Graphene Oxide & The Mechanism for Connection to 5G Grid Magnetofection

Graphene Oxide ~ The Mechanism for Connection to 5G Grid Magnetofection.

Submitted by RT

Video:  13 Mins 15 Secs. English Subtitles…
https://odysee.com/@TimelessTruths:3/Graphene-Oxide-The-Mechanism-For-Connection-To-5G-Grid:9

Quick Summation: Masks contain Graphene Oxide… Swabs used in PCR Tests, and Antigen Tests, also contain Graphene Oxide Nanoparticles (GON).  All varieties of Covid ‘vaccines’ found to contain GON.  New Anti-Influenza ‘vaccines’ also carry GON.  Graphene Oxide is a Toxic that generates a Thrombi in an organism & causes an alteration in the Immune System. GON accumulates in the Lungs. It has powerful Magnetic influences in the body. Covid disease is the consequence of this. GON is notably powerful in Aerosols.  GON has an ‘Electronic Absorption Band.’  Specific frequency excites the GON very rapidly. Glutathione reserves adversely affected. The specific band is in the new 5G frequency being pushed now. The deployment of 5G towers never stopped during the ‘pandemic.’  Wuhan was the first pilot city for 5G application. The cause / aetiology of Covid is precisely this, a chemical toxicant. Glutathione depletes rapidly after age 65. This is a world wide bioterrorism attack on the populace, enabled by Governments.  Multi Tens of Thousands will die immediately when 5G is activated. Large portions of Countries have citizens already ‘vaccinated,’ but more GON will be injected into those having subsequent Flu jabs / Boosters with varying amounts of additional Toxicants within. 

The body has the ability to gradually eliminate GON (which is the reason for the expressed urgency to get ‘vaccinated’).

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GRAPHENE OXIDE DETECTION IN AQUEOUS SUSPENSION. OBSERVATIONAL STUDY IN OPTICAL AND ELECTRON MICROSCOPY .  PDF File 17 Pages.

https://odysee.com/@Docuteca:5/GRAPHENE-OXIDE-DETECTION-IN-AQUEOUS-SUSPENSION-:5

Interim report (I) June 28, 2021 Prof. Dr  Pablo Campra, Madrid. Doctor of Chemical Sciences and Bachelor of Biological Sciences.

Snippet (Images of GO): Graphene materials essentially consist of a single atomic layer. This makes absorbance-based light microscope observation difficult, although it is possible to acquire optical images of suspended graphene sheets under brightfield transmitted light (Fig. A). Oxidised Graphene (GO) has a much paler colour than Reduced Graphene (rGO). However, under reflective illumination, high-contrast optical imaging of Graphene and even GO sheets has been reported in literature. Modifying the angle of incidence of the illumination, by means of appropriate adjustment of the condenser (bright field and dark field), has been the technique used to increase the contrast in sample RD1 of this report and obtain images of the roughness on the surface of the sheets with 3D effect.

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