Crystals, defects and microstructures: modeling across scales
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Cambridge [u.a.]
Cambridge Univ. Press
2001
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Ausgabe: | 1. publ. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XXVI, 780 S. Ill., graph. Darst. |
ISBN: | 0521793572 0521790050 |
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245 | 1 | 0 | |a Crystals, defects and microstructures |b modeling across scales |c Rob Phillips |
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264 | 1 | |a Cambridge [u.a.] |b Cambridge Univ. Press |c 2001 | |
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adam_text | CRYSTALS, DEFECTS AND MICROSTRUCTURES MODELING ACROSS SCALES ROB
PHILLIPS BROWN UNIVERSITY, PROVIDENCE RI CAMBRIDGE UNIVERSITY PRESS
CRYSTALS, DEFECTS AND MICROSTRUCTURES MODELING ACROSS SCALES ROB
PHILLIPS BROWN UNIVERSITY, PROVIDENCE RI CAMBRIDGE UNIVERSITY PRESS
CONTENTS PREFACE PAGE XV ACKNOWLEDGEMENTS XXI NOTES ON UNITS, SCALES AND
CONVENTIONS * XXIV PART ONE: THINKING ABOUT THE MATERIAL WORLD 1 1
IDEALIZING MATERIAL RESPONSE 3 1.1 A MATERIAL WORLD 3 1.1.1 MATERIALS: A
DATABOOK PERSPECTIVE 3 1.1.2 THE STRUCTURE-PROPERTIES PARADIGM 8 1.1.3
CONTROLLING STRUCTURE: THE WORLD OF HEAT AND BEAT 12 1.2 MODELING OF
MATERIALS 14 1.2.1 THE CASE FOR MODELING 14 1.2.2 MODELING DEFINED:
CONTRASTING PERSPECTIVES 15 1.2.3 CASE STUDIES IN MODELING 18 1.2.4
MODELING AND THE COMPUTER: NUMERICAL ANALYSIS VS SIMULATION 25 1.3
FURTHER READING 26 2 CONTINUUM MECHANICS REVISITED 29 2.1 CONTINUUM
MECHANICS AS AN EFFECTIVE THEORY 29 2.2 KINEMATICS: THE GEOMETRY OF
DEFORMATION 31 2.2.1 DEFORMATION MAPPINGS AND STRAIN 32 2.2.2 GEOMETRY
OF RIGID DEFORMATION 35 2.2.3 GEOMETRY OF SLIP AND TWINNING 36 2.2.4
GEOMETRY OF STRUCTURAL TRANSFORMATIONS 37 2.3 FORCES AND BALANCE LAWS 39
2.3.1 FORCES WITHIN CONTINUA: STRESS TENSORS 39 2.3.2 EQUATIONS OF
CONTINUUM DYNAMICS 41 2.3.3 CONFIGURATIONAL FORCES AND THE DYNAMICS OF
DEFECTS 44 2.4 CONTINUUM DESCRIPTIONS OF DEFORMATION AND FAILURE 51
2.4.1 CONSTITUTIVE MODELING 51 VU VLLL CONTENTS 2.4.2 LINEAR ELASTIC
RESPONSE OF MATERIALS 51 2.4.3 PLASTIC RESPONSE OF CRYSTALS AND
POLYCRYSTALS 54 2.4.4 CONTINUUM PICTURE OF FRACTURE 60 2.5 BOUNDARY
VALUE PROBLEMS AND MODELING 64 2.5.1 PRINCIPLE OF MINIMUM POTENTIAL
ENERGY AND RECIPROCAL THEOREM 64 2.5.2 ELASTIC GREEN FUNCTION 66 2.5.3
METHOD OF EIGENSTRAINS 69 2.5.4 NUMERICAL SOLUTIONS: FINITE ELEMENT
METHOD 72 2.6 DIFFICULTIES WITH THE CONTINUUM APPROACH 75 2.7 FURTHER
READING 76 2.8 PROBLEMS 78 3 QUANTUM AND STATISTICAL MECHANICS REVISITED
81 3.1 BACKGROUND 81 3.2 QUANTUM MECHANICS 82 3.2.1 BACKGROUND AND
FORMALISM 82 3.2.2 CATALOGOFLMPORTANT SOLUTIONS 87 3.2.3 FINITE ELEMENTS
AND SCHROEDINGER 94 3.2.4 QUANTUM CORRALS: A FINITE ELEMENT ANALYSIS 101
