Faraday's Equation: Difference between revisions
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| keywords = [[Mass]], [[Charge]], [[Oxidation state]], [[Ether]], [[Photon cluster]], [[Electrolysis]], [[Faraday]] | | keywords = [[Mass]], [[Charge]], [[Oxidation state]], [[Ether]], [[Photon cluster]], [[Electrolysis]], [[Faraday]] | ||
| published = 2009 | | published = 2009 | ||
| num_pages = 4 | | num_pages = 4 | ||
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Revision as of 19:28, 18 July 2026
| Scientific Paper | |
|---|---|
| Title | Faraday\'s Equation |
| Read in full | Link to paper |
| Author(s) | Francis Viren Fernandes |
| Keywords | Mass, Charge, Oxidation state, Ether, Photon cluster, Electrolysis, Faraday |
| Published | 2009 |
| No. of pages | 4 |
Read the full paper here
Abstract
Faraday's equation in electrochemistry is deciphered. A quantum of photons clusters about a 186-seed ether mass. This cluster of photons is atomic mass-the in-situ structure of an atom. The seed 186-ether is what scientists and electricians measure as electric charge. Electrolysis of water is experimental proof for existence of ether. Furthermore, the cluster of 69 million Rydberg photons is a measure of atomic mass of a proton. Similarly, the mass of 1.095 x 109 Rydberg photons is a measure of atomic mass of an oxide ion. Oxidation number is defined as the number of 186-ether seeds cocooned by photons. A novel way of rewriting the periodic table is suggested.