Introduction to solid state physics for materials engineers:
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim, Germany
Wiley-VCH
[2021]
|
Schlagworte: | |
Online-Zugang: | http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-34884-8/ Inhaltsverzeichnis |
Beschreibung: | xiv, 280 Seiten Illustrationen, Diagramme 24.4 cm x 17 cm |
ISBN: | 3527348840 9783527348848 |
Internformat
MARC
LEADER | 00000nam a22000008c 4500 | ||
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005 | 20211021 | ||
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015 | |a 20,N37 |2 dnb | ||
016 | 7 | |a 1217132139 |2 DE-101 | |
020 | |a 3527348840 |9 3-527-34884-0 | ||
020 | |a 9783527348848 |c pbk: circa EUR 54.90 (DE) (freier Preis) |9 978-3-527-34884-8 | ||
024 | 3 | |a 9783527348848 | |
028 | 5 | 2 | |a Bestellnummer: 1134884 000 |
035 | |a (OCoLC)1249682147 | ||
035 | |a (DE-599)DNB1217132139 | ||
040 | |a DE-604 |b ger |e rda | ||
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084 | |a UP 1000 |0 (DE-625)146338: |2 rvk | ||
084 | |a 530 |2 sdnb | ||
100 | 1 | |a Zolotoyabko, Emil |e Verfasser |0 (DE-588)1012357856 |4 aut | |
245 | 1 | 0 | |a Introduction to solid state physics for materials engineers |c Emil Zolotoyabko |
264 | 1 | |a Weinheim, Germany |b Wiley-VCH |c [2021] | |
300 | |a xiv, 280 Seiten |b Illustrationen, Diagramme |c 24.4 cm x 17 cm | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
650 | 0 | 7 | |a Werkstoffkunde |0 (DE-588)4079184-1 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Festkörperphysik |0 (DE-588)4016921-2 |2 gnd |9 rswk-swf |
653 | |a CH92: Festkörperchemie | ||
653 | |a Chemie | ||
653 | |a Chemistry | ||
653 | |a Festkörperchemie | ||
653 | |a Festkörperphysik | ||
653 | |a MSD0: Materialeigenschaften | ||
653 | |a Materialeigenschaften | ||
653 | |a Materials Science | ||
653 | |a Materialwissenschaften | ||
653 | |a PH60: Festkörperphysik | ||
653 | |a Physics | ||
653 | |a Physik | ||
653 | |a Properties of Materials | ||
653 | |a Solid State Chemistry | ||
653 | |a Solid State Physics | ||
655 | 7 | |0 (DE-588)4123623-3 |a Lehrbuch |2 gnd-content | |
689 | 0 | 0 | |a Festkörperphysik |0 (DE-588)4016921-2 |D s |
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689 | 1 | |5 DE-604 | |
710 | 2 | |a Wiley-VCH |0 (DE-588)16179388-5 |4 pbl | |
776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe, PDF |z 978-3-527-83158-6 |
776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe, EPUB |z 978-3-527-83159-3 |
856 | 4 | 2 | |m X:MVB |u http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-34884-8/ |
856 | 4 | 2 | |m DNB Datenaustausch |q application/pdf |u http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=032657407&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |3 Inhaltsverzeichnis |
999 | |a oai:aleph.bib-bvb.de:BVB01-032657407 |
Datensatz im Suchindex
_version_ | 1804182398048403456 |
---|---|
adam_text | VII
CONTENTS
PREFACE
XI
INTRODUCTION
XIII
1
GENERAL
IMPACT
OF
TRANSLATIONAL
SYMMETRY
IN
CRYSTALS
ON
SOLID
STATE
PHYSICS
1
1.1
CRYSTAL
SYMMETRY
IN
REAL
SPACE
3
1.2
SYMMETRY
AND
PHYSICAL
PROPERTIES
IN
CRYSTALS
9
1.3
WAVE
PROPAGATION
IN
PERIODIC
MEDIA
AND
CONSTRUCTION
OF
RECIPROCAL
LATTICE
13
1.