3.2.5 METALS AND THE ELECTRON GAS 103 3.2.6 QUANTUM MECHANICS OF BONDING
109 3.3 STATISTICAL MECHANICS 115 3.3.1 BACKGROUND 115 3.3.2
ENTROPYOFMIXING 119 3.3.3 THE CANONICAL DISTRIBUTION 122 3.3.4
INFORMATION THEORETIC APPROACH TO STATISTICAL MECHANICS 126 3.3.5
STATISTICAL MECHANICS MODELS FOR MATERIALS 129 3.3.6 BOUNDS AND
INEQUALITIES: THE BOGOLIUBOV INEQUALITY 135 3.3.7 CORRELATION FUNCTIONS:
THE KINEMATICS OF ORDER 137 3.3.8 COMPUTATIONAL STATISTICAL MECHANICS
139 3.4 FURTHER READING 142 3.5 PROBLEMS 144 PART TWO: ENERGETICS OF
CRYSTALLINE SOLIDS 147 4 ENERGETIC DESCRIPTION OF COHESION IN SOLIDS 149
4.1 THE ROLE OF THE TOTAL ENERGY IN MODELING MATERIALS 149 4.2
CONCEPTUAL BACKDROP FOR CHARACTERIZING THE TOTAL ENERGY 152 4.2.1
ATOMISTIC AND CONTINUUM DESCRIPTIONS CONTRASTED 152 CONTENTS IX 4.2.2
THE MANY-PARTICLE HAMILTONIAN AND DEGREE OF FREEDOM REDUCTION 154 4.3
PAIR POTENTIALS 156 4.3.1 GENERIC PAIR POTENTIALS 156 4.3.2 FREE
ELECTRON PAIR POTENTIALS 158 4.4 POTENTIALS WITH ENVIRONMENTAL AND
ANGULAR DEPENDENCE 164 4.4.1 DIAGNOSTICS FOR EVALUATING POTENTIALS 164
4.4.2 PAIR FUNCTIONALS 165 4.4.3 ANGULAR FORCES: A FIRST LOOK 172 4.5
TIGHT-BINDING CALCULATIONS OF THE TOTAL ENERGY 176 4.5.1 THE
TIGHT-BINDING METHOD 176 4.5.2 AN ASIDE ON PERIODIC SOLIDS: &-SPACE
METHODS 184 4.5.3 REAL SPACE TIGHT-BINDING METHODS 189 4.6
FIRST-PRINCIPLES CALCULATIONS OF THE TOTAL ENERGY 197 4.6.1 MANAGING THE
MANY-PARTICLE HAMILTONIAN 198 4.6.2 TOTAL ENERGIES IN THE LOCAL DENSITY
APPROXIMATION 200 4.7 CHOOSING A DESCRIPTION OF THE TOTAL ENERGY:
CHALLENGES AND CONUNDRUMS 203 4.8 FURTHER READING 204 4.9 PROBLEMS 206 5
THERMAL AND ELASTIC PROPERTIES OF CRYSTALS 210 5.1 THERMAL AND ELASTIC
MATERIAL RESPONSE 210 5.2 MECHANICS OF THE HARMONIE SOLID 213 5.2.1
TOTAL ENERGY OF THE THERMALLY FLUCTUATING SOLID 214 5.2.2 ATOMIC MOTION
AND NORMAL MODES 216 5.2.3 PHONONS 228 5.2.4 BUCKMINSTERFULLERENE AND
NANOTUBES: A CASE STUDY IN VIBRATION 229 5.3 THERMODYNAMICS OF SOLIDS
231 5.3.1 HARMONIE APPROXIMATION 231 5.3.2 BEYOND THE HARMONIE
APPROXIMATION 239 5.4 MODELING THE ELASTIC PROPERTIES OF MATERIALS 244
5.4.1 LINEAR ELASTIC MODULI 244 5.4.2 NONLINEAR ELASTIC MATERIAL
RESPONSE: CAUCHY-BORN ELASTICITY 248 5.5 FURTHER READING 250 5.6
PROBLEMS 251 6 STRUCTURAL ENERGIES AND PHASE DIAGRAMS 253 6.1 STRUCTURES
IN SOLIDS 253 6.2 ATOMIC-LEVEL GEOMETRY IN MATERIALS 254 CONTENTS 6.3
STRUCTURAL ENERGIES OF SOLIDS 260 6.3.1 PAIR POTENTIALS AND STRUCTURAL
STABILITY 261 6.3.2 STRUCTURAL STABILITY IN TRANSITION METALS 264 6.3.3
STRUCTURAL STABILITY RECONSIDERED: THE CASE OF ELEMENTAL SI 265 6.4
ELEMENTAL PHASE DIAGRAMS 268 6.4.1 FREE ENERGY OF THE CRYSTALLINE SOLID
268 6.4.2 FREE ENERGY OF THE LIQUID 275 6.4.3 PUTTING IT ALL TOGETHER
