The physics of atoms and quanta: introduction to experiments and theory ; with 30 tables,177 problems and solutions
Gespeichert in:
Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin [u.a.]
Springer
2005
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Ausgabe: | 7., rev. and enl. ed. |
Schriftenreihe: | Advanced Texts in Physics
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XX, 517 S. Ill., graph. Darst. |
ISBN: | 3540208070 9783540208075 |
Internformat
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245 | 1 | 0 | |a The physics of atoms and quanta |b introduction to experiments and theory ; with 30 tables,177 problems and solutions |c Hermann Haken ; Hans Christoph Wolf |
250 | |a 7., rev. and enl. ed. | ||
264 | 1 | |a Berlin [u.a.] |b Springer |c 2005 | |
300 | |a XX, 517 S. |b Ill., graph. Darst. | ||
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Datensatz im Suchindex
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adam_text |
HERMANN HAKEN HANS CHRISTOPH WOLF THE PHYSICS OF ATOMS AND QUANTA
INTRODUCTION TO EXPERIMENTS AND THEORY TRANSLATED BY WILLIAM D. BREWER
SEVENTH REVISED AND ENLARGED EDITION WITH 300 FIGURES, 30 TABLES, 177
PROBLEMS AND SOLUTIONS 4Y SPRINGER CONTENTS LIST OF THE MOST IMPORTANT
SYMBOLS USED XIX 1. INTRODUCTION 1 1.1 CLASSICAL PHYSICS AND QUANTUM
MECHANICS 1 1.2 SHORT HISTORICAL REVIEW 1 2. THE MASS AND SIZE OF THE
ATOM 5 2.1 WHAT IS AN ATOM? 5 2.2 DETERMINATION OF THE MASS 5 2.3
METHODS FOR DETERMINING AVOGADRO'S NUMBER 7 2.3.1 ELECTROLYSIS 7 2.3.2
THE GAS CONSTANT AND BOLTZMANN'S CONSTANT 7 2.3.3 X-RAY DIFFRACTION IN
CRYSTALS 8 2.3.4 DETERMINATION USING RADIOACTIVE DECAY 9 2.4
DETERMINATION OF THE SIZE OF THE ATOM 10 2.4.1 APPLICATION OF THE
KINETIC THEORY OF GASES 10 2.4.2 THE INTERACTION CROSS SECTION 11 2.4.3
EXPERIMENTAL DETERMINATION OF INTERACTION CROSS SECTIONS 14 2.4.4
DETERMINING THE ATOMIC SIZE FROM THE COVOLUME 15 2.4.5 ATOMIC SIZES FROM
X-RAY DIFFRACTION MEASUREMENTS ON CRYSTALS . . 15 2.4.6 CAN INDIVIDUAL
ATOMS BE SEEN? 20 PROBLEMS 25 3. ISOTOPES 27 3.1 THE PERIODIC SYSTEM OF
THE ELEMENTS 27 3.2 MASS SPECTROSCOPY 29 3.2.1 PARABOLA METHOD 29 3.2.2
IMPROVED MASS SPECTROMETERS 32 3.2.3 RESULTS OF MASS SPECTROMETRY 33
3.2.4 MODERN APPLICATIONS OF THE MASS SPECTROMETER 34 3.2.5 ISOTOPE
SEPARATION 35 PROBLEMS 36 4. THE NUCLEUS OF THE ATOM 37 4.1 PASSAGE OF
ELECTRONS THROUGH MATTER 37 4.2 PASSAGE OF ALPHA PARTICLES THROUGH
MATTER (RUTHERFORD SCATTERING) 39 4.2.1 SOME PROPERTIES OF ALPHA
PARTICLES 39 4.2.2 SCATTERING OF ALPHA PARTICLES BY A FOIL 39 4.2.3
DERIVATION OF THE RUTHERFORD SCATTERING FORMULA 41 4.2.4 EXPERIMENTAL
RESULTS 46 4.2.5 WHAT IS MEANT BY NUCLEAR RADIUS? 47 PROBLEMS 48 XII
CONTENTS 5. THE PHOTON 49 5.1 WAVE CHARACTER OF LIGHT 49 5.2 THERMAL
RADIATION 51 5.2.1 SPECTRAL DISTRIBUTION OF BLACK BODY RADIATION 51
5.2.2 PLANCK'S RADIATION FORMULA 53 5.2.3 EINSTEIN'S DERIVATION OF
PLANCK'S FORMULA 54 5.3 THE PHOTOELECTRIC EFFECT 58 5.4 THE COMPTON
EFFECT 60 5.4.1 EXPERIMENTS 60 5.4.2 DERIVATION OF THE COMPTON SHIFT 62
PROBLEMS 64 6. THE ELECTRON 69 6.1 PRODUCTION OF FREE ELECTRONS 69 6.2
SIZE OF THE ELECTRON 69 6.3 THE CHARGE OF THE ELECTRON 70 6.4 THE
SPECIFIC CHARGE E/M OF THE ELECTRON 71 6.5 WAVE CHARACTER OF ELECTRONS
AND OTHER PARTICLES 74 6.6 INTERFEROMETRY WITH ATOMS 78 PROBLEMS 79 7.
