terça-feira, 6 de dezembro de 2016
Mechanics, state and effect of the Graceli thermal wave field.
As radiative variations of plasmas also propagate in the form of thermal waves both within materials, within electromagnetic currents, and in space.
These thermal wave fields have direct actions on particle decays and fusions, where the two potentials both the types and the potentials of the radioactive materials are also the radiation waves of the thermal field.
It also has direct actions on currents and electromagnetic conductivity.
And it also has direct actions on the electron stabilities, entropies, and renumeralizations of charges within the particles, and even on their periphery.
Graceli Statistic of Energy Matter 8.
It is possible several quantum states of matter and energy in a single phenomena, structure, particle. And time and space.
The states of matter and energy do not only depend on the distribution of electrons within atoms and molecules but on:
Graceli Statistic of energy matter, interactions, material potentials, transformations, interactions, entanglements, parities, momentums.
The states of matter and energy do not depend only on the distribution of particles in the formation of molecules, but fundamentally in the processes of transformation and of producing other particles, energies, momentums, etc. Leading the state to a dynamic and transcendent condition. That is, there is no state of matter and energy being static, but rather they are determined by the quantum fluxes, and quantum transformations involving the transpassages if they have alterations on these phenomena refraction, diffraction, spectra, dilations, entropies, thermal variations, electromagnetic, decays , Interactions, transformations, parities, and entanglements. Senses of movements and spins, potentials of materials and energies, and their potentials of interactions and transformations [as from the magnetic to the electric and vice versa, from the thermal, to the dynamic, to the dilatant, to the entropic, and the electromagnetic, and To spectra of light and color during journeys].
And that some also act on others, forming a relativistic and indeterminate system.
As well as the effects proposed by Graceli from the first to the last. Let's see the last ones.
Mechanics of Effetology Graceli 2. Effects 116, 117, 118, 119, 120. 121.
Imagine a metal in great rotations near great magnets, being that these metals are being hit of photons with great intensities of energies.
And it is also possible to be approached in these metals radioactive elements with great potentials of decay, or even the rotating metal itself can be a radioactive.
Or even get away from the photons and radioactivity if it has large near thermal variations.
And that some materials have greater entropic potential than others.
Or even that there are variations of dilation from some metals to others. With actions on the magnetic effect and the electricity produced in momentum.
And that all these phenomena have actions on entanglements, parities, refractions and diffractions, spectra, entropies, variational dilation of mass and energy, renormalization of positions of particles and actions of charges.
And even on the production of smaller particles like meson pi, or even gluons.
And that has actions on potential transformations and interactions.
116] Photoelectric-magnetic-dynamic effect.
117] Radiofotoelectricomagnetic-dynamic effect.
118] Thermofotoelectricomagnetic-dynamic effect.
119] Thermo-photomechanical-magnetic-thermographic effect.
120] entropic and therapeutic effect.
121] Thermoradiofotoeletricomagneticdynamicodilating effect. [Mass variation, energy, inertia, momentum, time, and space [relativity for the purposes of Graceli].
Spectral efeitologia.
Spectroentropia.
Spectroradioactivity.
Spectrodilation.
Spectroconductivity.
The spectra are determined and produced by quantum and also transquant phenomena, which in turn also produce changes in other phenomena, and even in those that produced them, forming an integrated system of cause and effect, and effect as successive causes.
The effects and their variations can be visualized in the spectrometry according to the phases and potentials in which they are crossing at certain moments. Like the aforementioned Graceli effects of 122, to 126.
The same can serve for parities, interactions, transformations, production of new smaller particles but with potentials of oscillating and varied energies. And entanglements, or even renormalization of charges.
And also a mechanic of mass dilation, energy and inertia not only by movement, but fundamentally by the interactions and transformations, entropies, refractions and radioactive transpassages.
Forming this way, a generalized indeterminist transcendent quantum system involving states of matter and energy, effects and also indeterministic transcendent dimensions.
Graceli Mechanics of Transpassage and Effectology 115.
Transpassage produces variational effects depending on the types of materials, energies, distances, momentums, and other agents.
