The Feynman lectures on physics: 3 Quantum mechanics
Gespeichert in:
Hauptverfasser: | , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Reading, Mass. [u.a.]
Addison-Wesley
1966
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Ausgabe: | 3. print. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Getr. Zählung Ill., graph. Darst. |
ISBN: | 0201021188 |
Internformat
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245 | 1 | 0 | |a The Feynman lectures on physics |n 3 |p Quantum mechanics |c Richard P. Feynman ; Robert B. Leighton ; Matthew Sands |
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Datensatz im Suchindex
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adam_text | L E C T U R E S ON PHYSICS QUANTUM MECHANICS RICHARD P. FEYNMAN RICHARD
CHACE TOLMAN PROFESSOR OF THEORETICAL PHYSICS CALIFORNIA INSTITUTE OF
TECHNOLOGY ROBERT B. LEIGHTON PROFESSOR OF PHYSICS CALIFORNIA INSTITUTE
OF TECHNOLOGY MATTHEW SANDS PROFESSOR STANFORD UNIVERSITY ADDISON-WESLEY
PUBLISHING COMPANY READING, MASSACHUSETTS MENLO PARK, CALIFORNIA *
LONDON * AMSTERDAM * DON MILLS, ONTARIO * SYDNEY CONTENTS N CHAPTER 1.
QUANTUM BEHAVIOR 1-1 ATOMIC MECHANICS 1-1 1-2 AN EXPERIMENT WITH BULLETS
1-1 1-3 AN EXPERIMENT WITH WAVES 1-3 1-4 AN EXPERIMENT WITH ELECTRONS
1-4 1-5 THE INTERFERENCE OF ELECTRON WAVES 1-5 1-6 WATCHING THE
ELECTRONS 1-6 1-7 FIRST PRINCIPLES OF QUANTUM MECHANICS 1-9 1-8 THE
UNCERTAINTY PRINCIPLE 1-11 CHAPTER 2. THE RELATION OF WAVE AND PARTICLE
VIEWPOINTS 2-1 PROBABILITY WAVE AMPLITUDES 2-1 2-2 MEASUREMENT OF
POSITION AND MOMENTUM 2-2 2-3 CRYSTAL DIFFRACTION 2-4 2-4 THE SIZE OF AN
ATOM 2-5 2-5 ENERGY LEVELS 2-7 2-6 PHILOSOPHICAL IMPLICATIONS 2-8
CHAPTER 3. PROBABILITY AMPLITUDES 3-1 THE LAWS OF COMBINING AMPLITUDES
3-1 3-2 THE TWO-SLIT INTERFERENCE PATTERN 3-5 3-3 SCATTERING FROM A
CRYSTAL 3-7 3-4 IDENTICAL PARTICLES 3-9 CHAPTER 4. IDENTICAL PARTICLES
4-1 BOESE PARTICLES AND FERMI PARTICLES 4-1 4-2 STATES WITH TWO BOESE
PARTICLES 4-3 4-3 STATES WITH N BOESE PARTICLES 4-6 4-4 EMISSION AND
ABSORPTION OF PHOTONS 4-7 4-5 THE BLACKBODY SPECTRUM 4-8 4-6 LIQUID
HELIUM 4-12 4-7 THE EXCLUSION PRINCIPLE 4-12 CHAPTER 5. SPIN ONE 5-1
FILTERING ATOMS WITH A STERN-GERLACH APPARATUS 5-1 5-2 EXPERIMENTS WITH
FILTERED ATOMS 5-5 5-3 STERN-GERLACH FILTERS IN SERIES 5-6 5-4 BASE
STATES 5-8 5-5 INTERFERING AMPLITUDES 5-10 5-6 THE MACHINERY OF QUANTUM
MECHANICS 5-12 5-7 TRANSFORMING TO A DIFFERENT BASE 5-15 5-8 OTHER
SITUATIONS 5-16 CHAPTER 6. SPIN ONE-HALF 6-1 TRANSFORMING AMPLITUDES 6-1
6-2 TRANSFORMING TO A ROTATED COORDINATE SYSTEM 6-3 6-3 ROTATIONS ABOUT
THE Z-AXIS 6-6 6-4 ROTATIONS OF 180 AND 90 ABOUT Y 6-9 6-5 ROTATIONS
ABOUT X 6-11 6-6 ARBITRARY ROTATIONS 6-12 CHAPTER 7. THE DEPENDENCE OF
AMPLITUDES ON TIME 7-1 ATOMS AT REST; STATIONARY STATES 7-1 7-2 UNIFORM
MOTION 7-3 7-3 POTENTIAL ENERGY; ENERGY CONSERVATION 7-6 7-4 FORCES; THE
CLASSICAL LIMIT 7-9 7-5 THE PRECESSION OF A SPIN ONE-HALF PARTICLE
7-10 CHAPTER 8. THE HAMILTONIAN MATRIX 8-1 AMPLITUDES AND VECTORS 8-1
8-2 RESOLVING STATE VECTORS 8-3 8-3 WHAT ARE THE BASE STATES OF THE
WORLD ? 8-5 8-4 HOW STATES CHANGE WITH TIME 8-7 8-5 THE HAMILTONIAN
MATRIX 8-10 8-6 THE AMMONIA MOLECULE 8-11 CHAPTER 9. THE AMMONIA MASER
