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QUANTIZATION OF NONCONSERVATIVE SYSTEMS - Abdul-Wali Ajlouni
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ISBN: 9783838372501

Most advanced methods of classical mechanics deal only with conservative systems, although all natural processes in the physical world are nonconservative. Classically or quantum-mechanically treated, macroscopically or microscopically viewed, the physical world shows different kinds of dissipation and irreversibility, ignored in analytical techniques, this dissipation appears in friction, Brownian motion, inelastic scattering, electrical impedance, etc. The main achievements of this work are, then, the following: 1. Completion of the classical framework of fractional mechanics, including the definition of the canonical variables and the Poisson-bracket relations and their generalization as well as writing Hamilton's equations of motion in terms of Poisson brackets. 2. Construction of a quantization theory which incorporates dissipative effects. This includes the relevant commutation relations as well as deriving the appropriate Schrödinger's equation and the generalized Heisenberg's equation. 3. The quantization for the first time of two well- known problems: the charged-particle interaction with matter; and Brownian motion. Textbooks New Books ~~ Science~~ Physics ~~ General QUANTIZATION-OF-NONCONSERVATIVE-SYSTEMS~~Abdul-Wali-Ajlouni AV Akademikerverlag GmbH & Co. KG. Most advanced methods of classical mechanics deal only with conservative systems, although all natural processes in the physical world are nonconservative. Classically or quantum-mechanically treated, macroscopically or microscopically viewed, the physical world shows different kinds of dissipation and irreversibility, ignored in analytical techniques, this dissipation appears in friction, Brownian motion, inelastic scattering, electrical impedance, etc. The main achievements of this work are, then, the following: 1. Completion of the classical framework of fractional mechanics, including the definition of the canonical variables and the Poisson-bracket relations and their generalization as well as writing Hamilton's equations of motion in terms of Poisson brackets. 2. Construction of a quantization theory which incorporates dissipative effects. This includes the relevant commutation relations as well as deriving the appropriate Schrödinger's equation and the generalized Heisenberg's equation. 3. The quantization for the first time of two well- known problems: the charged-particle interaction with matter; and Brownian motion.

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QUANTIZATION OF NONCONSERVATIVE SYSTEMS - Ajlouni, Abdul-Wali
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fractional quantum mechanics - Buch, gebundene Ausgabe, 68 S., Beilagen: Paperback, Erschienen: 2010 LAP Lambert Acad. Publ. Most advanced methods of classical mechanics deal only with conservative systems, although all natural processes in the physical world are nonconservative. Classically or quantum-mechanically treated, macroscopically or microscopically viewed, the physical world shows different kinds of dissipation and irreversibility, ignored in analytical techniques, this dissipation appears in friction, Brownian motion, inelastic scattering, electrical impedance, etc. The main achievements of this work are, then, the following: 1. Completion of the classical framework of fractional mechanics, including the definition of the canonical variables and the Poisson-bracket relations and their generalization as well as writing Hamilton's equations of motion in terms of Poisson brackets. 2. Construction of a quantization theory which incorporates dissipative effects. This includes the relevant commutation relations as well as deriving the appropriate Schrödinger's equation and the generalized Heisenberg's equation. 3. The quantization for the first time of two well- known problems: the charged-particle interaction with matter; and Brownian motion.

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Most advanced methods of classical mechanics deal only with conservative systems, although all natural processes in the physical world are nonconservative. Classically or quantum-mechanically treated, macroscopically or microscopically viewed, the physical world shows different kinds of dissipation and irreversibility, ignored in analytical techniques, this dissipation appears in friction, Brownian motion, inelastic scattering, electrical impedance, etc. The main achievements of this work are, then, the following: 1. Completion of the classical framework of fractional mechanics, including the definition of the canonical variables and the Poisson-bracket relations and their generalization as well as writing Hamilton's equations of motion in terms of Poisson brackets. 2. Construction of a quantization theory which incorporates dissipative effects. This includes the relevant commutation relations as well as deriving the appropriate Schrödinger's equation and the generalized Heisenberg's equation. 3. The quantization for the first time of two well- known problems: the charged-particle interaction with matter; and Brownian motion. Bücher / Naturwissenschaften, Medizin, Informatik & Technik / Physik & Astronomie

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QUANTIZATION OF NONCONSERVATIVE SYSTEMS:fractional quantum mechanics Abdul-Wali Ajlouni QUANTIZATION OF NONCONSERVATIVE SYSTEMS:fractional quantum mechanics Abdul-Wali Ajlouni Bücher > Wissenschaft > Physik, LAP Lambert Acad. Publ.

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QUANTIZATION OF NONCONSERVATIVE SYSTEMS

Most advanced methods of classical mechanics deal only with conservative systems, although all natural processes in the physical world are nonconservative. Classically or quantum-mechanically treated, macroscopically or microscopically viewed, the physical world shows different kinds of dissipation and irreversibility, ignored in analytical techniques, this dissipation appears in friction, Brownian motion, inelastic scattering, electrical impedance, etc. The main achievements of this work are, then, the following: 1. Completion of the classical framework of fractional mechanics, including the definition of the canonical variables and the Poisson-bracket relations and their generalization as well as writing Hamilton's equations of motion in terms of Poisson brackets. 2. Construction of a quantization theory which incorporates dissipative effects. This includes the relevant commutation relations as well as deriving the appropriate Schrödinger's equation and the generalized Heisenberg's equation. 3. The quantization for the first time of two well- known problems: the charged-particle interaction with matter; and Brownian motion.

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EAN (ISBN-13): 9783838372501
ISBN (ISBN-10): 3838372506
Gebundene Ausgabe
Taschenbuch
Herausgeber: AV Akademikerverlag GmbH & Co. KG.

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Buch zuletzt gefunden am 22.10.2017 17:45:40
ISBN/EAN: 3838372506

ISBN - alternative Schreibweisen:
3-8383-7250-6, 978-3-8383-7250-1


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