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| published = 1993
| published = 1993
| journal = [[Galilean Electrodynamics]]
| journal = [[Galilean Electrodynamics]]
| volume = [[4]]
| volume = 4
| number = [[6]]
| number = 6
| pages = 107-108
| pages = 107-108
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==Abstract==
==Abstract==


When a charge moves, an electromagnetic field surrounding it appears. This field interacts with circuits, resulting in electromotive and ponderomotive phenomena. When a charge is at rest, the field reduces to the Coulomb field; the magnetic part of the Lorentz force '''F '''= <em>q</em>u X '''B '''is absent and neither pondero- nor electro-motive forces appear, <em>no matter how magnets and circuits move.</em> It is shown that neither absolute space nor STR are necessary to explain unipolar induction effect.[[Category:Scientific Paper]]
When a charge moves, an electromagnetic field surrounding it appears. This field interacts with circuits, resulting in electromotive and ponderomotive phenomena. When a charge is at rest, the field reduces to the Coulomb field; the magnetic part of the Lorentz force '''F '''= <em>q</em>u X '''B '''is absent and neither pondero- nor electro-motive forces appear, <em>no matter how magnets and circuits move.</em> It is shown that neither absolute space nor STR are necessary to explain unipolar induction effect.
 
[[Category:Scientific Paper|unipolar faraday generator revisited]]
 
[[Category:Electromagnetism]]

Latest revision as of 09:30, 21 July 2026

Scientific Paper
TitleThe Unipolar Faraday Generator Revisited
Author(s)Jorge A Guala-Valverde, Pedro Mazzoni
KeywordsUnipolar Faraday Generator, electromagnetic field, Coulomb field, Lorentz force
Published1993
JournalGalilean Electrodynamics
Volume4
Number6
Pages107-108

Abstract

When a charge moves, an electromagnetic field surrounding it appears. This field interacts with circuits, resulting in electromotive and ponderomotive phenomena. When a charge is at rest, the field reduces to the Coulomb field; the magnetic part of the Lorentz force F = qu X B is absent and neither pondero- nor electro-motive forces appear, no matter how magnets and circuits move. It is shown that neither absolute space nor STR are necessary to explain unipolar induction effect.