to where mini-stringular segmenation is to here be fed both outward and inward -- into where such said mini-stringular segmentation is to then be respectively fed into and out of the directly corresponding ever-changing multiplicit "knotted" holonomic substrate, that acts as the corresponding respective multiplicit nodal-based phenomenology, that is of the recycling of those general indistinguishably different point-fill-based conditions, that are of the directly corresponding commuators that operate in so as to function as first-ordered point particles. The manner of such a general format of activity -- that is as the manner of a to-and-fro-based ebbing of mini-stringular segmentation, happens in such a manner in so as to work to provide more of a point-fill to the first-ordered point particles, that work to comprise discrete energy quanta, rather than that point-fill that is instead more directly affiliated with the composition of an eigenstate of a norm-state-projection. What "point-fill" is, is the scalar amplitude of the density of a first-ordered point particle. A superstring of discrete energy permittivity -- during BRST -- tends to be at a scalar amplitude of one-half that of being at a maximum density -- as to the Ward-Caucy-based modulae (combined fractal and elastic modulae) of the tightness of that mini-stringular segmentation, that works to comprise it. (As to the respective Laplacian-based substringular condition, that is of the said respective general genus of such first-ordered point particles.) Yet, an eigenstate-related first-ordered point particle, that works to comprise a norm-state-projection, instead, tends to bear a scalar amplitude on the order of one-ten-thousandth of that maximum density as to the Ward-Caucy-based modulae (combined fractal and elastic modulae) of the tightness of that mini-stringular segmentation -- that works to comprise it. (As to the respective Laplacian-based substringular condition, that is of the said respective general genus of such first-ordered point particles.) The tighter the modulae of one eigenstate of the centralized knotting of the Rarita Structure is, -- the more likely that such a directly affiliated eigenindex of such a respective locus, will then tend to exhibit a strong force-related reaction. Yet, the weaker the modulae of one eigenstate of the centralized knotting of the Rarita Structure is, -- the more likely that such a directly affiliated eigenindex of such a respective locus, will then tend to exhibit a weak force-related reaction.
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.
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Thursday, June 30, 2016
Magnetism
The process by which charges are enacted upon each other, may be thought of as what magnetism is. The reason as to why there are torsional eigenindices, that are delineated by the activity of the eigenstates of the multiplicit centralized knotting of the Rarita Structure -- is because of the constant need for the continued tying and retying of mini-stringular segmentation, that is necessary to happen, in order so that the continued delineations and re-delineations of discrete quanta of energy, are to be able to both happen and to be able to transfer across space as well, over time. Sorry for today's brevity. To Be Continued! Sincerely, Sam Roach.
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Wednesday, June 29, 2016
What Charges Are
Charges are when eigenstates of the centralized knotting of the Rarita Structure, work to bear torsional eigenindices -- that may in one general multiplicit instance, have either the Laplacian-based tendency and/or the Fourier-based tendency, of pushing themselves into external phenomenology, via the multiplicit pulsation of the coiling activity of mini-stringular segmentation (relative negative charges), or, when eigenstates of the centralized knotting of the Rarita Structure, work to bear torsional eigenindices -- that may in one general multiplicit instance, have either the Laplacian-based tendency and/or the Fourier-based tendency, of pushing external phenomenology upon themselves, via the multiplicit pulsation of the coiling activity of mini-stringular segmentation (relative positive charges).
I will continue with the suspense later! To Be Continued! Sincerely, Samuel Davie Roach.
I will continue with the suspense later! To Be Continued! Sincerely, Samuel Davie Roach.
