An Interesting Number in Physics: Difference between revisions
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{{Infobox paper | {{Infobox paper | ||
| title = An Interesting Number in Physics | | title = An Interesting Number in Physics | ||
| url = [https://web.archive.org/web/20091012172028/http://www.scribd.com/doc/14073521/Gold-Section-in-Physics Link to paper (Internet Archive)] | |||
| author = [[Dezso Sarkadi]] | | author = [[Dezso Sarkadi]] | ||
| keywords = [[physical constants]], [[exponential relation between physical constants]], [[background of the physical constants]], [[Bode-Titius law]], [[neutral-atom mass formula]] | | keywords = [[physical constants]], [[exponential relation between physical constants]], [[background of the physical constants]], [[Bode-Titius law]], [[neutral-atom mass formula]] | ||
| published = 2009 | | published = 2009 | ||
| journal = [[Galilean Electrodynamics]] | | journal = [[Galilean Electrodynamics]] | ||
| volume = | | volume = 20 | ||
| number = | | number = 6 | ||
| pages = 103-105 | | pages = 103-105 | ||
}} | }} | ||
'''Read the full paper''' [https://web.archive.org/web/20091012172028/http://www.scribd.com/doc/14073521/Gold-Section-in-Physics here] ''(archived copy — the original link is no longer available)'' | |||
==Abstract== | ==Abstract== | ||
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Physical constants play important role in physics. It is a fact that the accuracy of the physical constants grows year by year. Special attention is paid to the dimensionless constants; some familiar ones among them are the fine structure constant, the proton/electron mass-ratio, the cosmological constant of Einstein's general relativity, the Weinberg angle in the electro-weak interaction theory, etc. One of the most important questions has for a long time been: are there any physical and/or mathematical relations between the fundamental physical constants? This paper gives a recently explored simple math relation between them. The precise theoretical explanation for this amazing finding needs more detailed investigation related to the physical background. | Physical constants play important role in physics. It is a fact that the accuracy of the physical constants grows year by year. Special attention is paid to the dimensionless constants; some familiar ones among them are the fine structure constant, the proton/electron mass-ratio, the cosmological constant of Einstein's general relativity, the Weinberg angle in the electro-weak interaction theory, etc. One of the most important questions has for a long time been: are there any physical and/or mathematical relations between the fundamental physical constants? This paper gives a recently explored simple math relation between them. The precise theoretical explanation for this amazing finding needs more detailed investigation related to the physical background. | ||
[[Category:Scientific Paper]] | [[Category:Scientific Paper|interesting number physics]] | ||
[[Category:Relativity]] | [[Category:Relativity|interesting number physics]] | ||
Latest revision as of 09:36, 21 July 2026
| Scientific Paper | |
|---|---|
| Title | An Interesting Number in Physics |
| Read in full | Link to paper (Internet Archive) |
| Author(s) | Dezso Sarkadi |
| Keywords | physical constants, exponential relation between physical constants, background of the physical constants, Bode-Titius law, neutral-atom mass formula |
| Published | 2009 |
| Journal | Galilean Electrodynamics |
| Volume | 20 |
| Number | 6 |
| Pages | 103-105 |
Read the full paper here (archived copy — the original link is no longer available)
Abstract
This paper aka "The 'Gold Section' of Nature"
Physical constants play important role in physics. It is a fact that the accuracy of the physical constants grows year by year. Special attention is paid to the dimensionless constants; some familiar ones among them are the fine structure constant, the proton/electron mass-ratio, the cosmological constant of Einstein's general relativity, the Weinberg angle in the electro-weak interaction theory, etc. One of the most important questions has for a long time been: are there any physical and/or mathematical relations between the fundamental physical constants? This paper gives a recently explored simple math relation between them. The precise theoretical explanation for this amazing finding needs more detailed investigation related to the physical background.