A
SYMMETRY
CONSTRAINTS
ON
ROTATION
AXES
18
2
ELECTRON
WAVES
IN
CRYSTALS
23
2.1
ELECTRON
BEHAVIOR
IN
A
PERIODIC
POTENTIAL
AND
ENERGY
GAP
FORMATION
23
2.2
THE
BRILLOUIN
ZONE
28
2.3
BAND
STRUCTURE
31
2.4
GRAPHENE
35
2.5
FERMI
SURFACE
40
2.
A
CYCLOTRON
RESONANCE
AND
RELATED
PHENOMENA
43
3
ELASTIC
WAVE
PROPAGATION
IN
PERIODIC
MEDIA,
PHONONS,
AND
THERMAL
PROPERTIES
OF
CRYSTALS
51
3.1
LINEAR
CHAIN
OF
THE
PERIODICALLY
POSITIONED
ATOMS
51
3.2
PHONONS
AND
HEAT
CAPACITY
56
3.3
THERMAL
VIBRATIONS
OF
ATOMS
IN
CRYSTALS
59
3.4
CRYSTAL
MELTING
60
3.5
X-RAY
AND
NEUTRON
INTERACTION
WITH
PHONONS
61
3.5.1
DEBYE-WALLER
FACTOR
65
3.6
LATTICE
ANHARMONICITY
67
3.7
VELOCITIES
OF
BULK
ACOUSTIC
WAVES
69
3.8
SURFACE
ACOUSTIC
WAVES
72
3.
A
BOSE
S
DERIVATION
OF
THE
PLANCK
DISTRIBUTION
FUNCTION
73
VIII
CONTENTS
4
ELECTRICAL
CONDUCTIVITY
IN
METALS
75
4.1
CLASSICAL
DRUDE
THEORY
76
4.2
QUANTUM-MECHANICAL
APPROACH
77
4.3
PHONON
CONTRIBUTION
TO
ELECTRICAL
RESISTIVITY
80
4.4
DEFECTS
CONTRIBUTIONS
TO
METAL
RESISTIVITY
82
4.
A
DERIVATION
OF
THE
FERMI-DIRAC
DISTRIBUTION
FUNCTION
84
5
ELECTRON
CONTRIBUTION
TO
THERMAL
PROPERTIES
OF
CRYSTALS
87
5.1
ELECTRONIC
SPECIFIC
HEAT
87
5.2
ELECTRONIC
HEAT
CONDUCTIVITY
AND
THE
WIEDEMANN-FRANZ
LAW
92
5.3
THERMOELECTRIC
PHENOMENA
94
5.4
THERMOELECTRIC
MATERIALS
98
6
ELECTRICAL
CONDUCTIVITY
IN
SEMICONDUCTORS
105
6.1
INTRINSIC
(UNDOPED)
SEMICONDUCTORS
105
6.2
EXTRINSIC
(DOPED)
SEMICONDUCTORS
110
6.3
P-N
JUNCTION
111
6.4
SEMICONDUCTOR
TRANSISTORS
117
6.
A
ESTIMATION
OF
EXCITON
S
RADIUS
AND
BINDING
ENERGY
120
7
WORK
FUNCTION
AND
RELATED
PHENOMENA
123
7.1
WORK
FUNCTION OF
METALS
123
7.2
PHOTOELECTRIC
EFFECT
126
7.2.1
ANGLE-RESOLVED
PHOTOEMISSION
SPECTROSCOPY
(APRES)
126
7.3
THERMIONIC
EMISSION
128
7.4
METAL-SEMICONDUCTOR
JUNCTION
131
7.
A
IMAGE
CHARGE
METHOD
133
7.
B
A
FREE
ELECTRON
CANNOT
ABSORB
A
PHOTON
134
8
LIGHT
INTERACTION
WITH
METALS
AND
DIELECTRICS
135
8.1
SKIN
EFFECT
IN
METALS
137
8.2
LIGHT
REFLECTION
FROM
A
METAL
138
8.3
PLASMA
FREQUENCY
140
8.4
INTRODUCTION
TO
METAMATERIALS
141
8.5
STRUCTURAL
COLORS
148
8.
