Neural Networks and Rules-based Systems used to Find Rational and Scientific Correlations between being Here and Now with Afterlife Conditions
Neural Networks and Rules-based Systems used to Find Rational and
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This paper presents strictly the mathematical derivation of the Einstein field equations from a vanishing divergent field given Lie group SU(1) and satisfying cohomology, and a discussion of the implications of these results. Essentially, we obtain the expression from given postulates of a Quantum Yang-Mills theory- the gravitational terms reducing to when we have SU(1), satisfying (“good”) cohomology (i.e. that of the standard formulation of Hodge’s conjecture, [3] for a history), and we integrate with respect to the metric solution of the equations in a standard Lorentzian frame. We then discuss the implications of these results, and consider some misconceptions about past approaches to ubiquitous media.
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Dr. Thomas Evans. 2012. \u201cA modern approach to a unified field theory\u201d. Global Journal of Science Frontier Research - F: Mathematics & Decision GJSFR-F Volume 12 (GJSFR Volume 12 Issue F1): .
Crossref Journal DOI 10.17406/GJSFR
Print ISSN 0975-5896
e-ISSN 2249-4626
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Total Score: 136
Country: United States
Subject: Global Journal of Science Frontier Research - F: Mathematics & Decision
Authors: Dr. Thomas Evans (PhD/Dr. count: 1)
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Publish Date: 2012 12, Mon
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This paper presents strictly the mathematical derivation of the Einstein field equations from a vanishing divergent field given Lie group SU(1) and satisfying cohomology, and a discussion of the implications of these results. Essentially, we obtain the expression from given postulates of a Quantum Yang-Mills theory- the gravitational terms reducing to when we have SU(1), satisfying (“good”) cohomology (i.e. that of the standard formulation of Hodge’s conjecture, [3] for a history), and we integrate with respect to the metric solution of the equations in a standard Lorentzian frame. We then discuss the implications of these results, and consider some misconceptions about past approaches to ubiquitous media.
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