Showing posts with label dilatinos. Show all posts
Showing posts with label dilatinos. Show all posts

Thursday, December 30, 2021

Dilatinos -- Net Gauged-Action

 Individually taken dilitinos, often work to exhibit the display, of acting as Majorana Weyl Invariant Spinors. Therefore; such stated individually taken dilatinos, often tend to exhibit the display, of working to bear a radially recursive net gauged-action. TO BE CONTINUED! SINCERELY, SAMUEL ROACH.

Monday, May 21, 2018

Spinors And Dilatinos

Take the expression for the euclidean expansion, that is of any one given arbitrary Majorana-Weyl-Invariant-Spinor eigenstate -- that is of cotangent bundle R4.  This just mentioned expression -- of which is here to be in terms of its scalar amplitude, is here to be considered when this is coupled while from within the framework of its directoral-related conditions.  The respective externalized reference-frame, via which this said eigenstate that is spinning in a back-and-forth manner at an internal reference-frame -- is here to be, as well, propagating through a Lagrangian-based path in a kinematic manner, via a Fourier Transform as a Hamiltonian operator, in a transversal manner, over time.  Now -- couple the said expression for the euclidean expression of the said spinor, with both the brief time that it is propagating through as it is traveling (as is it is spinning) along the course of its said Lagrangian-based path, AND a pointal-related mass, AND the average angle that the here mentioned spinor is to be spinning in a back-and-forth manner through, as it is spinning via a central coniaxial.  At this point in derivation -- the just eluded-to metric-gauge-related pulsation per cubic directoral-based meter -- that is here to be resulted in, may be thought of as a dilatino.  The consideration of meter that I have mentioned here, is generally to be conveyed, via the usage of the correlative Hodge-based indices that are of any one respective given arbitrary case. Such so-eluded-to Hodge-Indices, are to directly correspond to the correlative litigee of directorals, that are here to be most applicable to the coherent Ward-Cauchy-related situation of such a general genus of a case.
I will continue with the suspense later!  To Be Continued!  Sincerely, Samuel David Roach.

Friday, June 19, 2015

Part Two of Session Two Of Course 19 -- the Klein Bottle and Orbifold Differentiation

Gravitational force is produced by the motion of the coupling activity that is produced by the kinematic activity of both gravitons and gravitinos, working simultaneously through the vantage point of a central conipoint.  Gravitons are the transversel components of what is utilized, in so as to work to produce the gravitational force -- whereas gravitinos are the spin-orbital components of what is utilized, in so as to work to produce the gravitational force.  The gravitational force happens via the Ricci Scalar, through that multiplicit set of eigenstates that work to form that composition -- that is here known of as the Rarita Structure.  Gravitons are formed by the quantum integration of those sub-atomic particles that are known of as dilatons.  Gravitinos are formed by the quantum integration of those sub-atomic particles that are known of as dilatinos.  Dilatons are formed by the transversel scattering of ghost-based indices -- that are pulled via a certain general genus of a Rayleigh-based scattering, off of the relative Real Reimmanian-based Plane, onto a relatively Njenhuis-based plane -- upon which these come together in so as to work to form gravitons.  Dilatinos are formed by the spin-orbital scattering of ghost-based indices -- that are pulled via a certain general genus of a Rayleigh-based scattering, off of the relative Real Reimmanian-based Plane, onto a relatively Njenhuis-based plane -- upon which these come together in so as to work to form gravitinos.  Gravity is the condition of the gravitational-based force.

Wednesday, May 27, 2015

Part Five of Session 16 of Course 18 -- The Ricci Scalar and Kaeler Differentiation

