Do you remember me mentioning to you on this blog, something to the effect of (but not specifically this exactly, though) -- that the multiplicit light-cone-gauge eigenstate acts as the 'opening phenomenology' of the Rarita Structure, and that the multiplicit gauge-bosons act as the 'closing phenomenology' of the Rarita Structure? Furthermore, it is those vibrational oscillations that are formed, by the plucking action of the multiplicit gauge-bosons upon the correlative multiplicit second-order light-cone-gauge eigenstates (which is here to form the here correlative Schwinger-Indices) -- that work to behave, in so as to work to form the exhibition of the four general forces of nature (these of which are -- the strong force, the electromotive force, the gravitational force, and the weak force). This said plucking activity by the so-eluded-to E(6)XE(6) strings (these just mentioned strings of which act as the said gauge-bosons), works, as well, to help at making what would otherwise be a maxed-out Minkowski or holographic space (flat space), to instead, be a Hilbert or volume-based space. (This would then work to help at making a 26 spatial dimensional world, instead, be a 32 spatial dimensional world -- for each of the three individually taken sets of parallel universes, that are here to exist in time and space.) So -- it is the very nature, as to what helps to work to make a maxed-out flat-based space behave, instead, as a maxed-out volumed space, -- that works to form those vibrational oscillations, that are here to ripple along the Rarita Structure -- in so as to work to influence, as to what the correlative exhibitions are to be, as to the corresponding display of the four physical forces of space and time.
I will continue with the suspense later! To Be Continued! Sincerely, Samuel David Roach.
Showing posts with label weak force. Show all posts
Showing posts with label weak force. Show all posts
Tuesday, October 23, 2018
Compleltion Of The Rarita Structure -- Forces
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Gauge-Bosons As Messenger Particles
Gauge-Bosons work to act as messenger particles. These said gauge-bosons act, in so as to work to pluck their correlative second-order light-cone-gauge eigenstates like a harp -- in so as to work to form a certain general genus of Schwinger-Indices, -- that are kinematic along the Rarita Structure, in so as to work to form the four general classifications of the physical forces. Gauge-Bosons thus work to form certain given arbitrary vibrational oscillations -- that act upon their Ward-Cauchy-related substringular environment, -- in so as to help at forming these so-stated four basic physical forces of nature. Consequently: Where the multiplicit centralized knotting of the Rarita Structure is at, in a covariant kinematic-related manner -- due in part to the various kinematic activity of those wave-based vibrational oscillations, that are here to physically be those Schwinger-Indices that are formed by the said plucking activity of gauge-bosons -- is the multiplicit region, at which the strong force is to tend to be localized at. Where such a said general genus of Schwinger-Indices, are to be directly associated in part with the activity of both spontaneous cohomology-based generation and/or spontaneous cohomology-based degeneration -- is where there are the multi-various eigenstates of the electromotive force to tend to be localized at. Where such a said general genus of Schwinger-Indices are to come together, in a relatively quantized manner over time -- is where the gravitational force is here to tend to be localized at. And, where such a said general genus of Schwinger-Indices, are to bear a general multiplicit perturbation in their covariant kinematic-based proximal locus, that is affiliated the directly correlative centralized knotting of the Rarita Structure, -- is where the weak force is to tend to be localized at.
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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Sunday, September 30, 2018
Schwinger-Indices -- A Little As To Grand Unified Field Theory
That same general genus of phenomenology, that works to coalesce into waves that are to range from being between 5*10^(-22) meters in length up to 4*10^(-18) meters in length -- of which are that general form of Schwinger-Indices, that are formed by the plucking of second-order light-cone-gauge eigenstates by their respective gauge-bosons, in so as to work to form gravitational waves -- happens to be that same general genus of phenomenology, that is to interact with the many various Ward-Cauchy-related entities that exist in the substringular -- when this is here to be taken along the multiplicit array of the Rarita Structure, -- in so as to work to form the many faceted exhibitions of the four general genre of the physical forces of nature, -- these being: 1) The Strong Force, 2) The Electrostatic Force,
3) The Gravitational Force, &, 4) The Weak Force.
I will continue with the suspense later! To Be Continued! Sincerely, Samuel David Roach.
3) The Gravitational Force, &, 4) The Weak Force.
I will continue with the suspense later! To Be Continued! Sincerely, Samuel David Roach.
