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Unified Field Theory and Topology of Atom
Author(s) -
Zhiliang Cao
Publication year - 2014
Publication title -
american journal of modern physics
Language(s) - English
Resource type - Journals
eISSN - 2326-8891
pISSN - 2326-8867
DOI - 10.11648/j.ajmp.20140306.18
Subject(s) - physics , proton , atom (system on chip) , electron , topology (electrical circuits) , zeeman effect , octahedron , field (mathematics) , theoretical physics , atomic physics , magnetic field , quantum mechanics , ion , computer science , mathematics , combinatorics , embedded system , pure mathematics
The paper "Unified Field Theory and the Configuration of Particles" opened a new chapter of physics. One of the predictions of the paper is that a proton has an octahedron shape. As Physics progresses, it focuses more on invisible particles and the unreachable grand universe as visible matter is studied theoretically and experimentally. The shape of invisible proton has great impact on the topology of atom. Electron orbits, electron binding energy, Madelung Rules, and Zeeman splitting, are associated with proton’s octahedron shape and three nuclear structural axes. An element will be chemically stable if the outmost s and p clouds have eight electrons which make atom a symmetrical cubic.

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