Fundamentals of crystals: symmetry and methods of structural crystallography
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Buch |
Sprache: | German |
Veröffentlicht: |
Berlin ; Heidelberg ; New York ; Barcelona ; Budapest ; Hong Kon
Springer
1996
|
Ausgabe: | 2., enl. ed., 2. print. |
Schriftenreihe: | Modern crystallography
Vol. 1 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturverz. S. 455 - 472. - 1. Aufl. u.d.T.: Vajnštejn, Boris K.: Symmetry of crystals, methods of structural crystallography |
Beschreibung: | XXI, 480 S. Ill., graph. Darst. |
ISBN: | 3540565582 |
Internformat
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100 | 1 | |a Vajnštejn, Boris K. |e Verfasser |4 aut | |
245 | 1 | 0 | |a Fundamentals of crystals |b symmetry and methods of structural crystallography |c Boris K. Vainshtein |
250 | |a 2., enl. ed., 2. print. | ||
264 | 1 | |a Berlin ; Heidelberg ; New York ; Barcelona ; Budapest ; Hong Kon |b Springer |c 1996 | |
300 | |a XXI, 480 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 1 | |a Modern crystallography |v Vol. 1 | |
500 | |a Literaturverz. S. 455 - 472. - 1. Aufl. u.d.T.: Vajnštejn, Boris K.: Symmetry of crystals, methods of structural crystallography | ||
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Datensatz im Suchindex
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adam_text | CONTENTS
1. CRYSTALLINE STATE
1.1 MACROSCOPIC CHARACTERISTICS OF CRYSTALS 1
1.1.1 CRYSTALS AN
D CRYSTALLINE MATTE
R 1
1.1.2 HOMOGENEITY OF A CRYSTALLINE SUBSTANCE 5
1.1.3 ANISOTROPY OF A CRYSTALLINE SUBSTANCE 6
1.1.4 SYMMETRY 9
1.1.5 CRYSTAL HABIT 11
1.2 MICROSTRUCTURE OF A CRYSTALLINE SUBSTANCE 12
1.2.1 SPACE LATTICE 12
1.2.2 EXPERIMENTAL EVIDENCE FOR TH
E EXISTENCE OF TH
E CRYSTAL
LATTICE 15
1.2.3 REASONS FOR THE MICROPERIODICITY PRINCIPLE 18
1.3 STRUCTURES WITH DISTORTIONS OF THE THREE-DIMENSIONAL
PERIODICITY. QUASICRYSTALS 23
1.4 STRUCTURAL CHARACTERISTICS OF CONDENSED PHASES 24
2. FUNDAMENTALS OF THE THEORY OF SYMMETRY
2.1 THE CONCEPT OF SYMMETRY 28
2.1.1 DEFINITION OF SYMMETRY 28
2.1.2 SYMMETRY OPERATIONS 29
2.2 SPACE TRANSFORMATIONS 31
2.2.1 SPACE, AN OBJECT IN IT, POINTS OF SPACE 31
2.2.2 BASIC ISOMETRIC TRANSFORMATIONS OF SPACE 32
2.2.3 ANALYTICAL EXPRESSION FOR SYMMETRY TRANSFORMATIONS
. . 39
2.2.4 RELATIONSHIPS AND DIFFERENCES BETWEEN OPERATION
S OF
THE FIRST AND SECOND KIND 41
2.3 FUNDAMENTALS OF GROU
P THEORY 44
2.3.1 INTERACTION OF OPERATIONS 44
2.3.2 GROU
P AXIOMS 44
2.3.3 PRINCIPAL PROPERTIES OF GROUP
S 46
2.3.4 CYCLIC GROUPS
, GENERATOR
S 47
2.3.5 SUBGROUP 48
2.3.6 COSETS, CONJUGATES, CLASSES, EXPANSION WITH RESPECT
T
O A SUBGROUP 48
2.3.7 GROU
P PRODUCT
S 49
2.3.8 GROU
P REPRESENTATIONS 51
XVI CONTENTS
2.4 TYPES OF SYMMETRY GROUP
S AND THEIR PROPERTIE
S 53
2.4.1 HOMOGENEITY, INHOMOGENEITY, AND DISCRETENESS
OF SPACE 53
2.4.2 TYPES OF SYMMETRY GROUP
S AND THEIR PERIODICITY ...