Since these effects occur both in the transporter and in the transpassed agent.
Causing it to occur before, in the vicinity, during, and after the transpass.
Where there is an overpassing mechanism and overrunning effect. With variations on loads, positions and poles of charges and particles, potential transformations on other particles and charges, and production of new smaller particles, quantum jumps, and other phenomena.
Changes in currents and electromagnetic conductivity.
During the transpassages we have alterations on these phenomena refraction, diffraction, spectra, dilations, entropies, thermal variations, electromagnetic, decays, interactions, transformations, parities, and entanglements. Senses of movements and spins, potentials of materials and energies, and their potentials of interactions and transformations [as from the magnetic to the electric and vice versa, from the thermal, dynamic, dilatant, entropic, and electromagnetic decays, and To spectra of light and colors during journeys].
And that some also act on others, forming a relativistic and indeterminate system.
As radiative variations of plasmas also propagate in the form of thermal waves both within materials, within electromagnetic currents, and in space.
These thermal wave fields have direct actions on particle decays and fusions, where the two potentials both the types and the potentials of the radioactive materials are also the radiation waves of the thermal field.
It also has direct actions on currents and electromagnetic conductivity.
And it also has direct actions on the electron stabilities, entropies, and renumeralizations of charges within the particles, and even on their periphery.
Graceli Statistic of Energy Matter 8.
It is possible several quantum states of matter and energy in a single phenomena, structure, particle. And time and space.
The states of matter and energy do not only depend on the distribution of electrons within atoms and molecules but on:
Graceli Statistic of energy matter, interactions, material potentials, transformations, interactions, entanglements, parities, momentums.
The states of matter and energy do not depend only on the distribution of particles in the formation of molecules, but fundamentally in the processes of transformation and of producing other particles, energies, momentums, etc. Leading the state to a dynamic and transcendent condition. That is, there is no state of matter and energy being static, but rather they are determined by the quantum fluxes, and quantum transformations involving the transpassages if they have alterations on these phenomena refraction, diffraction, spectra, dilations, entropies, thermal variations, electromagnetic, decays , Interactions, transformations, parities, and entanglements. Senses of movements and spins, potentials of materials and energies, and their potentials of interactions and transformations [as from the magnetic to the electric and vice versa, from the thermal, to the dynamic, to the dilatant, to the entropic, and the electromagnetic, and To spectra of light and color during journeys].
And that some also act on others, forming a relativistic and indeterminate system.
As well as the effects proposed by Graceli from the first to the last. Let's see the last ones.
Mechanics of Effetology Graceli 2. Effects 116, 117, 118, 119, 120. 121.
Imagine a metal in great rotations near great magnets, being that these metals are being hit of photons with great intensities of energies.
And it is also possible to be approached in these metals radioactive elements with great potentials of decay, or even the rotating metal itself can be a radioactive.
Or even get away from the photons and radioactivity if it has large near thermal variations.
And that some materials have greater entropic potential than others.
Or even that there are variations of dilation from some metals to others. With actions on the magnetic effect and the electricity produced in momentum.
And that all these phenomena have actions on entanglements, parities, refractions and diffractions, spectra, entropies, variational dilation of mass and energy, renormalization of positions of particles and actions of charges.
And even on the production of smaller particles like meson pi, or even gluons.
And that has actions on potential transformations and interactions.
116] Photoelectric-magnetic-dynamic effect.
117] Radiofotoelectricomagnetic-dynamic effect.
118] Thermofotoelectricomagnetic-dynamic effect.
119] Thermo-photomechanical-magnetic-thermographic effect.
120] entropic and therapeutic effect.
121] Thermoradiofotoeletricomagneticdynamicodilating effect. [Mass variation, energy, inertia, momentum, time, and space [relativity for the purposes of Graceli].
Spectral efeitologia.
Spectroentropia.
Spectroradioactivity.
Spectrodilation.
Spectroconductivity.
The spectra are determined and produced by quantum and also transquant phenomena, which in turn also produce changes in other phenomena, and even in those that produced them, forming an integrated system of cause and effect, and effect as successive causes.
