Owen / Krey | Basic Theoretical Physics | Buch | 978-3-642-07189-8 | sack.de

Buch, Englisch, 452 Seiten, Paperback, Format (B × H): 155 mm x 235 mm, Gewicht: 703 g

Owen / Krey

Basic Theoretical Physics

A Concise Overview
Softcover Nachdruck of hardcover 1. Auflage 2007
ISBN: 978-3-642-07189-8
Verlag: Springer

A Concise Overview

Buch, Englisch, 452 Seiten, Paperback, Format (B × H): 155 mm x 235 mm, Gewicht: 703 g

ISBN: 978-3-642-07189-8
Verlag: Springer


This concise treatment embraces, in four parts, all the main concepts of theoretical physics: Mechanics and Basic Relativity; Electrodynamics and Aspects of Optics; Non-relativistic Quantum Mechanics; and Thermodynamics and Statistical Physics. It thus serves both as an excellent review and preparation tool, and as a convenient reference source, covering the whole of theoretical physics. It may also be successfully employed to deepen readers' insight and add new dimensions to their understanding of these fundamental concepts. Recent topics such as holography and quantum cryptography are included, thus making this a unique contribution to the learning material for theoretical physics.

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Zielgruppe


Graduate


Autoren/Hrsg.


Weitere Infos & Material


Mechanics and Basic Relativity.- Space and Time.- Force and Mass.- Basic Mechanics of Motion in One Dimension.- Mechanics of the Damped and Driven Harmonic Oscillator.- The Three Classical Conservation Laws; Two-particle Problems.- Motion in a Central Force Field; Kepler’s Problem.- The Rutherford Scattering Cross-section.- Lagrange Formalism I: Lagrangian and Hamiltonian.- Relativity I: The Principle of Maximal Proper Time (Eigenzeit).- Coupled Small Oscillations.- Rigid Bodies.- Remarks on Non-integrable Systems: Chaos.- Lagrange Formalism II: Constraints.- Accelerated Reference Frames.- Relativity II: E=ms2.- Electrodynamics and Aspects of Optics.- and Mathematical Preliminaries to Part II.- Electrostatics and Magnetostatics.- Magnetic Field of Steady Electric Currents.- Maxwell’s Equations I: Faraday’s Law of Induction; the Continuity Equation; Maxwell’s Displacement Current.- Maxwell’s Equations II: Electromagnetic Waves.- Applications of Electrodynamics in the Field of Optics.- Conclusion to Part II.- Quantum Mechanics.- On the History of Quantum Mechanics.- Quantum Mechanics: Foundations.- One-dimensional Problems in Quantum Mechanics.- The Harmonic Oscillator I.- The Hydrogen Atom according to Schrödinger’s Wave Mechanics.- Abstract Quantum Mechanics (Algebraic Methods).- Spin Momentum and the Pauli Principle (Spin-statistics Theorem).- Spin-orbit Interaction; Addition of Angular Momenta.- Ritz Minimization.- Perturbation Theory for Static Problems.- Time-dependent Perturbations.- Magnetism: An Essentially Quantum Mechanical Phenomenon.- Cooper Pairs; Superconductors and Superfluids.- On the Interpretation of Quantum Mechanics (Reality?, Locality?, Retardation?).- Quantum Mechanics: Retrospect and Prospect.- Appendix: “Mutual Preparation Algorithm” for Quantum Cryptography.- Thermodynamics and Statistical Physics.- and Overview to Part IV.- Phenomenological Thermodynamics: Temperature and Heat.- The First and Second Laws of Thermodynamics.- Phase Changes, van der Waals Theory and Related Topics.- The Kinetic Theory of Gases.- Statistical Physics.- The Transition to Classical Statistical Physics.- Advanced Discussion of the Second Law.- Shannon’s Information Entropy.- Canonical Ensembles in Phenomenological Thermodynamics.- The Clausius-Clapeyron Equation.- Production of Low and Ultralow Temperatures; Third Law of Thermodynamics.- General Statistical Physics (Formal Completion; the Statistical Operator; Trace Formalism).- Ideal Bose and Fermi Gases.- Applications I: Fermions, Bosons, Condensation Phenomena.- Applications II: Phase Equilibria in Chemical Physics.- Conclusion to Part IV.



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