Description

Book Synopsis
We extend to gravitation our previous study of a quantum wave for all particles and antiparticles of each generation (electron + neutrino + u and d quarks for instance). This wave equation is form invariant under Cl3*, then relativistic invariant. It is gauge invariant under the gauge group of the standard model, with a mass term: this was impossible before, and the consequence was an impossibility to link gauge interactions and gravitation.

Table of Contents
Foreword; Introduction; Clifford Algebras; Dirac Equation; The Homogeneous Nonlinear Wave Equation; Invariance of Electromagnetic Laws; Miscellaneous; Electro-Weak Interactions: The Lepton Case; Electro-Weak and Strong Interactions; Magnetic Monopoles; Inertia and Gravitation; Conclusion; Appendix A: Calculations in Clifford Algebras; Appendix B: Electron+Neutrino+Quark; Appendix C: The Hydrogen Atom; Bibliography; Index;

Standard Model Of Quantum Physics In Clifford

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    A Hardback by Claude Daviau, Jacques Bertrand

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      View other formats and editions of Standard Model Of Quantum Physics In Clifford by Claude Daviau

      Publisher: World Scientific Publishing Co Pte Ltd
      Publication Date: 03/12/2015
      ISBN13: 9789814719865, 978-9814719865
      ISBN10: 9814719862

      Description

      Book Synopsis
      We extend to gravitation our previous study of a quantum wave for all particles and antiparticles of each generation (electron + neutrino + u and d quarks for instance). This wave equation is form invariant under Cl3*, then relativistic invariant. It is gauge invariant under the gauge group of the standard model, with a mass term: this was impossible before, and the consequence was an impossibility to link gauge interactions and gravitation.

      Table of Contents
      Foreword; Introduction; Clifford Algebras; Dirac Equation; The Homogeneous Nonlinear Wave Equation; Invariance of Electromagnetic Laws; Miscellaneous; Electro-Weak Interactions: The Lepton Case; Electro-Weak and Strong Interactions; Magnetic Monopoles; Inertia and Gravitation; Conclusion; Appendix A: Calculations in Clifford Algebras; Appendix B: Electron+Neutrino+Quark; Appendix C: The Hydrogen Atom; Bibliography; Index;

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