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Wednesday, May 2, 2018
Gauge-Bosons And Forces
Often, when gauge-bosons work to form a different general genus -- as to the manner in which these act in so as to "pluck" their directly corresponding second-order light-cone-gauge eigenstates -- this may often work to perturbate or alter the general genus of the force that may be exhibited out in the Ward-Cauchy-related bounds of the substringlar. For instance -- one general genus of such a "plucking" may work to help at forming the strong force. Another general genus of such a "plucking" may work to help at forming the electromotive force. Another general genus of such a "plucking" may work to help at forming the gravitational force. And another general genus of such a "plucking" may work to help at forming the weak force.
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, August 8, 2016
On The Strong Force, In Terms Of The Weak Force
Let us say that there were to be a certain integer number of forces, that are to act upon an eigenstate of the strong force -- at a proximal localization, to the locus at which there is to be an eigenstate of the centralized knotting of the Rarita Structure, in the substringular. Let us next say that there is to then be the introduction of a ghost-inhibitor -- to the general region at which the so-stated eigenstate of the strong force was to be initially predominant at, in such a respective given arbitrary case scenario. Let us next say, that such an introduction of the presence of the said ghost-inhibitor -- was to work to eliminate one or more of the so-eluded-to forces, by which the so-stated proximal locus of the said eigenstate of the strong force, that is of such a directly corresponding case, was to be differential at, in a Fourier-based manner, over an initially present sequential series of group-related instantons. Let us then say, that the so-eluded-to physical removal of the said one or more forces -- that had worked, in so as to help to cause the here relatively proximal localized holonomic substrate of the said eigenstate of the strong force -- to then happen, to where this would then work in so as to cause an ensuing perturbation of the whole general locus of the said eigenstate. This said eigenstate, that is of the centralized knotting of the relatively local eigenbase of the Rarita Structure, when this is taken in terms of the eigenbase of the initially so-eluded-to tense of that Majorana-Weyl-Invariant-Mode -- by which the said eigenstate of the strong force was to have here, had an initial consideration of working to bear a tense of superconformal invariance, from within the so-eluded-to initially considered Ward-Caucy bounds of the proximal localized mass-bearing state, by which the said eigenstate of the strong force was to here be working to help in the stability of what was to here be an eigenstate of a mass, that had initially been in a state of relative static equilibrium -- over a relatively transient duration of time. In such a given arbitrary case scenario, the so-stated elimination of the said one or more forces -- that had worked here, in so as to help in the process of the perpetuity of the so-eluded-to localized eigenstate of discrete mass -- may then often work to help at causing the initially bound condition of a relatively stable mass, that was here to be exhibiting the strong force, to then be locally unstable in its covariant eigenbase, as to its specific localization. This may then happen, by which such a general condition -- will then be helping to work to cause the directly corresponding mass-bearing eigenstate, to then diverge from its initial state of superconformal invariance. This may then often work to cause the resultant Ward-Caucy-based conditions of the directly corresponding eigenstate of mass -- that was to initially be of a convergent nature, when in terms of its initial state of conformal invariance -- to then work to tend to bear a condition of spontaneous radioactive decay, thereby, to where this case scenario is to then, ironically enough, to move in the direction by which such a directly corresponding mass, is to then be exhibiting a given arbitrary case of the weak force, instead.
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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Saturday, August 6, 2016
Strong Force Versus Weak Force
Here is some food for thought. The eigenstates of the centralized knotting of the Rarita Structure, are that general multiplicit genus of phenomenology -- that act in so as to glue or to put together, the various building blocks of certain sub-atomic particles to be able to be put together, in so as to have the atomic phenomenology of mass-bearing particles. It is the torsional eigenindices, of such so-stated eigenstates of the centralized knotting of the Rarita Structure -- that act, in so as to work to form the multifarious physical charges of matter. If the modulus of the general twisting action of one or more sets of gluons, that are in or of one or more sets of atoms, were to reverse in the general process of its directoral wave-tug/wave-push -- when this is taken in terms of the overall Ward-Caucy-based Fourier-related activity, by which the so-eluded-to Hamiltonian operand of the so-eluded-to gluons were to here be moving through, in so as to work to keep the building blocks of matter together -- over one of such sequential series of iterations of group-related instanton, by which the Real Reimmanian-based charge, that is to here be directly related to such a set of one or more gluons -- is to here work to bear a tendency, that is to move in the direction of the strong force, then, such a so-stated reversal in the Fourier-based process of the activity of the torsional-related directoral-based permittivity of the said proximal locus -- by which the Gliosis-based eigenindices that are of the topological stratum of that holonomic substrate, that was here to initially be of the formation of the characteristics of the strong force -- would then, instead, work to cause an unwinding of a given arbitrary scalar amplitude of a certain delineation of mini-stringular segmentation, by which that activity that had here worked to initially help in so as to cause a given arbitrary group-metric-based activity, that had involved the strong force, to where this would then, instead, be brought into such a condition -- in so as to help in the process of being able to work to help to form a group-metric, that would here be involved with the correlative Ward-Caucy-based conditions that are related to the weak force.