The effects and their variations can be visualized in the spectrometry according to the phases and potentials in which they are crossing at certain moments. Like the aforementioned Graceli effects of 122, to 126.
The same can serve for parities, interactions, transformations, production of new smaller particles but with potentials of oscillating and varied energies. And entanglements, or even renormalization of charges.
And also a mechanic of mass dilation, energy and inertia not only by movement, but fundamentally by the interactions and transformations, entropies, refractions and radioactive transpassages.
Forming this way, a generalized indeterminist transcendent quantum system involving states of matter and energy, effects and also indeterministic transcendent dimensions.
Graceli Mechanics of Transpassage and Effectology 115.
Transpassage produces variational effects depending on the types of materials, energies, distances, momentums, and other agents.
Since these effects occur both in the transporter and in the transpassed agent.
Causing it to occur before, in the vicinity, during, and after the transpass.
Where there is an overpassing mechanism and overrunning effect. With variations on loads, positions and poles of charges and particles, potential transformations on other particles and charges, and production of new smaller particles, quantum jumps, and other phenomena.
Changes in currents and electromagnetic conductivity.
During the transpassages we have alterations on these phenomena refraction, diffraction, spectra, dilations, entropies, thermal variations, electromagnetic, decays, interactions, transformations, parities, and entanglements. Senses of movements and spins, potentials of materials and energies, and their potentials of interactions and transformations [as from the magnetic to the electric and vice versa, from the thermal, dynamic, dilatant, entropic, and electromagnetic decays, and To spectra of light and colors during journeys].
And that some also act on others, forming a relativistic and indeterminate system.
Mecânica,
estado e efeito de Campo de ondas térmico
Graceli.
As variações radiações
de plasmas também se propagam em forma de ondas térmicas tanto dentro dos
materiais, dentro de correntes eletromagnética, quanto no espaço.
Estes campos térmicos
de ondas tem ações diretas sobre os decaimentos e fusões de partículas, onde
depende dos potenciais tanto dos tipos e potenciais dos materiais radioativos
quanto também das ondas de radiações do campo térmico.
Como também tem
ações diretas sobre as correntes e condutividade eletromagnética.
E que também tem
ações diretas sobre as estabilidades de elétrons, entropias, e renormalizações
de cargas dentro de partículas, e mesmo na sua periferia.
Estadologia
Graceli de matéria energia 8.
É possível vários
estados quânticos de matéria e energia em um único fenômenos, estrutura, partícula.
E tempo e espaço.
O estados de
matéria e energia não depende apenas da distribuição de elétrons dentro de átomos
e moléculas, mas sim de :
Estadologia
Graceli de matéria energia, interações, potenciais de materiais, de
transformações, de interações, de emaranhamentos, de paridades, de momentuns.
Os estados da
matéria e energia não dependem só da distribuição de partículas na formação de
moléculas, mas fundamentalmente nos processos de transformações e de produzir
outras partículas, energias, momentuns, etc. levando ao estado á uma condição
dinâmica e transcendente. Ou seja, não existe estado de matéria e energia sendo
estáticos, mas sim eles são determinados pelos fluxos quânticos, e
transformações quânticas envolvendo as transpassagens se tem alterações sobre
estes fenômenos refração, difração, espectros, dilatações, entropias, variações
térmicas, eletromagnética, decaimentos, interações, transformações, paridades,
e emaranhamentos. Sentidos de movimentos e spins, potenciais dos materiais e
das energias, e seus potenciais de interações e transformações [como do
magnético ao elétrico e vice-versa, do decaimento ao térmico, ao dinâmico, ao
dilatante, ao entrópico, e ao eletromagnético, e aos espectros de luz e cores
durante percursos].
E que também
uns agem sobre outros, formando um sistema relativístico e indeterminado.
Como também os
efeitos propostos por Graceli tanto do primeiro até o ultimo. Vamos ver os
últimos.
Mecânica de Efeitologia
Graceli 2. Efeitos 116, 117, 118, 119, 120. 121.