277 6.4.4 AN EINSTEIN MODEL FOR STRUCTURAL CHANGE 278 6.4.5 A CASE STUDY
IN ELEMENTAL MG 280 6.5 ALLOY PHASE DIAGRAMS 282 6.5.1 CONSTRUCTING THE
EFFECTIVE ENERGY: CLUSTER EXPANSIONS 283 6.5.2 STATISTICAL MECHANICS FOR
THE EFFECTIVE HAMILTONIAN 291 6.5.3 THE EFFECTIVE HAMILTONIAN REVISITED:
RELAXATIONS AND VIBRATIONS 297 6.5.4 THE ALLOY FREE ENERGY 299 6.5.5
CASE STUDY: OXYGEN ORDERING IN HIGH TC SUPERCONDUCTORS 300 6.6 SUMMARY
304 6.7 FURTHER READING 304 6.8 PROBLEMS 305 PART THREE: GEOMETRIE
STRUCTURES IN SOLIDS: DEFEETS AND MICROSTRUCTURES 309 7 POINT DEFEETS IN
SOLIDS 311 7.1 POINT DEFEETS AND MATERIAL RESPONSE 311 7.1.1 MATERIAL
PROPERTIES RELATED TO POINT DISORDER 312 7.2 DIFFUSION 318 7.2.1
EFFECTIVE THEORIES OF DIFFUSION 318 7.3 GEOMETRIES AND ENERGIES OF POINT
DEFEETS 326 7.3.1 CRYSTALLOGRAPHIC PRELIMINARIES 327 7.3.2 A CONTINUUM
PERSPECTIVE ON POINT DEFEETS 328 7.3.3 MICROSCOPIC THEORIES OF POINT
DEFEETS 332 7.3.4 POINT DEFEETS IN SI: A CASE STUDY 341 7.4 POINT DEFECT
MOTIONS 344 7.4.1 MATERIAL PARAMETERS FOR MASS TRANSPORT 345 7.4.2
DIFFUSION VIA TRANSITION STATE THEORY 346 7.4.3 DIFFUSION VIA MOLECULAR
DYNAMICS 351 7.4.4 A CASE STUDY IN DIFFUSION: INTERSTITIALS IN SI 353
7.5 DEFECT CLUSTERING 356 CONTENTS XI 7.6 FURTHER READING 356 7.7
PROBLEMS 359 8 LINE DEFECTS IN SOLIDS 362 8.1 PERMANENT DEFORMATION OF
MATERIALS 362 8.1.1 YIELD AND HARDENING 363 8.1.2 STRUCTURAL
CONSEQUENCES OF PLASTIC DEFORMATION 365 8.1.3 SINGLE CRYSTAL SLIP AND
THE SCHMID LAW 367 8.2 THE IDEAL STRENGTH CONCEPT AND THE NEED FOR
DISLOCATIONS 369 8.3 GEOMETRYOFSLIP 371 8.3.1 TOPOLOGICAL SIGNATARE OF
DISLOCATIONS 372 8.3.2 CRYSTALLOGRAPHY OF SLIP 375 8.4 ELASTIC MODELS OF
SINGLE DISLOCATIONS 382 8.4.1 THE SCREW DISLOCATION 382 8.4.2 THE
VOLTERRA FORMULA 388 8.4.3 THE EDGE DISLOCATION 391 8.4.4 MIXED
DISLOCATIONS 392 8.5 INTERACTION ENERGIES AND FORCES 393 8.5.1 THE
PEACH-KOEHLER FORMULA 395 8.5.2 INTERACTIONS AND IMAGES: PEACH-KOEHLER
APPLIED 398 8.5.3 THE LINE TENSION APPROXIMATION 402 8.6 MODELING THE
DISLOCATION CORE: BEYOND LINEARITY 404 8.6.1 DISLOCATION DISSOCIATION
404 8.6.2 THE PEIERLS-NABARRO MODEL 406 8.6.3 STRUCTURAL DETAILS OF THE
DISLOCATION CORE 412 8.7 THREE-DIMENSIONAL DISLOCATION CONFIGURATIONS
415 8.7.1 DISLOCATION BOW-OUT 416 8.7.2 KINKSANDJOGS 418 8.7.3 CROSS
SLIP 423 8.7.4 DISLOCATION SOURCES 426 8.7.5 DISLOCATION JUNCTIONS 430
8.8 FURTHER READING 435 8.9 PROBLEMS 437 9 WALL DEFECTS IN SOLIDS 441
9.1 INTERFACES IN MATERIALS 441 9.1.1 INTERFACIAL CONFINEMENT 442 9.2
FREE SURFACES 446 9.2.1 CRYSTALLOGRAPHY AND ENERGETICS OF IDEAL SURFACES
447 9.2.2 RECONSTRUCTION AT SURFACES 452 9.2.3 STEPS ON SURFACES 474 XLL
CONTENTS 9.3 STACKING FAULTS AND TWINS 476 9.3.1 STRUCTURE AND
ENERGETICS OF STACKING FAULTS 477 9.3.2 PLANAR FAULTS AND PHASE DIAGRAMS
484 9.4 GRAIN BOUNDARIES 487 9.4.1 BICRYSTAL GEOMETRY 489 9.4.2 GRAIN