SOME BASIC PROPERTIES OF MATTER WAVES 81 7.1 WAVE PACKETS 81 7.2
PROBABILISTIC INTERPRETATION 85 7.3 THE HEISENBERG UNCERTAINTY RELATION
87 7.4 THE ENERGY-TIME UNCERTAINTY RELATION 89 7.5 SOME CONSEQUENCES OF
THE UNCERTAINTY RELATIONS FOR BOUND STATES . 90 PROBLEMS 93 8. BOHR'S
MODEL OF THE HYDROGEN ATOM 95 8.1 BASIC PRINCIPLES OF SPECTROSCOPY 95
8.2 THE OPTICAL SPECTRUM OF THE HYDROGEN ATOM 97 8.3 BOHR'S POSTULATES
100 8.4 SOME QUANTITATIVE CONCLUSIONS 104 8.5 MOTION OF THE NUCLEUS 105
8.6 SPECTRA OF HYDROGEN-LIKE ATOMS 107 8.7 MUONIC ATOMS 109 8.8
EXCITATION OF QUANTUM JUMPS BY COLLISIONS 112 8.9 SOMMERFELD'S EXTENSION
OF THE BOHR MODEL AND THE EXPERIMENTAL JUSTIFICATION OF A SECOND QUANTUM
NUMBER 114 8.10 LIFTING OF ORBITAL DEGENERACY BY THE RELATIVISTIC MASS
CHANGE 116 8.11 LIMITS OF THE BOHR-SOMMERFELD THEORY. THE CORRESPONDENCE
PRINCIPLE . 117 8.12 RYDBERG ATOMS 117 8.13 EXOTIC ATOMS: POSITRONIUM,
MUONIUM, AND ANTIHYDROGEN 120 PROBLEMS 122 9. THE MATHEMATICAL FRAMEWORK
OF QUANTUM THEORY 125 9.1 THE PARTICLE IN A BOX 125 9.2 THE SCHRODINGER
EQUATION 129 CONTENTS XIII 9.3 THE CONCEPTUAL BASIS OF QUANTUM THEORY
131 9.3.1 OBSERVATIONS, VALUES OF MEASUREMENTS AND OPERATORS 131 9.3.2
MOMENTUM MEASUREMENT AND MOMENTUM PROBABILITY 132 9.3.3 AVERAGE VALUES
AND EXPECTATION VALUES 133 9.3.4 OPERATORS AND EXPECTATION VALUES 136
9.3.5 EQUATIONS FOR DETERMINING THE WAVEFUNCTION 137 9.3.6 SIMULTANEOUS
OBSERVABILITY AND COMMUTATION RELATIONS 139 9.4 THE QUANTUM MECHANICAL
OSCILLATOR 142 PROBLEMS 148 10. QUANTUM MECHANICS OF THE HYDROGEN ATOM
153 10.1 MOTION IN A CENTRAL FIELD 153 10.2 ANGULAR MOMENTUM
EIGENFUNCTIONS 155 10.3 THE RADIAL WAVEFUNCTIONS IN A CENTRAL FIELD* 161
10.4 THE RADIAL WAVEFUNCTIONS OF HYDROGEN 163 PROBLEMS 169 11. LIFTING
OF THE ORBITAL DEGENERACY IN THE SPECTRA OF ALKALI ATOMS 171 11.1 SHELL
STRUCTURE 171 11.2 SCREENING 173 11.3 THE TERM DIAGRAM 174 11.4 INNER
SHELLS 179 PROBLEMS 179 12. ORBITAL AND SPIN MAGNETISM. FINE STRUCTURE
181 12.1 INTRODUCTION AND OVERVIEW 181 12.2 MAGNETIC MOMENT OF THE
ORBITAL MOTION 182 12.3 PRECESSION AND ORIENTATION IN A MAGNETIC FIELD
184 12.4 SPIN AND MAGNETIC MOMENT OF THE ELECTRON 186 12.5 DETERMINATION
OF THE GYROMAGNETIC RATIO BY THE EINSTEIN-DE HAAS METHOD 188 12.6
