[1]
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Mass Constituents of a Flat Lattice Multiverse: Conclusion from Similarity between Two Universal Numbers, the Rocksalt-Type 2D Madelung Constant and the Golden Mean
Journal of Modern Physics,
2018
DOI:10.4236/jmp.2018.91001
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[2]
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Einstein-Kaluza Combined Spacetime as the Optimal and Simplest Framework to Compute and Understand Dark Matter, Pure Dark Energy and Measurable Ordinary Energy
Natural Science,
2017
DOI:10.4236/ns.2017.98024
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[3]
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Quantum Disentanglement as the Physics behind Dark Energy
Open Journal of Microphysics,
2017
DOI:10.4236/ojm.2017.71001
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[4]
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Spacetime from Zitterbewegung
Open Journal of Modelling and Simulation,
2017
DOI:10.4236/ojmsi.2017.53012
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[5]
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A Combined Heterotic String and Kähler Manifold Elucidation of Ordinary Energy, Dark Matter, Olbers’s Paradox and Pure Dark Energy Density of the Cosmos
Journal of Modern Physics,
2017
DOI:10.4236/jmp.2017.87071
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[6]
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Cantorian-Fractal Kinetic Energy and Potential Energy as the Ordinary and Dark Energy Density of the Cosmos Respectively
Natural Science,
2016
DOI:10.4236/ns.2016.812052
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[7]
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The Emergence of Spacetime from the Quantum in Three Steps
Advances in Pure Mathematics,
2016
DOI:10.4236/apm.2016.66032
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[8]
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On the Stringy Ghosts Which We Call the Missing Dark Energy of the Cosmos
Journal of Applied Mathematics and Physics,
2016
DOI:10.4236/jamp.2016.46105
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[9]
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Max Planck Half Quanta as a Natural Explanation for Ordinary and Dark Energy of the Cosmos
Journal of Modern Physics,
2016
DOI:10.4236/jmp.2016.712129
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[10]
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High Energy Physics and Cosmology as Computation
American Journal of Computational Mathematics,
2016
DOI:10.4236/ajcm.2016.63020
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[11]
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The Speed of the Passing of Time as Yet Another Facet of Cosmic Dark Energy
Journal of Modern Physics,
2016
DOI:10.4236/jmp.2016.715184
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[12]
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Completing Einstein’s Spacetime
Journal of Modern Physics,
2016
DOI:10.4236/jmp.2016.715175
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[13]
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Kähler Dark Matter, Dark Energy Cosmic Density and Their Coupling
Journal of Modern Physics,
2016
DOI:10.4236/jmp.2016.714173
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