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  • Analytical Mechanics for Relativity and Quantum Mechanics

    Analytical Mechanics for Relativity and Quantum Mechanics by Johns, Oliver;

    Series: Oxford Graduate Texts;

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      • Publisher's listprice GBP 46.49
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    Product details:

    • Edition number 2
    • Publisher OUP Oxford
    • Date of Publication 3 March 2016

    • ISBN 9780198766803
    • Binding Paperback
    • No. of pages652 pages
    • Size 244x171x33 mm
    • Weight 1026 g
    • Language English
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    Categories

    Short description:

    An innovative and mathematically sound treatment of the foundations of analytical mechanics and the relation of classical mechanics to relativity and quantum theory. It presents classical mechanics in a way designed to assist the student's transition to quantum theory.

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    Long description:

    An innovative and mathematically sound treatment of the foundations of analytical mechanics and the relation of classical mechanics to relativity and quantum mechanics: Part I is an introduction to analytical mechanics, suitable for a graduate or advanced undergraduate course. Part II presents material designed principally for graduate students. The appendices in Part III summarize the mathematical methods used in the text.
    The book integrates relativity into the teaching of classical mechanics. Part II introduces special relativity and covariant mechanics. It develops extended Lagrangian and Hamiltonian methods that treat time as a transformable coordinate rather than the fixed parameter of Newtonian physics, including an extended definition of canonical transformation that both simplifies the theory and no longer excludes the Lorentz transformation.
    The book assists students who study classical mechanics as a preparation for quantum mechanics. Analytical mechanics is presented using methods - such as linear vector operators and dyadics - that familiarize the student with similar operator techniques in quantum theory and the dyadic Dirac notation. Comparisons to quantum mechanics appear throughout the text. For example, the chapter on Hamilton-Jacobi theory includes discussions of the closely related Bohm hidden variable model and Feynman path integral method. The chapter on angle-action variables concludes with a section on the old quantum theory.
    Several of the fundamental problems in physics - the development of quantum information technology, and the problem of quantizing the gravitational field, to name two - require a rethinking of the quantum-classical connection. Graduate students preparing for research careers will find a graduate mechanics course based on this book to be an essential bridge between their undergraduate training and advanced study in analytical mechanics, relativity, and quantum mechanics.

    New to the Second Edition:
    Part I contains new chapters on Central Force Motion (Chapter 11) and Scattering (Chapter 12), and new material on time-independent canonical transformations. Part II contains a new chapter (Chapter 22) on Angle-Action Variables. These additions allow a more flexible use of the text. Part I is now a self-contained, introductory analytical mechanics course. The instructor can then select a range of topics from Part II appropriate to the interests of more advanced students.

    Review from previous edition The author deserves to be congratulated on the production of what soon will establish itself as a well-respected and useful book which I am pleased to have on my shelf. In short, it would be difficult to conceive of any initial course of instruction and study on the subject … which would not benefit from use of this well-planned and conceived and refreshing presentation.

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    Table of Contents:

    I: INTRODUCTION: THE TRADITIONAL THEORY
    Basic Dynamics of Point Particles and Collections
    Introduction to Lagrangian Mechanics
    Lagrangian Theory of Constraints
    Introduction to Hamiltonian Mechanics
    The Calculus of Variations
    Hamilton's Principle
    Linear Operators and Dyadics
    Kinematics of Rotation
    Rotational Dynamics
    Small Vibrations About Equilibrium
    Two-body Central Force Systems
    Introduction to Scattering
    II:MECHANICS WITH TIME AS A COORDINATE
    Lagrangian Mechanics with Time as a Coordinate
    Hamiltonian Mechanics with Time as a Coordinate
    Hamilton's Principle and Noether's Theorem
    Relativity and Spacetime
    Fourvectors and Operators
    Relativistic Mechanics
    Canonical Transformations
    Generating Functions
    Hamilton-Jacobi Theory
    III: MATHEMATICAL APPENDICES
    Vector Fundamentals
    Matrices and Determinants
    Eigenvalue Problem with General Metric
    The Calculus of Many Variables
    Geometry of Phase Space

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