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Manifestation of eddy and meridian fields of systems

Yi Lin (School of Economics and Management, Nanjing University of Aeronautics and Astronautics, Nanjing, People's Republic of China and Department of Mathematics, Slippery Rock University, Slippery Rock, Pennsylvania, USA)
Xiaoya He (Department of Mathematics, Wuhan University of Science and Engineering, Wuhan, China)

Kybernetes

ISSN: 0368-492X

Article publication date: 16 March 2010

78

Abstract

Purpose

The purpose of this paper is to use the general systemic yoyo model to illustrate why electric fields and magnetic fields can manifest each other and interact with each other.

Design/methodology/approach

The coordinated interaction of eddy and meridian fields of spinning yoyos is employed as our methodology for the investigation in this paper. At the end, the First Law on State of Motion is beautifully utilized.

Findings

Among many new theoretical discoveries, systemic yoyo models are provided to understand electric currents and the induced magnetic fields, which lead to a distinction between the yoyo structures of permanent magnets and those of the magnetic field induced by electric currents. It is theoretically shown why all fields in nature, such as electric, magnetic, universal, gravitational, and nuclear fields, have to exist in pairs of opposite polarities, even though one polarity might not be visible or recognizable with the current technology. Using the quark structures of spinning yoyos, an explanation is provided for why protons carry positive electric fields, while neutrons are electrically neutral.

Originality/value

One of the originalities of this paper is about its unified theory underlying many observed phenomena of electric and magnetic fields.

Keywords

Citation

Lin, Y. and He, X. (2010), "Manifestation of eddy and meridian fields of systems", Kybernetes, Vol. 39 No. 2, pp. 251-262. https://doi.org/10.1108/03684921011021435

Publisher

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Emerald Group Publishing Limited

Copyright © 2010, Emerald Group Publishing Limited

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