Showing posts with label homomorphic. Show all posts
Showing posts with label homomorphic. Show all posts

Saturday, March 18, 2023

Net Homomorphic Hamiltonian Operator -- Kahler Manifold

 A Ward-Cauchy-Related kinematically differentiable topological manifold, that is here to behave as a net homomorphic Hamiltonian Operator, when proximal local to the physical presence of a Ricci Flat gravitational environment, will often tend to act as a Kahler Manifold. SAMUEL ROACH.(PHS1989).

Neutrinos often tend to act, in so as to “automate” gauge-bosons, to thenceforth work to attract the forces of nature.

The stronger the Slater-Based Incursion, the greater the holomorphic angular frequency tends to be.    

For a Noether-Based Kahler Hamiltonian Operator; The more isotropically stable, that the net discrete energy impedance is to be, the more spontaneously homomorphic, that the flow of its pulse, will consequently tend to be.  

Interacting Hess States, that are proximal local to the externalized topological surface, of a discrete increment of electromotive energy, will often tend to primarily express, a gauge-action force-like incursion, upon the general realm, of its immediately external physical environment. 

The more spontaneously resolute, that the Fourier-Related-Progression is to be, for a given arbitrary spinning De Rham Kahler Hamiltonian Operator, the more recursively stable, that its eminently associated dimensional-related pulsation, will consequently tend to be.  

Substringular resolute behavior, may often tend to be indicative, of a viable tense, of Ward-Cauchy-Based cohesion.  Furthermore; Substringular succinct behavior, may often tend to be indicative, of a viable tense, of Ward-Cauchy-Based kinematic efficiency.  

The more piecewise continuous, that the Yau-Exact behavior, of a given arbitrary Kahler Hamiltonian Operator, tends to be exhibited as, the more harmonically incurred, that its eminently associated Polyakov Action, may often tend to be expressed as.  

A Kahler Hamiltonian Operator that is Yau-Exact, will often tend to respond more readily, to the spontaneous proximal local incursion, of an anti gravitational force, than an otherwise analogous Kahler Hamiltonian Operator, that instead, is not Yau-Exact.  

The more efficient that a given arbitrary Calabi-Yau Manifold is to be, at generating as much cohomology as it degenerates, the more viably that it may often tend to be able to display, a prominent likelihood, of spontaneously perturbating, ( as taken, over the general course of its inherent capacity of responding effectively), in response to the physical introduction, of a given arbitrary eminent spontaneous incursion, of a covariant co-tangentially delineated tense, of anti gravitational force, that is here to be interdependently interacting, with the net holonomic field eigenstate, of the said Calabi-Yau Manifold.  

At the eminent point in time, in which a given arbitrary Kahler Hamiltonian Operator, is to just be spontaneously altering, from working to exhibit a Floer (co)homology, into then working to exhibit a Heegaard (co)homology, it may thereupon often be the case, that at that implicit point of transition, the earlier stated Kahler Hamiltonian Operator, will often tend to consequently result in, at least temporarily, spontaneously working to bear, an anharmonic tense of inertial-based pulsation. Furthermore; At the eminent point in time, in which a given arbitrary Kahler Hamiltonian Operator, is to just be spontaneously altering, from working to exhibit a Heegaard (co)homology, into then working to exhibit a Floer (co)homology, it thereupon may often be the case, that at that implicit point in transition, the earlier stated Kahler Hamiltonian Operator, will often to consequently result in, at least temporarily, spontaneously working to bear, a harmonic tense, of inertial-based pulsation.  

Homotopic Residue may often tend to be conserved, when the net scalar magnitude, of the holonomic quantum of cohomological generation, is equal to the net scalar magnitude, of the holonomic quantum of cohomological de-generation, as taken in a piecewise continuous manner, over an even duration of time.  

