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Waseda Y. — Novel Application of Anomalous (Resonance) X-Ray Scattering for Structural Characterization of Disordered Materials
Waseda Y. — Novel Application of Anomalous (Resonance) X-Ray Scattering for Structural Characterization of Disordered Materials

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Название: Novel Application of Anomalous (Resonance) X-Ray Scattering for Structural Characterization of Disordered Materials

Автор: Waseda Y.

Язык: en

Рубрика: Физика/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 1984

Количество страниц: 183

Добавлена в каталог: 18.11.2008

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
$\textrm{Ag}_2\textrm{Se}$      114
$\textrm{Ag}_2\textrm{S}$      23 70
$\textrm{BaCl}_2$      23
$\textrm{CaCl}_2$      23
$\textrm{Cu}_2\textrm{MnAl}$      53
$\textrm{GeO}_2$      23
$\textrm{NaCl}_2$      23
$\textrm{Ni}_2\textrm{Cr}$      53
$\textrm{ZnCl}_2$      23
Absorption edge      2 25 38 46 84
Activity      103
Ag-Ge      23
AgCl      23
AgI      23 70 72
Air scattering      83
Alkali metals      1
Amorphous semiconductor      1 20 27
Angular scanning measurement      30 77
Anharmonic mode      79
Anharmonic thermal vibration      118
Anion-cation pairs      70 74
Anomalous dispersion effect      2 30 54 70 97
Anomalous dispersion factor      25 30 40 119
Anomalous x-ray scattering      2 25 47 91
Aqueoous solution      95 108
As-Te      23 55
Ashcroft — Langreth form      14
Atomic core diameter      4
Atomic correlation      85
Atomic fraction      8 11
Atomic periodicity      6 16
Atomic scale structure      1 4 9 58 73 113
Atomic scattering factor      6 21 52 84 96
Atomic sensitivity      107
Atomic short-range order      16
Atomic size      64 89
Average concentration      11 100
Average number density      4 100
Average probability      4
Average radial density function      8
Avogadro’s number      44
Backseattering      105
Band pass      39
Band structure      39
Bessel function      58
Bhatia — Thornton form      24
Biochemistry      95
Boltzmann constant      102
Breit — Dirac recoil factor      82
Bulk      22
Calcium ferrite      1
CAS      48
Cation distribution      53 98
Cation-cation pairs      70 116
CD      95
CE      67
Ce-Co      69
Ce-Cu      69
Ce-Ni      23
Cementite-type structure      53
Cha1cogenides      70 114
Channel cut Si crystal      83
Characteristic radiations (x-rays)      27 56
Charge      44
Charge cancellation      75
Charge neutrality      114
Chemical affinity      18
Chemical identity      9
Chemical transferability      40
Co-P      23 62
Cobalt ferrite      53
Coherent x-ray scattering intensity      6 15 84 101
Combination method      45
Complex conjugate      115
Compositional short range order (CSRO)      2 17 32 108
Compton component (scattering)      82
Con formal solution      104
Concentration fluctuation      14
Concentration independence      13 24 65
Concentration technique      24
Configurational average      115
Continuous spectrum      40 49 94
Continuum states      25
Conventional x-ray source      67
Convolution      107
Coordination number      4 18 93 106
Cramer method      61
Cromer — Liberman’s scheme      37 87 119
Cross correlation      102
Cross sect ion      36
Cross term      15
Crystal analyze      81
Crystallographic polarity      49
Crystallographic structure factor      48
CS      29
Cu      38
Cu-Sn      23
Cu-Zr      23 63
CuCl      23
Curve-fitting procedure      108
D-shel      1
Data.processing      110
Dead time      82
Debye — Waller type factor      107 117
Degree of long-range order      52
Delta function      107
Dense random packing      2 16
Density fluctuation      102
Differential anomalous scattering      84 92
Diffracted beam monochromator      79
Diffraction vector      6
Diffuse patterns      70 114
Dipole approximation      25
Directional CSRO      19
dispersion relation      27 34 46 98
Edge shift      39
Effective interaction distance      68
Einstein vibration      117
Electrodeposition      57
Electrolytic solution      96
Electron density      25
Electron diffraction      5
Electron localization      68
Electron mass      44
Electron occupation number      68
Electron pass      81
Electronegativity      17
Electronic devices      1
Energy derivative technique      84 92 99
Energy dispersive x-ray diffraction (EDXD)      6 38 76 109 119
Energy resolution      45
Energy spectrum      32 109
Environmental partial structure factor      87 92
Environmental RDF      88
Environmental structure      85 95 108
