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| keywords = [[Planck]], [[Wien]], [[Blackbody]], [[Frequency]], [[CMBR]], [[Bigbang]], [[Temperature]]
| keywords = [[Planck]], [[Wien]], [[Blackbody]], [[Frequency]], [[CMBR]], [[Bigbang]], [[Temperature]]
| published = 2013
| published = 2013
| journal = [[None]]
| num_pages = 1
| num_pages = 1
}}
}}
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[[Category:Scientific Paper|planck wien frequencies temperature t]]
[[Category:Scientific Paper|planck wien frequencies temperature t]]


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[[Category:Aether|planck wien frequencies temperature t]]
[[Category:Cosmology]]
[[Category:Cosmology|planck wien frequencies temperature t]]
[[Category:Structure]]
[[Category:Structure|planck wien frequencies temperature t]]
 
[[Category:Big Bang]]

Revision as of 09:40, 20 July 2026

Scientific Paper
TitlePlanck & Wien Frequencies at Temperature T
Read in fullLink to paper
Author(s)Francis Viren Fernandes
KeywordsPlanck, Wien, Blackbody, Frequency, CMBR, Bigbang, Temperature
Published2013
No. of pages1

Read the full paper here

Abstract

A significant discrepancy exists between the frequency measured by Planck?s derivation constant and Wien?s displacement constant for black body radiation at a particular temperature. It is argued that this discrepancy lies in the way the equations evolve from the works of Planck and Wien. However on deeper inspection I have found that this discrepancy is due to a rotational factor of 2Pi ? 10-7 ? 137.036.<o:p></o:p>