Magnetism is: 

The multiplicity of the Rarita-Associated wave-tug, that is viably imparted, upon the general venue of discrete energy quanta, that is formed by the (co)tangential output, of the eminently associated multiplicity of recalibrated Chern-Simons Invariant gauge-actions, of which are thenceforth formed, by the kinetically transferred Lagrangian-Based motion, of spinning individually taken teams of discrete energy (generally mass-bearing), that are here to be spontaneously physically exhibiting the general physical operation of the  “i*PI(Del) Action,” as taken via its eminently associated Fourier-Related-Progression, over a viably proscribed duration of time, in the general course of the eminently associated recursively piecewise continuous process, in which cohomology is here to be cyclically going, back-and-forth, from a state of holonomic generation, into a state of holonomic de-generation.

A Floer cohomology often tends to have the general capacity, of being able to become Yau-Exact. Whereas; A Heegaard cohomology often tends to lack the general capacity, of being able to become Yau-Exact. 

A spurious, Lagrangian-Based Path, that is harmonically mappable, may often tend to be eminently associated, with a Kahler Hamiltonian Operator, that works to bear less entropy, than the implicit workings, of an otherwise analogous, kinetically differentiating, Kahler Hamiltonian Operator, that instead, is anharmonic, in the kinematic delineation, of its eminently associated, mappable tracing.

As a gentle reminder, in different words; Kinematically propagated, Harmonic, recursively recalibrated, Chern-Simons Invariant, Gauge-Action-Related Output, as delineated, from the covariant core-field-density, of a kinetically transferred, Kahler Hamiltonian Operator, generally tends to be eminently associated, with the reductional process, of electromotive charge generation.  

When a Chern-Simons Pulsation is resonating, its internalized cohomology-related topological framework, may often tend to work to bear, certain attributes, with the likings of a Dolbeault construct, as taken at a Laplacian. 

When an interdependent set of coefficients, that heuristically act as a net polynomial coefficient, in which such a mathematical expression, is to be internally comprised of, by at least one individually taken complex monomial coefficient, to where the earlier stated net polynomial coefficient, is here to be coupled with a mathematical operator, that is eminently of a Real Riemann-related nature, in which the resulting solution, is here to work to indicate the proximal local presence, of a cohomology-related eigenstate, it may often occur, that the consequentially expressive cohomology that is thereby to be mathematically indicated, will tend to bear a significant likelihood, of being of a general exhibited tense, of a Dolbeault cohomology, as mappable at a Laplacian.  

The general coupling, of the recalibration energy, that is of the eminently associated net Chern-Simons Invariant gauge-action, with the directly corresponding frequency, of such a respective recalibration, may often tend to facilitate the formation, of the power of the net wave-tug, of the corroborative implicit dispersive quantum permittivity. Whereas; The general inverted coupling, of the recalibration-related net Chern-Simons Invariant gauge-action, of its corroborative Lagrangian-Based spur, with its respectively demonstrative  eminently associated i*PI(Del)Action, the general process of which is here to often tend to form, as the implicitly anharmonic propagated Hamiltonian (Operator), is here to be changing in more derivatives, than the number of spatial dimensions that it is transferred through, may often tend to facilitate the formation, of the power of the net wave-tug, of the corroboratively implicit dispersive, quantum impedance.  

Wormhole spatial transference, may often tend to translate, a net Hilbert Space into a net Minkowski Space, as going into the general eminently associated implicit process, while then subsequently working to translate the stated net Minkowski Space, back into a net Hilbert Space, wile exiting the general eminently associated process, of the mentioned Wormhole spatial transference.  










Friday, March 17, 2023

Covariant Kinematic Isotropic Relation -- Net Homomorphic Hamiltonian Operator

 An interdependent unique set of superstrings, that are here to work to bear a covariant kinematic isotropic relation, will often consequently tend to work to act, as a net homomorphic Hamiltonian Operator.SAM.

A highly Kahler, recursively stable, transversally propagated, mass-based spinning Hamiltonian Operator, that is here to be proximal local, to a relatively strong anti gravitational field, may consequently often tend to spontaneously work to exhibit, an internal reference-frame, that expresses a relatively strong tense, of  a state of super conformal invariance.  

The more enhanced that the Kahler-Based physical attribute is to be, for an electron, that is here to be spontaneously excited, to thenceforth jump back-and-forth an energy level, in so as to consequently result, in working to form a photon, the more hermitian that the behavior of its eminently associated Fujikawa Coupling Action, may often consequently tend to be exhibited as, over the general process, in which such a scattered electron, is to spontaneously tend to work, at facilitating the formation, of a discrete quantum, of electromagnetic energy.  

