Mr. ElectroMagnetics: ‘Depositing’ or Spraying A Computer in the Sky / By placing all of these semiconductor elements into gaseous plasma form, a semiconductor can be created on gaseous plasmonic form. Just as solid state semiconductors form the basis of a solid state computer, gaseous plasmonic semiconductor material could be used to create a gaseous plasmonic computer in the atmosphere above our heads.

Feb.24, 2017 (above) Eastern Pacific http://go.nasa.gov/2lWA7UZ

“Unknown to most, it became exceedingly clear by approximately 2025 that governments had in fact reengineered [geoengineered] Earth’s atmosphere, its oceans and the planet’s electromagnetic grid to facilitate the use of scalar and sonic technology in such a way as was harmful and in some cases detrimental globally.”   
— Timeline Collapse & Universal Ascension by E.M. Nicolay & H.L. Jang

Image (above) is my screenshot taken from a video by ‘RichieFromBoston’. Thank you!

Mr. ElectroMagnetics on ‘Depositing’ or Spraying A Computer in the Sky:

An aircraft going through the sky creates natural air turbulence. The turbulence will facilitate the mixing of the chemtrails. The mixing is depending on the amount of turbulence in the air created by the airplane. The make up of the chemtrails is nano-particles. These nano-particles will have a level of dispersion due to the turbulence in the air created by the aircraft. The existence of the turbulent air, limits and/or controls the amount of dispersion. In order to increase the dispersion rates, additional means must be used in the control system of the chemtrails. The control system basically consists of the aircraft flying through the air, creating turbulence in the air in the wake of the aircraft.

The mixing of the chemtrails is determined by the turbulence of the aircraft wake. In order to improve or maximize dispersion, additional means/methods within the control system must be utilized within the control system to maximize dispersion rates. The main fundamental element of the dispersing of the chemtrails is created by the turbulence of the aircraft through the air, creating a wake.

Above image contrast enhanced to show structural properties.

Whenever I can do something one way, I can do the same thing other ways.

The primary mixing element is the disturbance of the airplane’s wake moving through the air. Thermal and heat energy increases the dispersion rates. Transverse electric-magnetic energy also increase the dispersion rates. Acoustical, scalar electromagnetic energy also increases the dispersion rates.

In order to get the maximum dispersion rates, any and every means of dispersal must be utilized. One has the turbulence of the aircraft to initially disperse the chemtrails. The heat of the engines increases thermal dispersion rates.

Transverse electro-magnetic energy can be used to increase the dispersion rates. Longitudinal Scalar magnetic energy can be used to increase dispersion rates.

[For those of you who want to learn, here is a wonderful source for Longitudinal & Transverse Waves]:

http://www.acs.psu.edu/drussell/Demos/waves/wavemotion.html

 

Image (above) is a screenshot taken from a YouTube video by ‘RichieFromBoston’.  I removed the blue-sky color and used sepia enhancement to show the pulses more clearly.

This video (link) indicating bright and dark spots, in the chemtrail, indicates additional methods being utilized to increase dispersal rates. These bright & dark spots in the trailing chemtrails suggest the use of a trailing wire that is being utilized to inject additional electromagnetic energy into the chemtrail stream. This energy may be in the form of R/F radio waves (transverse electro-magnetic waves), longitudinal scalar magnetic energy, acoustical energy, and/or microwave energy.

An indication of wavelength of the energy would be the bright and dark spots in the chemtrails, indicating the wave length of the energy and therefore indicating the frequency of that energy.

The purpose of putting this ‘metalized’ material — consisting of aluminum, barium, strontium, lithium, fibers, carbon, etc. — would be the ubiquitous introduction of some sort of shield or characteristic defense grid.

Above image contrast enhanced to show structural properties.

As previously discussed, a semi-conductor electronic device is built out of the metal and non-metal elements from the Periodic Chart in a solid state form, consisting of Germanium and Silicon and their corresponding dopants. This describes solid state semiconductors.

As previously discussed, a plasmonic gaseous computer or plasma based semiconductor device can be created in a plasma gaseous form. There are four states of matter: solid, liquid, gaseous, and plasmas. Plasmas are an electrically activated substance. Elements from the Periodic Chart in the solid form are described as solid state electronics. Semiconductors in the gaseous form could be utilized when electrically energized to become a gaseous plasma based semiconductor.

By placing all of these semiconductor elements into gaseous plasma form, a semiconductor can be created on gaseous plasmonic form. Just as solid state semiconductors form the basis of a solid state computer, gaseous plasmonic semiconductor material could be used to create a gaseous plasmonic computer in the atmosphere above our heads.

This gaseous semiconductor in the sky substantially creates a computer in the sky, which can be programmed to accomplish any desire of the computer programmer in accordance with the computer software. This would lead to a computer in the sky under computer software control. The computer can be programmed to allow objects to pass through this shield environment, or the computer can prevent something from passing through this defense shield.

The trailing wire gives indication of the frequency programming of the computer in the sky. It is left to the individual’s imagination as to the other potential uses of this computer in the sky.

VSF: My thanks to Mr. ElectroMagnetics!

East of the UK (above) / Feb.17, 2017                                                                     http://go.nasa.gov/2lgFGe6

East of Hokkaido Japan (above) / Sept.17, 2017. The contrast & sepia enhanced. https://go.nasa.gov/2xUK9Ir

Aug.17, 2017 / Off the California coast. Is that “brown” smoke or coal ash in the center of the rectangle?                                                                                                              https://go.nasa.gov/2wffp8c

Off the California coast / Sept.13, 2017 – detail                                                                 https://go.nasa.gov/2zdckne

California coast / Sept.13, 2017                                                                              https://go.nasa.gov/2y7KBEj

Sept.30, 2017 / Pacific Ocean off Baja – contrast enhanced slightly                 https://go.nasa.gov/2y6TTTz

Oct.6, 2017 / detail eastern Pacific                                                                           https://go.nasa.gov/2y6Cjz8

Sept.15, 2017 / eastern Pacific                                                                                  https://go.nasa.gov/2vZwW0A

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