Is the vaccine also activated by electromagnetic waves?
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Think along the lines of: Polarization is the existence of opposite electrical charges on either side of a cell membrane (difference in inside a cell versus the outside of the cell) Depolarization is the state which the cell membrane change from positive to negative charged outside the cell and from negative to positive charge inside the cell.
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Substances to revert change from the covid-19 shots?
Neutralize the damaging graphene Oxide?
The obvious cause is that the goverment lied through it’s teeth and is really using alternating high/low pressured wave antennas; focussing the irrradiation on the people, that ionizes the nanoparticle viruses, that induces oxidative stress through the charge of a dipole magnetic moment, that generates electricity, that produces electron transfer, that also creates unpaired free radicals that ultimately leads to apoptosis and cell death.
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"Delta" isn't just a new version of COVID...
It's ALSO a 5G Upgrade !
Delta waves are high amplitude neural oscillations with a frequency between 0.5 and 4 hertz. Delta waves, like other brain waves, can be recorded with electroencephalography and are usually associated with the deep stage 3 of NREM sleep, also known as slow-wave sleep, and aid in characterizing the depth of sleep
D wave, an electronic wave function of the d atomic orbital.
How D-Wave Systems Work. D-Wave systems use a process called quantum annealing to search for solutions to a problem. In nature, physical systems tend to evolve toward their lowest energy state: objects slide down hills, hot things cool down, and so on. This behavior also applies to quantum systems.
It is shown that sonication of phospholipid-water dispersions below the crystalline leads to liquid crystalline phase transition temperature (Tc) produces bilayer vesicles with structural defects within the bilayer membrane, which permit rapid permeation of ions and catalyze vesicle-vesicle fusion. These structural defects are annihilated simply by annealing the vesicle suspension above Tc. The rate of annealing was found to be slow, of the order of an hour for T = 3 degrees C above Tc, but annealing is complete within 10 min for T = 10 degrees C above Tc.
It is proposed that these structural defects are fault-dislocations in the bilayer structure, which arise from a population defect in the distribution of the lipid molecules between the outer and inner monolayers, when small bilayer fragments reassemble to form the small bilayer vesicles during the sonication procedure. Such a population defect can only be remedied by lipid transport via the inside in equilibrium outside flip-flop mechanism, which would account for the slow kinetics of annealing observed even at 3 degrees C above the phase transition.