. 55
2.4.3 ONE-DIMENSIONAL GROUP
S G
1
57
2.4.4 TWO-DIMENSIONAL GROUP
S G
2
58
2.4.5 CRYSTALLOGRAPHIC GROUP
S 60
2.4.6 THREE-DIMENSIONAL GROUP
S G
3
61
2.5 GEOMETRIC PROPERTIES OF SYMMETRY GROUP
S 64
2.5.1 SYMMETRY ELEMENTS 64
2.5.2 SUMMARY AND NOMENCLATUR
E OF SYMMETRY ELEMENTS. . . 66
2.5.3 POLARIT
Y 71
2.5.4 REGULAR POINT SYSTEMS 71
2.5.5 INDEPENDENT REGION 73
2.5.6 DESCRIPTION OF A SYMMETRIC OBJECT BY GROUP
S OF
PERMUTATION
S 77
2.5.7 ENANTIOMORPHIS
M 79
2.6 POINT SYMMETRY GROUP
S 82
2.6.1 DESCRIPTION AND REPRESENTATION OF POIN
T GROUP
S 82
2.6.2 ON DERIVATION OF THREE-DIMENSIONAL
POINT GROUP
S G
3
, 84
2.6.3 POINT GROU
P FAMILIES 86
2.6.4 CLASSIFICATION OF POINT GROUP
S 95
2.6.5 ISOMORPHISM OF GROUP
S
K
100
2.6.6 REPRESENTATIONS OF POINT GROUP
S
K
101
2.6.7 GROU
P REPRESENTATIONS AND PROPE
R FUNCTIONS 106
2.7 SYMMETRY GROUP
S
G , G
2
2
, G , G
107
2.7.1 SYMMETRY GROUP
S G
2
OF BORDERS 107
2.7.2 PLANE TWICE-PERIODIC GROUP
S
G
108
2.7.3 CYLINDRICAL (HELICAL) GROUP
S
G
110
2.7.4 LAYER GROUP
S G
3
, 116
2.8 SPACE GROUP
S OF SYMMETRY 120
2.8.1 THREE-DIMENSIONAL LATTICE 120
2.8.2 SYNGONIES 122
2.8.3 BRAVAIS GROUP
S . . : 123
2.8.4 HOMOMORPHIS
M OF SPACE AN
D POINT GROUP
S 129
2.8.5 GEOMETRIC RULES FOR PERFORMING OPERATION
S
AND FOR MUTUA
L ORIENTATIO
N OF SYMMETRY ELEMENTS
IN GROUP
S
4
130
2.8.6 PRINCIPLES OF DERIVATION OF SPACE GROUPS
.