9-1 THE STATES OF AN AMMONIA MOLECULE 9-1 9-2 THE MOLECULE IN A STATIC
ELECTRIC FIELD 9-5 9-3 TRANSITIONS IN A TIME-DEPENDENT FIELD 9-9 9-4
TRANSITIONS AT RESONANCE 9-11 9-5 TRANSITIONS OFF RESONANCE 9-13 9-6 THE
ABSORPTION OF LIGHT 9-14 CHAPTER 10. OTHER TWO-STATE SYSTEMS 10-1 THE
HYDROGEN MOLECULAR ION 10-1 10-2 NUCLEAR FORCES 10-6 10-3 THE HYDROGEN
MOLECULE 10-8 10-4 THE BENZENE MOLECULE 10-10 10-5 DYES 10-12 10-6 THE
HAMILTONIAN OF A SPIN ONE-HALF PARTICLE IN A MAGNETIC FIELD 10-12 10-7
THE SPINNING ELECTRON IN A MAGNETIC FIELD 10-15 CHAPTER 11. MORE
TWO-STATE SYSTEMS CHAPTER 17. SYMMETRY AND CONSERVATION LAWS 11-1 THE
PAULI SPIN MATRICES 11-1 11-2 THE SPIN MATRICES AS OPERATORS 11-5 11-3
THE SOLUTION OF THE TWO-STATE EQUATIONS 11-8 11-4 THE POLARIZATION
STATES OF THE PHOTON 11-9 11-5 THE NEUTRAL K-MESON 11-12 11-6
GENERALIZATION TO JV-STATE SYSTEMS 11-20 CHAPTER 12. THE HYPERFINE
SPLITTING IN HYDROGEN 12-1 BASE STATES FOR A SYSTEM WITH TWO SPIN
ONE-HALF PARTICLES 12-1 12-2 THE HAMILTONIAN FOR THE GROUND STATE OF
HYDROGEN 12-3 12-3 THE ENERGY LEVELS 12-7 12-4 THE ZEEMAN SPLITTING 12-9
12-5 THE STATES IN A MAGNETIC FIELD 12-12 12-6 THE PROJECTION MATRIX FOR
SPIN ONE 12-14 CHAPTER 13. PROPAGATION IN A CRYSTAL LATTICE 13-1 STATES
FOR AN ELECTRON IN A ONE-DIMENSIONAL LATTICE 13-1 13-2 STATES OF
DEFINITE ENERGY 13-3 13-3 TIME-DEPENDENT STATES 13-6 13-4 AN ELECTRON IN
A THREE-DIMENSIONAL LATTICE 13-7 13-5 OTHER STATES IN A LATTICE 13-8
13-6 SCATTERING BY IMPERFECTIONS IN THE LATTICE 13-10 13-7 TRAPPING BY A
LATTICE IMPERFECTION 13-12 13-8 SCATTERING AMPLITUDES AND BOUND STATES
13-13 CHAPTER 14. SEMICONDUCTORS 14-1 ELECTRONS AND HOLES IN
SEMICONDUCTORS 14-1 14-2 IMPURE SEMICONDUCTORS 14-4 14-3 THE HALL EFFECT
14-7 14-4 SEMICONDUCTOR JUNCTIONS 14-8 14-5 RECTIFICATION AT A
SEMICONDUCTOR JUNCTION 14-10 14-6 THE TRANSISTOR 14-11 CHAPTER 15. THE
INDEPENDENT PARTICLE APPROXIMATION 15-1 SPIN WAVES 15-1 15-2 TWO SPIN
WAVES 15-4 15-3 INDEPENDENT PARTICLES 15-6 15-4 THE BENZENE MOLECULE
15-7 15-5 MORE ORGANIC CHEMISTRY 15-10 15-6 OTHER USES OF THE
APPROXIMATION 15-12 CHAPTER 16. THE DEPENDENCE OF AMPLITUDES ON POSITION
16-1 AMPLITUDES ON A LINE 16-1 16-2 THE WAVE FUNCTION 16-5 16-3 STATES
OF DEFINITE MOMENTUM 16-7 16-4 NORMALIZATION OF THE STATES IN X 16-9
16-5 THE SCHROEDINGER EQUATION 16-11 16-6 QUANTIZED ENERGY LEVELS 16-14
10 17-1 SYMMETRY 17-1 17-2 SYMMETRY AND CONSERVATION 17-3 17-3 THE
CONSERVATION LAWS 17-7 17-4 POLARIZED LIGHT 17-9 17-5 THE
DISTINTEGRATION OF THE A 17-11 17-6 SUMMARY OF THE ROTATION MATRICES
17-15 CHAPTER 18. ANGULAR MOMENTUM 18-1 ELECTRIC DIPOLE RADIATION 18-1
18-2 LIGHT SCATTERING 18-3 18-3 THE ANNIHILATION OF POSITRONIUM 18-5
18-4 ROTATION MATRIX FOR ANY SPIN 18-9 18-5 MEASURING A NUCLEAR SPIN
18-13 18-6 COMPOSITION OF ANGULAR MOMENTUM 18-14 ADDED NOTE 1:
DERIVATION OF THE ROTATION MATRIX 18-19 ADDED NOTE 2: CONSERVATION OF
PARITY IN PHOTON EMISSION 18-22 CHAPTER 19. THE HYDROGEN ATOM AND THE
PERIODIC TABLE 19-1 SCHROEDINGER S EQUATION FOR THE HYDROGEN ATOM 19-1
19-2 SPHERICALLY SYMMETRIE SOLUTIONS 19-2 19-3 STATES WITH AN ANGULAR
DEPENDENCE 19-6 19-4 THE GENERAL SOLUTION FOR HYDROGEN 19-10 19-5 THE
HYDROGEN WAVE FUNETIONS 19-12 19-6 THE PERIODIC TABLE 19-13 CHAPTER 20.
