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230209s1996 xx o ||| 0 eng d |
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|a EBLCP
|b eng
|c EBLCP
|d DXU
|d OCLCQ
|d OCLCO
|d OCLCL
|d EBLCP
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|c (S
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|a 9783527618200
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|a 3527618201
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|a (OCoLC)1347027743
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|a 530.1/2
|q OCoLC
|2 20/eng/20230216
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|a UAMI
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|a Singh, Jasprit.
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|a Quantum Mechanics
|h [electronic resource] :
|b Fundamentals and Applications to Technology.
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260 |
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|a Newark :
|b John Wiley & Sons, Incorporated,
|c 1996.
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|a 1 online resource (538 p.).
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|a New York Academy of Sciences Ser.
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|a Description based upon print version of record.
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|a QUANTUM MECHANICS Fundamentals and Applications to Technology -- CONTENTS -- PREFACE -- INTRODUCTION -- QUANTUM MECHANICS AND TECHNOLOGY -- Some Technology Needs and Challenges -- GUIDELINES FOR THE INSTRUCTOR -- SOME IMPORTANT REFERENCES -- Historical Development of Quantum Mechanics -- Textbooks -- General -- 1 A JOLT FOR CLASSICAL PHYSICS -- 1.1 INTRODUCTION -- 1.1.1 A Bit of History -- 1.1.2 Some Simple Questions -- 1.2 SOME EXPERIMENTS THAT DEFIED CLASSICAL PHYSICS -- 1.3 A PREVIEW OF THE TRANSITION FROM CLASSICAL TO QUANTUM PHYSICS -- 1.3.1 Newtonian Mechanics
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|a 1.3.2 Classical Wave Phenomena -- 1.3.3 The Wave-Particle Duality: A Hint in Optics -- 1.4 MODERN CLASSICAL MECHANICS: A BRIEF OVERVIEW -- 1.4.1 The Lagrangian Equations -- 1.4.2 Hamilton Equations of Motion -- 1.4.3 The Poisson Bracket Description -- 1.4.4 The Hamilton-Jacobi Formulation -- 1.5 THE HAMILTON-JACOBI THEORY AND WAVE MECHANICS -- 1.6 CHAPTER SUMMARY -- 2 THE MATHEMATICAL FORMULATION OF QUANTUM MECHANICS -- 2.1 INTRODUCTION -- 2.1.1 What Are We Trying to Do? -- 2.2 THE SCHRÖDINGER EQUATION -- 2.3 THE WAVE AMPLITUDE -- 2.3.1 Normalization of the Wavefunction
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|a 2.6.5 Important Representations in Quantum Mechanics -- 2.6.6 Hilbert Space -- 2.6.7 Hermitian and Unitary Matrices -- 2.7 EQUATIONS OF MOTION -- 2.8 CHAPTER SUMMARY -- 2.9 PROBLEMS -- 3 PARTICLES IN SIMPLE POTENTIALS -- 3.1 INTRODUCTION -- 3.2 THE FREE PARTICLE PROBLEM AND DENSITY OF STATES -- 3.2.1 Density of States for a Three-Dimensional System -- 3.2.2 Density of States in Sub-Three-Dimensional Systems -- 3.3 PARTICLE IN A QUANTUM WELL -- 3.3.1 The Square Quantum Well -- 3.3.2 Particle in a Triangular Quantum Well -- 3.3.3 Particle in an Arbitrary Quantum Well
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|a 3.3.4 Application Example: Confined Levels in Semiconductor Transistors -- 3.4 PARTICLE IN A PERIODIC POTENTIAL: BLOCH THEOREM -- 3.4.1 The Kronig-Penney Model for Bandstructure -- 3.4.2 Significance of the k-Vector -- 3.5 THE HARMONIC OSCILLATOR -- 3.6 THE MATRIX FORMULATION OF THE HARMONIC OSCILLATOR -- 3.7 HARMONIC OSCILLATOR: QUANTUM AND CLASSICAL TREATMENT -- 3.8 CHAPTER SUMMARY -- 3.9 PROBLEMS -- 4 THE TUNNELING PROBLEM -- 4.1 INTRODUCTION -- 4.2 THE GENERAL TUNNELING PROBLEM -- 4.2.1 Approaches to the Tunneling Problem -- 4.3 STATIONARY STATE APPROACH TO TUNNELING
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|a 4.3.1 Tunneling through a Square Potential Barrier
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590 |
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|a ProQuest Ebook Central
|b Ebook Central Academic Complete
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655 |
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|a Electronic books.
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|i has work:
|a Quantum mechanics (Text)
|1 https://id.oclc.org/worldcat/entity/E39PCH8XgxyRxfv8XvB7HRxp8C
|4 https://id.oclc.org/worldcat/ontology/hasWork
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776 |
0 |
8 |
|i Print version:
|a Singh, Jasprit
|t Quantum Mechanics
|d Newark : John Wiley & Sons, Incorporated,c1996
|z 9780471157588
|
830 |
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0 |
|a New York Academy of Sciences Ser.
|
856 |
4 |
0 |
|u https://ebookcentral.uam.elogim.com/lib/uam-ebooks/detail.action?docID=7104661
|z Texto completo
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880 |
8 |
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|6 505-00/(S
|a 2.3.2 The Probability Current Density -- 2.3.3 Expectation Values -- 2.4 WAVES, WAVEPACKETS AND UNCERTAINTY -- 2.4.1 Physical Observables and Commutation Relations -- 2.4.2 Properties of a Wavepacket: The Ehrenfest Theorem -- 2.5 HOW DOES ONE SOLVE THE SCHRÖDINGER EQUATION-- 2.5.1 Time-Independent Hamiltonian Problem -- 2.5.2 Time-Dependent Hamiltonian -- 2.6 SOME MATHEMATICAL TOOLS FOR QUANTUM MECHANICS -- 2.6.1 Boundary Conditions on the Wavefunction -- 2.6.2 Basis Functions and the Eigenvalue Matrix -- 2.6.3 The Dirac δ-function -- 2.6.4 Dirac Notation: Bra and Ket
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938 |
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|a ProQuest Ebook Central
|b EBLB
|n EBL7104661
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994 |
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|a 92
|b IZTAP
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