SYMMORPHOUS GROUP
S
P
S
131
2.8.7 NONSYMMORPHOU
S GROUP
S
P
N
135
2.8.8 NUMBER OF FEDORO
V GROUP
S 138
2.8.9 NOMENCLATURE OF FEDOROV GROUP
S 139
2.8.10 SUBGROUPS OF FEDOROV GROUP
S 144
CONTENTS XVII
2.8.11 REGULAR POINT SYSTEMS OF SPACE GROUP
S 145
2.8.12 RELATIONSHIP BETWEEN THE CHEMICAL FORMULA OF A
CRYSTAL AND ITS SPACE SYMMETRY 146
2.8.13 LOCAL CONDITION OF SPACE SYMMETRY 147
2.8.14 DIVISION OF SPACE 149
2.8.15 IRREDUCIBLE REPRESENTATIONS OF GROUP
S
F 155
2.9 GENERALIZED SYMMETRY 156
2.9.1 O
N THE EXTENSION OF THE SYMMETRY CONCEPT 156
2.9.2 ANTISYMMETRY AND COLOR SYMMETRY 157
2.9.3 ANTISYMMETRY POINT GROUP
S 159
2.9.4 POINT GROUP
S OF COLOR SYMMETRY 168
2.9.5 SPACE AND OTHE
R GROUP
S OF ANTISYMMETRY AND
COLOR SYMMETRY 171
2.9.6 SYMMETRY OF SIMILARITY 175
2.9.7 PARTIAL SYMMETRY 177
2.9.8 STATISTICAL SYMMETRY. GROUPOID
S 177
3. GEOMETRY OF THE CRYSTALLINE POLYHEDRON AND LATTICE
3.1 BASIC LAWS OF GEOMETRIC CRYSTALLOGRAPHY 179
3.1.1 LAW OF CONSTANCY OF ANGLES 179
3.1.2 LAW OF RATIONAL PARAMETERS. LATTICE 180
3.2 CRYSTALLINE POLYHEDRON 182
3.2.1 IDEAL SHAPE. BUNDLE OF NORMALS AND EDGES 182
3.2.2 SIMPLE FORMS 183
3.2.3 DISTRIBUTION OF SIMPLE FORMS AMONG CLASSES 189
3.2.4 HOLOHEDRY AND HEMIHEDRY 192
3.2.5 COMBINATIONS OF SIMPLE FORMS 192
3.2.6 THE ZONE LAW 193
3.3 GONIOMETRY 194
3.3.1 CRYSTAL SETTING 194
3.3.2 EXPERIMENTAL TECHNIQUE OF GONIOMETRY 198
3.3.3 GONIOMETRIE CALCULATIONS 200
3.4 LATTICE GEOMETRY 205
3.4.1 STRAIGHT LINES AND PLANES OF THE LATTICE 205
3.4.2 PROPERTIES OF PLANES 206
3.4.3 RECIPROCAL LATTICE 208
3.5 LATTICE TRANSFORMATIONS 212
3.5.1 TRANSFORMATION OF COORDINATES AN
D INDICES IN THE
ATOMIC AND RECIPROCAL LATTICES 212
3.5.2 REDUCTION ALGORITHM 216
3.5.3 COMPUTATION OF ANGLES AND DISTANCES IN CRYSTALS 219
4. STRUCTURE ANALYSIS OF CRYSTALS
4.1 FUNDAMENTAL
S OF DIFFRACTION THEORY 222
4.1.1 WAVE INTERFERENCE 222
XVIII CONTENTS
4.1.2 SCATTERING AMPLITUDE 224
4.1.3 ELECTRON DENSITY DISTRIBUTION. FOURIER INTEGRAL 226
4.1.4 ATOMIC AMPLITUDE 227
4.1.5 THE TEMPERATUR
E FACTO
R 231
4.2 DIFFRACTION FROM CRYSTALS 234
4.2.1 LAUE CONDITIONS. RECIPROCAL LATTICE 234
4.2.2 SIZE OF RECIPROCAL LATTICE NODES 237
4.2.3 REFLECTION SPHERE 239
4.2.4 STRUCTURE AMPLITUDE 241
4.2.5 INTENSITY OF REFLECTIONS 242
4.2.6 THERMAL DIFFUSION SCATTERING 244
4.2.7 SYMMETRY OF THE DIFFRACTION PATTER
N AND ITS
RELATION T
O THE POIN
T SYMMETRY OF THE CRYSTAL 244
4.2.8 MANIFESTATION OF SPACE-SYMMETRY OF A CRYSTAL IN A
DIFFRACTION PATTERN
. EXTINCTIONS 245
4.3 INTENSITY OF SCATTERING BY A SINGLE CRYSTAL. KINEMATIC
AN
D DYNAMIC THEORIES 252
4.3.1 KINEMATIC THEORY 252
4.3.2 INTEGRATED INTENSITY OF REFLECTION IN KINEMATIC
SCATTERING 253
4.3.3 PRINCIPLES OF DYNAMIC THEORY 256
4.3.4 DARWIN S TREATMENT 257
4.3.5 LAUE-EWAL
D TREATMEN
T 258
4.3.6 DYNAMIC SCATTERING IN AN ABSORBING CRYSTAL.
BORRMANN EFFECT 262