Imagine um
metal em grandes rotações próximos de grandes imas, sendo que estes metais
estão sendo atingidos de fótons com grandes intensidades de energias.
E que também
se pode ser aproximado nestes metais elementos radioativos com grandes
potenciais de decaimentos, ou mesmo o próprio metal em rotação pode ser um
radioativo.
Ou mesmo se
alem dos fótons e da radioatividade se tem grandes variações térmica próximo.
E que alguns
materiais tem potencial entrópico maior do outros.
Ou mesmo que
se tem variações de dilatação de alguns metais para outros. Com ações sobre o
efeito magnético e a eletricidade produzida no momentum.
E que todos
estes fenômenos tem ações sobre emaranhamentos, paridades, refrações e
difrações, espectros, entropias, dilatação variacional de massa e energia,
renormalização de posições de partículas e de ações de cargas.
E mesmo sobre
a produção de partículas menores como méson pi, ou mesmo glúons.
E que tem
ações sobre potenciais de transformações
e interações.
116]Efeito
fotoeletricomagneticodinâmico.
117]Efeito
radiofotoeletricomagneticodinâmico.
118]Efeito
termofotoeletricomagneticodinâmico.
119]Efeito termoradiofotoeletricomagneticodinâmico.
120]Efeito
entropicotermoradiofotoeletricomagneticodinâmico.
121]Efeito
Termoradiofotoeletricomagneticodinamicodilatante. [variação de massa, energia,
inércia, momentum, tempo, e espaço [relatividade para efeitos de Graceli].
Efeitologia
espectral.
Espectroentropia.
Espectroradioatividade.
Espectrodilatação.
Espectrocondutividade.
Os espectros
são determinados e produzidos por fenômenos quânticos e também transquânticos e
que por sua vez também produz alterações nos outros fenômenos, e mesmo nos que
os produziu formando um sistema integrado de causa e efeito, e de efeito como
sucessivas causas.
Os efeitos e
suas variações podem ser visualizados na espectrometria conforme as fases e
potenciais em que os mesmo estão atravessando em determinados momentos. Como os
citados efeitos Graceli do 122, ao 126.
O mesmo pode
servir para paridades, interações, transformações, produção de novas partículas
menores mas com potenciais de energias oscilantes e variados. E emaranhamentos,
ou mesmo renormalização de cargas.
E também um
mecânica de dilatação de massa, energia e inércia não apenas pelo movimento,mas
fundamentalmente pelas interações e transformações, entropias, refrações e
transpassagens radioativas.
Formando
assim, um sistema quântico transcendente indeterminista generalizado,
envolvendo estados de matéria e energia, efeitos e também dimensões transcendentes
indeterminstas.
Mecânica
Graceli de transpassagem e efeitologia 115.
A
transpassagem produz efeitos variacionais conforme os tipos de materiais,
energias, distanciamentos, momentuns, e outros agentes.
Sendo que
estes efeitos tanto ocorre no agente transpassador quanto no transpassado.
Fazendo com
que possa ocorrer antes, na proximidade, durante, e após a transpassagem.
Onde se tem
uma mecânica de transpassagem e efeito de transpassagem. Com variações sobre as
cargas, as posições e pólos de cargas e partículas, potencial de transformações
em outras partículas e cargas, e produção de novas partículas menores, saltos
quânticos, e outros fenômenos.
Alterações nas
correntes e condutividade eletromagnética.
Durante as
transpassagens se tem alterações sobre estes fenômenos refração, difração,
espectros, dilatações, entropias, variações térmicas, eletromagnética,
decaimentos, interações, transformações, paridades, e emaranhamentos. Sentidos
de movimentos e spins, potenciais dos materiais e das energias, e seus
potenciais de interações e transformações [como do magnético ao elétrico e
vice-versa, do decaimentos ao térmico, ao dinâmico, ao dilatante, ao entrópico,
e ao eletromagnético, e ao espectros de luz e cores durante percursos].
E que também
uns agem sobre outros, formando um sistema relativístico e indeterminado.
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