Etching behavior      50
EXAFS      2 32 75 91 105
Excitation energy      25
F-electrons      68
Faber — Ziman form      13 20 57 84
Fe-B      23
Fe-Ge      23
FeCo      53
Ferrites      53
Fine structure      2 39
First order difference scattering      96
Fluctuation      102
Fluorescent radiation      50 57 79
Foil      22
Forward scattering      7 11 103
Four fold-twofold coordinated model      84
Fourier transformation      7 20 74 99 109
Frequency modulated x-ray diffraction      31
Friedel pair reflection      43
GaAS      45
Gap      50
Gauss integral      119
Gauss — Seidel method      61
Gaussian peaks      75
ge      37 79
Geometrical factor      52
Germanate      54
GeSe      23 67 78
Gibbs free energy      103
Ground state energy      34
Halder — Wagner’s scheme      65
Hard sphere mixtures      17
Harmonic component      79 81
Heat transfer mediums      1
Heavy water      97
Hemimorphite      40 41
High polymers      98
High resolution      109
Higher ordering      113
Homogeneous      4 6
Hydration numbers      96
Hydrometa11urgy      95
Ideal behavior      13
Imaginary component (part)      25 42 48 86 108
In-situ measurement      110
Inner electron      25 27
Integration limit      46
Intensity measurement method      41
Intercalated graphite      98
Interference function      7
Ionic conductivity      70 114
Ionic transport      47 70
Isolated atom      38 106
Isomorphous substitution      24
Isothermal compressibility      103
Isotope substitution      3 22 63 94 97
Isotopes      2 24 94
K      37
K-shell      28 34
Kapton (polyimide) tape      83
Kramers — Kronig transform      27
Krogh — Moe — Norman’s method      57
Kronecker symbol      115
L-shell      28 34
Laue — Bragg peaks      70 114
Laue-monotonic scattering term      12 28 57 67
LiF crystal      79
Light elements      3 93
Limited q-range      97
Linear absorption coefficient      35 44
Linear equation      13 24
Linear relations      11
Liquid metals      1
Local deviation      100
Local environmental structure      88 91
Local fluctuations      99
Local number density      14
Long wavelength limit      14 99 101
Low q measurements      104
M-shell      34
Macromo1ecular complexes      53 98
Macromolecules      98
Magnetic anisotropy      19
magnetic susceptibility      67
Mass absorption coefficient      119
Matrix form      21
Mean free path      91 106
Mean square average of the scattering factor      28
Metallic glasses      1 20
Minor element      108
Mn-Si      23
MoGe      90
Molecular Dynamics      74
Molten salts      65
MoNi      67 86 94
Monochromator crystal      110
Monotonic decrease      6
Monotonic terms      105
Morphology      50
Multiple scattering      57 108
Near edge phenomena      38 40 81 108
Nearest neighbor correlation      91
Nearest neighbor distance      4
Necessary condition      67
Neutron diffraction      2 5 22 63
NI      26
Ni-B      23
Ni-Nb      23
Ni-P      23 56
Ni-Si      23
Nickel ferrite      53
Non-periodicity      1
Non-relativistic wave function      34
Noncentrosymmetric systems      48
Nonequivalence      49
normalization constant      57
Nuclear reactor      1
Nuclear scattering length      118
Number density      57 99 102
odd number      48
Off-Bragg condition      82
One-dimensional liquids      98
Optical method      41 46
Optical misalignment      110
Ordered alloys      51
Ordering effect      14
Orientations      6
Oscillator strength      33 36 39
Oscillatory modulation      105
P      37
Pair distribution function      5
Pair potential      4
Parabolic function      4
Partial radial density function      8 10
Partial radial distribution functions      2 10 10 54
Partial structural functions      9 113
Partial structure factors      11 15 20 27 71
pd      76
Pd-Si      23 76 111
Phase difference      27 75
Phase factor      6
Phase shift      42 91 106
Photoelectron      106
Photon energy      33 105
Placzek correction      110
Planck constant      6
Polarization      57
Polarized neutron diffraction      22 62
Polycrysta11ine      51 116
Polyimide tape      83
Positional correlation      4 6
Principal peak      64
Pt-Ni-P      112
Pulse-pile-up      82
Pulsed neutron diffraction      110
Q-dependence      6 11 25
Radial concentration correlation function (RCF)      14 18
Radial density function      4 7
Radial distance      1 5 8 106
Radial distribution function (RDF)      1 5 8 107
Rahman’s method      58
Random mixture      16
Rare earth metals      27 31
RbCl      23
Real component (part)      26 44 48 86
1 2
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