BOUNDARIES IN POLYCRYSTALS 492 9.4.3 ENERGETIC DESCRIPTION OF GRAIN
BOUNDARIES 494 9.4.4 TRIPLE JUNCTIONS OF GRAIN BOUNDARIES 500 9.5
DIFFUSE INTERFACES 501 9.6 MODELING INTERFACES: A RETROSPECTIVE 502 9.7
FURTHER READING 503 9.8 PROBLEMS 505 10 MICROSTRUCTURE AND ITS EVOLUTION
507 10.1 MICROSTRUCTURES IN MATERIALS 508 10.1.1 MICROSTRUCTURAL
TAXONOMY 508 10.1.2 MICROSTRUCTURAL CHANGE 516 10.1.3 MODELS OF
MICROSTRUCTURE AND ITS EVOLUTION 519 10.2 INCLUSIONS AS MICROSTRUCTURE
520 10.2.1 ESHELBY AND THE ELASTIC INCLUSION 520 10.2.2 THE QUESTIONOF
EQUILIBRIUM SHAPES 527 10.2.3 PRECIPITATE MORPHOLOGIES AND INTERFACIAL
ENERGY 528 10.2.4 EQUILIBRIUM SHAPES: ELASTIC AND INTERFACIAL ENERGY 529
10.2.5 A CASE STUDY IN INCLUSIONS: PRECIPITATE NUCLEATION 537 10.2.6
TEMPORAL EVOLUTION OF TWO-PHASE MICROSTRUCTURES 540 10.3 MICROSTRUCTURE
IN MARTENSITES 546 10.3.1 THE EXPERIMENTAL SITUATION 547 10.3.2
GEOMETRICAL AND ENERGETIC PRELIMINARIES 551 10.3.3 TWINNING AND
COMPATIBILITY 554 10.3.4 FINE-PHASE MICROSTRUCTURES AND ATTAINMENT 560
10.3.5 THE AUSTENITE-MARTENSITE FREE ENERGY RECONSIDERED 565 10.4
MICROSTRUCTURAL EVOLUTION IN POLYCRYSTALS 566 10.4.1 PHENOMENOLOGY OF
GRAIN GROWTH 567 10.4.2 MODELING GRAIN GROWTH 568 10.5 MICROSTRUCTURE
AND MATERIALS 580 10.6 FURTHER READING 580 10.7 PROBLEMS 582 PART FOUR:
FACING THE MULTISCALE CHALLENGE OF REAL MATERIAL BEHAVIOR 585 CONTENTS
XIII 11 POINTS, LINES AND WALLS: DEFECT INTERACTIONS AND MATERIAL
RESPONSE 587 11.1 DEFECT INTERACTIONS AND THE COMPLEXITY OF REAL
MATERIAL BEHAVIOR 587 11.2 DIFFUSION AT EXTENDED DEFECTS 588 11.2.1
BACKGROUND ON SHORT-CIRCUIT DIFFUSION 588 11.2.2 DIFFUSION AT SURFACES
589 11.3 MASS TRANSPORT ASSISTED DEFORMATION 592 11.3.1 PHENOMENOLOGY OF
CREEP 593 11.3.2 NABARRP-HERRING AND COBLE CREEP 595 11.4 DISLOCATIONS
AND INTERFACES 599 11.4.1 DISLOCATION MODELS OF GRAIN BOUNDARIES 600
11.4.2 DISLOCATION PILE-UPS AND SLIP TRANSMISSION 604 11.5 CRACKS AND
DISLOCATIONS 609 11.5.1 VARIATION ON A THEME OF IRWIN 610 11.5.2
DISLOCATION SCREENING AT A CRACK TIP 611 11.5.3 DISLOCATION NUCLEATION
AT A CRACK TIP 615 11.6 DISLOCATIONS AND OBSTACLES: STRENGTHENING 620
11.6.1 CONCEPTUAL OVERVIEW OF THE MOTION OF DISLOCATIONS THROUGH
AFIELDOF OBSTACLES 622 11.6.2 THE FORCE BETWEEN DISLOCATIONS AND GLIDE
OBSTACLES 625 11.6.3 THE QUESTION OF STATISTICAL SUPERPOSITION 628
11.6.4 SOLUTION HARDENING 633 11.6.5 PRECIPITATE HARDENING 636 11.6.6
DISLOCATION-DISLOCATION INTERACTIONS AND WORK HARDENING 642 11.7 FURTHER
READING 644 11.8 PROBLEMS 647 12 BRIDGING SCALES: EFFECTIVE THEORY
CONSTRUCTION 649 12.1 PROBLEMS INVOLVING MULTIPLE LENGTH AND TIME SCALES
651 12.1.1 PROBLEMS WITH MULTIPLE TEMPORAL SCALES: THE EXAMPLE OF
DIFFUSION 652 12.1.2 PROBLEMS WITH MULTIPLE SPATIAL SCALES: THE EXAMPLE