4.3.7 EXPERIMENTAL INVESTIGATIONS AN
D APPLICATIONS
OF DYNAMIC SCATTERING 266
4.4. SCATTERING BY NONCRYSTALLINE SUBSTANCES 271
4.4.1 GENERAL EXPRESSION FOR INTENSITY OF SCATTERING.
FUNCTION OF INTERATOMI
C DISTANCES 271
4.4.2 SPHERICALLY SYMMETRIC SYSTEMS: GAS
, LIQUID,
AND AMORPHOUS SUBSTANCES 272
4.4.3 SYSTEMS WITH CYLINDRICAL SYMMETRY: POLYMERS
AND LIQUID CRYSTALS 274
4.4.4 SMALL-ANGLE SCATTERING 276
4.5 EXPERIMENTAL TECHNIQUE OF X-RAY STRUCTURE ANALYSIS OF
SINGLE CRYSTALS 278
4.5.1 GENERATION AND PROPERTIES OF X-RAYS 278
4.5.2 INTERACTION OF X-RAYS WITH A SUBSTANCE 282
4.5.3 RECORDING OF X-RAYS 283
4.5.4 STAGES OF X-RAY STRUCTURE ANALYSIS OF SINGLE CRYSTALS . . 284
4.5.5 LAUE METHOD 285
4.5.6 CRYSTAL ROTATION AND OSCILLATION METHOD
S 287
4.5.7 MOVING CRYSTAL AN
D FILM TECHNIQUES 291
CONTENTS XIX
4.5.8 X-RAY DIFFRACTOMETERS FOR INVESTIGATING SINGLE
CRYSTALS 295
4.5.9 DIFFRACTOMETRIC DETERMINATION OF THE CRYSTAL ORIENTATION,
UNIT CELL, AND INTENSITIES 297
4.6 X-RAY INVESTIGATION OF POLYCRYSTALLINE MATERIALS 299
4.6.1 POTENTIALITIES OF THE METHOD 299
4.6.2 CAMERAS FOR POLYCRYSTALLINE SPECIMENS 300
4.6.3 INDEXING OF DEBYE PHOTOGRAPH
S AND INTENSITY OF
THEIR LINES 303
4.6.4 DIFFRACTOMETRY OF POLYCRYSTALLINE SPECIMENS 304
4.6.5 PHASE ANALYSIS 305
4.6.6 INVESTIGATION OF TEXTURES 305
4.6.7 DETERMINATION OF THE SIZES OF CRYSTALS AND INTERNAL
STRESSES 307
4.7 DETERMINATION OF THE ATOMIC STRUCTURE OF CRYSTALS 307
4.7.1 PRELIMINARY DAT
A ON THE STRUCTURE 307
4.7.2 FOURIER SYNTHESIS. PHASE PROBLEM 308
4.7.3 THE TRIAL AND ERRO
R METHOD. RELIABILITY FACTOR 312
4.7.4 THE PATTERSON INTERATOMIC-DISTANCE FUNCTION 313
4.7.5 HEAVY-ATOM METHOD 319
4.7.6 DIRECT METHODS 321
4.7.7 STATISTICAL-THERMODYNAMICAL APPROACH TO THE
CRYSTAL STRUCTURE DETERMINATION 325
4.7.8 NONLOCAL-SEARCH METHOD 327
4.7.9 DETERMINATION OF THE ABSOLUTE CONFIGURATION 330
4.7.10 STRUCTURE REFINEMENT 331
4.7.11 DIFFERENCE FOURIER SYNTHESES 332
4.7.12 AUTOMATION OF THE STRUCTURE ANALYSIS 334
4.8 ELECTRON DIFFRACTION 335
4.8.1 FEATURES OF THE METHOD 335
4.8.2 EXPERIMENTAL TECHNIQUE 336
4.8.3 ELECTRON DIFFRACTION STRUCTURE ANALYSIS 338
4.8.4 DYNAMIC SCATTERING OF ELECTRONS 349
4.8.5 SPECIAL METHODS OF ELECTRON DIFFRACTION 350
4.8.6 LOW-ENERGY ELECTRON DIFFRACTION (LEED) 355
4.9 ELECTRON MICROSCOPY 357
4.9.1 THE FEATURES OF THE METHODS 357
4.9.2 TRANSMISSION ELECTRON MICROSCOPY 358
4.9.3 HRE
M IMAGING OF ATOMIC STRUCTURE OF CRYSTALS 368
4.9.4 EM IN MOLECULAR BIOLOGY. EXPERIMENTAL TECHNIQUE . . . 374
4.9.5 PROCESSING OF THE IMAGES OF BIOMOLECULES.
3D RECONSTRUCTION 376
4.9.6 TWO-DIMENSIONAL BIOCRYSTALS 381
4.9.7 TE
M OF SINGLE BIOPARTICLES 382
XX CONTENTS
4.9.8 SCANNING ELECTRON MICROSCOPY (SEM) OF SOLIDS 383
4.10 SCANNING TUNNELING MICROSCOPY 385
4.10.1 PRINCIPLE OF OPERATIO
N 385
4.10.2 BASIC CONSTRUCTIO
N OF AN STM 387