For Kahler De Rham Hamiltonian Operators; The holomorphic frequency, that is here to be eminently associated, with the internalized co-tangential pulse, that tends to work to form the hermitian metric cohesion, that is of such an implicit general genus, of a so eluded-to topological manifold, may often tend to be up to eight times as succinct, and up to 64 times as resolute, as the holomorphic frequency, that is of its eminently associated, externalized tangentially flowing, resonant vibration of spatial transference.  

Any spatially transferred kinematically  delineated Kahler Hamiltonian Operator, that works to bear the physical operation, of any Lagrangian-Based proximal local viably translatable tensoric wobble, over the general course of its physically exhibited result, of its eminently associated Chern-Simons Invariant gauged-action, will tend to work to bear the internal proximal local presence, of superstrings, that will, in turn, tend to be composed of first-order point particles, that will tend to bear a lacing of zero-point energy segmentation, that is strewn together in a general manner, that is symmetrically orthogonal, to that of the “point-fill,” of the eminently associated first-order point particles, that work to form the eminently related counter-string. Furthermore; the “point-fill,” that works to form the respective corroborative counter string, will tend to be laced together, in a general manner, that is asymmetrically orthogonal, in relation to the manner in which the eminently associated first-order point particles, that are of the corroborative superstring, are strewn together.  By the way; Such point fill is NOT exactly half fully condensed mini-strangulation segmentation.  This works to depend upon several conditions, which I will work at describing later. Yet; the product of superstring point fill, per eminently associated mer of the string, with its respective corroborative counter string-associated point fill, per respective eminently associated mer of the counter string, will, for Noether-Based discrete energy permittivity, always tend to be one-fourth.  

Nodes from within the general physical phenomenological stratum, that is here to be of the panoply of pressurized sub string-related vacuum, at which an eigenstate of a discrete increment of wave-tug reluctance in perturbation, is to heuristically couple, with an eigenstate of a discrete increment of wave-tug readiness in perturbation, may quite often tend to spontaneously consequently result, in what is then to be, the inherently latent proximal local presence, of an eigenstate of zero-point-energy.  

The asymmetric spontaneous co-tangential reverberation, of a discretely minimized covariant regional locus, as taken in the general Ward-Cauchy-Related realm, may often tend to generate, a set of one or more zero-point energy steady-state holonomic eigenstates.  Furthermore, Resultantly; The symmetric spontaneous tangential reverberation, of a discretely minimized covariant regional locus, as taken in the general Ward-Cauchy-Related realm, may often tend to generate, a set of one or more zero-point energy Lagrangian eigenstates.  

Certain Macroscopic examples, as to the physical spatial translation, of the kinematic Lagrangian-Based propagation, of a given arbitrary De Rham Kahler Hamiltonian Operator, of which is here, to have the general dual condition, of spontaneously being both very resolute, And, also very succinct, when in terms of the general manner, of its particular Fourier-Related-Progression, will often tend to behave, as a tense of physical phenomenology, that is here to appear, to be adamantly “gliding” through space, in a very permeating manner, as it is here to tend to be spontaneously pulsating, with an eminently associated tense, of a resonant type of angular frequency.  

The more flat that the Ricci Curvature is to be, for an eminently associated Calabi-Yau Kaher Hamiltonian Operator, the more spontaneously piecewise continuous, that its directly associated Yau-Exact behavior, may consequently tend to be expressed as.  

A De Rham Kahler Hamiltonian Operator, has more of a probability, of being gauge-invariant, than an otherwise analogous Hamiltonian Operator, that instead, is of a Dolbeault cohomology-related nature.  

A Dolbeault Kahler Hamiltonian Operator, often tend to move more erratically, than an otherwise analogous Kahler Hamiltonian Operator, that instead, is of a De Rham cohomology-related nature.  

A De Rham Kahler Hamiltonian Operator, often tends to be more harmonically gauged in its net motion, than an otherwise analogous Kahler Hamiltonian Operator, that instead, is of a Dolbeault cohomology-related nature.  

