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Union of Euclid's Axiomatic Method with Newton's Empirical Scientific Method Leads to an Improved Electrodynamic Force: Difference between revisions

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{{Infobox paper
{{Infobox paper
| title = Union of Euclid?s Axiomatic Method with Newton?s Empirical
| title = Union of Euclid's Axiomatic Method with Newton's Empirical
| url = [https://web.archive.org/web/20120412194208/http://www.commonsensescience.org/pdf/articles/improved_axiomatic_version_of_electrodynamics_fos_v14n3.pdf Link to paper (Internet Archive)]
Scientific Method Leads to an Improved Electrodynamic Force
Scientific Method Leads to an Improved Electrodynamic Force
| author = [[Charles William Lucas]]
| author = [[Charles William Lucas]]
| keywords = Electrodynamic Force, Newton, special relativity theory, conservation of energy, Philosophy of Science
| published = 2011
| published = 2011
| journal = [[Foundations of Science]]
| journal = [[Foundations of Science]]
| volume = [[14]]
| volume = 14
| number = [[3]]
| number = 3
| num_pages = 14
| num_pages = 14
}}
}}
'''Read the full paper''' [https://web.archive.org/web/20120412194208/http://www.commonsensescience.org/pdf/articles/improved_axiomatic_version_of_electrodynamics_fos_v14n3.pdf here] ''(archived copy — the original link is no longer available)''


==Abstract==
==Abstract==


Euclid?s rigorous axiomatic method of deriving theorems/theories is reviewed as well as Newton?s less rigorous empirical scientific method. Then the method of Maxwell is introduced showing a partial combination of the axiomatic and empirical scientific methods. Finally the union of the axiomatic and empirical scientific method is perfected to obtain an improved version of the electrodynamic force law capable of replacing the original electric force law and magnetic force law. The inclusion of the finite size of charged particles plus the conservation of energy and Newton?s 3rd Law as embedded in Lenz?s Law appear to be capable of enhancing the electrodynamic force law and the equations of electrodynamics such that there is no longer a role for Einstein?s Special Relativity Theory in electrodynamics.
Euclid's rigorous axiomatic method of deriving theorems/theories is reviewed as well as Newton's less rigorous empirical scientific method. Then the method of Maxwell is introduced showing a partial combination of the axiomatic and empirical scientific methods. Finally the union of the axiomatic and empirical scientific method is perfected to obtain an improved version of the electrodynamic force law capable of replacing the original electric force law and magnetic force law. The inclusion of the finite size of charged particles plus the conservation of energy and Newton's 3rd Law as embedded in Lenz's Law appear to be capable of enhancing the electrodynamic force law and the equations of electrodynamics such that there is no longer a role for Einstein's Special Relativity Theory in electrodynamics.


[[Category:Scientific Paper|union euclid s axiomatic method newton s empirical scientific method leads improved electrodynamic force]]
[[Category:Scientific Paper|union euclid s axiomatic method newton s empirical scientific method leads improved electrodynamic force]]


[[Category:Relativity]]
[[Category:Relativity|union euclid s axiomatic method newton s empirical scientific method leads improved electrodynamic force]]
 
[[Category:Philosophy of Science]]

Latest revision as of 09:40, 21 July 2026

Scientific Paper
TitleUnion of Euclid's Axiomatic Method with Newton's Empirical
Read in fullLink to paper (Internet Archive) Scientific Method Leads to an Improved Electrodynamic Force
Author(s)Charles William Lucas
KeywordsElectrodynamic Force, Newton, special relativity theory, conservation of energy, Philosophy of Science
Published2011
JournalFoundations of Science
Volume14
Number3
No. of pages14

Read the full paper here (archived copy — the original link is no longer available)

Abstract

Euclid's rigorous axiomatic method of deriving theorems/theories is reviewed as well as Newton's less rigorous empirical scientific method. Then the method of Maxwell is introduced showing a partial combination of the axiomatic and empirical scientific methods. Finally the union of the axiomatic and empirical scientific method is perfected to obtain an improved version of the electrodynamic force law capable of replacing the original electric force law and magnetic force law. The inclusion of the finite size of charged particles plus the conservation of energy and Newton's 3rd Law as embedded in Lenz's Law appear to be capable of enhancing the electrodynamic force law and the equations of electrodynamics such that there is no longer a role for Einstein's Special Relativity Theory in electrodynamics.