Difference between revisions of "Radar Time Delays in the Dynamic Theory of Gravity"
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− | ''Serb. Astron. J., V168, 49-54 (2004).'' There is a new theory gravity called the dynamic theory, which is derived from thermodynamic principles in a ve dimensional space, radar signals traveling times and delays are calculated for the major planets in the solar system, and compared to those of general relativity. This is done by using the usual four dimensional spherically symmetric space-time element of classical general relativistic gravity which has now been slightly modified by a negative inverse radial exponential term due to the dynamic theory of gravity potential.[[Category:Scientific Paper]] | + | ''Serb. Astron. J., V168, 49-54 (2004).'' There is a new theory gravity called the dynamic theory, which is derived from thermodynamic principles in a ve dimensional space, radar signals traveling times and delays are calculated for the major planets in the solar system, and compared to those of general relativity. This is done by using the usual four dimensional spherically symmetric space-time element of classical general relativistic gravity which has now been slightly modified by a negative inverse radial exponential term due to the dynamic theory of gravity potential. |
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+ | [[Category:Scientific Paper|radar time delays dynamic theory gravity]] | ||
[[Category:Relativity]] | [[Category:Relativity]] |
Revision as of 10:58, 1 January 2017
Scientific Paper | |
---|---|
Title | Radar Time Delays in the Dynamic Theory of Gravity |
Read in full | Link to paper |
Author(s) | Ioannis Iraklis Haranas |
Keywords | Gravitation -relativity -methods: analytical techiques: radar astronomy |
Published | 2004 |
Journal | Vixra |
Volume | Serbian Astronomical Journal 1 |
No. of pages | 6 |
Pages | 49-54 |
Read the full paper here
Abstract
Serb. Astron. J., V168, 49-54 (2004). There is a new theory gravity called the dynamic theory, which is derived from thermodynamic principles in a ve dimensional space, radar signals traveling times and delays are calculated for the major planets in the solar system, and compared to those of general relativity. This is done by using the usual four dimensional spherically symmetric space-time element of classical general relativistic gravity which has now been slightly modified by a negative inverse radial exponential term due to the dynamic theory of gravity potential.