A Kahler Hamiltonian Operator, that works to bear an abelian light-cone-gauge topology, will often have a greater tendency, to exhibit a De Rham cohomology, than an otherwise analogous Kahler Hamiltonian Operator, that instead, works to bear a non abelian light-cone-gauge topology. Furthermore; A Kahler Hamiltonian Operator, that works to bear a perturbative non abelian light-cone-gauge topology, will often have a greater tendency, to exhibit a Dolbeault cohomology, than an otherwise analogous Kahler Hamiltonian Operator, that instead, works to exhibit, a steady-state, abelian light-cone-gauge topology.  

The incursion of anti gravity, upon the proximal local covariant net core field, of a Kahler Hamiltonian Operator, that is specifically here, to initially be under the eminent physical influence, of a zero gravity field, will often tend to spontaneously increase in speed more readily, to where its eminently associated Lagrangian-Based Expansion, will thereby tend to spontaneously escalate quicker, when under such an implicit set of conditions, than an otherwise analogous Kahler Hamiltonian Operator, that is incurred upon by an anti gravitational force, when instead, under the initial physical conditions, of a viably heuristic gravitational field.  

As a general tendency:  

The greater the viscosity of a space-time vacuum, the denser the covariant density of eminently associated Hess States.  And; The less dense the viscosity of a space-time vacuum, the less dense the covariant density of eminently associated Hess States.  

A kinetically transferred, Kahler Hamiltonian Operator, that works to exhibit, a non perturbative Euclidean Lagrangian-Based Expansion, may often tend to work to bear, a gauge-invariant display, of an eminently associated, corroborative tense, of a consequentially exhibited covariant set, of interdependently functioning eigenstates, of discrete energy permittivity. Whereas; A kinetically transferred, Kahler Hamiltonian Operator, that works to exhibit, a non perturbative Clifford Lagrangian-Based Expansion, may often tend to work to bear, a gauge-invariant display, of an eminently associated, corroborative tense, of a consequentially exhibited covariant set, of interdependently functioning eigenstates, of discrete energy impedance.  

A Dolbeault Kahler Hamiltonian Operator, will often tend to work to bear, both a less succinct, and, a less resolute,  Fourier-Related-Progression, than an otherwise analogous Kahler Hamiltonian Operator, that instead, is eminently of a De Rham nature.  

Kinetically transferred Extremal Kahler Hamiltonian Operators, tend to have an enhanced ability, to be potentially capable, of being able to permeate viscous space-time-fabric, than otherwise analogous Kahler Hamiltonian Operators, that instead, are not extremal.  

A kinetically transferred, Kahler Hamiltonian Operator, that works to express, an enhanced condition, of physical torque, will often tend to exhibit, a relatively strong resolution, when in terms of its eminently associated state, of its directly corroborative, Fourier-Related-Progression.  

The more perturbative that the flow, of a particular tense of cohomology-based stratum is to be, the more spontaneous deformation, that may consequently tend to be incurred, upon the eminently associated space-time-fabric, of which such a cohomology-related topological stratum, is here to be treading upon, over the general course of time, as the implicitly involved Kahler Hamiltonian Topological Manifold, that is here to be eminently associated, with the generative field of such an implicit net cohomology-related eigenstate, is transferred. 

A highly inert Kahler Hamiltonian Topological Manifold, that is kinetically propagated through space-time-fabric, may often tend to exhibit, a relatively strongly resolute Fourier-Related-Progression.  




Sunday, March 12, 2023

Isotropically Stable Neutrino-Related Frequency

 An isotropically stable neutrino-related frequency, often tends to encode for a homomorphic force. SAMUEL DAVID ROACH. (PINCKNEY HIGH, 1989).

The physical incursion, of a steady Grassman Constant, is eminently associated, with a cohesive set of discrete energy quanta, in which the individually taken, composite superstrings of discrete energy permittivity, are orientable, to where, the earlier implicit, net cohesive set of discrete energy quanta, is here to thereby spontaneously tend, to bear a viably Noether physical characterization, in which the implicit team of energy quanta, is to consequently tend, to spontaneously keep, from demonstrably becoming overtly of a tachyonic nature, via its super symmetry. 

