Friday, July 21, 2023

superluminal signals=Noncommutative geometry antigravity=Dr. Mae-Wan Ho

 

 Dr. Mae-Wan Ho proved ghosts are real. Just read her book, "Rainbow and the Worm" -

 besides noncommutativity proves that the truth of reality is not some repeatable "off the shelf" experiment! So what you call "science" is hogwash. Standard science is causing "biological annihilation" in accelerating fashion. Why? The wrong logic of commutatiive geometry based on a "proof by contradiction" as an attempt to "contain infinity" as a symmetric spatial measurement. Every external measurement takes time and therefore is an inherent asymmetric time shift as noncommutativity that is also nonlocal and negentropic! This means that not only is all matter made of photons as light but that photons have a gravitational mass that is also negative entropy as "dark energy" or antigravity - and that is our soul that contains the spirit. So when we "turn the light around" in meditation we contact our soul and we rebuild our spirit. Biological annihilation via the ongoing sixth mass extinction signaled by vertebrate population losses and declines G Ceballos, PR Ehrlich, R Dirzo - Proceedings of the …, 2017 - National Acad Sciences … This “biological annihilation” underlines the seriousness for humanity of Earth’s ongoing … We describe this as a “biological annihilation” to highlight the current magnitude of Earth’s … Save Cite Cited by 2526 Related articles All 41 versions [HTML] pnas.org Full View Vertebrates on the brink as indicators of biological annihilation and the sixth mass extinction G Ceballos, PR Ehrlich… - Proceedings of the …, 2020 - National Acad Sciences … Examples documenting the ongoing biological annihilation are proliferating, each of them … such efforts to have any chance of reversing the biological annihilation that is underway. … Save Cite Cited by 644 Related articles All 25 versions [HTML] nature.com [HTML] Genetic and demographic consequences of range contraction patterns during biological annihilation JE Rogan, MR Parker, ZB Hancock, AD Earl… - Scientific Reports, 2023 - nature.com … 

Our results demonstrated how range contractions can contribute to biological annihilation not only through loss of area inhabited by a generalist species, but also due to impacts on … "useful and necessary information to combat biological annihilation. "  

https://www.nature.com/articles/s41598-023-28927-z 

Indeed so is noncommutativity! hahaha. So yes ghosts have been proven. Dr. Mae-Wan Ho unfortunately got her math wrong - so she relied on the quantum optics of Glauber but not noncommutativity. She also cited Emilio del Giudice who also did not understand noncommutativity. They're both not alive anymore but then neither is Eddie Oshins who realized noncommutativity is the secret of life on Earth and the truth of reality as practiced in nonwestern alchemy or neigong. You can see my first upload for my training manual. thanks

 Brilliant interference colours are produced by
recombining plane-polarized light split up into slow and fast rays on passing through
birefringent liquid crystalline regimes ( Fig. 1 ). [ 1 ] The principles involved are the same as
those used in identifying mineral crystals in geology. Different tissues appear in different
colours and varying in intensity according to the orientation and birefingence of the
molecules involved as well as their degree of order. The organism -- in this case a
Drosophila larva about to emerge -- is obviously alive. Waves of muscle contraction are
sweeping over its body, so one can infer that all the molecular motors and enzymes in the
tissues are busily turning and deforming as energy is transformed, so how is it possible that
they have a crystalline order? It is most likely because the molecular motions are highly
correlated or coherent. As visible light is about 10 14 hz, and correlated molecular motions
generally less than 10 10 hz, the tissues will appear indistinguishable from static crystals to the
light passing through so long as the movements of their constituent molecules are coherent.
With this imaging technique, one can see that the movements of the organism are fully
coordinated at all levels from the macroscopic to the molecular, and that is what the
coherence of the organism entails.
This image also brings out the wholeness of the organism. The Drosophila larva -- like all
other animals from protozoa to vertebrates without exception -- is polarized along the
anteroposterior axis, as though the entire organism is one uniaxial crystal. This leaves us in
little doubt that the organism is a singular whole, despite the diverse multiplicity of its
constituent parts.
I mentioned that the molecules of the tissues maintain their crystalline order when they are
actively transforming energy. The evidence suggests that the crystalline order is dependent
on energy transformation, so that the more energetic the organism, the more intensely
colourful it is, implying that the molecular motions are all the more coherent. [ 2 ] This is
consistent with ultrasensitive high-speed measurements of contracting muscles which show
all the molecular motors cycling in synchronous steps. [ 3 , 4 ] Similarly, X-ray diffraction
reveals that a high degree of supramolecular order is maintained during isometric
contraction. [ 5 ] The coherence of the organism is therefore closely tied up with its energetic
status. To be precise, it is tied up with the way energy is stored and readily mobilized over all
its space-time domains.
The problem I address in this paper is how to understand the coherence of organisms in
terms of energy relationships as revealed by thermodynamics and quantum theory.

