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Goldsmid H.J. (ed.) — Problems in solid state physics
Goldsmid H.J. (ed.) — Problems in solid state physics



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Название: Problems in solid state physics

Автор: Goldsmid H.J. (ed.)

Аннотация:

There can be few undergraduate physics courses at colleges and universities that do not place some emphasis on the study of the solid state, and in many cases this study is made to some considerable depth. There are also a great many postgraduate courses on the various aspects of solid-state physics. To meet the needs of students on such courses, there are several excellent textbooks, some of which include a number of problems to be tackled by the reader. There does, however, seem to be a real need for a wider selection of problems and solutions for use by teachers and students of solid-state physics, and it is with this in mind that the present book has been prepared. It is intended particularly for use bv final-year undergraduates and postgraduate students.


Язык: en

Рубрика: Физика/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 1968

Количество страниц: 483

Добавлена в каталог: 15.12.2013

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Reciprocal lattice vectors      1.13
Reciprocal space      1.21
Reflectivity      15.3 15.5 15.13 15.15 15.22
Refractive index      7.4 7.10
Relaxation time      7.3 7.5 7.7 11.14 13.8
Residual resistance      11.14
Richard's rule      6.2
Richardson — Dushman equation      11.5
Rigid ion model      3.12 3.13 3.14
Rochelle salt      1.10
Rock salt structure      15.2 15.6
Rubidium      11.1
Ruby      10.4
Scattering      11.14 11.16 11.18 13.11 see "Brillouin "Inter-valleyscattering" "Lattice "Raman
Schottky defects      6.3 6.16
Schroedinger's equation      3.15 3.16 3.17 3.19 3.20 12.1 12.5 12.10 12.11 12.12
Screening radius      11.12
Screw dislocations      6.9
Segregation coefficient      2.1 2.2 2.4
Semi-metals      12.7
Semiconductors      12.7 13.1 14.1 15.9
Silicon      5.10 5.12 10.2 13.4 13.7 13.10 13.14 14.4 14.5 14.8 15.10 15.11 15.12
Silsbee's rule      16.3
Silver      11.3 11.12
Skin effect      11.6
Slip systems      6.14 6.15
Sodium      7.6 10.6 11.1 11.2
Sodium chloride      3.2 3.3 3.8 3.11 5.2 10.9
Sodium chloride structure      3.8 3.12 15.5
Sodium iodide      5.9
Solid solution      6.1 6.2
Space charge      14.2 14.3
Specific heat      see "Heat capacity"
Spin temperature      10.8
Spin waves      9.4 9.5 10.11
Spin-echo techniques      10.6
Spin-lattice relaxation      8.19
Spin-orbit interaction      11.19
Stacking faults      6.12 6.15 6.19
Stereographic projection      1.2 1.18
Sternheimer antishielding effect      10.7
Stoke's law      7.8
Strain optical tensor      15.11 15.12
Strain tensor      4.1 4.2 4.3 4.6
Strain theory, infinitesimal      4.1 4.6 4.8
Stress tensor      4.4
Structure factor      12.9
Sulphur      1.2
Superconductivity      16.1
Superlattices      6.4
Surface energy, negative      16.12
Surface recombination velocity      13.22 13.23 13.25
Surface reflection coefficient      13.22
Surfaces      12.14 12.15
Systematic absences      1.11
Tetragonal crystals      1.16 1.18 8.11
Thermal conductivity, electronic      5.21 11.2
Thermal conductivity, lattice      5.19 5.20 5.21
Thermal expansion      5.9 5.16
Thermionic emission      11.5
Thomas — Fermi approximation      11.12
Tight-Binding Method      12.13 12.14 12.16
Tin      16.3 16.6 16.7 16.11
transistors      14.9 14.10
Transit time      14.10
transmission electron microscopy      6.7
Transport factor      14.9
Tungsten      11.5
tunnelling      16.8
Two-dimensional lattice      9.5 12.2 12.7 12.19
Type I superconductivity      16.1
Type II superconductivity      16.12
Unit cell      1.1
Uranium dioxide      6.7
Vacancies      5.17 6.3 6.18
VACUUM      7.4 7.9
Valence band      12.17 13.2 15.16 15.19
Van Hove singularities      15.16 15.17 15.21
Van Laar equations      2.4
Van Vleck formula      10.5
Vanadium      5.16
Vapour-growth technique      2.5
Vegard's law      6.2
Velocity of sound      4.11 5.3 11.20
Voids      7.7
Vonsovskii — Zener theory      9.7
Wannier functions      12.17
Warped energy surfaces      12.17
Water      7.7 3.14
Weak-binding limit      15.26
Weiss field      9.1
Weiss zone law      1.1 1.2
Weissenberg technique      1.21
Wigner — Seitz cell      12.1
work function      11.5
Wurtzite structure      15.22
X-ray diffraction      1.10
X-ray powder technique      1.14 1.15 1.23
X-ray rotation method      1.16
Zeeman states      10.4
Zener breakdown      11.19 14.8
Zero-point energy      5.6 5.7 5.8
Zinc blende structure      15.2 15.6 15.14
Zinc selenide      15.4
Zinc sulphide      3.12
Zone melting      2.1
1 2
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