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, December 4, 2015
An Inter-Relation Of The Forces
The strong force is the force that works to glue together quarks and leptons into larger sub-atomic particles. Gluons -- of which do the so-stated gluing -- are comprized of a centralized knotting of Schwinger-based indices. The said Schwinger-Indices are formed by those vibrational oscillations, that are made by the plucking (analogous to the plucking of a harp) of second-order light-cone-gauge eigenstates -- by the correlative gauge-boson eigenstates. The light-cone-gauge exists -- in a Laplacian-based manner -- in-between the multiplicit Fadeev-Popov-Trace and its correlative multiplicit superstring. First-Order light-cone-gauge eigenstates exist as the wave-functional eigenbase of discrete energy impedance. Each first-order light-cone-gauge is made-up of many second-order light-cone-gauge eigenstates -- these said second-order eigenstates, of which are made-up of strands of mini-stringular phenomenology. It is the light-cone-gauge eigenstates that exist in-between the phenomenology of the pointal-based nature of discrete energy impedance (the respective given Fadeev-Popov-Trace eigenstates) and the phenomenology of the pointal-based nature of discrete energy permittivity (the respective given superstrings). Discrete energy impedance is more directly associated with the electric field than the magnetic field of any given arbitrary case. Current is more directly associated with the discrete energy impedance than the voltage is, since current is more associated with the electric field than the magnetic field is. This here helps to show the relationship between the light-cone-gauge and the electrostatic force. The Schwinger-Indices that are formed by the so-stated plucking of the respective given arbitrary second-order light-cone-gauge eigenstates by the correlative gauge-boson eigenstates -- move along the correlative Rarita Structure eigenstates, in so as to work at helping to form the gravitational force, by working to form an interdependent means of vibrational oscillation, that is pulled from the relative Real Reimmanian Plane where discrete energy is -- toward both those gravitons and those gravitons that are off of the said relative Real Reimmanian Plane -- in so as to help to work at establishing that general relationship that is necessary in order for gravity to be able to sustain a spontaneous effect, over time. And, it is the relative weakening of eigenstates of the strong force -- as evidenced by the spontaneous radioactive decay of radiative physical phenomenology -- that act as what is known of as the weak force. So, it is the light-cone-gauge -- that acts as the main liaison amongst those forces that work to form the conditions of the grand unified field theory -- that makes the mediation between these forces to be possible. To Be Continued! Sam Roach.
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Tuesday, September 15, 2009
GUFT, Session 14
What makes the gravitational force stronger than the weak force? The weak force is the spontaneous force of neucleons to degenerate so that the atoms of the given neucleons will break down into simpler atoms that do not have as many protons and so that these given atoms will not have as many electrons. An atom of an element has as many protons as electrons in so long as this atom is not ionic. Ionic atoms are unstable. Atoms that are not ionic are stable unless these are spontaneously radioactive. Spontaneously radioactive atoms are of short-lived elements. Short-lived elements decay spontaneously because of the weak force. The weak force is a mini-string pull that exists because of the weak gluon combination that binds the given neucleons and the Van der Waals like metric-gauge of the electrons that associate at the outer valence levels of the spontaneously radioactive atoms of the elements given. This mini-string pull is intrinsic to a gluonic force that is tied in a non-superconformal way in that the De-Sitter and Anti-De-Sitter forces of the gluons work to unfurl the given gluonic force due to singularized mini-string tug that is not hermitian and non-perturbative because the interior mini-strings are relatively isolated in terms of spacial metric-gauge-tug neighborhood. This pulls the gluons apart and thereby produces less protons in the nucleus of the given atom. The Van der Waals like energy of the given electrons at the outer valence shells holds these weakly by loose mini-string-tug. The surrounding forces thus remove these outer electrons from the given Real Reimmanian plane. So, the weak force is due to the surrounding forces scattering the isolated mini-strings of overbuilt protons and overbuilt electrons shells. The protons of an atom work together by electromotive force. The build up of excessive protons produces a strong electromotive force in the nucleus that damages gluon fractal modulae in terms of impedance and permittivity because the hermitian and non-perturbative nature of the gluons begins to implode. That produces the prior conditions. Gravity, however, has multiple strands of mini-string that interrelate sets of supplemental norm thru Ricci Scalar eigenstates that push or pull upon all forces via the gravitational formation of the interdimensional Lagrangian of space-time cushion. The ordered and linear fashion of Ricci Scalar eigenstates that intertwine in a multi-faceted intwining that is generally not isolated causes the gravitational force to be stronger than the weak force.
