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
Here, we report a summary of some works already published. We highlight the existence of a new paradigm in physics of hadrons, based on the idea that quarks, and hadrons are geometric structures of coupled quantum oscillators. The geometric form is “Aurea” (golden), and, so, the representative model is called Aurum Geometric Model (AGM). To realize these structures, the quantum oscillators must be to structure at sub-oscillators, and half-quanta (IQO). To a structure-particle, we associate a structure equation, and, by, an appropriate mathematic procedure, we find the values of hadronic masses, like quarks, mesons, and nucleons.
giovanni_guido. 2020. \u201cA New Paradigm in the Physics of Hadrons and their Interactions\u201d. Global Journal of Science Frontier Research - A: Physics & Space Science GJSFR-A Volume 20 (GJSFR Volume 20 Issue A13): .
Crossref Journal DOI 10.17406/GJSFR
Print ISSN 0975-5896
e-ISSN 2249-4626
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Total Score: 101
Country: Unknown
Subject: Global Journal of Science Frontier Research - A: Physics & Space Science
Authors: Giovanni Guido (PhD/Dr. count: 0)
View Count (all-time): 146
Total Views (Real + Logic): 2219
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Publish Date: 2020 12, Mon
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Neural Networks and Rules-based Systems used to Find Rational and
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Here, we report a summary of some works already published. We highlight the existence of a new paradigm in physics of hadrons, based on the idea that quarks, and hadrons are geometric structures of coupled quantum oscillators. The geometric form is “Aurea” (golden), and, so, the representative model is called Aurum Geometric Model (AGM). To realize these structures, the quantum oscillators must be to structure at sub-oscillators, and half-quanta (IQO). To a structure-particle, we associate a structure equation, and, by, an appropriate mathematic procedure, we find the values of hadronic masses, like quarks, mesons, and nucleons.
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