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{{Infobox paper
{{Infobox paper
| title = Ether and the Derivation of Planck\'s Constant
| title = Ether and the Derivation of Planck's Constant
| author = [[Carel van der Togt]]
| author = [[Carel van der Togt]]
| keywords = [[Ether]], [[Planck?s Constant]]
| keywords = [[Ether]], [[Planck?s Constant]]
| published = 2009
| published = 2009
| journal = [[Galilean Electrodynamics]]
| journal = [[Galilean Electrodynamics]]
| volume = [[20]]
| volume = 20
| number = [[2]]
| number = 2
| pages = 23-31
| pages = 23-31
}}
}}
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==Abstract==
==Abstract==


Quantum Mechanics offer science solutions for the discrete energy levels of electrons circling around the nucleus in atoms. The mathematical solutions of QM do not provide a physical explanation why the allowed quantum energy levels of atoms are fixed. In this article we show how the QM-solutions can be explained: QM and classical physics merge.[[Category:Scientific Paper]]
Quantum Mechanics offer science solutions for the discrete energy levels of electrons circling around the nucleus in atoms. The mathematical solutions of QM do not provide a physical explanation why the allowed quantum energy levels of atoms are fixed. In this article we show how the QM-solutions can be explained: QM and classical physics merge.


[[Category:Aether]]
[[Category:Scientific Paper|ether derivation planck 's constant]]
 
[[Category:Aether|ether derivation planck 's constant]]

Latest revision as of 09:32, 21 July 2026

Scientific Paper
TitleEther and the Derivation of Planck's Constant
Author(s)Carel van der Togt
KeywordsEther, Planck?s Constant
Published2009
JournalGalilean Electrodynamics
Volume20
Number2
Pages23-31

Abstract

Quantum Mechanics offer science solutions for the discrete energy levels of electrons circling around the nucleus in atoms. The mathematical solutions of QM do not provide a physical explanation why the allowed quantum energy levels of atoms are fixed. In this article we show how the QM-solutions can be explained: QM and classical physics merge.