4.10.3 SPECIFIC FEATURES OF SCANNING TUNNELING MICROSCOPY. . . 388
4.10.4 ATOMIC FORCE MICROSCOPE 389
4.10.5 SEVERAL EXAMPLES OF SURFACE IMAGES 390
4.11 NEUTRO
N DIFFRACTION. MOESSBAUE
R DIFFRACTION, AN
D SCATTERING
OF NUCLEAR PARTICLES IN CRYSTALS 392
4.11.1 PRINCIPLES AND TECHNIQUES OF THE NEUTRO
N
DIFFRACTION METHO
D 392
4.11.2 INVESTIGATION OF THE ATOMIC STRUCTURE 394
4.11.3 INVESTIGATION OF THE MAGNETIC STRUCTURE 397
4.11.4 OTHE
R POSSIBILITIES OFFERED BY THE NEUTRON
-
DIFFRACTION METHO
D 400
4.11.5 DIFFRACTION OF MOESSBAUE
R RADIATION 401
4.11.6 PARTICLE CHANNELING AN
D THE SHADOW EFFECT 403
5. NEW DEVELOPMENTS IN CRYSTALLOGRAPHY AND ITS METHODS
5.1 QUASICRYSTALS 405
5.1.1 THE DISCOVERY OF QUASICRYSTALS 405
5.1.2 THE NON-TRADITIONA
L SYMMETRY OF APERIODIC OBJECTS . . 407
5.1.3 THE ONE-DIMENSIONAL QUASICRYSTAL (D = 1, N = 2) . . . . 409
5.1.4 FOURIER TRANSFORM OF QUASIPERIODIC SEQUENCES 410
5.1.5 TWO-DIMENSIONAL QUASICRYSTALS AN
D THEIR
SYMMETRY (D = 2, N = 3, 4, 5, . ..
) 412
5.1.6 THREE-DIMENSIONAL QUASICRYSTALS (D = 3, N = 4, 5, 6,
. . .) 415
5.1.7 STRUCTURE ANALYSIS OF QUASICRYSTALS 419
5.1.8 ORDE
R AND DISORDER IN THE STRUCTURE OF QUASICRYSTALS . . 424
5.2 INCOMMENSURATELY MODULATE
D STRUCTURES 427
5.3 DEVELOPMENT OF EXPERIMENTAL TECHNIQUE FOR X-RAY
STRUCTURE ANALYSIS 427
5.3.1 POWERFUL SOURCES OF X-RAY RADIATION 427
5.3.2 THE SYNCHROTRON RADIATION SOURCES 429
5.3.3 CHARACTERISTICS OF SYNCHROTRON RADIATION 429
5.3.4 THE PRIMARY SR BEAM 431
5.3.5 LAUE METHOD FOR CRYSTALLOGRAPHIC DAT
A ACQUISITION
FROM SINGLE CRYSTALS 431
5.3.6 SOME RESULTS OBTAINE
D WITH SYNCHROTRON
RADIATION SOURCES 432
5.3.7 DIFFRACTOMETERS WITH TWO-DIMENSIONAL
POSITION-SENSITIVE DETECTORS 433
5.4 X-RAY STUDIES OF CRYSTAL SURFACE 438
5.4.1 SURFACE DIFFRACTION 440
CONTENTS XXI
5.4.2 THE METHOD OF X-RAY STANDING WAVES 443
5.5 METHODS FOR ANALYSIS OF POWDER DIFFRACTION PATTERNS 446
5.6 EXAFS SPECTROSCOPY 451
5.6.1 THE FUNDAMENTALS OF THE EXAFS
THEORY 451
5.6.2 STRUCTURE INFORMATION EXTRACTED FROM EXAFS
SPECTRA 452
5.6.3 EXPERIMENTAL METHODS AND APPARATUS 454
REFERENCES
45
5
BIBLIOGRAPHY
467
SUBJECT INDEX
475
|
any_adam_object | 1 |
author | Vajnštejn, Boris K. |
author_facet | Vajnštejn, Boris K. |
author_role | aut |
author_sort | Vajnštejn, Boris K. |
author_variant | b k v bk bkv |
building | Verbundindex |
bvnumber | BV010726667 |
classification_rvk | ZM 6000 |
classification_tum | CHE 130f GEO 420f |
ctrlnum | (OCoLC)75668976 (DE-599)BVBBV010726667 |
discipline | Geowissenschaften Physik Chemie Werkstoffwissenschaften / Fertigungstechnik |
edition | 2., enl. ed., 2. print. |
format | Book |
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id | DE-604.BV010726667 |
illustrated | Illustrated |
indexdate | 2024-07-09T17:57:53Z |
institution | BVB |
isbn | 3540565582 |