DETECTION OF DIRECTIONAL QUANTISATION BY STERN AND GERLACH 189 12.7 FINE
STRUCTURE AND SPIN-ORBIT COUPLING: OVERVIEW 191 12.8 CALCULATION OF
SPIN-ORBIT SPLITTING IN THE BOHR MODEL 192 12.9 LEVEL SCHEME OF THE
ALKALI ATOMS 196 12.10 FINE STRUCTURE IN THE HYDROGEN ATOM 197 12.11 THE
LAMB SHIFT 198 PROBLEMS 202 13. ATOMS IN A MAGNETIC FIELD: EXPERIMENTS
AND THEIR SEMICLASSICAL DESCRIPTION 205 13.1 DIRECTIONAL QUANTISATION IN
A MAGNETIC FIELD 205 13.2 ELECTRON SPIN RESONANCE 205 13.3 THE ZEEMAN
EFFECT 208 13.3.1 EXPERIMENTS 208 13.3.2 EXPLANATION OF THE ZEEMAN
EFFECT FROM THE STANDPOINT OF CLASSICAL ELECTRON THEORY 210 13.3.3
DESCRIPTION OF THE ORDINARY ZEEMAN EFFECT BY THE VECTOR MODEL 212 XIV
CONTENTS 13.3.4 THE ANOMALOUS ZEEMAN EFFECT 214 13.3.5 MAGNETIC MOMENTS
WITH SPIN-ORBIT COUPLING 215 13.4 THE PASCHEN-BACK EFFECT 217 13.5
DOUBLE RESONANCE AND OPTICAL PUMPING 218 PROBLEMS 220 14. ATOMS IN A
MAGNETIC FIELD: QUANTUM MECHANICAL TREATMENT 223 14.1 QUANTUM THEORY OF
THE ORDINARY ZEEMAN EFFECT 223 14.2 QUANTUM THEORETICAL TREATMENT OF THE
ELECTRON AND PROTON SPINS . 225 14.2.1 SPIN AS ANGULAR MOMENTUM 225
14.2.2 SPIN OPERATORS, SPIN MATRICES AND SPIN WAVEFUNCTIONS 226 14.2.3
THE SCHRODINGER EQUATION OF A SPIN IN A MAGNETIC FIELD 228 14.2.4
DESCRIPTION OF SPIN PRECESSION BY EXPECTATION VALUES 230 14.3 QUANTUM
MECHANICAL TREATMENT OF THE ANOMALOUS ZEEMAN EFFECT WITH SPIN-ORBIT
COUPLING* 232 14.4 QUANTUM THEORY OF A SPIN IN MUTUALLY PERPENDICULAR
MAGNETIC FIELDS, ONE CONSTANT AND ONE TIME DEPENDENT 236 14.5 THE BLOCH
EQUATIONS 241 14.6 THE RELATIVISTIC THEORY OF THE ELECTRON. THE DIRAC
EQUATION 243 14.7 THE HYDROGEN ATOM IN STRONG MAGNETIC FIELDS* 249
14.7.1 RYDBERG ATOMS IN STRONG FIELDS 250 14.7.2 WHAT IS CHAOS? A
REMINDER OF CLASSICAL MECHANICS 251 14.7.3 QUANTUM CHAOS 254 14.7.4 THE
HYDROGEN ATOM IN STRONG MAGNETIC FIELDS AND IN LOW QUANTUM STATES 256
PROBLEMS 259 15. ATOMS IN AN ELECTRIC FIELD 261 15.1 OBSERVATIONS OF THE
STARK EFFECT 261 15.2 QUANTUM THEORY OF THE LINEAR AND QUADRATIC STARK
EFFECTS 263 15.2.1 THE HAMILTONIAN 263 15.2.2 THE QUADRATIC STARK
EFFECT. PERTURBATION THEORY WITHOUT DEGENERACY * 264 15.2.3 THE LINEAR
STARK EFFECT. PERTURBATION THEORY IN THE PRESENCE OF DEGENERACY* 267
15.3 THE INTERACTION OF A TWO-LEVEL ATOM WITH A COHERENT RADIATION FIELD
