sábado, 28 de outubro de 2017
Spectral effects Graceli. And trans-intermechanical. 7,571 to 7,580.
The means and the very act and action of measuring a spectrum changes its quantum nature, its lines and colors, densities, and oscillations of energies within it.
With variables according to agents of Graceli categories.
E According to agents and categories of Graceli:
[eeeeeffd [f] [mcCdt] [cG] [+ m].
C = color and transparency and translucency.
M = morphology [format].
With other infinite effects for other secondary phenomena, and the production of new phenomena.
And with variations and effects in relation to the speed of light [c] where they can be relativistic or non-relativistic.
Forming this is a trans-intermechanic of transcendental and chain-dependent variational effects both relativistic to c, and categories of Graceli where it becomes indeterminate.
With effects of dynamics during the spectral process, with new phenomena and optical spectral spectral visions.
With this we have the spectroscopy as a measuring agent and the dynamic-structural-spectroscopy that both measures and has deformative, transformative, dynamic action, and produces new phenomena during any spectral act.
What we have here is a Graceli categorical quantum electrodynamics [spectral, or non-spectral] [relativistic [c], or non-relativistic]. [EDQCG [r, [n-r]], [e], [ne].
So, if you have different physics for different situations and all related to the categories and agents of Graceli.
Where one also has its own physics for quantum, categorial, astronomical, cosmological [with anomalous variables and movements of galaxies].
Or even with interactions of particles at very small distances, that is, categorial energies and distances are fundamental.
Graceli calculated the orbits of the planets with the outer temperatures of the sun and planets and the square root of the distance, and the result was 99.99 percent accurate [see attributes for a Graceli mechanics]. Whereas the inverse of the distance of both Newton and Einstein did not give satisfactory results.
Where, with this, one also has that the actions work not in an arithmetic, but geometric progression with variables of oscillations in the way.
This also serves for the electrostatic force of Coulomb, which will now be called Graceli because it is based on the square root of the distance and has geometric and non-arithmetic progression rates.
This has different realities and laws for different conditions and universes.
A moment that measures one phenomena, in another one already has another reality, this at the lowest and quantum level of Graceli.
Even the action of equal and different charges follow the principle and laws of the geometric progressions of Graceli, and some for indices in relation to the action of distance in relation to the square root of the distance.
The means and the very act and action of measuring a spectrum changes its quantum nature, its lines and colors, densities, and oscillations of energies within it.
With variables according to agents of Graceli categories.
E According to agents and categories of Graceli:
[eeeeeffd [f] [mcCdt] [cG] [+ m].
C = color and transparency and translucency.
M = morphology [format].
With other infinite effects for other secondary phenomena, and the production of new phenomena.
And with variations and effects in relation to the speed of light [c] where they can be relativistic or non-relativistic.
Forming this is a trans-intermechanic of transcendental and chain-dependent variational effects both relativistic to c, and categories of Graceli where it becomes indeterminate.
With effects of dynamics during the spectral process, with new phenomena and optical spectral spectral visions.
With this we have the spectroscopy as a measuring agent and the dynamic-structural-spectroscopy that both measures and has deformative, transformative, dynamic action, and produces new phenomena during any spectral act.
What we have here is a Graceli categorical quantum electrodynamics [spectral, or non-spectral] [relativistic [c], or non-relativistic]. [EDQCG [r, [n-r]], [e], [ne].
So, if you have different physics for different situations and all related to the categories and agents of Graceli.
Where one also has its own physics for quantum, categorial, astronomical, cosmological [with anomalous variables and movements of galaxies].
Or even with interactions of particles at very small distances, that is, categorial energies and distances are fundamental.
Graceli calculated the orbits of the planets with the outer temperatures of the sun and planets and the square root of the distance, and the result was 99.99 percent accurate [see attributes for a Graceli mechanics]. Whereas the inverse of the distance of both Newton and Einstein did not give satisfactory results.
Where, with this, one also has that the actions work not in an arithmetic, but geometric progression with variables of oscillations in the way.
This also serves for the electrostatic force of Coulomb, which will now be called Graceli because it is based on the square root of the distance and has geometric and non-arithmetic progression rates.
This has different realities and laws for different conditions and universes.
A moment that measures one phenomena, in another one already has another reality, this at the lowest and quantum level of Graceli.
Even the action of equal and different charges follow the principle and laws of the geometric progressions of Graceli, and some for indices in relation to the action of distance in relation to the square root of the distance.
Efeitos
espectrais Graceli. E trans-intermecânica. 7.571 a 7.580.
Os meios e
o próprio ato e ação de medir um espectro muda a sua natureza quântica, suas
linhas e cores, densidades e oscilações de energias dentro da mesma.
Com
variáveis conforme agentes de categorias de Graceli.
E Conforme agentes e categorias de
Graceli:
[eeeeeffd[f][mcCdt][cG][+m].
C = cor e transparência e translucidez.
M = morfologia [formato].
Com outros
infinitos efeitos para outros fenômenos secundários, e a produção de novos
fenômenos.
E com
variações e efeitos em relação à velocidade da luz [c] onde podem ser
relativistas ou não-relativistas.
Formando
com isto uma trans-intermecânica de efeitos variacionais transcendentes e em
cadeias tanto relativista à c, quanto à categorias de Graceli onde se torna
indeterminado.
Com
efeitos de dinâmicas durante o processo espectral, com novos fenômenos e visões
óticas quântica espectrais.
Com isto se
tem a espectroscopia como agente medidor e a espectroscopia-dinâmica-
estruturológica que tanto mede quanto
tem ação deformativa, transformativa, dinâmica, e produz novos fenômenos durante
qualquer ato espectral.
Com isto o
que se tem aqui é uma eletrodinâmica quântica categorial Graceli [espectral, ou
não espectral] [relativista [c], ou não relativista]. [EDQCG [r,[n-r]], [e],[ne].
Assim, se
tem físicas diferentes para situações diferentes e todas relativas à categorias
e agentes de Graceli.
Onde também
se tem uma física própria para a quântica, a categorial, a astronômica, a cosmológica
[com variáveis e movimentos anômalos de galáxias].
Ou mesmo
com interações de partículas à distâncias ínfimas, ou seja, as energias
categoriais e as distâncias são fundamentais.
Graceli
calculo as orbitas dos planetas com as temperaturas externa do sol e dos
planetas e a raiz quadrada da distância, e o resultado foi 99,99 por cento
exato [ver atributos para uma mecânica de Graceli]. Enquanto o inverso da
distância tanto de Newton quanto de Einstein não deram resultados satisfatórios.
Onde com isto
também se tem que as ações funcionam não numa progressão aritmética, mas geométrica
com variáveis de oscilações no caminho.
Isto serve
também para a força eletrostática de Coulomb, que agora vai se chamar de
Graceli por ter como base a raiz quadrada da distância e ter índices de progressão
geométrica e não aritmética.
Com isto se
tem realidades e leis diferentes para condições e universos diferentes.
Um momento
que se mede um fenômenos, em outro já se tem outra realidade, isto em nível ínfimo
e quântico categorial de Graceli.
Mesmo a
ação de cargas iguais e diferentes seguem o princípio e leis das progressões geométricas
de Graceli, e alguns para índices em relação à ação da distância em relação à
raiz quadrada da distância.
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