The annharmonic norm-twist-based morphologies, that are directly affiliated with the general activities of any respective given arbitrary Kaeler Metric eigencondition -- are propagated by those directly corresponding activities of dilatons and dilatinos, that are most associated with certain respective given arbitrary metrical-based Chern-Simmons singularities.  This is to where these said singularities act in so as to be of the nature of a Doubolt-based cohomological setting.  Such a set of metrical-based Chern-Simmons singularities, are caused by an alteration in the pulsation of certain discrete and unique dilatons and dilatinos, from which there is thus formed a domino effect of the resultant primed Njenhuis norm-conditions, that may be attributed to the gauge-metrical activity of these so-stated respective dilatons and dilatinos.  This is to where the resultant vibrational-based oscillations, that may be attributed to the so-mentioned perturbation of the pulsation of the eluded-to gravitational-based substringular particles, are carried in a basically Laplacian-based manner -- via the directly corresponding Rarita-Structure eigenstates.  This is in  such a manner, to where the wave-based pull that is thus imbued upon the so-stated dominoe effect -- that is put upon the proximally local Rarita-based Structure -- will tend to form a resultant perturbation, in the relatively respective local light-cone-gauge eigenstates.  This happens in so to potentially work to form a locally-based antinholomorphic Kaeler Condition.  The formation of the presence of an antiholomorphic Kaeler Metric, will tend to work at initiating a Wick Action eigenstate.  The initiation of a Wick Action eigenstate, tends to form the existence of a spontaneous succeeding Kaeler Metric eigenmetric -- in the general vicinity of where the initially present Kaeler Metric had respectively been present.  This would here work to potentially form a sequential series of a proximal Kaeler Metric eigenconditionality, and, thus, this would, as well, work to potentially form a sequential series of a proximal Gaussian Transformation.  This here is a given arbitrary example, of, as to how the presence of an annharmonic perturbative group attractor eigenbase, may often act, in so as to compensate for any of certain eigenstates of a Njenhuis eigenbase of residue -- that is of a holonomic-based substrate, in order for those Gaussian Tranformations to occur -- so that there may be a significant and spontaneous ability for the proximally local substringular eigenmembers of the respective region -- to be able to continue their tendency to pull through their correlative Hamiltonian operands, over time.
I will continue with the suspense later!  To Be Continued!  Sam Roach.

Wednesday, June 12, 2013

About The Flow Of Certain Ghost Anomalies, part one

Gliossi-Shirk-Olive ghosts are the physical evidence of the trajectory of specific superstrings that act as discrete units of energy permittivity.  Such evidence is literally the pattern-based distribution of scattered positive-norm-states (for forward-moving time-based superstrings) that are redelineated by the motion of superstrings that have moved into their general substringular neighborhoods after a sequential series of instantons in which the said superstrings of energy permittivity have been redelineated over time.  Such a redelineation of positive-norm-states is only formatted over the course of successive iterations of group instanton, since, both the positive-norm-states and the negative-norm-states resituate themselves during the instanton-quaternionic-field-impulse-mode into what their delineation was directly before the directly prior generally unnoticed portion of Ultimon Flow.  So, at the end of a given arbitrary instanton-quaternionic-field-impulse-mode, as the superstrings of discrete energy permittivity are re-delineated to their ensuing position at which these are to reiterate at over the course of the ensuing duration of group BRST, the said superstrings of discrete energy permittivity "bump into" norm-states that are moving in the same general directoral basis of holomorphicity as the said superstrings are about to iterate over the directly corresponding duration of group instanton.  As the said superstrings do the mentioned "bumping into" the said norm-states, the eluded to interaction works to displace the said directly related norm-states.  This redistribution works to form a delineation that forms a pattern that may be used as an extrapolation as to where certain superstrings of discrete energy permittivity were at relatively recent iterations of group instanton.  As Gliossi-Shirk-Olive ghosts are increased in quantity and in substringular-based Ward-volume, these are scattered by norm-states that move in the opposite holomorphic-based directoral flow in such a manner that these form both dilatons and dilatinos.  The just written about dilatons and dilatinos -- once formed -- then move off of the Real Reimmanian Plane.  I will continue with the suspense later!  Sincerely, Sam Roach.

Monday, October 1, 2012

A Little More As To Common "Wobble"

