Technology-Oscillations:

Direct-EMF:

High frequencies of EMF contain a high enough energy in each quantum to be able to directly split apart molecules into ions. This is called ionizing radiation. It ranges from the higher frequencies of the Ultraviolet and higher.

Radioactivity:

Radioactivity exposure may come from military, industrial and medical uses, products and wastes. Some specific sources of high level exposure include nuclear reactors (e.g. Three Mile Island, Chernobyl), cyclotrons, linear accelerators, alternating gradient synchrotrons, and the radioactive Cobalt and Cesium used in cancer therapy. In addition to the normal background radiation from the earth and the cosmos, there is now a higher background radiation due to atmospheric testing of nuclear weapons.

The average radiation exposure in the U.S.A.; was estimated at 184 mrem per year before the Chernobyl accident. Less than half of this was natural exposure. It was composed of the following sources:

  • 49.4% iatrogenic (medically caused) radiation, composed of xrays (41.8%) and radioactive pharmaceuticals (7.6%).
  • 44.6% natural background radiation from cosmic, terrestrial and internal sources.
  • 2.4% fallout from nuclear weapons testing. Of course for some individuals who were not far downwind of tests, e.g. in Nevada exposure was much higher. Also, hot-spots remain near test sites in several states and Pacific islands, with continued concentration of radioactive elements in the food chain.
  • 1.9% radiation from consumer products. With the advent of food irradiation, the question not only of biochemical alteration of the molecular structures in food, but also of the resonance characteristics of the radiation source being imparted to the food becomes very significant.
  • 0.3% radiation exposure during travel by airline. The exposure is made worse by the concurrent frequency stress of "jet lag," i.e. the altering of circadian rhythm phases
    .

These figures are calculated by the amount of energy in the exposure. What is even more important, but much less studied, understood, or even discussed, is the differential effects based upon the specific photon carrier frequency of each radiation source together with the characteristic waveform information carried by that quantum. It precisely this detailed information which is lacking that is needed know the true risks involved in exposure to various radiation sources. In the mean time, while it is only possible to minimize exposure to harmful ionizing radiation, the fact remains that there is no dosage, which can be considered "safe." Some approaches to mitigating the harmful effects of exposure are considered in the solutions section of Electromagnetic Pollution Solutions. In depth study of clinical research going on in this field is available in practitioner training courses.

Types of radioactivity include the following:

  • Neutrons: These are relatively massive particles with no electrical charge.
  • Protons: These are also relatively massive, and in addition, carry a single positive electrical charge.
  • Alpha particles: These are high velocity protons or Helium ions.
  • Beta particles: These are high velocity electrons, which, like all electrons, do have a slight mass. They are used medically from sources like radioactive Iodine (131I), Gallium (67Ga), and Xenon (133Xe).
  • Gamma rays: These are short wavelength x-rays. This means they are electromagnetic quanta of very high energy, with no mass.
  • X-rays: These are commonly used in medical, dental and chiropractic diagnosis. They are high-energy electromagnetic quanta, having enough energy to ionize atoms that absorb them. Thus, they are a type of ionizing radiation.

U.V.:

UV: ultraviolet or black light, is one component of full spectrum light. It is not visible, except in high intensity for the frequencies near the visible range. Many biological molecules absorb strongly in the UV range, including proteins, enzymes, hormones, and neurotransmitters. Many beneficial effects of normal levels of UV light exposure, as normally received from sunlight, have been studied. Among these are:

  • Vitamin D production , , , , requiring UV exposure is our primary source of Vitamin D, accounting for about 60% of the body�s supply. This is because dietary vitamin D is poorly absorbed from the digestive tract.
  • 40% increase in Calcium absorption.
  • Increased absorption and utilization of other minerals.
  • Decreased blood pressure for almost a week following exposure.
  • Cardiac output improves by 39%.
  • Circulation, EKG and blood profiles improve, even for people with hardening of the arteries. , , ,
  • Cholesterol is decreased 13% within hours, and the level stays low for most people for at least a day. Other fat levels are reduced as well.
  • Weight regulation is improved. UV helps with the regulation of the thyroid-gland.
  • Psoriasis improves in 80% of cases.
  • Other health conditions improve or are prevented, including black lung disease, asthma, infectious diseases, and tuberculosis , , . At least 165 diseases have been treated with UV light.
  • Both male and female sex hormones are stimulated by UV light. Male hormone levels increase 120%.
  • UV activates a skin hormone called solitrol, which is thought to be a form of Vitamin D3. It works to counterbalance melatonin, the hormone of darkness, produced by the pineal at night. Solitrol, the hormone of light, affects regulation of the whole body including the immune system, mood, circadian rhythms and seasonal responses.