OF PLASTICITY 653 12.1.3 GENERALITIES ON MODELING PROBLEMS INVOLVING
MULTIPLE SCALES 655 12.2 HISTORIE EXAMPLES OF MULTISCALE MODELING 658
12.3 EFFECTIVE THEORY CONSTRUCTION 668 12.3.1 DEGREE OF FREEDOM
SELECTION: STATE VARIABLES, ORDER PARAMETERS AND CONFIGURATIONAL
COORDINATES 669 12.3.2 DYNAMICAL EVOLUTION OF RELEVANT VARIABLES:
GRADIENT FLOW DYNAMICS AND VARIATIONAL PRINCIPLES 674 12.3.3
INHOMOGENEOUS SYSTEMS AND THE ROLE OFLOCALITY 685 XIV CONTENTS 12.3.4
MODELS WITH INTERNAL STRUCTURE 688 12.3.5 EFFECTIVE HAMILTONIANS 697
12.4 BRIDGING SCALES IN MICROSTRUCTURAL EVOLUTION 701 12.4.1
HIERARCHICAL TREATMENT OF DIFFUSIVE PROCESSES 701 12.4.2 FROM SURFACE
DIFFUSION TO FILM GROWTH 709 12.4.3 SOLIDIFICATION MICROSTRUCTURES 711
12.4.4 TWO-PHASE MICROSTRUCTURES REVISITED 715 12.4.5 A RETROSPECTIVE ON
MODELING MICROSTRUCTURAL EVOLUTION 718 12.5 BRIDGING SCALES IN
PLASTICITY 719 12.5.1 MESOSCOPIC DISLOCATION DYNAMICS 720 12.5.2 A CASE
STUDY IN DISLOCATIONS AND PLASTICITY: NANOINDENTATION 728 12.5.3 A
RETROSPECTIVE ON MODELING PLASTICITY USING DISLOCATION DYNAMICS 731 12.6
BRIDGING SCALES IN FRACTURE 732 12.6.1 ATOMIC-LEVEL BOND BREAKING 732
12.6.2 COHESIVE SURFACE MODELS 734 12.6.3 COHESIVE SURFACE DESCRIPTION
OF CRACK TIP DISLOCATION NUCLEATION 735 12.7 FURTHER READING 736 12.8
PROBLEMS 738 13 UNIVERSALITY AND SPECIFICITY IN MATERIALS 742 13.1
MATERIALS OBSERVED 743 13.1.1 WHAT IS A MATERIAL: ANOTHER LOOK 743
13.1.2 STRUCTURAL OBSERVATIONS 744 13.1.3 CONCLUDING OBSERVATIONS ON THE
OBSERVATIONS 746 13.2 HOW FAR HAVE WE COME? 748 13.2.1 UNIVERSALITY IN
MATERIALS 749 13.2.2 SPECIFICITY IN MATERIALS 750 13.2.3 THE PROGRAM
CRITICIZED 751 13.3 INTRIGUING OPEN QUESTIONS 752 13.4 IN WHICH THE
AUTHOR TAKES HIS LEAVE 754 REFERENCES 757 INDEX 771
|
any_adam_object | 1 |
author | Phillips, Robert Brooks |
author_facet | Phillips, Robert Brooks |
author_role | aut |
author_sort | Phillips, Robert Brooks |
author_variant | r b p rb rbp |
building | Verbundindex |
bvnumber | BV013712940 |
callnumber-first | Q - Science |
callnumber-label | QD921 |
callnumber-raw | QD921 |
callnumber-search | QD921 |
callnumber-sort | QD 3921 |
callnumber-subject | QD - Chemistry |
classification_rvk | UQ 1000 UQ 2000 UQ 2400 |
ctrlnum | (OCoLC)44669468 (DE-599)BVBBV013712940 |
dewey-full | 548/.81 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 548 - Crystallography |
dewey-raw | 548/.81 |
dewey-search | 548/.81 |
dewey-sort | 3548 281 |
dewey-tens | 540 - Chemistry and allied sciences |
discipline | Chemie / Pharmazie Physik |
edition | 1. publ. |
format | Book |
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id | DE-604.BV013712940 |
illustrated | Illustrated |
indexdate | 2024-07-09T18:50:39Z |
institution | BVB |
isbn | 0521793572 0521790050 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-009369845 |