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Thursday, March 3, 2016
As To Physical Re-Delineation Of Masses
Let us consider a set of discrete masses. Let us say that the masses that are to be considered here, are in a relationship that is to then involve the initial Laplacian-based condition of three basic hydrogen atoms. In this given arbitrary case scenario, one is to here be considering the fundamental sub-atomic particles that are to then work to comprise the three so-stated basic respective hydrogen atoms -- that I have eluded-to in this given arbitrary case. What I am more specifically referring to as the physical substrate of each of such individually taken discrete masses -- of which are to be considered here as the eigenmembers of this respective given arbitrary case scenario, are the two fundamental basic cases of what always exist in any stable atom, by which I am simply referring to as the initial Laplacian-based condition of the existence of one relatively stable proton, that is being surrounded by the kinematic-based orbiting of one relatively stable electron, -- that are of the nature of as to being of either the holonomic substrate of a proton, or of the nature of being of the holonomic substrate of an electron. Let us say that all three of such mentioned fundamental hydrogen atoms (each of which are a stable atom that is comprised of one proton that is being orbited by one electron), are to then each become positively charged all of the sudden -- by losing their respective multiplicit electron -- due to a proximal localized group-attractor. The then resulting three loose protons would then tend to move towards whatever loose negatively charged adjacent source, is most aptly to be able to bring this so-eluded-to loose set of three positive charges into a state of optimum rest. In the course of such a basic situation -- one is to then have a re-adjustment of the local delineation of the distribution of the proximal gluonic force of this specific case scenario -- since the three directly corresponding protons of such a basic case that I have described here, are made unstable, in order to move into a changed delineation, in so as to move into the respective individually taken spots where these are then to be at more of a state of optimum rest. Individual protons each consist of two quarks that bind to one lepton. Any given quark has a gluon that is situated within the Ward-Neumman bounds of its topological-based holonomic substrate. Gluons -- of which are an example of what works to act as being a metrical-gauge-based Hamiltonian operator of the strong force -- are an example of a general condition as to the cite as to where there is a centralized knotting of the Rarita Structure. (Where there is a gluon, there is an eigenstate of the centralized knotting of the Rarita Structure.) So, whenever a proton is re-distributed in so as to form a re-delineation of its component gluons that are directly associated with the here so-eluded-to Ward-Caucy bounds of the so-stated respective proton -- there is then to be a re-delineation of an eigenstate of the strong force. So, whenever there is a re-delineation of the strong force -- there is thereby a directly corresponding re-delineation of an eigenstate of the centralized knotting of the respective multiplicit Rarita Structure eigenstate. I will continue with the suspense later! To Be Continued!
Sincerely, Samuel David Roach.
Sincerely, Samuel David Roach.
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Wednesday, January 13, 2016
Texture Of Space-Time-Fabric
The Rarita Structure is that holonomic substrate that works to form the mini-stringular interconnections, that work to bind the Laplacian-based states of discrete energy quanta, -- with the Laplacian-based states of both gravitons and gravitinos. As the Rarita Structure is pulled and/or pushed into the multivarious Fourier Transformations, by which the so-eluded-to gravitational fabric is to then be re-delineated and redistributed into a perturbation of the intrinsic space-time-based texture, over a successive series of group-related instantons -- this will then work to re-distribute both the flow and the equipoise of the gravitational force, over the respective successive series of group-related instantons. So, as the centralized knotting of the multivarious integration of the countless kinetic-based Rarita Structure eigenstates -- is both redistributed and re-delineated over time -- this thereby works to re-adjust the multivarious loci that most work to determine the pull of gravity -- which will thereby work to alter the texture of space-time-fabric, by altering the delineation of the centralized knotting of those core eigenindices, that work to form the viable push and pull of the gravitational force, over time.
I will continue with the suspense later! To Be Continued! Sincerely, Sam Roach.
I will continue with the suspense later! To Be Continued! Sincerely, Sam Roach.
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Tuesday, January 12, 2016
The Rarita Structure and the Grand Unified Field Theory
The activity of the Rarita Structure, works at helping to explain the Grand Unified Field Theory -- by the following account.: The two multiplicit general ends of the Rarita Structure, as I have mentioned before, are the Laplacian-based general locus of the gauge-bosons, and, the Laplacian-based general locus of the light-cone-gauge. It is the plucking of the light-cone-gauge eigenstates by the gauge-bosons, that works to help vibrate the directly correlative quanta of discrete energy -- in order that the so-stated quanta of discrete energy may be able to behave -- in what we term of as an electrostatic-based manner, over the iteration and the reiteration of a sequential series of group-related instantons. The vibrations that are then formed by the plucking of the light-cone-gauge eigenstates by the gauge-bosons -- of which are that general holonomic substrate, that may be termed of as Schwinger-Indices -- are what are translated in a Fourier-based manner, in so as to work to interact with both gravitons and gravitinons, in so as to form that physical phenomenology that may be described of here as the force of gravity. The centralized knotting of the said Rarita Structure -- exists in the multivarious loci of its correlative eigenstates, in so as to help in the formation of the strong force. And, the perturbative weakening of the centralized knotting of the Rarita Structure eigenstates -- is what works to form the Fourier-based transmutations, that are associated with the process of radioactive decay -- and it is radioactive decay that is known of as the weak force. Therefore, it is the Fourier-based activity of the integration of the eigenstates of the Rarita Structure -- that work to form the common ground, by which the Grand Unified Field Theory may be able to be understood by extrapolation.
I will continue with the suspense later! To Be Continued! Sincerely, Sam Roach.
I will continue with the suspense later! To Be Continued! Sincerely, Sam Roach.
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