Ionizing-U.V.:

The highest frequencies of the UV range are ionizing radiation, while those closer to the visible range are non-ionizing.

  • Ionizing UV radiation is composed of Far UV and Mid UV. Far UV is the farthest of the UV light from the visible spectrum, hence its name.
  • Far UV, or UVC, ranges from 1.0 x 1015 Hz to 3.0 x 1015 Hz. In terms of wavelength, this is equivalent to 100 to 290 nm. It is filtered out by the ozone layer of the upper atmosphere, but holes are developing in this protective filter. UVC is kills microorganisms, including bacteria, viruses, and fungi. In excess, or when absorbed by toxic chemicals present in the skin, it can also damage human cells, causing sunburn and predisposing to skin cancer.
  • Mid UV, or UVB, extends from 9.4 x 1014 Hz to 1.0 x 1015 Hz. This is 290 to 320 nm. It is necessary for the production of Vitamin D in the skin, which then promotes Calcium and other mineral absorption. Individuals who do not get UVC from sunlight show poor Calcium metabolism. This is especially true of older people who don't get outdoors very much.

Non-ionizing-U.V.:

Non-ionizing UV light is the Near UV, named for its proximity in the electromagnetic spectrum, to the visible portion.

  • Near UV, or UVA, ranges in frequency from 7.89 x 1014 Hz up to 9.38 x 1014 Hz. In wavelength, this range is 320 to 380 nm. This is the portion of the electromagnetism spectrum responsible for suntan, caused by increased production of melanin in the skin in response to UV absorption
    .

Non-ionizing radiation has less energy per quantum and thus does not directly ionize or split molecules by breaking covalent bonds between the constituent atoms. The energy content per quantum is in direct proportion to the frequency of oscillation, related by Planck's constant. In the past, the main concern with the vast range of non-ionizing EMF radiation was with general thermal effects; that is, the only question asked was the one which could be answered simply: What is the increase in temperature due to the energy absorbed. However, biophysics demands that the specific effects of the EMF be considered even if we do not have all the answers to the questions this raises.

For example, we know that ionizing radiation produces free radicals which oxidize cellular components, causing degeneration in structure and function. We know that free radical pathology is also produced in virtually every disease state as a common final pathway of degenerative tissue change. Under specific physiological conditions, specific non-ionizing EMF resonance energies will also trigger biochemical production of free radicals, thus in the end causing the same kinds of destruction and disease as ionizing radiation. The specific conditions have to do with the biochemistry which is absorbing the photons, and the degree to which the specific quantum energies absorbed (by the electrons around the atoms within the molecules, which thus change to different orbitals, with different spatial and reactive qualities) meet the activation energies and spatial configurations necessary to trigger biochemical reactions.

It is precisely the wavelength (frequency) and characteristic waveform of the photons received by the body during bio-energetic resonance testing that carry the specific information to which the body then responds. Research at the Hans Brugemann Institut in West Germany has demonstrated the correspondence between electrical oscillatory frequencies and homeopathic potencies. Matt Van Benshoten, O.M.D., C.A. of California has related photon frequencies (which are much higher than electron frequencies because of the damping effect of the mass of an electron) to homeopathic potencies using Dinshah's color filters. These results are summarized in the table below. Note that the biologically active photons emitted by homeopathic remedies are in the visible range of the electromagnetic spectrum.

