Abstract

Experimental and theoretical researches performed by the author (period: 1969-present) showed that the magnetic spinor particles (magnetic charges) are real structural components of atoms and substance and are immediate sources of all mag-netic fields and magnetic manifestations in Nature. Magnetic charges, which constitute together with electrical charges the atomic shells, got of the Author’s title: magnetons and antimagnetons (respectively, with magnetic charges g− and g+, under fundamental condition: g = e). Besides, together with electrons and magnetic charges in the structures of atomic shells, in the same quantities as the electrons, exist real electric antispinors, i.e. the true antielectrons. In the structures of the atomic shells on each electron fitted still three a real spinor particles: two magnetic (magneton and antimagneton) and one electric, i.e. true antielectron with a charge of e+. The spinor particles in atomic shells exist in the form of the two spinor associations: the electromagnetic dibispinors or S-Gravitons and magnetic bispinors (spinorial magnetic dipoles). Magnetic bispinors, which inhabited on the 3d and 4f-shells are the sources of the atomic magnetic fields and are responsible at all magnetic manifestations of the so-called magnetic atoms (iron, nickel, cobalt and others). In composition of S-Graviton is two related bispinor (electric and magnetic). S-Gravitons make up bulk of the charged density of atomic shells and are direct sources of the atomic gravitational field.If to replace all electrons on known of the atomic levels and sub-levels on S-Gravitons, can get an idea about the real electromagnetic device atomic shells most of the elements making up the Periodic Table. In article shows features the structural organization real (electromagnetic) shells of atoms that make up the periodic system of elements, as well as is considered the possibility of adaptation of the well-known quantum numbers, the Pauli’s principle and Hund’s rule, in relation to the atomic electromagnetic device. The main reasons for the fact that the real magnetic charges, as well as the true antielectrons, were “buried alive” in the modern theories are as physics confinement them in atoms and substance, which is cardinally different from the confinement, for example, electrons, so and vicious electromagnetic concept of Maxwell. In the framework of this concept really existing in atoms and substance the magnetic charges, have been mistakenly substituted on acts of the mechanical displacement of electrical charges.

Highlights

  • Experimental and theoretical researches performed by the author showed that the magnetic spinor particles are real structural components of atoms and substance and are immediate sources of all magnetic fields and magnetic manifestations in Nature

  • The spinor particles in atomic shells exist in the form of the two spinor associations: the electromagnetic dibispinors or S-Gravitons and magnetic bispinors

  • The results of years research of the real magnetic spinor particles allowed the author to formulate the conception of the Physical Triad (PT), according to which the real World consists of three fundamental phases: Matter, Antimatter and Energo-medium [10] [18]

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Summary

The Essence of the Physical Mass

Since 2001 (publication [1]) the author has been proving in all his publications that such a structural formation as Physical mass (PM), for example, atoms or nucleons aredynamic spinor EM-complex, consisting of four independent fundamental particles: two spinors (electric and magnetic) and two antispinors corresponding to them. Without such a quartet physical mass can’t arise. It should be noted that all known varieties of Mass (atoms, nucleons, substance, etc.) should be called EM-masses so as they are formed from particles, the constituents the block of electromagnetic particles. The question of the existence, so-called weak the Masses, which could be formed by weak spinors and antispinors, remains open

Physical Triad and “Dark Energy” in the Real World
Main Types of the Intra-Atomic and Interatomic Interactions
Conclusions
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