"Grand Unified SU(8) Gauge Theory Based on Baryons which Are Yang-Mills Magnetic Monopoles"
written by Jay R. Yablon,
published by Journal of Modern Physics, Vol.4 No.4A, 2013
has been cited by the following article(s):
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[1] Theory of Fermion Masses, Mixing, Lagrangian Potentials and Weak Beta Decays, based on Higgs Bosons arising from the Scalar Fields of a Kaluza Klein Theory with …
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[2] On the Role of Einstein-Cartan Gravity in Fundamental Particle Physics
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[3] Fundamental Fermion Interactions via Vector Bosons of Unified SU (2)⊗ SU (4) Gauge Fields
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[4] Fundamental fermion interactions via vector bosons of unified SU (2) x SU (4) gauge fields
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[5] Fermion unification model based on the intrinsic SU (8) symmetry of a generalized Dirac equation
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[6] On the Classical Unification of Elementary Particle Physics with Nuclear and Hadron Physics, Electrodynamics, and Gravitation
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[7] Why the Composite Magnetic Monopoles of Yang-Mills Gauge Theory have all the Required Chromodynamic and Confinement Symmetries of Baryons, how these may be developed into Topologically-Stable Protons and Neutrons, and how to Analytically Path Integrate the Yang-Mills Action
JR Yablon - rxiv.org, 2014
[8] Why the Composite Magnetic Monopoles of Yang-Mills Gauge Theory have all the Required Chromodynamic and Confinement Symmetries of Baryons, how …
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[9] Decoding the Nuclear Genome: Is there an Unambiguous and Precise way to Define the Current Quark Masses and Relate them to Nuclear Binding Energies and Mass Defects, and what is the Underlying Theory?
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[10] Fitting the 2H, 3H, 3He, 4He Binding Energies and the Neutron minus Proton Mass Difference to Parts-Per-Million based Exclusively on the Up and Down Quark …
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[11] Higgs Field Theory of the Observed Fermions, and their Masses, Magnetic Moments and Renormalization
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[12] Predicting the Neutron and Proton Masses Based on Baryons which Are Yang-Mills Magnetic Monopoles and Koide Mass Triplets
Journal of Modern Physics, 2013
[13] Fitting the Neutron and Proton Masses within Experimental Errors Exclusively to the Up and Down Quark Masses and Charges, the Fermi vev, and the CKM Quark Mixing Matrix
Recall, 2013
[14] Fitting the 2 H, 3 H, 3 He, 4 He Binding Energies and the Neutron minus Proton Mass Difference to Parts-Per-Million based Exclusively on the Up and Down Quark Masses
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[15] Fitting the 6 Li, 7 Li, 7 Be and 8 Be Binding Energies to High Precision based Exclusively on the Up and Down Quark Masses
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[16] Predicting the Proton and Neutron Masses, Based on Baryons which are Yang-Mills Magnetic Monopoles and Koide Mass Triplets
JR Yablon - rxiv.org, 2013