Harmonic re-calibrations, of respective Chern-Simons Invariant gauge-actions, are smoothly delineated, when in terms of their eminently associated piecewise continuous explication. Whereas; Anharmonic re-calibrations, of respective Chern-Simons Invariant gauge-actions, are delineated in a jittery manner, when in terms of their eminently associated “piecewise continuous” explication.

Respective, Anharmonic, re-calibrated Chern-Simons Invariant gauge-actions, since these are spatially delineated, in a jittery manner over time, tend to work to bear an eminent tense, of discretely viable, propagated, Lagrangian-Based Motion, per discrete increment, of unstable, perturbative Ward-Cauchy-Related vibrational oscillation, to where this often tends to facilitate, the spontaneous formation, of entropy-based eigenstates, which may here be considered, to basically be, energy per Kelvin. The more odd the parity, that is to latently exist, between the implicitly composite cohomology-related eigenstates, that are eminently associated with the Fourier-Related-Progression, of the covariant Chern-Simons associated field, as it is being re-calibrated, the more likely that the corroborative Chern-Simons Invariant gauge-action, will spontaneously work to bear, a consequential covariant proximal local tense, of a kinematically propagated anharmonic component, of which will thereby tend to exhibit, the essence of entropy.

The Hadron Supercollider is a threat to our world’s existence. It is NOT a necessary means of learning about our quantum reality. Let’s let everybody know where we stand on this!

“Ahshteeahmahttahkahnaht!”  —  We abhor the conniving and deceitful!


Tuesday, March 7, 2023

Homomorphic Neutrinos

 Two different kinematically moving homomorphic neutrinos, that tend to bear an isotropy, when in terms of the corroborative flow of their eminently associated oscillatory vibration, will often tend to exhibit such a general inferred type of a case scenario, to where these are thence to often tend to spontaneously work to express the general tense, of a dual-state, of neutrino-related frequency. SAMUEL ROACH.

Anharmonic, re-calibrated, Chern-Simons Invariant gauge-actions, often tend to have a strong expectation value, of being preferably exhibited, by a kinematically propagated, Abelian topological manifold. This may often tend to eminently work to involve, strong heat per kinetically displayed energy. Whereas; Harmonic, re-calibrated, Chern-Simons Invariant gauge-actions, often tend to have a strong expectation value, of being preferably exhibited, by a kinematically propagated, Non Abelian topological manifold. This may often tend to eminently work to involve, high levels of sound per energy. 

When the Lagrangian-Based Expansion, of a given arbitrary Fourier-Related-Progression, is to escalate, its eminently corroborative angular frequency, will often consequently tend to spontaneously increase, in the magnitude of its amplitude, as this is here to be physically propagated. 




Friday, February 24, 2023

Homomorphic Neutrino-Related Frequency

 The more homomorphic the neutrino-related frequency, the more torsional that its gauged-action will consequently tend to be. TO BE CONTINUED! SINCERELY, SAMUEL DAVID ROACH.(1989).

Space Time Fabric that is immediately adjacent, to the externalized core-field density of an electron, may often tend to be incurred upon, by a stronger tense of Clifford-Related electromotive torque, than an otherwise analogous implicit grouping of space time fabric, that instead, is relatively distant from the core-field density of any electron. 

The physical application of synchronous sound vibrations, as incurred upon a relatively macroscopic Kahler Hamiltonian Topological Manifold, may often tend to be capable, of working to facilitate the enhancement, of helping to bring about a physical condition, of isotropic stability, upon the respective implicit covariant mass. 

A highly gauged Extremal Hamiltonian Topological Manifold, that is to work to bear a strong heuristic gauge at an external reference-frame, while yet working to exhibit a strong metric gauge at an internal reference-frame, may often tend to work to spontaneously exhibit, a relatively strong Hitchin Modulus. 

When a Fourier-Related System is to become spontaneously more resolute, this may often tend to be eminently corroborative, with a viable tense, of wave-based amplification. Whereas; When a Fourier-Related System is to become spontaneously less resolute, this may often tend to be eminently corroborative, with a viable tense, of wave attenuation. 


