Abstract

The Egyptian engineering scientist and theoretical physicist Mohamed El Naschie has found a definite resolution to the missing dark energy of the cosmos based on a revision of the theory of Relativity. Einstein’s equation of special relativity E = m0c2, where m0 is the controversial rest mass and c is the velocity of light developed in smooth 4D space-time was transferred by El Naschie to a rugged Calabi-Yau and K3 fuzzy Kahler manifold. The result is an accurate, effective quantum gravity energy-mass relation which correctly predicts that 95.4915028% of the energy in the cosmos is the missing hypothetical dark energy. The agreement with WMAP and supernova measurements is astounding. Different theories are used by El Naschie to check the calculations and all lead to the same quantitative result. Thus the theories of varying speed of light, scale relativity, E-infinity theory, M-theory, Heterotic super strings, quantum field in curved space-time, Veneziano’s dual resonance model and Nash’s Euclidean embedding all reinforce, without any reservation, the above mentioned theoretical result of El Naschie which in turn is in total agreement with the most sophisticated cosmological measurement. Incidentally these experimental measurements and analysis were awarded the 2011 Nobel Prize in Physics to Adam Riess, Brian Schmidt, and Saul Perlmutter.

Highlights

  • Special relativity presupposes a smooth space-time withLorentzian symmetry group invariance [1]

  • The Egyptian engineering scientist and theoretical physicist Mohamed El Naschie has found a definite resolution to the missing dark energy of the cosmos based on a revision of the theory of Relativity

  • Einstein’s equation of special relativity E = m0c2, where m0 is the controversial rest mass and c is the velocity of light developed in smooth 4D space-time was transferred by El Naschie to a rugged Calabi-Yau and K3 fuzzy Kähler manifold

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Summary

Introduction

Lorentzian symmetry group invariance [1]. Quantum space-time on the other hand is modelled via radically different geometrical realization [1,2,3,4,5,6,7,8]. This prior intuitive expectation noted first by El Naschie was confirmed later on by him on two counts, namely first experimentally using the cosmic measurement of Ries, Schmidt and Perlmutter [4] and second theoretically using numerous sophisticated established theories, all leading to the same robust result, namely. We probably will know for sure when the Planck measurement project is completed. This particular result of El Naschie has in one giant leap unified many theories, old and new, and reconciled theory with measurement [16,17,18,19].

Motives for Revising Einstein’s
R 4 D 6
Homology of a Space-Time Based on Crisp K3 Kähler Manifold
Findings
Classical Non-Fuzzy Kähler
Full Text
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