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- Principles of Quantum Mechanics, 2nd Edition.
Eigenfunctions and Eigenvalues of Operators 9. Properties of the Eigenfunctions of Operators with a Discrete Spectrum Properties of the Eigenfunctions of Operators with a Continuous Spectrum Methods to Determine the States of Quantum Systems The Heisenberg Relations for Physical Quantities Change of Quantum States in Time Stationary States Integrals of Motion and Symmetry Conditions Group Theory in Quantum Mechanics Semi-classical Approximation The Bohr-Sommerfeld Quantization Rules The Simplest Applications of Quantum Mechanics A Particle in a Rectangular Potential Well Elementary Representation Theory Different Representations of the State Vector Different Representations of Operators The General Theory of Unitary Transformations Occupation Number Representation for the Harmonic Oscillator Spherically Symmetric Oscillator Well Motion in a Coulomb Field; the Discrete Spectrum Motion in a Coulomb Field; the Continuous Spectrum Angular Momentum Operator Vector Addition of Two Angular Momenta Approximate Methods for Evaluating Eigenvalues and Eigenfunctions Conditions for the Applicability of Perturbation Theory Perturbation Theory when Two Levels are Close Perturbation Theory for Degenerate Levels Applications of the Variational Method to Approximate Calculations Elementary Particles in Quantum Mechanics Relativistic Equation for a Zero-spin Particle Free Spin-zero Particles Interaction of a Spin-zero Particle with an Electromagnetic Field Dirac's Relativistic Equation Covariant form of the Dirac Equation Spin-orbit Interaction Charge Conjugation; Particles and Antiparticles Atom in an External Magnetic Field Symmetric and Antisymmetric Wavefunctions Self-consistent Hartree-Fock Field The Statistical Thomas-Fermi Method The Periodic System Spectral and X-ray Terms Second Quantization of Systems of Identical Bosons Second Quantization of the Electromagnetic Field without Charges Photons with a Well-defined Angular Momentum and Parity Phonons in a Three-dimensional Crystal Second Quantization of the Meson Field Quasi-particles in a System of Interacting Bosons Second Quantization of Systems of Identical Fermions Excitation of an Atom through Bombardment by a Heavy Particle Adiabatic and Sudden Switching on and Switching off of the Interaction Transition Probability Per Unit Time Polarizability of a Quantum System Elementary Theory of the Photo-effect Transitions Caused by Time-independent Interactions Quantum Theory of Relaxation Processes The Statistical Operator of a Dynamical Subsystem Quantum Theory of Scattering Elastic Scattering of Spin-zero Particles The Free Particle Green Function Theory of Elastic Scattering in the Born Approximation Partial Wave Method in Scattering Theory Elastic Scattering of Slow Particles Additional highlights include: - Clear, accessible treatment of underlying mathematics - A review of Newtonian, Lagrangian, and Hamiltonian mechanics - Student understanding of quantum theory is enhanced by separate treatment of mathematical theorems and physical postulates - Unsurpassed coverage of path integrals and their relevance in contemporary physics The requisite text for advanced undergraduate- and graduate-level students, Principles of Quantum Mechanics, Second Edition is fully referenced and is supported by many exercises and solutions.
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