A
ACOUSTIC
METAMATERIALS
150
9
LIGHT
INTERACTION
WITH
SEMICONDUCTORS
155
9.1
SOLAR
CELLS
155
9.1.1
THE
GRATZEL
CELL
159
9.1.2
HALIDE
PEROVSKITE
SOLAR
CELLS
161
9.2
SOLID
STATE
RADIATION
DETECTORS
162
9.2.1
INFRARED
DETECTORS
164
9.3
CHARGE-COUPLED
DEVICES
(CCDS)
167
9.4
LIGHT-EMITTING
DIODES
(LEDS)
168
CONTENTS
IX
9.5
9.6
SEMICONDUCTOR
LASERS
170
PHOTONIC
MATERIALS
173
10
COOPERATIVE
PHENOMENA
IN
ELECTRON
SYSTEMS:
SUPERCONDUCTIVITY
177
10.1
10.2
10.3
10.4
10.5
10.6
10.A
10.B
10.C
PHONON-MEDIATED
COOPER
PAIRING
MECHANISM
178
DIRECT
MEASUREMENTS
OF
THE
SUPERCONDUCTOR
ENERGY
GAP
182
JOSEPHSON
EFFECT
184
MEISSNER
EFFECT
185
SQUID
188
HIGH-TEMPERATURE
SUPERCONDUCTIVITY
189
FOURIER
TRANSFORM
OF
THE
COULOMB
POTENTIAL
192
THE
JOSEPHSON
EFFECT
THEORY
193
DERIVATION
OF
THE
CRITICAL
MAGNETIC
FIELD
IN
TYPE
I
SUPERCONDUCTORS
195
11
COOPERATIVE
PHENOMENA
IN
ELECTRON
SYSTEMS:
FERROMAGNETISM
197
11.1
11.2
11.3
11.4
11.5
11.6
LL.A
PARAMAGNETISM
AND
FERROMAGNETISM
198
THE
ISING
MODEL
204
MAGNETIC
STRUCTURES
205
MAGNETIC
DOMAINS
207
MAGNETIC
MATERIALS
210
GIANT
MAGNETORESISTANCE
211
THE
ELEMENTARY
MAGNETIC
MOMENT
OF
AN
ELECTRON
PRODUCED
BY
ITS
ORBITAL
MOVEMENT
214
LL.B
LL.C
PAULI
PARAMAGNETISM
214
MAGNETIC
DOMAIN
WALLS
216
12
12.1
12.2
12.3
FERROELECTRICITY
AS
A
COOPERATIVE
PHENOMENON
219
THE
THEORY
OF
FERROELECTRIC
PHASE
TRANSITION
223
FERROELECTRIC
DOMAINS
227
THE
PIEZOELECTRIC
EFFECT
AND
ITS
APPLICATION
IN
FERROELECTRIC
DEVICES
230
12.4
OTHER
APPLICATION
FIELDS
OF
FERROELECTRICS
233
13
OTHER
EXAMPLES
OF
COOPERATIVE
PHENOMENA
IN
ELECTRON
SYSTEMS
237
13.1
13.2
13.3
13.A
THE
MOTT
METAL-INSULATOR
TRANSITION
237
CLASSICAL
AND
QUANTUM
HALL
EFFECTS
241
TOPOLOGICAL
INSULATORS
247
ELECTRON
ENERGIES
AND
ORBIT
RADII
IN
THE
SIMPLIFIED
BOHR
MODEL
OF
A
HYDROGEN-LIKE
ATOM
250
FURTHER
READING
253
LIST
OF
PROMINENT
SCIENTISTS
MENTIONED
IN
THE
BOOK
255
INDEX
265
|
adam_txt |
VII
CONTENTS
PREFACE
XI
INTRODUCTION
XIII
1
GENERAL
IMPACT
OF
TRANSLATIONAL
SYMMETRY
IN
CRYSTALS
ON
SOLID
STATE
PHYSICS
1
1.1
CRYSTAL
SYMMETRY
IN
REAL
SPACE
3
1.2
SYMMETRY
AND
PHYSICAL
PROPERTIES
IN
CRYSTALS
9
1.3
WAVE
PROPAGATION
IN
PERIODIC
MEDIA
AND
CONSTRUCTION
OF
RECIPROCAL
LATTICE
13
1.
