Quantum mechanics for scientists and engineers / David A.B. Miller.
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Item type | Current library | Call number | Copy number | Status | Notes | Date due | Barcode |
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Female Library | QC174.13 .M556 2008 (Browse shelf (Opens below)) | 1 | Available | STACKS | 51952000192039 | |
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Main Library | QC174.13 .M556 2008 (Browse shelf (Opens below)) | 1 | Available | STACKS | 51952000192022 |
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QC174.12 .S3213 2016 Quantum physics : a first encounter : interference, entanglement, and reality / | QC174.12 .W458 2015 The new quantum age : from Bell's theorem to quantum computation and teleportation / | QC174.123 .C74 2014 The quantum moment : how Planck, Bohr, Einstein, and Heisenberg taught us to love uncertainty / | QC174.13 .M556 2008 Quantum mechanics for scientists and engineers / | QC174.15 .F53 2016 Problems and solutions in quantum physics / | QC174.17.Q29 .V66 2016 QBism : the future of quantum physics / | QC174.17.S9 .Z44 2016 Fearful symmetry : the search for beauty in modern physics / |
Includes bibliographical references (pages 535-538) and index.
Waves and quantum mechanics -- Schrodinger's equation -- The time-dependent Schrödinger equation -- Functions and operators -- Operators and quantum mechanics -- Approximation methods in quantum mechanics -- Time-dependent perturbation theory -- Quantum mechanics in crystalline materials -- Angular momentum -- The hydrogen atom -- Methods for one-dimensional problems -- Spin -- Identical particles -- The density matrix -- Harmonic oscillators and photons -- Fermion operators -- Interaction of different kinds of particles -- Quantum information -- Interpretation of quantum mechanics -- Appendix A : Background mathematics -- Appendix B : Background physics -- Appendix C : Vector calculus -- Appendix D : Maxwell's equations and electromagnetism -- Appendix E : Perturbing Hamiltonian for optical absorption -- Appendix F : Early history of quantum mechanics -- Appendix G : Some useful mathematical formulae -- Appendix H : Greek alphabet -- Appendix I : Fundamental constants.
This text relates the core principles of quantum mechanics to modern applications in engineering, physics, and nanotechnology. The book's applied emphasis illustrates theoretical concepts with examples of nanostructured materials, optics, and semiconductor devices.
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