OPERATORS 20-1 OPERATIONS AND OPERATORS 20-1 20-2 AVERAGE ENERGIES 20-3
20-3 THE AVERAGE ENERGY OF AN ATOM 20-6 20-4 THE POSITION OPERATOR 20-8
20-5 THE MOMENTUM OPERATOR 20-9 20-6 ANGULAR MOMENTUM 20-14 20-7 THE
CHANGE OF AVERAGES WITH TIME 20-15 CHAPTER 21. THE SCHROEDINGER EQUATION
IN A CLASSICAL CONTEXT: A SEMINAR ON SUPERCONDUCTIVITY 21-1
SCHROEDINGER S EQUATION IN A MAGNETIC FIELD 21-1 21-2 THE EQUATION OF
CONTINUITY FOR PROBABILITIES 21-3 21-3 TWO KINDS OF MOMENTUM 21-4 21-4
THE MEANING OF THE WAVE FUNCTION 21-6 21-5 SUPERCONDUCTIVITY 21-7 21-6
THE MEISSNER EFFECT 21-8 21-7 FLUX QUANTIZATION 21-10 21-8 THE DYNAMICS
OF SUPERCONDUCTIVITY 21-12 21-9 THE JOSEPHSON JUNCTION 21-14 FEYNMAN S
EPILOGUE APPENDIX INDEX
|
any_adam_object | 1 |
author | Feynman, Richard P. 1918-1988 Leighton, Robert B. 1919-1997 Sands, Matthew L. 1919-2014 |
author_GND | (DE-588)118827545 (DE-588)113133316 (DE-588)113133324 |
author_facet | Feynman, Richard P. 1918-1988 Leighton, Robert B. 1919-1997 Sands, Matthew L. 1919-2014 |
author_role | aut aut aut |
author_sort | Feynman, Richard P. 1918-1988 |
author_variant | r p f rp rpf r b l rb rbl m l s ml mls |
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bvnumber | BV010465159 |
ctrlnum | (OCoLC)443648883 (DE-599)BVBBV010465159 |
edition | 3. print. |
format | Book |
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isbn | 0201021188 |
language | English |
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publishDate | 1966 |
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spelling | Feynman, Richard P. 1918-1988 Verfasser (DE-588)118827545 aut The Feynman lectures on physics 3 Quantum mechanics Richard P. Feynman ; Robert B. Leighton ; Matthew Sands 3. print. Reading, Mass. [u.a.] Addison-Wesley 1966 Getr. Zählung Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier fizika - osnove - kvantna mehanika - polprevodnost - učbeniki za visoke šole Leighton, Robert B. 1919-1997 Verfasser (DE-588)113133316 aut Sands, Matthew L. 1919-2014 Verfasser (DE-588)113133324 aut (DE-604)BV002321139 3 GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=006973327&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Feynman, Richard P. 1918-1988 Leighton, Robert B. 1919-1997 Sands, Matthew L. 1919-2014 The Feynman lectures on physics fizika - osnove - kvantna mehanika - polprevodnost - učbeniki za visoke šole |
title | The Feynman lectures on physics |
title_auth | The Feynman lectures on physics |
title_exact_search | The Feynman lectures on physics |
title_full | The Feynman lectures on physics 3 Quantum mechanics Richard P. Feynman ; Robert B. Leighton ; Matthew Sands |
title_fullStr | The Feynman lectures on physics 3 Quantum mechanics Richard P. Feynman ; Robert B. Leighton ; Matthew Sands |
title_full_unstemmed | The Feynman lectures on physics 3 Quantum mechanics Richard P. Feynman ; Robert B. Leighton ; Matthew Sands |
title_short | The Feynman lectures on physics |
title_sort | the feynman lectures on physics quantum mechanics |
topic | fizika - osnove - kvantna mehanika - polprevodnost - učbeniki za visoke šole |
topic_facet | fizika - osnove - kvantna mehanika - polprevodnost - učbeniki za visoke šole |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=006973327&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV002321139 |
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