The severred protons, two of these at a time, are then shot out of the atom along with two loosely held electrons to restructure as an alpha particle or helium atom that radiates outward. Sometimes, other electrons on the outside of the atom shoot out as Beta radiation. Sometimes, space energy of an atom shoots out as light or gamma radiation. Occasionally, neutrons then form as protons because of a change in parity and chirality that I described above yet as a reverse process. Changes in gluonic force and changes in electromotive impedance and permittivity may alter the spin-orbital delineation and orbifold handedness in terms of the directoralization of the orbifold Gaussian norm conditions of protons and neutrons to bring about these changes.
The severred protons, two of these at a time, are then shot out of the atom along with two loosely held electrons to restructure as an alpha particle or helium atom that radiates outward. Sometimes, other electrons on the outside of the atom shoot out as Beta radiation. Sometimes, space energy of an atom shoots out as light or gamma radiation. Occasionally, neutrons then form as protons because of a change in parity and chirality that I described above yet as a reverse process. Changes in gluonic force and changes in electromotive impedance and permittivity may alter the spin-orbital delineation and orbifold handedness in terms of the directoralization of the orbifold Gaussian norm conditions of protons and neutrons to bring about these changes.
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Saturday, August 22, 2009
The Grand Unified Field Theory (GUFT), Session one
The Grand Unified Field Theory, Session one
There are four basic types of forces. The strong force, the electromotive force, the gravitational force, and the weak force. The strong force is the force that binds the components of a nucleon together. The force here is composed of gluons. Neucleons are the protons and neutrons of the neucleus of an atom. The electromotive force is the force of electromagnetic energy and the force associated with electricity. Electromagnetic energy is energy that fluctuates in its electric and magnetic fields, and electricity is the flow of electrons. The gravitational force is the force of gravitons and gravitinos upon the mass, plain energy, and electromagnetic energy via the Ricci Scalar. Gravitons are transversal particles that are composed of dilatons that have quantized in the spacial fabric off of the Real Reimmanian plane. Gravitinos are spin-orbital particles of energy that are made up of dilatinos that have quantized in the spacial fabric off of the Real Reimmanian plane. The Ricci Scalar is the quantific mini-string fabric that pushes and pulls mass, plain energy, and electromagnetic energy according to the overall relative quantum effect that these phenomena exert upon each other given their differentiation along the topological Lagrangian integration of the space-time fabric. The weak force is the force of spontaneous radioactive decay. This is the gradual alteration or perturbation of nuclei to form different atoms of an element as the atoms of these elements are short lived on account of having a weak associated strong force. The weak force is weak because it is just a spontaneous reaction. Spontaneous here means that it is due to happen without the need of kinematics from an outside source. A reaction may be spontaneous, yet still be relatively gradual.
There are four basic types of forces. The strong force, the electromotive force, the gravitational force, and the weak force. The strong force is the force that binds the components of a nucleon together. The force here is composed of gluons. Neucleons are the protons and neutrons of the neucleus of an atom. The electromotive force is the force of electromagnetic energy and the force associated with electricity. Electromagnetic energy is energy that fluctuates in its electric and magnetic fields, and electricity is the flow of electrons. The gravitational force is the force of gravitons and gravitinos upon the mass, plain energy, and electromagnetic energy via the Ricci Scalar. Gravitons are transversal particles that are composed of dilatons that have quantized in the spacial fabric off of the Real Reimmanian plane. Gravitinos are spin-orbital particles of energy that are made up of dilatinos that have quantized in the spacial fabric off of the Real Reimmanian plane. The Ricci Scalar is the quantific mini-string fabric that pushes and pulls mass, plain energy, and electromagnetic energy according to the overall relative quantum effect that these phenomena exert upon each other given their differentiation along the topological Lagrangian integration of the space-time fabric. The weak force is the force of spontaneous radioactive decay. This is the gradual alteration or perturbation of nuclei to form different atoms of an element as the atoms of these elements are short lived on account of having a weak associated strong force. The weak force is weak because it is just a spontaneous reaction. Spontaneous here means that it is due to happen without the need of kinematics from an outside source. A reaction may be spontaneous, yet still be relatively gradual.
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