has been cited by the following article(s):
[1]
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Representation of the Anomalous Magnetic Moment of the Muons via the Novel Einstein–Podolsky–Rosen Entanglement
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Scientific Legacy of Professor Zbigniew Oziewicz …,
2024 |
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[2]
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Lie-isotopic representation of stable nuclei II: Exact and time invariant representation of the Deuteron data
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Ratio Mathematica,
2024 |
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[3]
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Santilli's Recovering of Einstein's Determinism
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PROGRESS IN PHYSICS,
2024 |
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[4]
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Foreword for isotopic generalizations of quantum theories
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Ratio Mathematica,
2024 |
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[5]
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Reduction of Matter in the Universe to Protons and Electrons via the Lie-isotopic Branch of Hadronic Mechanics
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Progress in Physics,
2023 |
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[6]
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Apparent Unsettled Value of the Recently Measured Muon Magnetic Moment
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Progress in Physics,
2022 |
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[7]
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Iso-Representation of the Deuteron Spin and Magnetic Moment via Bohm's Hidden Variables
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Prog. Phys,
2022 |
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[8]
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Representation of nuclear magnetic moments via a Clifford algebra formulation of Bohm's hidden variables
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Scientific Reports,
2022 |
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[9]
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A quantitative representation of particle entanglements via Bohm's hidden variables according to hadronic mechanics
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Progress in Physics,
2022 |
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[10]
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Representation of the anomalous magnetic moment of the muons via the novel Einstein-Podolsky-Rosen entanglement
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2022 |
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[11]
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Apparent Resolution of the Coulomb Barrier for Nuclear Fusions Via the Irreversible Lie-admissible Branch of Hadronic Mechanics
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PROGRESS IN PHYSICS,
2022 |
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[12]
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The novel Einstein-Podolsky-Rosen entanglement and its representation of the anomalous magnetic moment of the muons
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IBR preprint,
2021 |
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[13]
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Representation of the anomalous magnetic moment of the muons via the Einstein-Podolsky-Rosen completion of quantum into hadronic mechanics
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Progress in physics,
2021 |
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[1]
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Representation of nuclear magnetic moments via a Clifford algebra formulation of Bohm’s hidden variables
Scientific Reports,
2022
DOI:10.1038/s41598-022-24970-4
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