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An Interpretation of Faraday's Lines of Force
 
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{{Infobox paper
| title = An Interpretation of Faraday's Lines of Force
| author = [[David Tombe]]
| published = 2019
| url = https://www.gsjournal.net/Science-Journals/Research%20Papers-Mechanics%20/%20Electrodynamics/Download/7710
}}
==Abstract==
The magnetic field is solenoidal, yet the Biot-Savart Law which is the textbook equation for the magnetic field, indicates the existence of a singularity owing to the fact that it involves an inverse square law in distance. This dilemma is solved within the context that an individual magnetic line of force constitutes a double helix of sinks and sources closed on itself to form a toroidal ring vortex.
The magnetic field is solenoidal, yet the Biot-Savart Law which is the textbook equation for the magnetic field, indicates the existence of a singularity owing to the fact that it involves an inverse square law in distance. This dilemma is solved within the context that an individual magnetic line of force constitutes a double helix of sinks and sources closed on itself to form a toroidal ring vortex.
[[Category:Scientific Paper|interpretation of faraday's lines of force]]
[[Category:Electrodynamics|interpretation of faraday's lines of force]]

Latest revision as of 07:06, 22 July 2026

Scientific Paper
TitleAn Interpretation of Faraday's Lines of Force
Read in fullhttps://www.gsjournal.net/Science-Journals/Research%20Papers-Mechanics%20/%20Electrodynamics/Download/7710
Author(s)David Tombe
Published2019

Abstract

The magnetic field is solenoidal, yet the Biot-Savart Law which is the textbook equation for the magnetic field, indicates the existence of a singularity owing to the fact that it involves an inverse square law in distance. This dilemma is solved within the context that an individual magnetic line of force constitutes a double helix of sinks and sources closed on itself to form a toroidal ring vortex.