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The Three Page Guide to the Most Important Results of M. S. El Naschie’s Research in E-Infinity Quantum Physics and Cosmology 被引量:24
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作者 M. A. Helal L. Marek-Crnjac Ji-Huan He 《Open Journal of Microphysics》 2013年第4期141-145,共5页
In this short survey, we give a complete list of the most important results obtained by El Naschie’s E-infinity Cantorian space-time theory in the realm of quantum physics and cosmology. Special attention is paid to ... In this short survey, we give a complete list of the most important results obtained by El Naschie’s E-infinity Cantorian space-time theory in the realm of quantum physics and cosmology. Special attention is paid to his recent result on dark energy and revising Einstein’s famous formula . 展开更多
关键词 Review of E-INFINITY Summary of Cantorian SPACE-TIME EL naschie Nottale and Ord Fractal SPACE-TIME Rindler SPACE-TIME REVISING EINSTEIN Theory Dark Energy Revealed
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E-Infinity Dualities, Discontinuous Spacetimes, Xonic Quantum Physics and the Decisive Experiment 被引量:2
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作者 Jean-Paul Auffray 《Journal of Modern Physics》 2014年第15期1427-1436,共10页
Using powerful concepts and tools borrowed from the seminal arsenal connecting physics fundamentals with esoteric set theoretical operations developed in recent years by Alexandria E-infinity theoretician M. S. El Nas... Using powerful concepts and tools borrowed from the seminal arsenal connecting physics fundamentals with esoteric set theoretical operations developed in recent years by Alexandria E-infinity theoretician M. S. El Naschie, this paper explores the deep implications of some of the dualities Dr El Naschie has identified and analyzed in his exposes, connecting them with our own Xonic Quantum Physics (XQP) which places dynamical action rather than spacetime and energy at the core of the System of the World. 展开更多
关键词 E-INFINITY El naschie Space Time SPACETIME Topology CANTOR Sets Energy Xon Xonic Quantum Physics PLANCK Scale Dirac Electron
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The Quantum Triple-Slit Experiment and Dark Energy
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作者 Mohamed S. El Naschie 《Open Journal of Microphysics》 2017年第2期31-35,共5页
The experimental discovery of looped light in a three-slit experiment is interpreted as a strong justification of the Peano-Hilbert spacetime model. This in turn entails the existence of a dark energy density in full ... The experimental discovery of looped light in a three-slit experiment is interpreted as a strong justification of the Peano-Hilbert spacetime model. This in turn entails the existence of a dark energy density in full agreement with previous analysis as well as accurate measurements and observations. 展开更多
关键词 Triple-Slit EXPERIMENT Looped Light Peano-Hilbert SPACETIME Dark Energy E-INFINITY Cantorian SPACETIME QUANTUM Double-Slit EXPERIMENT Ord-El naschie QUANTUM SPACETIME Model
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On an Intriguing Invention Albert Einstein Made Which Has Gone Unnoticed Hitherto
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作者 Jean-Paul Auffray 《Journal of Modern Physics》 2015年第11期1478-1491,共14页
We retrieve three mysterious sentences Albert Einstein wrote in the early years of his wondrous scientific career. We examine their implications and we suggest that they provide a surprising new basis for Quantum Phys... We retrieve three mysterious sentences Albert Einstein wrote in the early years of his wondrous scientific career. We examine their implications and we suggest that they provide a surprising new basis for Quantum Physics as well as some enlightenment concerning the whereabouts of Dark energy. 展开更多
关键词 EINSTEIN Absolute Measurements Electromagnetic ENERGY M = E/c2 Space Points Dark ENERGY M. S. El naschie Quantum METEORITES
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From Nikolay Umov E=kmc^(2) via Albert Einstein’s E=γmc^(2) to the Dark Energy Density of the Cosmos E=(21 22)mc^(2)
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作者 Mohamed S.El Naschie 《World Journal of Mechanics》 2018年第4期73-81,共9页
The paper starts from the remarkable classical equation of the great nineteenth century Russian physicist Nikolay Umov E=kmc2 where 1/2&le;k&le;1, m is the mass, c is the speed of light and E is the equivalent... The paper starts from the remarkable classical equation of the great nineteenth century Russian physicist Nikolay Umov E=kmc2 where 1/2&le;k&le;1, m is the mass, c is the speed of light and E is the equivalent energy of m. After a short but deep discussion of the derivation of Umov we move to Einstein’s formula E=&gamma;mc2?where &gamma;is the Lorentz factor of special relativity and point out the interesting difference and similarity between Umov’s k and Lorentz-Einstein &gamma;. This is particularly considered in depth for the special case which leads to the famous equation?E=mc2?that is interpreted here to be the maximal cosmic energy density possible. Subsequently we discuss the dissection of E=mc2 into two components, namely the cosmic dark energy density E(D)=(21/22)MC2 and the ordinary energy density E(O)=MC2/22? where?E(D)+E(O)=MC2. Finally we move from this to the three-part dissection where we show that E is simply the sum of pure dark energy E(PD) plus dark matter energy E(DM) as well as ordinary energy E(O). 展开更多
关键词 N.Umov Energy A.Einstein Energy El naschie Energy Ordinary Cosmic Energy Cosmic Dark Energy F.Hasenohrl’s Electromagnetic Energy H.Poincaré History of Special Relativity
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