language | German |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-007163341 |
oclc_num | 75668976 |
open_access_boolean | |
owner | DE-92 |
owner_facet | DE-92 |
physical | XXI, 480 S. Ill., graph. Darst. |
publishDate | 1996 |
publishDateSearch | 1996 |
publishDateSort | 1996 |
publisher | Springer |
record_format | marc |
series | Modern crystallography |
series2 | Modern crystallography |
spelling | Vajnštejn, Boris K. Verfasser aut Fundamentals of crystals symmetry and methods of structural crystallography Boris K. Vainshtein 2., enl. ed., 2. print. Berlin ; Heidelberg ; New York ; Barcelona ; Budapest ; Hong Kon Springer 1996 XXI, 480 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Modern crystallography Vol. 1 Literaturverz. S. 455 - 472. - 1. Aufl. u.d.T.: Vajnštejn, Boris K.: Symmetry of crystals, methods of structural crystallography Kristallstruktur (DE-588)4136176-3 gnd rswk-swf Kristallsymmetrie (DE-588)4136175-1 gnd rswk-swf Kristallographie (DE-588)4033217-2 gnd rswk-swf Kristallographie (DE-588)4033217-2 s DE-604 Kristallstruktur (DE-588)4136176-3 s Kristallsymmetrie (DE-588)4136175-1 s Modern crystallography Vol. 1 (DE-604)BV000440907 1 DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=007163341&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Vajnštejn, Boris K. Fundamentals of crystals symmetry and methods of structural crystallography Modern crystallography Kristallstruktur (DE-588)4136176-3 gnd Kristallsymmetrie (DE-588)4136175-1 gnd Kristallographie (DE-588)4033217-2 gnd |
subject_GND | (DE-588)4136176-3 (DE-588)4136175-1 (DE-588)4033217-2 |
title | Fundamentals of crystals symmetry and methods of structural crystallography |
title_auth | Fundamentals of crystals symmetry and methods of structural crystallography |
title_exact_search | Fundamentals of crystals symmetry and methods of structural crystallography |
title_full | Fundamentals of crystals symmetry and methods of structural crystallography Boris K. Vainshtein |
title_fullStr | Fundamentals of crystals symmetry and methods of structural crystallography Boris K. Vainshtein |
title_full_unstemmed | Fundamentals of crystals symmetry and methods of structural crystallography Boris K. Vainshtein |
title_short | Fundamentals of crystals |
title_sort | fundamentals of crystals symmetry and methods of structural crystallography |
title_sub | symmetry and methods of structural crystallography |
topic | Kristallstruktur (DE-588)4136176-3 gnd Kristallsymmetrie (DE-588)4136175-1 gnd Kristallographie (DE-588)4033217-2 gnd |
topic_facet | Kristallstruktur Kristallsymmetrie Kristallographie |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=007163341&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV000440907 |
work_keys_str_mv | AT vajnstejnborisk fundamentalsofcrystalssymmetryandmethodsofstructuralcrystallography |