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11564474 No.11564474 [Reply] [Original]

Quick post about 5G here. I think people might be more interested in this matter seeing what's now unfolding aroudn us. Particularly the finding that "covid-19" entails an elevation of free iron in the blood, and that hemoglobin is not holding onto the iron. As usual, refer to:
http://www.mediafire.com/folder/dj875cd10yb72/EMF
"-Documents, links, information.txt"

Image is not mmWave by the way, just iconic.

--------------Effects on water, structure of water--------------
It has long been postulated that many RF effects originate from a change in the structural characteristics of water
[m][CIA] 1979 - TRANSLATIONS ON USSR SCIENCE AND TECHNOLOGY BIOMEDICAL AND BEHAVIORAL SCIENCES (FOUO 3 79) EFFECTS ON NONIONIZING ELECTROMAGNETIC RADIATION (JRPS 8591)
Page 7 (2): Il'ina SA et al - THE POSSIBLE ROLE OF WATER IN TRANSFER OF MILLIMETER RANGE RADIATION TO BIOLOGICAL OBJECTS
"A study was made of the effect of radiation in the millimeter range (RMR) on human hemoglobin and blood erythrocytes, which is manifested by enhancement (or attenuation) of the heme-globin bond and decrease in osmotic resistance of erythrocyte membranes, The observed effect could not be attributed to mere warming of the irradiated suspension. A maximum effect on erythrocytes was obtained in a strongly diluted suspension, when the energy absorbed directly by erythrocytes is at a minimum. The obtained data warrant the assumption that the effects of RMR on biological objects are determined by interaction between the biological object and water in the radiation field, and not by the magnitude of directly absorbed energy."

>> No.11564475

>>11564474


"Several studies have demonstrated the existence of a nonthermal effect of RMR on biological objects on different levels of organization, including the hemoglobin (Hb) macromolecule. To explain these effects, it was assumed that there is excitation of rotary oscillations of some dipole groups in the Hb active center, or else excitation of oscillations of protein as a whole was considered. Thus far, however, there is no explanation for the fact that the magnitude of the effect is lower in the case of irradiation of powder than aqueous solutions of Hb, At the same time, with a low concentration of Hb in water (c ~3-5%), as a result of considerable extinction of RMR in water, there is a relative decrease in RMR absorption by protein, the thickness of the irradiated layer being constant, with decrease in wavelength. Thus, the conception that the effects are determined by the field that permeates biological objects apparently requires more exact definition."

"Effects of RMR on aqueous solutions of Hb: It has been shown that RMR (6-8 mm) [37.474 - 49.965 GHz] has an effect on aqeuous solutions of Hb obtained from human erythrocytes; there was strengthening or weakening of the heme-globin bond. It was interesting to investigate the effects of shorter waves on Hb using the same method."
[...]

>> No.11564480

>>11564475
"Thus, our study of the effects of RMR on stability of the heme-globin bond in Hb in aqueous solutions and osmotic stability of E membranes containing Hb indicates that the magnitude of the effects are retained when solutions of Hb are used instead of dry preparations thereof, with reduction of wavelength, as well as an appreciable correlation between the level of nonthermal effect of RMR on E and concentration of the latter in the suspension. A maximum effect was obtained with strongly diluted specimens, when the overall energy directly absorbed by E is at a minimum. The obtained data warrant the assumption that the effect of RMR is not determined by the magnitude of absorbed energy, but by its interaction with the aqueous medium in the radiation field (for example, through the hydrate membrane of macromolecules and biological structures). For the time being, on the basis of the factual data, we can only assume that the effect of RMR on aqueous solutions of Hb and E suspensions is not related, to some extent, to the optical thickness of the irradiated specimen, i.e., it is determined by processes at the surface of the solution.

>> No.11564486

>>11564480
The described distinctions of RMR effects can be attributed, for example, to excitation in water of oscillations of the quasicrystalline (like ice) structure of water. We know of effects (used to measure force of RMR) of the mechanical action of coherent radiation on macroscopic objects with time-averaged force of radiation pressure. Perhaps, when biological objects are exposed to RMR transfer through water of an effect that is variable in time, i.e., that depends on the signal frequency, plays a role. The possibility of such an effect is attributable expressly to absorption of wave energy by the surface layer ^l skin^«l). The variable force of radiation pressure p(t) is determined only by its intensity I (I can reach several dynes/cm2, which is higher by a factor of 10^4-10^5 than from noncoherent sources). It is rather important that the macromolecules themselves and other structures present resonance oscillations expressly in the millimeter and submillimeter ranges of waves. Excitation of protein oscillations as a "solid body" in the case of macromolecules can apparently lead to "warming" of the active center, which is related to changes in biological structures that are manifested in experimental observation of the effects."

Also, I forgot the video.
https://www.youtube.com/watch?v=6Dwcfye7_LQ

>> No.11564490

Congratulations you've invented a microwave generator, can I interest you in a timer, I need to cook my tendies real quick

>> No.11564493

Study up on this Spread this information. 60 GHz oxygen absorption spectrum as well.

>> No.11564496
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11564496

>>11564474
>>11564475
>>11564480
>>11564486

>> No.11564601

>>11564474
AAAAAAAAAAAAGGH