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Considering a Formula that Holds True inside a Hydrogen Atom that Is Derived Based on Einstein's Energy-Momentum Relationship that Holds True in Free Space: Difference between revisions

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{{Infobox paper
{{Infobox paper
| title = Considering a Formula that Holds True inside a Hydrogen Atom that Is Derived Based on Einstein?fs Energy-Momentum Relationship that Holds True in Free Space
| title = Considering a Formula that Holds True inside a Hydrogen Atom that Is Derived Based on Einstein's Energy-Momentum Relationship that Holds True in Free Space
| url = [http://www.naturalphilosophy.org/pdf/abstracts/abstracts_5202.pdf Link to paper]
| url = [http://www.naturalphilosophy.org/pdf/abstracts/abstracts_5202.pdf Link to paper]
| author = [[Koshun Suto]]
| author = [[Koshun Suto]]
| keywords = [[Einstein?fs Energy-Momentum Relationship; Special Theory of Relativity; Dirac Equation; Rest Mass Energy; Potential Energy.]]
| keywords = [[Einstein's Energy-Momentum Relationship; Special Theory of Relativity; Dirac Equation; Rest Mass Energy; Potential Energy.]]
| published = 2009
| published = 2009
| journal = [[General Science Journal]]
| journal = [[General Science Journal]]

Revision as of 20:21, 20 July 2026

Scientific Paper
TitleConsidering a Formula that Holds True inside a Hydrogen Atom that Is Derived Based on Einstein's Energy-Momentum Relationship that Holds True in Free Space
Read in fullLink to paper
Author(s)Koshun Suto
KeywordsEinstein's Energy-Momentum Relationship, Special Theory of Relativity, Dirac Equation, Rest Mass Energy, Potential Energy.
Published2009
JournalGeneral Science Journal
No. of pages16

Read the full paper here

Abstract

Einstein's energy-momentum relationship, which is representative of the Special Theory of Relativity, holds true in an isolated system in free space, but quantum mechanics as represented by the Dirac equation has been considered the best theory to describe the behavior of electrons possessing potential energy inside atoms. This paper asks the question: "if a formula similar to Einstein's relationship, which holds true in free space, were to also hold true inside a hydrogen atom, what would such a formula look like?" It then derives this relationship. The newly derived formula of this paper could prove useful as a formula to supplement quantum mechanics.