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Absorption of electromagnetic energy by biological molecules
Biological molecules can absorb energy at specific discrete frequencies in the form of energy packets or quanta. This is based on the physics principle of resonance where each quantum transfers energy to the molecules in proportion to the specific frequency of that quantum (Heynick, 1987). High-energy electromagnetic fields can cause heating, ionization and destruction of biological tissue, but lower energy fields have other more subtle biological effects. At low energy levels when resonance energy transfer occurs the transfer of charge is the main effect not heating.

Quantum energy absorption is essentially a microscopic phenomenon where the chemical composition and molecular configuration of the molecules in a cell determine the specific frequencies or characteristic spectra where such absorption can occur (Heynick, 1987).

According to Louis Heynick, low energy frequencies can change the orientations and configurations of molecules without altering or destroying the basic identities of the molecules (Heynick, 1987).

"Indeed, cooperative interactions occur among subunits of molecules within biological cells, in membranes and other cellular structures, and in extracellular fluids; in such interactions, the energy absorbed at one specific site in a structure (in a membrane or in a biological macromolecule, for example) may not be sufficient to disrupt a bond but could alter a process at the site or elsewhere in the structure, or trigger a function of the structure as a whole by release of the energy stored in the structure, thereby producing biological amplification of the incident quantum of energy (Heynick, 1987)."

In order to resonantly activate specific biological molecules that are involved in certain metabolic reactions in biological tissues, the selection of electromagnetic frequencies must be matched to and specific for the absorption spectra of the molecules involved in the chemical reaction that you want to effect.

The key conceptual problems that must be addressed in order to use electromagnetic frequencies to activate biological processes are: a) identifying the molecules/proteins/ enzymes/reactants that are involved in the metabolic reactions you want to influence, [this can be accomplished by studying biochemistry texts that describe biochemical reactions]; b) identifying the specific electromagnetic frequencies that can produce resonance in these molecules so that activation of the biochemical process is enhanced, [this can be accomplished by studying physics textbooks that describe the absorption spectra of different molecules]; c) developing an effective delivery system to efficiently transfer these frequencies into the body, [this requires research and experimentation].

LifeWave LIFEWAVE patch technology has overcome these conceptual barriers by formulating mixtures of orthomolecular organic chiral molecules specific for certain biochemical processes. The interaction of the natural molecules contained within the patches with the body's thermomagnetic field produces a specific set of oscillating bioelectrical signals that are transmitted into the body just like radio signals are sent from a transmitter to millions of home radios (receivers). Molecules that are already pretuned to the frequencies being transmitted receive these specific bioelectrical signals. When the frequency specific energy is absorbed by these molecules activation of biochemical reactions that are already naturally occurring can be enhanced.



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