Classical And Quantum Physics


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Mathematics of Classical and Quantum Physics


Mathematics of Classical and Quantum Physics

Author: Frederick W. Byron

language: en

Publisher: Courier Corporation

Release Date: 2012-04-26


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Graduate-level text offers unified treatment of mathematics applicable to many branches of physics. Theory of vector spaces, analytic function theory, theory of integral equations, group theory, and more. Many problems. Bibliography.

From Classical to Quantum Mechanics


From Classical to Quantum Mechanics

Author: Giampiero Esposito

language: en

Publisher: Cambridge University Press

Release Date: 2004-03-11


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This 2004 textbook provides a pedagogical introduction to the formalism, foundations and applications of quantum mechanics. Part I covers the basic material which is necessary to understand the transition from classical to wave mechanics. Topics include classical dynamics, with emphasis on canonical transformations and the Hamilton-Jacobi equation, the Cauchy problem for the wave equation, Helmholtz equation and eikonal approximation, introduction to spin, perturbation theory and scattering theory. The Weyl quantization is presented in Part II, along with the postulates of quantum mechanics. Part III is devoted to topics such as statistical mechanics and black-body radiation, Lagrangian and phase-space formulations of quantum mechanics, and the Dirac equation. This book is intended for use as a textbook for beginning graduate and advanced undergraduate courses. It is self-contained and includes problems to aid the reader's understanding.

Geometric Formulation of Classical and Quantum Mechanics


Geometric Formulation of Classical and Quantum Mechanics

Author: G. Giachetta

language: en

Publisher: World Scientific

Release Date: 2011


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The geometric formulation of autonomous Hamiltonian mechanics in the terms of symplectic and Poisson manifolds is generally accepted. This book provides the geometric formulation of non-autonomous mechanics in a general setting of time-dependent coordinate and reference frame transformations.