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Brain Machines Biophilia NLS from Quantum Entropy Theory

The Foundation for the Quantum Entropy Logic Theory (Nobel Prize winners Theodore Van Hoven and SP Nesterov) celebrated its 30th anniversary in 2010. These scientists ultimately developed the underlying theoretical framework and analytical methods used in quantum nonlinear systems.

The working principle of the Biophilia NLS device system, which belongs to the category of biofeedback and "brain machines", is based on the foundations of the Nesterov-Van Hoven Quantum Entropy Logic Theory.

According to the Quantum Entropy Logic Theory, the information exchange between systems is carried out at a distance, correlated and selectively, because the energy of the quantum (biofield) magnetic vortex state is equal to the energy of the basic structure of the system (which is destructive). Since E=MC2, if M is destroyed, it will be converted to E. This E is entropy (disorder). The principles of the Entropy Logic Theory are confirmed by physical systems during the information exchange process, when the probability of the physical system being physically destroyed is greatly increased, an unstable magnetic vortex state is generated.

When the form of one of the two exchange systems A and B is destroyed, the intensity of information exchange between them increases. Thus, in the case of health, when parts of physical systems are degenerating, attacked by microorganisms or die in some way, their entropy increases, as do their associated unstable quantum (biofield) magnetic vortex states. The strength of any system is equal to the amount of information contained in it. This is why the destruction of the form of one system (A) while the information is transferred in parallel to another system (B) represents the law of conservation of information assumed by the theory of quantum entropy logic.

The theory of entropy logic states that these are physically real only if both systems A and B are quantum and the set of A and B can be described by a condition. This provides the information exchange that initially existed before the destruction of the structure of the system, which in the context of entropy logic links the two parts in a single quantum system, as it corresponds to the Einstein-Podolsky-Rosen effect. Therefore, since the individual is both physical = A and biofield = B (quantum part), they together form an aggregate, i.e. a condition.

The theory of quantum entropy logic allows us to elucidate many details of the basic psychophysical mechanisms used for the teleportation of information between two spatially different objects. The theory reveals the mechanisms of forming associations, information selectivity and other exotic information transmission mechanisms.

The basic principle of the system is the amplification of the start-up signal when the metastable structure is destroyed. Where the physical structure is degraded, the biofield is weak. Under the influence of the external electromagnetic field of the headset, the magnetic vortex state (moment) of the biofield associated with the molecular current of the brain nerve cells loses its original direction. This is equivalent to "the disorder of the non-local electron spin frame present in the degraded physical structure, which is the reason for the emergence of unstable magnetic vortex states in it. The disintegration acts as an amplifier in the start-up signal. From a physical point of view, the system represents a system of magnetic oscillators (cadistors) resonating at a specific wavelength with an energy equal to the destruction energy of the main biological links supporting the structural architecture of the examined organism. Information about the specific conditions of the biofield of the biological object can be read non-invasively by digital trigger sensors. Modern information technology and microcircuits detect the weak fluctuations of the signal from the average statistical noise characteristics of the field and convert them into digital form for input into the computer.

By comparing the chromatic gamma of the icons and their position on the computer model of the organ, as well as their time-varying dynamics, it is possible to judge the process of weakening of the biofield and the associated destruction of the biostructures in the prediction of the stabilization time.

Each cell has its own destructive energy, which is typical of certain intercellular molecular connections. By changing the characteristics of the calcified radiation of the NLS device, it is possible to destroy the intercellular structural links
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