 
He and many others since, have found that all organisms emit light (’biophotons’) at ultraweak intensities which are strongly correlated with the cell cycle and other functional states. [ 32 ] The emitted light typically covers a wide band (200nm to 900nm) around the optical range -- the limitation being usually set by the photon-detecting device -- with approximately equal numbers of photons throughout the range, for which Popp proposed the ’f (l)=const. rule’.[33] Biophotons can also be studied as stimulated emission after a brief exposure to light of different spectral compositions. It has been found, without exception, that the stimulated emission decays according to a hyperbolic function; which, according to Popp and Li, is a sufficient condition for a coherent light-field. [ 34 ] This implies that photons are held in a coherent form in the organism, and when stimulated, they are emitted coherently, like a very weak, multimode laser. Such a multimode laser has not yet been made artificially, but it is at least not contrary to the theory of coherence in quantum optics as developed especially by Glauber,[35] so long as the modes are coupled together. There is, indeed, evidence that the modes within the visible range are coupled together. Spectral analyses of the stimulated emission show that it always covers the same broad range, regardless of the composition of the light used to induce it, and furthermore, it can retain its spectral distribution even when the system is perturbed to such an extent that the emission intensity changes over several orders of magnitude. Furthermore, the hyperbolic decay kinetics is uniform throughout the spectrum.[36] Another evidence for the coherence of the photon (energy) field within each organism is that populations of synchronously developing Drosophila embryos can undergo phase-correlated collective light emission minutes to hours after a single brief light stimulation. [37] In order to build up such a phase-correlation, each individual embryo must itself be highly coherent with a definite phase that can phase-lock, or couple coherently, to all the others in the population. [38] That is how the most rapid and effective biocommunication may be achieved in living systems; and we must, finally, consider the important implications of quantum coherence itself.

  By "dynamic matching of conformational fluctuations",
the collective motions of the associated proteins are no longer independent, but become
correlated as a whole. [11] This reciprocity in energy relationship will be especially favoured
in the quasi-crystalline array of proteins in the membranes of the mitochondria and the
chloroplasts, and also in the dense arrays of molecular motors in muscle. However, as I shall
show later on, what is being conserved is not ‘free energy’ but stored energy.

  so we must conclude that the equality of forward and reverse
transitions do not hold for some pairs of states. However, at steady state, the occupation
numbers (or the concentrations of chemical species) are time independent (ie, they remain
constant), which means that the sum of all forward transitions is equal to the sum of all
backward transitions, ie,

 But it has already been established that some fi’tij’ - fi’tji’ are non-zero. That means other
pairs must also be non-zero to compensate. In other words, members of the ensemble must
leave some states by one path and return by other paths, which constitutes a cycle

 This principle extends throughout the organism’s
space-time domains over which energy is mobilized -- each domain being capable of
working as an independent coherent unit that is yet in step with the whole. This is where
something like quantum coherence has to be invoked, as I shall explain later.

 The above equation tells us that the correlation between two space-time points in a coherent
field factorizes, or decomposes neatly into the self-correlations at the two points separately,
and that this factorizability is a sufficient condition for coherence. Factorizability does not
mean that the pure state can be factorized into a mixture of states, but it does imply
something quite unusual -- any two points in a coherent field will behave statistically
independently of each other. So two photon detectors in the field will register photons
independently of each other.

 Coherence can be generalized to arbitrarily higher orders, say, to m approaching , in which
case, we shall be talking about a fully coherent field. If mth order coherence holds, then all
of the correlation functions which represent joint counting rates for n-fold coincidence
experiments (where m<n) factorize as the product of the self-correlations at the individual
space-time points. In other words, if we put n different counters in the field, they will each
record photons in a way which is statistically independent of all the others with no special
tendency towards coincidences, or correlations (see Glauber [35]).
The key to understanding the coherence of organisms is in the factorizability of the quantum
coherent state. The coherence of organisms entails a quantum superposition of coherent
activities over all space-time domains, each of which correlated with one another and with
the whole, and yet independent of the whole. It is this factorizability that underlies the
sensitivity of living systems to weak signals, and their ability to communicate and respond
with great rapidity. It is why we can attend to all the different vital functions simultaneously
and separately, and yet remain an undivided whole.

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