The Effects of Interactions of the Extremely Low-Level …
45
Fig. 3 From [23]. The resonance curve in the experiment with electrodes outside the cell. Cell
with external electrodes and polarization 80 mV, Temperature: 22 °C, L-glutamic acid 38 mg/ml,
pH 2.89. B: 40 μT, Bo: 40 nT, Sweep time: 100 s, Total data current recorded: 100 s, Scan rate: 100
point/s, Peak resonance frequency 4,119 Hz. The resonance peak with maximum near the cyclotron
frequency of about 4.0 Hz. The abscissa: the scanning of frequency of alternating magnetic field.
The ordinate: the current in the coil detector
It corresponds to that case when the external surfaces of CDs under influencing
the ponderomotive forces have already attracted the ions of admixtures from solution
of glutamic acid, and system is under influence of a variable magnetic field; CDs are
located with a sufficient density.
Processes, discovered in water solutions of glutamic acid, have a direct relation
to the phenomena of L. Kervran, as not only show that super weak influences of
the fields can result in the very substantial response signals but also expose the
mechanism of the similar phenomena in the nanostructures of living organisms. M.
Zhadin considered that the effect opened by him can be the basis for the creation of
installations in which the realizations of processes of cold nuclear fusion are possible.
CDs of the water systems of alive organisms formed on nanostructures of cellular
systems stably exist long time; therefore, there are not the destructive effects, caused
by thermal fluctuations, as in distilled water.
It means that in biological systems the display of such a phenomenon (Zhadin
effect) is most complete.
Probably, such phenomenon determines the possibility of realization of reactions
of cold nuclear fusion in the alive organisms described by Kervran [26].
Such processes can arise only in the coherent water environment; therefore, it is
important that an external signal of electromagnetic fields should not exceed a level
which collapses a coherency of the water environment. It determines the top limit of
energy of the external fields corresponding to nonthermal influence on the coherent
macrosystems, especially on the macrosystems of alive organisms.
45
Fig. 3 From [23]. The resonance curve in the experiment with electrodes outside the cell. Cell
with external electrodes and polarization 80 mV, Temperature: 22 °C, L-glutamic acid 38 mg/ml,
pH 2.89. B: 40 μT, Bo: 40 nT, Sweep time: 100 s, Total data current recorded: 100 s, Scan rate: 100
point/s, Peak resonance frequency 4,119 Hz. The resonance peak with maximum near the cyclotron
frequency of about 4.0 Hz. The abscissa: the scanning of frequency of alternating magnetic field.
The ordinate: the current in the coil detector
It corresponds to that case when the external surfaces of CDs under influencing
the ponderomotive forces have already attracted the ions of admixtures from solution
of glutamic acid, and system is under influence of a variable magnetic field; CDs are
located with a sufficient density.
Processes, discovered in water solutions of glutamic acid, have a direct relation
to the phenomena of L. Kervran, as not only show that super weak influences of
the fields can result in the very substantial response signals but also expose the
mechanism of the similar phenomena in the nanostructures of living organisms. M.
Zhadin considered that the effect opened by him can be the basis for the creation of
installations in which the realizations of processes of cold nuclear fusion are possible.
CDs of the water systems of alive organisms formed on nanostructures of cellular
systems stably exist long time; therefore, there are not the destructive effects, caused
by thermal fluctuations, as in distilled water.
It means that in biological systems the display of such a phenomenon (Zhadin
effect) is most complete.
Probably, such phenomenon determines the possibility of realization of reactions
of cold nuclear fusion in the alive organisms described by Kervran [26].
Such processes can arise only in the coherent water environment; therefore, it is
important that an external signal of electromagnetic fields should not exceed a level
which collapses a coherency of the water environment. It determines the top limit of
energy of the external fields corresponding to nonthermal influence on the coherent
macrosystems, especially on the macrosystems of alive organisms.