Monday, January 30, 2023

Kinetically Transferred Hermitian Resonant Metric -- Homomorphic Field

 A given arbitrary Hamiltonian Operator, that works to bear a kinetically transferred Hermitian transferred resonant metric, will consequently often tend to respectively work to express, a homomorphic core-field-density, at the Poincare level to its cohomological Fourier-Related-Progression. SAMUEL ROACH.

Furthermore; A given arbitrary Hamiltonian Operator, that works to bear a kinetically transferred sporadic resonant metric, will consequently often tend to respectively work to express, a heteromorphic core-field-density, at the Poincare level to its cohomological Fourier-Related-Progression. SAMUEL ROACH.

Tuesday, January 24, 2023

As To A Spinning Homomorphic Topologically Smooth Calabi-Yau Manifold

 A spinning homomorphic topologically smooth Calabi-Yau Manifold, tends to bear a greater "thrust," than an otherwise analogous spinning topologically smooth Calabi-Yau Manifold, that is not homomorphic. TO BE CONTINUED!  SINCERELY, SAMUEL DAVID ROACH. (PINCKNEY HIGH).

As To A Spinning Homomorphic Kahler Manifold

 A spinning homomorphic (isotropically stable) Kahler Manifold, tends to bear a greater "thrust," than an otherwise analogous spinning Kahler Manifold, that is not homomorphic. SINCERELY, SAMUEL. 

Friday, January 20, 2023

Recursively Gauged "Team" Of Calabi-Yau Manifold Eigenstates

 When a cohesive set of recursively gauged homomorphic covariant kinematically interdependent spinning Calabi-Yau Manifold eigenstates, is to escalate, in its hereby inferred directly associated Clifford-Related Expansion, as under the proximal local presence of a Ricci Flat anti gravitational force, over time, this will tend to have the general consequential result, of working to cause the thus accelerated eminently associated net Hamiltonian Operator, that is here to be spinning ever so rapidly, to work to bear an ensuing spontaneously sudden transversal acceleration. TO BE CONTINUED, LATER! SAMUEL ROACH.

Thursday, October 13, 2022

Gauge-Invariant Hamiltonian Operators -- Comprised Of By A Homomorphic Set Of Interdependent Superstrings

 Gauge-Invariant Hamiltonian Operators, at times, often tend to be comprised of by a homomorphic set of interdependent superstrings, that are here to work to bear an isotropic tense of group action. SAM.

Wednesday, October 12, 2022

Isotropically Stable Homeomorphic Hamiltonian Operator -- Smooth Homotopy

 The Fourier-Related-Progression of an isotropically stable homeomorphic Hamiltonian Operator, often tends to work to bear a smooth homotopic attribute of curvature, in the directly associated proximal local field, that it is to generate, over time. TO BE CONTINUED! SINCERELY, SAMUEL DAVID ROACH.

Thursday, August 25, 2022

Homomorphic Field Of A Light-Cone-Gauge Eigenstate

 The more homomorphic that the field of a given arbitrary light-cone-gauge eigenstate is to be, the more likely that the directional wave-tug, that is here to be of the directly associated discrete energy permittivity, will tend to be of a unitary nature. I WILL CONTINUE WITH THE SUSPENSE LATER! TO BE CONTINUED! SINCERELY, SAMUEL ROACH. 

Homomorphic Tense Of Discrete Energy Impedance

 The more homomorphic that a given arbitrary tense of discrete energy impedance is to be, the more likely that the directional wave-tug, that is of the directly associated discrete energy permittivity, will tend to be of a unitary nature. I WILL CONTINUE WITH THE SUSPENSE LATER! SINCERELY, SAM ROACH.

Tuesday, August 9, 2022

Homomorphic Tense Of Angular Momentum

 A gauge-invariant superstring of discrete energy permittivity, often tends to work to exhibit the display, of a homomorphic tense of angular momentum. TO BE CONTINUED! SINCERELY, SAMUEL ROACH.