270 15.4 SPIN AND PHOTON ECHOES 273 15.5 A GLANCE AT QUANTUM
ELECTRODYNAMICS* 276 15.5.1 FIELD QUANTIZATION 276 15.5.2 MASS
RENORMALIZATION AND LAMB SHIFT 281 15.6 ATOMS IN STRONG ELECTRIC FIELDS*
288 PROBLEMS 292 16. GENERAL LAWS OF OPTICAL TRANSITIONS 295 16.1
SYMMETRIES AND SELECTION RULES 295 16.1.1 OPTICAL MATRIX ELEMENTS 295
16.1.2 EXAMPLES OF THE SYMMETRY BEHAVIOUR OF WAVEFUNCTIONS 295 16.1.3
SELECTION RULES 300 CONTENTS XV 16.1.4 SELECTION RULES AND MULTIPOLE
RADIATION* 303 16.2 LINEWIDTHS AND LINESHAPES 306 17. MANY-ELECTRON
ATOMS 311 17.1 THE SPECTRUM OF THE HELIUM ATOM 311 17.2 ELECTRON
REPULSION AND THE PAULI PRINCIPLE 313 17.3 ANGULAR MOMENTUM COUPLING 314
17.3.1 COUPLING MECHANISM 314 17.3.2 LS COUPLING (RUSSELL-SAUNDERS
COUPLING) 314 17.3.3 JJ COUPLING 318 17.4 MAGNETIC MOMENTS OF
MANY-ELECTRON ATOMS 320 17.5 MULTIPLE EXCITATIONS 321 PROBLEMS 321 18.
X-RAY SPECTRA, INTERNAL SHELLS 323 18.1 INTRODUCTORY REMARKS 323 18.2
X-RADIATION FROM OUTER SHELLS 323 18.3 X-RAY BREMSSTRAHLUNG SPECTRA 324
18.4 EMISSION LINE SPECTRA: CHARACTERISTIC RADIATION 326 18.5 FINE
STRUCTURE OF THE X-RAY SPECTRA 328 18.6 ABSORPTION SPECTRA 330 18.7 THE
AUGER EFFECT 332 18.8 PHOTOELECTRON SPECTROSCOPY (XPS), ESCA 334
PROBLEMS 336 19. STRUCTURE OF THE PERIODIC SYSTEM. GROUND STATES OF THE
ELEMENTS 337 19.1 PERIODIC SYSTEM AND SHELL STRUCTURE 337 19.2 FROM THE
ELECTRON CONFIGURATION TO THE ATOMIC TERM SCHEME. ATOMIC GROUND STATES
344 19.3 EXCITED STATES OF ATOMS AND POSSIBLE ELECTRONIC CONFIGURATIONS.
COMPLETE TERM SCHEMES 347 19.4 THE MANY-ELECTRON PROBLEM. HARTREE-FOCK
METHOD* 349 19.4.1 THE TWO-ELECTRON PROBLEM 349 19.4.2 MANY ELECTRONS
WITHOUT MUTUAL INTERACTIONS 354 19.4.3 COULOMB INTERACTION OF ELECTRONS.
HARTREE AND HARTREE-FOCK METHODS 355 PROBLEMS 358 20. NUCLEAR SPIN,
HYPERFINE STRUCTURE 361 20.1 INFLUENCE OF THE ATOMIC NUCLEUS ON ATOMIC
SPECTRA 361 20.2 SPINS AND MAGNETIC MOMENTS OF ATOMIC NUCLEI 362 20.3
THE HYPERFINE INTERACTION 364 20.4 HYPERFINE STRUCTURE IN THE GROUND
STATE OF THE HYDROGEN ATOM, THE SODIUM ATOM, AND THE HYDROGEN-LIKE ION
83 BI 82+ 368 20.5 HYPERFINE STRUCTURE IN AN EXTERNAL MAGNETIC FIELD,
ELECTRON SPIN RESONANCE 370 20.6 DIRECT MEASUREMENTS OF NUCLEAR SPINS