A
SYMMETRY
CONSTRAINTS
ON
ROTATION
AXES
18
2
ELECTRON
WAVES
IN
CRYSTALS
23
2.1
ELECTRON
BEHAVIOR
IN
A
PERIODIC
POTENTIAL
AND
ENERGY
GAP
FORMATION
23
2.2
THE
BRILLOUIN
ZONE
28
2.3
BAND
STRUCTURE
31
2.4
GRAPHENE
35
2.5
FERMI
SURFACE
40
2.
A
CYCLOTRON
RESONANCE
AND
RELATED
PHENOMENA
43
3
ELASTIC
WAVE
PROPAGATION
IN
PERIODIC
MEDIA,
PHONONS,
AND
THERMAL
PROPERTIES
OF
CRYSTALS
51
3.1
LINEAR
CHAIN
OF
THE
PERIODICALLY
POSITIONED
ATOMS
51
3.2
PHONONS
AND
HEAT
CAPACITY
56
3.3
THERMAL
VIBRATIONS
OF
ATOMS
IN
CRYSTALS
59
3.4
CRYSTAL
MELTING
60
3.5
X-RAY
AND
NEUTRON
INTERACTION
WITH
PHONONS
61
3.5.1
DEBYE-WALLER
FACTOR
65
3.6
LATTICE
ANHARMONICITY
67
3.7
VELOCITIES
OF
BULK
ACOUSTIC
WAVES
69
3.8
SURFACE
ACOUSTIC
WAVES
72
3.
A
BOSE
'
S
DERIVATION
OF
THE
PLANCK
DISTRIBUTION
FUNCTION
73
VIII
CONTENTS
4
ELECTRICAL
CONDUCTIVITY
IN
METALS
75
4.1
CLASSICAL
DRUDE
THEORY
76
4.2
QUANTUM-MECHANICAL
APPROACH
77
4.3
PHONON
CONTRIBUTION
TO
ELECTRICAL
RESISTIVITY
80
4.4
DEFECTS
'
CONTRIBUTIONS
TO
METAL
RESISTIVITY
82
4.
A
DERIVATION
OF
THE
FERMI-DIRAC
DISTRIBUTION
FUNCTION
84
5
ELECTRON
CONTRIBUTION
TO
THERMAL
PROPERTIES
OF
CRYSTALS
87
5.1
ELECTRONIC
SPECIFIC
HEAT
87
5.2
ELECTRONIC
HEAT
CONDUCTIVITY
AND
THE
WIEDEMANN-FRANZ
LAW
92
5.3
THERMOELECTRIC
PHENOMENA
94
5.4
THERMOELECTRIC
MATERIALS
98
6
ELECTRICAL
CONDUCTIVITY
IN
SEMICONDUCTORS
105
6.1
INTRINSIC
(UNDOPED)
SEMICONDUCTORS
105
6.2
EXTRINSIC
(DOPED)
SEMICONDUCTORS
110
6.3
P-N
JUNCTION
111
6.4
SEMICONDUCTOR
TRANSISTORS
117
6.
A
ESTIMATION
OF
EXCITON
'
S
RADIUS
AND
BINDING
ENERGY
120
7
WORK
FUNCTION
AND
RELATED
PHENOMENA
123
7.1
WORK
FUNCTION OF
METALS
123
7.2
PHOTOELECTRIC
EFFECT
126
7.2.1
ANGLE-RESOLVED
PHOTOEMISSION
SPECTROSCOPY
(APRES)
126
7.3
THERMIONIC
EMISSION
128
7.4
METAL-SEMICONDUCTOR
JUNCTION
131
7.
A
IMAGE
CHARGE
METHOD
133
7.