oclc_num | 44669468 |
open_access_boolean | |
owner | DE-20 DE-29T DE-703 DE-19 DE-BY-UBM DE-355 DE-BY-UBR DE-83 DE-11 |
owner_facet | DE-20 DE-29T DE-703 DE-19 DE-BY-UBM DE-355 DE-BY-UBR DE-83 DE-11 |
physical | XXVI, 780 S. Ill., graph. Darst. |
publishDate | 2001 |
publishDateSearch | 2001 |
publishDateSort | 2001 |
publisher | Cambridge Univ. Press |
record_format | marc |
spelling | Phillips, Robert Brooks Verfasser aut Crystals, defects and microstructures modeling across scales Rob Phillips 1. publ. Cambridge [u.a.] Cambridge Univ. Press 2001 XXVI, 780 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Cristaux Cristaux - Défauts Roosterfouten gtt Réseaux cristallins Crystal lattices Crystals Crystals Defects Gitterbaufehler (DE-588)4125030-8 gnd rswk-swf Kristalliner Festkörper (DE-588)4165761-5 gnd rswk-swf Kristall (DE-588)4033209-3 gnd rswk-swf Kristall (DE-588)4033209-3 s Gitterbaufehler (DE-588)4125030-8 s DE-604 Kristalliner Festkörper (DE-588)4165761-5 s GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009369845&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Phillips, Robert Brooks Crystals, defects and microstructures modeling across scales Cristaux Cristaux - Défauts Roosterfouten gtt Réseaux cristallins Crystal lattices Crystals Crystals Defects Gitterbaufehler (DE-588)4125030-8 gnd Kristalliner Festkörper (DE-588)4165761-5 gnd Kristall (DE-588)4033209-3 gnd |
subject_GND | (DE-588)4125030-8 (DE-588)4165761-5 (DE-588)4033209-3 |
title | Crystals, defects and microstructures modeling across scales |
title_auth | Crystals, defects and microstructures modeling across scales |
title_exact_search | Crystals, defects and microstructures modeling across scales |
title_full | Crystals, defects and microstructures modeling across scales Rob Phillips |
title_fullStr | Crystals, defects and microstructures modeling across scales Rob Phillips |
title_full_unstemmed | Crystals, defects and microstructures modeling across scales Rob Phillips |
title_short | Crystals, defects and microstructures |
title_sort | crystals defects and microstructures modeling across scales |
title_sub | modeling across scales |
topic | Cristaux Cristaux - Défauts Roosterfouten gtt Réseaux cristallins Crystal lattices Crystals Crystals Defects Gitterbaufehler (DE-588)4125030-8 gnd Kristalliner Festkörper (DE-588)4165761-5 gnd Kristall (DE-588)4033209-3 gnd |
topic_facet | Cristaux Cristaux - Défauts Roosterfouten Réseaux cristallins Crystal lattices Crystals Crystals Defects Gitterbaufehler Kristalliner Festkörper Kristall |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009369845&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT phillipsrobertbrooks crystalsdefectsandmicrostructuresmodelingacrossscales |