AND MAGNETIC MOMENTS, NUCLEAR MAGNETIC RESONANCE 375 20.7 APPLICATIONS
OF NUCLEAR MAGNETIC RESONANCE 378 XVI CONTENTS 20.8 THE NUCLEAR ELECTRIC
QUADRUPOLE MOMENT 383 PROBLEMS 385 21. THE LASER 387 21.1 SOME BASIC
CONCEPTS FOR THE LASER 387 21.2 RATE EQUATIONS AND LASING CONDITIONS 390
21.3 AMPLITUDE AND PHASE OF LASER LIGHT 393 PROBLEMS 396 22. MODERN
METHODS OF OPTICAL SPECTROSCOPY 399 22.1 CLASSICAL METHODS 399 22.2
QUANTUM BEATS 400 22.3 DOPPLER-FREE SATURATION SPECTROSCOPY 402 22.4
DOPPLER-FREE TWO-PHOTON ABSORPTION 404 22.5 LEVEL-CROSSING SPECTROSCOPY
AND THE HANLE EFFECT 406 22.6 LASER COOLING OF ATOMS 408 22.7
NONDESTRUCTIVE SINGLE-PHOTON DETECTION - AN EXAMPLE OF ATOMIC PHYSICS IN
A RESONANT CAVITY 413 PROBLEMS 415 23. PROGRESS IN QUANTUM PHYSICS: A
DEEPER UNDERSTANDING AND NEW APPLICATIONS 417 23.1 INTRODUCTION 417 23.2
THE SUPERPOSITION PRINCIPLE, INTERFERENCE, PROBABILITY AND PROBABILITY
AMPLITUDES 417 23.3 SCHRODINGER'S CAT 419 23.4 DECOHERENCE 419 23.5
ENTANGLEMENT 420 23.6 THE EINSTEIN-PODOLSKY-ROSEN (EPR) PARADOX 421 23.7
BELL'S INEQUALITIES AND THE HIDDEN-VARIABLE HYPOTHESIS 422 23.8
EXPERIMENTS TO TEST BELL'S INEQUALITIES 425 23.9 QUANTUM COMPUTERS 426
23.9.1 HISTORICAL REMARKS 426 23.9.2 REVIEW OF DIGITAL COMPUTERS 427
23.9.3 BASIC CONCEPTS OF THE QUANTUM COMPUTER 428 23.9.4 DECOHERENCE AND
ERROR CORRECTION 430 23.9.5 A COMPARISON BETWEEN THE QUANTUM COMPUTER
AND THE DIGITAL COMPUTER 432 23.10 QUANTUM INFORMATION THEORY 432 23.11
THE BOSE-EINSTEIN CONDENSATION 432 23.11.1 REVIEW OF STATISTICAL
MECHANICS 432 23.11.2 THE EXPERIMENTAL DISCOVERY 433 23.11.3 THE QUANTUM
THEORY OF THE BOSE-EINSTEIN CONDENSATION . 435 23.12 THE ATOM LASER
436 PROBLEMS 437 CONTENTS XVII 24. FUNDAMENTALS OF THE QUANTUM THEORY OF
CHEMICAL BONDING 439 24.1 INTRODUCTORY REMARKS 439 24.2 THE
HYDROGEN-MOLECULE ION H +2 439 24.3 THE TUNNEL EFFECT 445 24.4 THE
HYDROGEN MOLECULE H 2 447 24.5 COVALENT-IONIC RESONANCE 454 24.6 THE
HUND-MULLIKEN-BLOCH THEORY OF BONDING IN HYDROGEN 455 24.7 HYBRIDISATION
456 24.8 THE N ELECTRONS OF BENZENE, C 6 H 6 458 PROBLEMS 460 APPENDIX
A. THE DIRAC DELTA FUNCTION AND THE NORMALISATION OF THE WAVEFUNCTION OF
A FREE PARTICLE IN UNBOUNDED SPACE 461 B. SOME PROPERTIES OF THE
HAMILTONIAN OPERATOR, ITS EIGENFUNCTIONS AND ITS EIGENVALUES 465 C.
