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Quanta and Particles as Necessary Consequence of General Relativity - Softcover

 
9786202076692: Quanta and Particles as Necessary Consequence of General Relativity

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Why are physicists unable to predict parameters of particles, just the masses? There is a well working theory, all its predictions were excellently validated by experiment. It is the general theory of relativity. But this theory is not complete. The quantum phenomena are missing, and any energy term following Mach's principle excludes conservation of energy and momentum. So any expression of mass does not fit to the geometrical part of the theory. In order to solve this problem, we have to use fundamentally different methods than usual in physics. A successful method comprises boundary-value problems in coherence with chaos. A sampling method provides the discrete values of the particle parameters. - This book is a loose succession of three formerly unpublished articles. Chapter 1 provides the consequences of general relativity, and how to overcome the limits of the relativity theory. Chapter 2 contains a detailed description of the method, while chapter 3 explains the numerical method in detail and presents the results. This book is directed to scientists and engineers. It requires proficiency of electrodynamics, relativity theory, and the tensor calculus.

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Why are physicists unable to predict parameters of particles, just the masses? There is a well working theory, all its predictions were excellently validated by experiment. It is the general theory of relativity. But this theory is not complete. The quantum phenomena are missing, and any energy term following Mach's principle excludes conservation of energy and momentum. So any expression of mass does not fit to the geometrical part of the theory. In order to solve this problem, we have to use fundamentally different methods than usual in physics. A successful method comprises boundary-value problems in coherence with chaos. A sampling method provides the discrete values of the particle parameters. - This book is a loose succession of three formerly unpublished articles. Chapter 1 provides the consequences of general relativity, and how to overcome the limits of the relativity theory. Chapter 2 contains a detailed description of the method, while chapter 3 explains the numerical method in detail and presents the results. This book is directed to scientists and engineers. It requires proficiency of electrodynamics, relativity theory, and the tensor calculus.

Biografía del autor

Ulrich E. Bruchholz, Dipl.-Ing. (Master of engineering):Studied Information technology (Technical acoustics) at Technische Universität Dresden.Worked as engineer, besides independent research in theory of relativity.

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Zustand: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Bruchholz UlrichUlrich E. Bruchholz, Dipl.-Ing. (Master of engineering):Studied Information technology (Technical acoustics) at Technische Universitaet Dresden.Worked as engineer, besides independent research in theory of relativity. Bestandsnummer des Verkäufers 385925170

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Taschenbuch. Zustand: Neu. Neuware -Why are physicists unable to predict parameters of particles, just the masses There is a well working theory, all its predictions were excellently validated by experiment. It is the general theory of relativity. But this theory is not complete. The quantum phenomena are missing, and any energy term following Mach's principle excludes conservation of energy and momentum. So any expression of mass does not fit to the geometrical part of the theory. In order to solve this problem, we have to use fundamentally different methods than usual in physics. A successful method comprises boundary-value problems in coherence with chaos. A sampling method provides the discrete values of the particle parameters. - This book is a loose succession of three formerly unpublished articles. Chapter 1 provides the consequences of general relativity, and how to overcome the limits of the relativity theory. Chapter 2 contains a detailed description of the method, while chapter 3 explains the numerical method in detail and presents the results. This book is directed to scientists and engineers. It requires proficiency of electrodynamics, relativity theory, and the tensor calculus.Books on Demand GmbH, Überseering 33, 22297 Hamburg 52 pp. Englisch. Bestandsnummer des Verkäufers 9786202076692

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Taschenbuch. Zustand: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Why are physicists unable to predict parameters of particles, just the masses There is a well working theory, all its predictions were excellently validated by experiment. It is the general theory of relativity. But this theory is not complete. The quantum phenomena are missing, and any energy term following Mach's principle excludes conservation of energy and momentum. So any expression of mass does not fit to the geometrical part of the theory. In order to solve this problem, we have to use fundamentally different methods than usual in physics. A successful method comprises boundary-value problems in coherence with chaos. A sampling method provides the discrete values of the particle parameters. - This book is a loose succession of three formerly unpublished articles. Chapter 1 provides the consequences of general relativity, and how to overcome the limits of the relativity theory. Chapter 2 contains a detailed description of the method, while chapter 3 explains the numerical method in detail and presents the results. This book is directed to scientists and engineers. It requires proficiency of electrodynamics, relativity theory, and the tensor calculus. Bestandsnummer des Verkäufers 9786202076692

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Taschenbuch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Why are physicists unable to predict parameters of particles, just the masses There is a well working theory, all its predictions were excellently validated by experiment. It is the general theory of relativity. But this theory is not complete. The quantum phenomena are missing, and any energy term following Mach's principle excludes conservation of energy and momentum. So any expression of mass does not fit to the geometrical part of the theory. In order to solve this problem, we have to use fundamentally different methods than usual in physics. A successful method comprises boundary-value problems in coherence with chaos. A sampling method provides the discrete values of the particle parameters. - This book is a loose succession of three formerly unpublished articles. Chapter 1 provides the consequences of general relativity, and how to overcome the limits of the relativity theory. Chapter 2 contains a detailed description of the method, while chapter 3 explains the numerical method in detail and presents the results. This book is directed to scientists and engineers. It requires proficiency of electrodynamics, relativity theory, and the tensor calculus. 52 pp. Englisch. Bestandsnummer des Verkäufers 9786202076692

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