When a black-hole forms, the directly associated Planck phenomena that initially enter the said black-hole belong to the universe that inolve those Planck phenomena that are normal to the frayed stringular topology by a wobble of 1.104735878*(-81)Idegrees.  Next, Planck phenomena enter the said black-hole that are normal to the frayed superstrings related Planck phenomena that are normal when in consideration of a relative wobble that exists within a factor of 9.1*10^6* the most discrete adjacent-based covariant wobble that exists among two arbitrary given Planck phenomena that are of the same universe.  Next, the tendancy is toward the motion in the direction of Planck phenomena to enter the mentioned black-hole that are off of normalcy -- in terms of adjacent covariant wobble -- by up to 91*10^81.  (Black-Holes are to never get to that point of potential danger, if one may be able to ward them off by then.)  While some of our universe is being eaten up by any given arbitrary black-hole that has existed for any noticable period of time-based duration, some parts of paralllel universes are eaten up by black-holes as well.  A black-hole is elliminated when the whole black-hole sector is filled in a manner that I will not describe.  Black-Hole sectors "try" to eat up the universe.  That is why these are unwanted.  Black-Holes fray substringular material.  Black-Holes are formed by accumulative dilation build-up that interacts with normal substringlar Fourier-based differentiation.  Dilatons are the massless set quantum of gravitational-based angular momentum energy.  Excessive dilaon accumulation exists after a star has collapsed.  Dilatons accumulate when ghost anomalies are not efficiently annhilated by negative-norm-states.   When two-dimensional superstrings have anharmonically differentiated in a Fourier-based manner too much in a relatively limited region, the corresponding negative-norm-states do not have the adequate opportunity to orphoganate the related norm-conditions that are formed by the related positive-norm-states.  Masses that exist for a relatively long time tend to undergo more entropy.  Entropy produces annharmonics of the corresponding substringular fabric.  Annharmonic stringular Fourier-based differentiation produces multiple zero-norm ghost states, since the zero-norm states cannot form Jacobian-based spatial tangents with the active surface of the directly related ghost anomalic eigenbases.  This lack of multiplicit cohesive parity puts world-sheet paths in the way of each other, in terms of what should become their Laplcacian-mapped paths.  This works to breaksup the related topology, and thus form black-holes.

Thursday, September 27, 2012

A Little More About Gravitational Particles

Gravitons and gravitinos are respectively the angular momentum and the spin-orbital momentum components of gravitational force, when taken particle-wise.  Dilatons work to form gravitons, while dilatinos work to form gravitons.  As dilatons form, the angular momentum components of gravity are locally reformed in an indistinguishably different eigenstate in a conformally invariant-based specific general location.  As dilatinos are formed, the spin-orbital components of gravity are locally reformed in an indistinguishably different eigenstate in a conformally invariant-based specific general location.  As gravity spins various phenomena, as well as when gravity orbitally interacts with the same general phenomena, gravitinos are the specific type of particles are utilized to form such a general type of operation-based kinematic activity.  Gravity is necessary for matter to have a constituent relation with other material-based phenomena, yet, the excessive accumulation of gravitational fields in a secluded region works to cause that activity that eventually forms black-holes.  This is because gravitons in excess cause a lack of a Jacobian-based normalization to the Ultimon divergence of negative-norm-states in such a manner that the ghost anomalies that such negative-norm-states are to elliminate may not be able to be scattered with enough facilitation.  (Excessive quantums of gravity may often work to get in the way of the essential Gaussian Transformations that are needed in order for spaces and subspaces to interchage, interact, and kinematically undergoe successive Fourier Transformations.)  As the ghost anomaliic regions are not scattered, operands of normal substringular function are then, under the prior mentioned scenario, closed down.  Such unwanted kinematic operations depreciate the "choices" of potential world-sheet propagation, and thus initially cause a more limited Ultimon divergence of zero-norm-states.  This type of activity works to promote the build up of positive-norm-states in such a manner that a significant number of ghost anomalies that need to be scattered -- so that motion may be freed up -- are not being appropriately scattered.  As the said ghost anomalies are not elliminated, the path operands of normal stringular functions are decreased in number.  The key to help solve such a negative process is neutrinos.  These may be used to elliminate excessive ghost anomalic regions, since these fermions, which are mainly comprised of as one-dimensional strings, when tied in the right way to Planck phenomena bear norm-conditions that may be able to normalize the eigenbasis of the unorphoganated ghost anomalic regions.  The fermions, that have no charge directly associated with these, often bear a point mass that is smaller than that of an electron.  These, in a manner that I will not say, can settle upn the unnormalized mentioned region by having a common wobble tangency (1.104735878*10^(-81)Idegrees) that is bears fractal tension in enough of a degree to apply a tensorically-supplemental pulse upon the region that is to be changed.  The multiamorphous tendencis of massive neutrinos works to conform to the general region that is being considered in this case scenario, causing a successive change in norm-conditions that may thereby normalize the said general region as a catylist works upon a substrate.  Massive neutrinos of such a nature are thus like a fractal of "enzymes" that can work to orphogante unwanted anharmonic regions of ghost anomalies.  The two and three dimensional discrepencies of 2-d strings that are involved here are more anharmonic than those of 1-d superstrings, when dilaton-based energy is accumulated.  Superstrings tend to move anharmonically when the present entropy of stars is accumulated.  This mentioned entropy also tends to increase dilaton energy.  Dilaton "energy" is how I am here describing the force of gravity via the Ricci Scalar.  Sam.