B
A
FREE
ELECTRON
CANNOT
ABSORB
A
PHOTON
134
8
LIGHT
INTERACTION
WITH
METALS
AND
DIELECTRICS
135
8.1
SKIN
EFFECT
IN
METALS
137
8.2
LIGHT
REFLECTION
FROM
A
METAL
138
8.3
PLASMA
FREQUENCY
140
8.4
INTRODUCTION
TO
METAMATERIALS
141
8.5
STRUCTURAL
COLORS
148
8.
A
ACOUSTIC
METAMATERIALS
150
9
LIGHT
INTERACTION
WITH
SEMICONDUCTORS
155
9.1
SOLAR
CELLS
155
9.1.1
THE
GRATZEL
CELL
159
9.1.2
HALIDE
PEROVSKITE
SOLAR
CELLS
161
9.2
SOLID
STATE
RADIATION
DETECTORS
162
9.2.1
INFRARED
DETECTORS
164
9.3
CHARGE-COUPLED
DEVICES
(CCDS)
167
9.4
LIGHT-EMITTING
DIODES
(LEDS)
168
CONTENTS
IX
9.5
9.6
SEMICONDUCTOR
LASERS
170
PHOTONIC
MATERIALS
173
10
COOPERATIVE
PHENOMENA
IN
ELECTRON
SYSTEMS:
SUPERCONDUCTIVITY
177
10.1
10.2
10.3
10.4
10.5
10.6
10.A
10.B
10.C
PHONON-MEDIATED
COOPER
PAIRING
MECHANISM
178
DIRECT
MEASUREMENTS
OF
THE
SUPERCONDUCTOR
ENERGY
GAP
182
JOSEPHSON
EFFECT
184
MEISSNER
EFFECT
185
SQUID
188
HIGH-TEMPERATURE
SUPERCONDUCTIVITY
189
FOURIER
TRANSFORM
OF
THE
COULOMB
POTENTIAL
192
THE
JOSEPHSON
EFFECT
THEORY
193
DERIVATION
OF
THE
CRITICAL
MAGNETIC
FIELD
IN
TYPE
I
SUPERCONDUCTORS
195
11
COOPERATIVE
PHENOMENA
IN
ELECTRON
SYSTEMS:
FERROMAGNETISM
197
11.1
11.2
11.3
11.4
11.5
11.6
LL.A
PARAMAGNETISM
AND
FERROMAGNETISM
198
THE
ISING
MODEL
204
MAGNETIC
STRUCTURES
205
MAGNETIC
DOMAINS
207
MAGNETIC
MATERIALS
210
GIANT
MAGNETORESISTANCE
211
THE
ELEMENTARY
MAGNETIC
MOMENT
OF
AN
ELECTRON
PRODUCED
BY
ITS
ORBITAL
MOVEMENT
214
LL.B
LL.C
PAULI
PARAMAGNETISM
214
MAGNETIC
DOMAIN
WALLS
216
12
12.1
12.2
12.3
FERROELECTRICITY
AS
A
COOPERATIVE
PHENOMENON
219
THE
THEORY
OF
FERROELECTRIC
PHASE
TRANSITION
223
FERROELECTRIC
DOMAINS
227
THE
PIEZOELECTRIC
EFFECT
AND
ITS
APPLICATION
IN
FERROELECTRIC
DEVICES
230
12.4
OTHER
APPLICATION
FIELDS
OF
FERROELECTRICS
233
13
OTHER
EXAMPLES
OF
COOPERATIVE
PHENOMENA
IN
ELECTRON
SYSTEMS
237
13.1
13.2
13.3
13.A
THE
MOTT
METAL-INSULATOR
TRANSITION
237
CLASSICAL
AND
QUANTUM
HALL
EFFECTS
241
TOPOLOGICAL
INSULATORS
247
ELECTRON
ENERGIES
AND
ORBIT
RADII
IN
THE
SIMPLIFIED
BOHR
MODEL
OF
A
HYDROGEN-LIKE
ATOM
250
FURTHER
READING
253
LIST
OF
PROMINENT
SCIENTISTS
MENTIONED
IN
THE
BOOK
255
INDEX
265 |
any_adam_object | 1 |
any_adam_object_boolean | 1 |
author | Zolotoyabko, Emil |
author_GND | (DE-588)1012357856 |
author_facet | Zolotoyabko, Emil |
author_role | aut |
author_sort | Zolotoyabko, Emil |
author_variant | e z ez |
building | Verbundindex |
bvnumber | BV047253355 |
classification_rvk | UP 1000 |
ctrlnum | (OCoLC)1249682147 (DE-599)DNB1217132139 |
discipline | Physik |
discipline_str_mv | Physik |
format | Book |
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genre | (DE-588)4123623-3 Lehrbuch gnd-content |
genre_facet | Lehrbuch |
id | DE-604.BV047253355 |
illustrated | Illustrated |
index_date | 2024-07-03T17:08:38Z |
indexdate | 2024-07-10T09:06:55Z |
institution | BVB |
institution_GND | (DE-588)16179388-5 |
isbn | 3527348840 9783527348848 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-032657407 |