Friday, August 5, 2022

Homomorphic Noether-Based Gauge-Invariant Hamiltonian Operator -- De Rham Cohomology

 A homomorphic Noether-Based gauge-invariant Hamiltonian Operator, tends to work to exhibit the workings of a De Rham cohomology. TO BE CONTINUED! SINCERELY, SAMUEL ROACH.(1989).

Friday, May 27, 2022

Covariant Set Of Harmonized Homomorphic Second-Order Light-Cone-Gauge Eigenstates

 When one is to have a given arbitrary covariant set of harmonized homomorphic second-order light-cone-gauge  eigenstates, of which are here to work to comprise a given arbitrary specific first-order light-cone-gauge eigenstate, this will often tend to generally work to bear an eminent association, with the proximal local presence, of a respective first-order light-cone-gauge eigenstate, of which is here to bear a tense of isotropic gauge-invariance. TO BE CONTINUED! SINCERELY, SAMUEL DAVID ROACH. (1989).

Wednesday, May 25, 2022

Resonant Vibration -- "In-Sync" -- Isotropic Stability

 When a given arbitrary Noether-Based mass-bearing cohesive set of discrete energy quanta, is to be "in-sync" with its resonant vibration, it will often have a greater tendency, of working to bear a correlative tense of isotropic stability, than if it were not to be "in-sync" with its resonant vibration. It therefore consequently follows, to where; When a given arbitrary Noether-Based mass-bearing cohesive set of discrete energy quanta, is to be "in-sync" with its resonant vibration, lit will often have a greater tendency, of working to bear a correlative tense, of exhibiting the display of a homomorphic field, than if it were not to be "in-sync" with its resonant vibration. TO BE CONTINUED! SINCERELY, SAMUEL ROACH. 

Friday, April 1, 2022

Abelian Wave-Tug Of First-Order Light-Cone-Gauge Eigenstate -- Homomorphic Discrete Quantum Of Energy

 The more abelian of a nature, that the wave-tug of a given arbitrary Noether-Based first-order light-cone-gauge eigenstate, is to work to exhibit, as this respective wave-tug, is to be incurred upon a directly associated superstring/counter string of discrete energy permittivity, the greater the probability, that this will consequently tend to result, in working to facilitate the general physical condition, to where the directly corresponding quantum of discrete energy, that is here to have been implied in such a respective given arbitrary case scenario, will thereby work to become more likely to exhibit, the display of a homomorphic field. I WILL CONTNUE WITH THE SUSPENSE LATER! TO BE CONTINUED! SAMUEL DAVID ROACH.

Sunday, March 20, 2022

Abelian/Non Abelian Vector Bundle -- Symplectic Tense Of Cohomology

 Cohomology that is directly corresponding with the general workings of an abelian vector bundle, is often to tend to be more associated, with the general topological framework, of a symplectic geometry, than cohomology, that is instead, to be directly corresponding with the general workings of a non abelian vector bundle. Also; Cohomology that is eminently of a symplectic geometry, of which is often to be appertaining to the workings of an abelian topological framework, often has the general tendency, of working to bear a tense of a homomorphic field -- to where such an inferred tense of an abelian topological superstring-related manifold, is thereby to often tend to work to bear an isotropically stable nature. I WILL CONTINUE WITH THE SUSPENSE LATER! TO BE CONTINUED! SAM ROACH. 

Friday, February 11, 2022

Uninhibited Holomorphic Driven Gauged-Action Of Homomorphic "Team" Of Discrete Mass-Bearing Energy

It is often highly probable, that the more uninhibited that the holomorphic driven gauged-action is to be, that is of the Fourier-Related-Progression, of which is here to be appertaining to the transversally moving phenomenology, that is thence to be comprised of, as being a tense of a homomorphic Noether-Based mass-bearing cohesive set of discrete energy quanta, (A Noether-Based "Team" of discrete mass-bearing energy), that this general type of a situation, will thereby often tend to consequently result in following, that the Lagrangian-Based motion of such an inferred kinematic "team" of discrete mass-bearing energy, will thereby have the natural inclination, of tending to be spatially transferred at a higher rate of relative speed, in relation to the motion of electromagnetic energy, in the general process, in which this general genus of a case scenario, is here to be kinematically happening, over time. TO BE CONTINUED! SAMUEL ROACH.