Frequencies of the Vision-Spectrum

Homeopathy
Potency

Electron
Frequency
Color Photon
Frequency
Tincture (0) 0-100 Hz Red 4.4 x1014 Hz
3 X 100-250Hz Orange 4.7 x 1014 Hz
6 X 250-500 Hz Yellow 5.1 x 1014 Hz
8-10 X 500-1,000 Hz Yellow 5.3 x 1014 Hz
12 X 1,000-2,500 Hz Lemon 5.5 x 1014 Hz
15 X 2,500-5,000 Hz Lemon 5.6 x 1014 Hz
30-60 X 5,000-10,000 Hz Green 5.8 x 1014 Hz
100 X 10,000-25,000 Hz Turquoise 6.0 x 1014 Hz
200 X 25,000-50,000 Hz Turquoise 6.2 x 1014 Hz
400 X 50,000-100,000 Hz Blue 6.4 x 1014 Hz
1 M above 106 Hz Blue 6.6 x 1014 Hz
10 M above 107 Hz Indigo 6.9 x 1014 Hz
50 M above 5 x 107 Hz Magenta blue+red
CM above 108 Hz Violet 7.3 x 1014 Hz
MM above 109 Hz Scarlet red+magenta
10 MM above 1010 Hz Purple blue+magenta

Magenta, Scarlet and Purple are produced by combinations of spectral colors, so single representative frequency is difficult to assign. Their resonance with high potencies may be related to higher harmonics of the visible frequencies transmitted by these filters. Magenta, Scarlet and Purple would each be expected to have harmonic beat frequencies within the appropriate range of 7 to 9 x 10_4 Hz. The specific mechanisms of such complex harmonic filter effects are very likely to depend upon not merely the general band pass frequency distribution, but also the specific absorptive compounds present in the filter which determine the precise optical density for each frequency of photons across the spectrum. See Electromagnetic Pollution Solutions and the volume Color & Light and notes on Color Therapy for further information on color therapy and other uses of color filters in relation to EMF.

Any frequency as represented in this table may act as a carrier frequency for a given characteristic waveform, which determines the information content of the photon. Thus the message and the biological response to a given homeopathic potency (e.g. 30 X) depends upon the substance from which it was produced (e.g. Nux vomica versus Cinchona There is, however, also a qualitative difference in the organism�s carrying the same characteristic waveform information. Thus a higher frequency, which corresponds to more energetic photons, will result in a deeper and more lasting effect upon the organism. Research by Fritz Popp in Germany shows a high level of DNA bio-photon interaction in both developmental and degenerative phases of the life cycle as compared to periods of relative biological stability. It is through this mechanism that high potency homeopathic energies can alter the course and propensity to disease, through interaction with miasmatic resonance in the DNA. Another example of the profound effects of photon resonance in biological systems is photo-toxicity and photo-allergy. Toxins and allergens absorb photons at specific resonant frequencies. The result is electrons shifting to a higher energy orbital, thereby becoming more biologically active. By the nature of the molecule's activity in the biological system, it becomes more toxic, or allergenic. Photo-toxicity reactions include the following sources.

  • Medications including sulfonamides, tetracyclines, thiazides, griseofulvin are known to be phototoxic.
  • Foods and herbs: margarine, parsley, and meadow grass can produce phototoxicity. A study in Australia found that sunbathers who ate margarine versus butter were 700% more likely to develop skin cancer. This is due to the phototoxicity of the synthetic chemicals in margarine. A good substitute called "Better Butter" can be home-made by mixing 1 lb. of butter, 1 cup of a good virgin, cold-pressed oil like safflower oil, 4 Tablespoons of lecithin granules and 600 I.U. of Vitamin E.
  • Disease conditions: Systemic Lupus Erythematosis (SLE) and cutaneous Lupus Erythematosis (LE), xeroderma pigmentosum and certain porphyrias.
  • Chemicals: some toilet waters and bergamot containing perfumes, topically applied sulfonamides, coal tar, halogenated salicylanilides (in some soaps)
  • Most suntan lotions can be carcinogenic when the PABA they contain is activated in the sun.

For specific mineral resonance information, see the elements by color resonance, colors of the elements, orbitals and the biofield layers. Then proceed to the section on the electromagnetic resonance of phenolics and other ring structures

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