International Journal of Astronomy and Astrophysics

International Journal of Astronomy and Astrophysics

ISSN Print: 2161-4717
ISSN Online: 2161-4725
www.scirp.org/journal/ijaa
E-mail: ijaa@scirp.org
"Pinched Material Einstein Space-Time Produces Accelerated Cosmic Expansion"
written by M. S. El Naschie,
published by International Journal of Astronomy and Astrophysics, Vol.4 No.1, 2014
has been cited by the following article(s):
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[4] Kähler Dark Matter, Dark Energy Cosmic Density and Their Coupling
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[5] The Speed of the Passing of Time as Yet Another Facet of Cosmic Dark Energy
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[6] Completing Einstein's Spacetime
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[7] Cantorian-Fractal Kinetic Energy and Potential Energy as the Ordinary and Dark Energy Density of the Cosmos Respectively
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[8] Quantum Disentanglement as the Physics behind Dark Energy
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[9] High Energy Physics and Cosmology as Computation
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[10] Computational Fractal Logic for Quantum Physics and Cosmology
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[11] A Complementarity Resolution of the Black Hole Information Paradox
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[12] Dark energy and its cosmic density from Einstein's relativity and gauge fields renormalization leading to the possibility of a new 'tHooft quasi particle
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[13] From Kantian-Reinen Vernunft to the Real Dark Energy Density of the Cosmos via the Measure Concentration of Convex Geometry in Quasi Banach Spacetime
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[14] Mathematical models and methods in dark energy theory: Dvoretzky''s theorem, Casimir effect, Mobius geometry
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[15] Математические модели и методы в теории темной энергии: теорема Дворецкого; эффект Казимира; геометрия Мебиуса
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[16] Banach Spacetime-Like Dvoretzky Volume Concentration as Cosmic Holographic Dark Energy
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[17] Dark Energy and its Cosmic Density from Einstein's Relativity and Gauge Fields Renormalization Leading to the Possibility of a New'tHooft Quasi Particle
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[18] From Kantian-Reinen Fernunft to the Real Dark Energy Density of the Cosmos via the Measure Concentration of Convex Geometry in Quasi Banach Spacetime
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[19] Computing Dark Energy and Ordinary Energy of the Cosmos as a Double Eigenvalue Problem
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[20] A Fractal Rindler-Regge Triangulation in the Hyperbolic Plane and Cosmic de Sitter Accelerated Expansion
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[21] Hubble Scale Dark Energy Meets Nano Scale Casimir Energy and the Rational of Their T-Duality and Mirror Symmetry Equivalence
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[22] Quantum Fractals and the Casimir-Dark Energy Duality—The Road to a Clean Quantum Energy Nano Reactor
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[23] A Resolution of the Black Hole Information Paradox via Transfinite Set Theory
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[24] On El Naschie's Fractal-Cantorian Space-Time and Dark Energy—A Tutorial Review
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[25] From Kantian-Reinen Fernunft to the Real Dark Energy Density of the Cosmos via the Measure Concentration of Convex Geometry in Quasi Banach …
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[26] Deriving E= mc2/22 of Einstein's ordinary quantum relativity energy density from the Lie symmetry group SO (10) of grand unification of all fundamental …
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[27] Nonlocal Elasticity to Nonlocal Spacetime and Nanoscience
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[28] Deriving E= mc 2/22 of Einstein’s ordinary quantum relativity energy density from the Lie symmetry group SO (10) of grand unification of all fundamental forces and without quantum mechanics
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[29] Cosserat-Cartan modification of Einstein-Riemann relativity and cosmic dark energy density
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[30] Asymptotically safe pure gravity as the source of dark energy of the vacuum
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[31] Capillary Surface Energy Elucidation of the Cosmic Dark Energy—Ordinary Energy Duality
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[32] The meta energy of dark energy
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[33] From Chern-Simon, Holography and Scale Relativity to Dark Energy
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[34] Entanglement of E8E8 Exceptional Lie Symmetry Group Dark Energy, Einstein’s Maximal Total Energy and the Hartle-Hawking No Boundary Proposal as the Explanation for Dark Energy
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[35] Casimir-like energy as a double Eigenvalues of quantumly entangled system leading to the missing dark energy density of the cosmos
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[36] The measure concentration of convex geometry in a quasi Banach spacetime behind the supposedly missing dark energy of the cosmos
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[37] On a New Elementary Particle from the Disintegration of the Symplectic't Hooft-Veltman-Wilson Fractal Spacetime
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[38] Cosmic Dark Energy Density from Classical Mechanics and Seemingly Redundant Riemannian Finitely Many Tensor Components of Einstein’s General Relativity
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[39] Cosmic Dark Energy Density from Classical Mechanics and Seemingly Redundant Riemannian Finitely Many Tensor Components of Einstein's General …
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[40] Capillary Surface Energy Elucidation of the Cosmic Dark Energy--Ordinary Energy Duality
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[41] Entanglement of E8E8 Exceptional Lie Symmetry Group Dark Energy, Einstein's Maximal Total Energy and the Hartle-Hawking No Boundary Proposal as the …
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[42] Casimir-Like Energy as a Double Eigenvalue of Quantumly Entangled System Leading to the Missing Dark Energy Density of the Cosmos
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[43] From nonlocal elasticity to nonlocal spacetime and nano science
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[44] Deriving E= mc2/22 of Einstein's ordinary quantum relativity energy density from the Lie symmetry group SO (10) of grand unification of all fundamental forces …
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[45] Hardy's Entanglement as the Ultimate Explanation for the Observed Cosmic Dark Energy and Accelerated Expansion
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