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From Redshift To Cosmic Background Radiation

By Huang, Cres

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Book Id: WPLBN0004023658
Format Type: PDF eBook:
File Size: 4.48 MB
Reproduction Date: 11/19/2014

Title: From Redshift To Cosmic Background Radiation  
Author: Huang, Cres
Volume:
Language: English
Subject: Non Fiction, Science, Redshift
Collections: Science, Mathematical Statistics, Modern Regression, Probability Theory, Astronomy, Science Fiction Collection, Authors Community, Math, Statistics, Economics, Literature, Most Popular Books in China, Favorites in India
Historic
Publication Date:
2014
Publisher: Self-published
Member Page: Cres Huang

Citation

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Huang, B. C. (2014). From Redshift To Cosmic Background Radiation. Retrieved from http://self.gutenberg.org/


Description
Proves mathematically that the Doppler blueshift is terminal event and Doppler redshift is dominating by natural. However, radiation redshift is not only the result of Doppler effect but also the quality loss of radiation over vast distance. An observer is surrounded by radiations of all frequencies, much like a background noise of light, sound and smell of a city. CBR will show redshift as visible radiations. Nevertheless, not the indication of growing universe.

Summary
Derives the Doppler stochastic function, proving Doppler redshift is dominating by nature. Observed cosmic redshift is not the indication of expanding universe, nor blueshift meant contracting. In the meantime, higher frequency loss over distance also causes redshift, and it is exponential. Due to the astronomic distance of celestial observation, it would easily overwhelm the Doppler effect and create an illusion of run-away universe. Since high frequency can not travel as far, space is filled with dominating low frequency below visible radiations, CBR , which can come from outside of the visible universe.

Excerpt
The dominating and exponential natures of radiation redshift (>92%) do not suggest the acceleratingly physical departure of all astronomical objects; and, neither inflation nor a common origin. Universe will continue as is, no extra matter and energy needed. Otherwise, besides the demand of run-away energy; the interactions among energy, matter, run-away energy, run-away matter, and acceleratingly expanding the space to carry objects away can only lead to run-away interpretations.

Table of Contents
1 Introduction 2 Creation of Doppler Effect 2.1 Limited Range of Doppler Blueshift 2.2 Mathematical Model of Blueshift Detection in Space 2.3 Probability Function of Blueshift Detection 2.4 Probability Distribution of Blueshift Detection 2.5 Underlying Conditions 2.6 Cross-Check with Redshift Survey 2.7 Probability Function in Surface Observation 2.8 Probability Function in Linear Observation 2.9 Probability Function Comparison 2.10 Properties of Doppler Effect 2.10.1 Properties of Doppler Blueshift 2.10.2 Properties of Doppler Redshift 3 Observer and the Environment 3.1 Doppler Effect of Rotating Observer 3.2 Environment Conditions 3.3 Heliosphere of The Solar System 3.4 Cross Radiations in Space 3.5 Sky In A Box 4 Lost in Translation 5 Cosmic Background Radiation 6 Conclusion 7 Appendixes 7.1 Paradox of Space Expansion 7.2 Real Life Analogy of Inertia in Expanding Space 7.3 Paradox of Redshift and Expanding Space 7.3.1 Real Life Analogy of Radiation Trap 7.4 Paradox of Constant Pulsating Quasars in Expanding Space 7.5 Mind-Bending Questions 7.6 Can We Really Tell The Size & Age of The Universe? 7.7 Accumulated Probability Distribution References

 
 



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