DERIVATION OF HEISENBERG'S UNCERTAINTY RELATION 466 SOLUTIONS TO THE
PROBLEMS 469 BIBLIOGRAPHY OF SUPPLEMENTARY AND SPECIALISED LITERATURE
499 SUBJECT INDEX 507 FUNDAMENTAL CONSTANTS OF ATOMIC PHYSICS (INSIDE
FRONT COVER) ENERGY CONVERSION TABLE (INSIDE BACK COVER) |
any_adam_object | 1 |
author | Haken, Hermann 1927-2024 Wolf, Hans Christoph 1929-2020 |
author_GND | (DE-588)118824414 (DE-588)115780807 |
author_facet | Haken, Hermann 1927-2024 Wolf, Hans Christoph 1929-2020 |
author_role | aut aut |
author_sort | Haken, Hermann 1927-2024 |
author_variant | h h hh h c w hc hcw |
building | Verbundindex |
bvnumber | BV019709596 |
classification_rvk | UM 1000 UM 2000 |
ctrlnum | (OCoLC)635254056 (DE-599)BVBBV019709596 |
discipline | Physik |
edition | 7., rev. and enl. ed. |
format | Book |
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genre | 1\p (DE-588)4123623-3 Lehrbuch gnd-content |
genre_facet | Lehrbuch |
id | DE-604.BV019709596 |
illustrated | Illustrated |
indexdate | 2024-08-21T00:08:12Z |
institution | BVB |
isbn | 3540208070 9783540208075 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-013036988 |
oclc_num | 635254056 |
open_access_boolean | |
owner | DE-91G DE-BY-TUM DE-20 DE-703 DE-29T DE-19 DE-BY-UBM DE-634 DE-188 DE-355 DE-BY-UBR |
owner_facet | DE-91G DE-BY-TUM DE-20 DE-703 DE-29T DE-19 DE-BY-UBM DE-634 DE-188 DE-355 DE-BY-UBR |
physical | XX, 517 S. Ill., graph. Darst. |
publishDate | 2005 |
publishDateSearch | 2005 |
publishDateSort | 2005 |
publisher | Springer |
record_format | marc |
series2 | Advanced Texts in Physics |
spelling | Haken, Hermann 1927-2024 Verfasser (DE-588)118824414 aut The physics of atoms and quanta introduction to experiments and theory ; with 30 tables,177 problems and solutions Hermann Haken ; Hans Christoph Wolf 7., rev. and enl. ed. Berlin [u.a.] Springer 2005 XX, 517 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Advanced Texts in Physics Quantenphysik (DE-588)4266670-3 gnd rswk-swf Atomphysik (DE-588)4003423-9 gnd rswk-swf Quantenmechanik (DE-588)4047989-4 gnd rswk-swf Quantentheorie (DE-588)4047992-4 gnd rswk-swf 1\p (DE-588)4123623-3 Lehrbuch gnd-content Quantenphysik (DE-588)4266670-3 s DE-604 Atomphysik (DE-588)4003423-9 s Quantentheorie (DE-588)4047992-4 s 2\p DE-604 Quantenmechanik (DE-588)4047989-4 s 3\p DE-604 Wolf, Hans Christoph 1929-2020 Verfasser (DE-588)115780807 aut HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013036988&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 3\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Haken, Hermann 1927-2024 Wolf, Hans Christoph 1929-2020 The physics of atoms and quanta introduction to experiments and theory ; with 30 tables,177 problems and solutions Quantenphysik (DE-588)4266670-3 gnd Atomphysik (DE-588)4003423-9 gnd Quantenmechanik (DE-588)4047989-4 gnd Quantentheorie (DE-588)4047992-4 gnd |
subject_GND | (DE-588)4266670-3 (DE-588)4003423-9 (DE-588)4047989-4 (DE-588)4047992-4 (DE-588)4123623-3 |
title | The physics of atoms and quanta introduction to experiments and theory ; with 30 tables,177 problems and solutions |
title_auth | The physics of atoms and quanta introduction to experiments and theory ; with 30 tables,177 problems and solutions |
title_exact_search | The physics of atoms and quanta introduction to experiments and theory ; with 30 tables,177 problems and solutions |
title_full | The physics of atoms and quanta introduction to experiments and theory ; with 30 tables,177 problems and solutions Hermann Haken ; Hans Christoph Wolf |
title_fullStr | The physics of atoms and quanta introduction to experiments and theory ; with 30 tables,177 problems and solutions Hermann Haken ; Hans Christoph Wolf |
title_full_unstemmed | The physics of atoms and quanta introduction to experiments and theory ; with 30 tables,177 problems and solutions Hermann Haken ; Hans Christoph Wolf |
title_short | The physics of atoms and quanta |
title_sort | the physics of atoms and quanta introduction to experiments and theory with 30 tables 177 problems and solutions |
title_sub | introduction to experiments and theory ; with 30 tables,177 problems and solutions |
topic | Quantenphysik (DE-588)4266670-3 gnd Atomphysik (DE-588)4003423-9 gnd Quantenmechanik (DE-588)4047989-4 gnd Quantentheorie (DE-588)4047992-4 gnd |
topic_facet | Quantenphysik Atomphysik Quantenmechanik Quantentheorie Lehrbuch |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013036988&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT hakenhermann thephysicsofatomsandquantaintroductiontoexperimentsandtheorywith30tables177problemsandsolutions AT wolfhanschristoph thephysicsofatomsandquantaintroductiontoexperimentsandtheorywith30tables177problemsandsolutions |