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Disruptives covering of charge  e  Electron Electron orbit Nucleus Disruptives covering of charge  e  0 – PROTELF Capture – Principle Scheme PROTELF.

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Presentation on theme: "Disruptives covering of charge  e  Electron Electron orbit Nucleus Disruptives covering of charge  e  0 – PROTELF Capture – Principle Scheme PROTELF."— Presentation transcript:

1 Disruptives covering of charge  e  Electron Electron orbit Nucleus Disruptives covering of charge  e  0 – PROTELF Capture – Principle Scheme PROTELF = Proton – Electron Fusion State 0 – First orbit al electron and the nucleus show the dielectric with aleatory fields out of alignment and that does not permit the nucleus to be together with the electron.

2 Electron Electron Orbit Nucleus 1 – PROTELF Capture – Fields alignment State 1 – Applying an external electric and magnetic field with colinearity, the particles are aligned and that permits the electron to be together with the nucleus but kinetic energy maintains the electron in its orbit.

3 Electron Electron Orbit Nucleus State 2 – With a photon collision of the same energy as electron kinetic energy, this eletron is stopped. 2 – PROTELF Capture – Electron Stopped

4 Electron Nucleus 3 – PROTELF Capture – Fusion of the electron with nucleus State 3– Simple eletrostatic attraction causes the electron to fall inside the nucleus. The disruptive covering offers no opposition.

5 Unstable nucleus State 4 – The nucleus changes by one atomic number to the next lower atomic number. The nucleus is now in an unstable state. 4 – PROTELF Capture – Atomic State Changed

6 Electron Space energy impolsion: “ anti neutrino” Nucleus 5 – PROTELF Capture – Energy Contribution State 5 – Space surrounding the nucleus acts like an anti-neutrino in stabilizing the matter. This leads to the ejection of one electron of high MeV and the transmutation of the unstable element back to its original identity by increasing the number of protons by one.


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