oclc_num | 1249682147 |
open_access_boolean | |
owner | DE-29T DE-706 DE-703 DE-20 DE-M347 DE-573 DE-1050 DE-19 DE-BY-UBM |
owner_facet | DE-29T DE-706 DE-703 DE-20 DE-M347 DE-573 DE-1050 DE-19 DE-BY-UBM |
physical | xiv, 280 Seiten Illustrationen, Diagramme 24.4 cm x 17 cm |
publishDate | 2021 |
publishDateSearch | 2021 |
publishDateSort | 2021 |
publisher | Wiley-VCH |
record_format | marc |
spelling | Zolotoyabko, Emil Verfasser (DE-588)1012357856 aut Introduction to solid state physics for materials engineers Emil Zolotoyabko Weinheim, Germany Wiley-VCH [2021] xiv, 280 Seiten Illustrationen, Diagramme 24.4 cm x 17 cm txt rdacontent n rdamedia nc rdacarrier Werkstoffkunde (DE-588)4079184-1 gnd rswk-swf Festkörperphysik (DE-588)4016921-2 gnd rswk-swf CH92: Festkörperchemie Chemie Chemistry Festkörperchemie Festkörperphysik MSD0: Materialeigenschaften Materialeigenschaften Materials Science Materialwissenschaften PH60: Festkörperphysik Physics Physik Properties of Materials Solid State Chemistry Solid State Physics (DE-588)4123623-3 Lehrbuch gnd-content Festkörperphysik (DE-588)4016921-2 s DE-604 Werkstoffkunde (DE-588)4079184-1 s Wiley-VCH (DE-588)16179388-5 pbl Erscheint auch als Online-Ausgabe, PDF 978-3-527-83158-6 Erscheint auch als Online-Ausgabe, EPUB 978-3-527-83159-3 X:MVB http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-34884-8/ DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=032657407&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Zolotoyabko, Emil Introduction to solid state physics for materials engineers Werkstoffkunde (DE-588)4079184-1 gnd Festkörperphysik (DE-588)4016921-2 gnd |
subject_GND | (DE-588)4079184-1 (DE-588)4016921-2 (DE-588)4123623-3 |
title | Introduction to solid state physics for materials engineers |
title_auth | Introduction to solid state physics for materials engineers |
title_exact_search | Introduction to solid state physics for materials engineers |
title_exact_search_txtP | Introduction to solid state physics for materials engineers |
title_full | Introduction to solid state physics for materials engineers Emil Zolotoyabko |
title_fullStr | Introduction to solid state physics for materials engineers Emil Zolotoyabko |
title_full_unstemmed | Introduction to solid state physics for materials engineers Emil Zolotoyabko |
title_short | Introduction to solid state physics for materials engineers |
title_sort | introduction to solid state physics for materials engineers |
topic | Werkstoffkunde (DE-588)4079184-1 gnd Festkörperphysik (DE-588)4016921-2 gnd |
topic_facet | Werkstoffkunde Festkörperphysik Lehrbuch |
url | http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-34884-8/ http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=032657407&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT zolotoyabkoemil introductiontosolidstatephysicsformaterialsengineers AT wileyvch introductiontosolidstatephysicsformaterialsengineers |