Wednesday, May 2, 2012

Part Two Of The Second Session Of Course Ten

As the superstrings iterate, the light-cone-gauge quanta that I described in the first part of this session a while ago act as reins that cause the Planck phenomena to dance into their ensuing iteration.  The spin, orbital, and transversal responses of the corresponding Planck phenomena send mini-stringular impulses that cause the Imaginary Exchange of the said related substrings.  The Imaginary Exchange of the substrings mentioned here push the light-cone-gauge quanta inward to spring the substringular into the process of Ultimon Flow-based action as the light-cone-gauge eigenstates that I am here reffering to spring outward.  This happens in such a manner so that the light-cone-gauge-related Fock Space gears the positive-norm-spaces to form ghost anomalies at the points where the said superstrings and their fields were.  As ghost anomalies have formed, the negative-norm-spaces are pulled orphoganally by the positive-norm-states so as to annhilate the ghosts that had recently formed.  This produces residue in the form of the dilatons and the dilatinos that quantize to form basic quantum of gravitational particles.  I will continue with the suspence by typing out the third session of this course soon.  You have a phenomenal day!  Sincerely, Samuel David Roach.    

Thursday, August 27, 2009

Grand Unified Field Theory (GUFT), Session 6

Ghosts anomalies are formed whenever superstrings, world-sheets, and/or light-cone-gauge eigenstates kinematically differentiate. So, whenever a superstring, a world-sheet, or a light-cone-gauge-eigenstate moves per iteration, ghost anomalies form. The more conformally invariant a superstring, a world-sheet, and/or a light-cone-gauge eigenstate is, the more readily the corresponding ghost anomalies relating to these are annihilated. When ghost anomalies are annihilated, these are scattered off of the Real Reimmanian plane and are sent to the fabric of space-time initially as dilatons and dilatinos that quantize into gravitons and gravitinos. Once the negative-norm-states are converted into particles of gravity, these form Ricci Scalar eigenstates with superstrings that share a tug on these given superstrings so that the particles of gravity may be able to exert a gravitational pull on substringular phenomena. Since dilatons, dilatinos, gravitons, and gravitinos function off of the Real Reimmanian plane, these do not fully cycle around the ultimon as superstrings, stringular encoders, and light-cone-gauge-eigenstates do. The Wilson-Gordan conditions of the superstrings of gluons are anharmonic, while the Yau-Exact conditions of the superstrings of gluons are harmonic. So, the Schwinger Index of the Wilson-Gordan conditions of the superstrings of gluons forms an anharmonic "tune", while the Schwinger Index of the Yau-Exact conditions of the superstrings of gluons fors a harmonic "tune." Some of the eigenstates of the Schwinger Indices of the Wilson-Gordan conditions of the superstrings of a gluon are harmonic while some of the eigenstates of the Schwinger Indices of the Wilson-Gordan conditions of the superstrings of a gluon are anharmonic, while the eigenstates of the Schwinger Indices of the Yau-Exact conditions of the superstrings of a gluon are all harmonic. Wilson-Gordan conditions are the kinematic mapping of Chern-Simmons conditions, while Yau-Exact conditions are the kinematic mapping of hermitian and non-perturbative conditions. The gauge bosons of Wilson-Gordan eigenstates of transposition are Real and Imaginary, since these involve Real Reimmanian and Njenhuis tensors of oscillation. The gauge bosons of Yau-Exact eigenstates of transpositions are just Real, since these only involve a first-ordered Majorana-Weyl oscillation. The gauge bosons vibrate the light-cone-gauge to form eigenstates of the Schwinger Index that form the Schwinger Index. Superconformal ghosts of the light-cone-gauge are created and annihilated right after these are created. Ghost anomalies are not completely physical in the sense that the vacuum regions in-between norm-states indicate to an extent the prior differentiation of certain substringular phenomena, and also because ghost anomalies of light-cone-gauge eigenstates do not get plucked by gauge bosons. Yet, if ghost anomalies were not actually real, there would be no gravity.