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Ahrens T.J. — Rock Physics and Phase Relations. A Handbook of Physical Constants
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Íàçâàíèå: Rock Physics and Phase Relations. A Handbook of Physical Constants
Àâòîð: Ahrens T.J.
Àííîòàöèÿ: The purpose of this Handbook is to provide, in highly accessible form, selected critical data for professional and student solid Earth and planetary geophysicists. Coverage of topics and authors were carefully chosen to fulfill these objectives. These volumes represent the third version of the "Handbook of Physical Constants." Several generations of solid Earth scientists have found these handbooks to be the most frequently used item in their personal library. The first version of this Handbook was edited by F. Birch, J. F. Schairer, and H. Cecil Spicer and published in 1942 by the Geological Society of America (GSA) as Special Paper 36. The second edition, edited by Sydney P. Clark, Jr., was also published by GSA as Memoir 92 in 1966. Since 1966, our scientific knowledge of the Earth and planets has grown enormously, spurred by the discovery and verification of plate tectonics and the systematic exploration of the solar system. The present revision was initiated, in part, by a 1989 chance remark by Alexandra Navrotsky asking what the Mineral Physics (now Mineral and Rock Physics) Committee of the American Geophysical Union could produce that would be a tangible useful product. At the time I responded, "update the Handbook of Physical Constants." As soon as these words were uttered, I realized that I could edit such a revised Handbook. I thank Raymond Jeanloz for his help with initial suggestions of topics, the AGU's Books Board, especially Ian McGregor, for encouragement and enthusiastic support. Ms. Susan Yamada, my assistant, deserves special thanks for her meticulous stewardship of these volumes. I thank the technical reviewers listed below whose efforts, in all cases, improved the manuscripts.
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Ðóáðèêà: Ôèçèêà /
Ñòàòóñ ïðåäìåòíîãî óêàçàòåëÿ: Ãîòîâ óêàçàòåëü ñ íîìåðàìè ñòðàíèö
ed2k: ed2k stats
Ãîä èçäàíèÿ: 1995
Êîëè÷åñòâî ñòðàíèö: 236
Äîáàâëåíà â êàòàëîã: 11.04.2010
Îïåðàöèè: Ïîëîæèòü íà ïîëêó |
Ñêîïèðîâàòü ññûëêó äëÿ ôîðóìà | Ñêîïèðîâàòü ID
Ïðåäìåòíûé óêàçàòåëü
Glass, porous bulk modulus 214—215
Glass, porous, poroelasticity 223
Glass, porous, ultrasonic velocity 223
Glass, thermal conductivity 118
Glass, velocity 218
Glassy rocks, chemical classification 4
Glassy rocks, classification 2
Gneiss, abundance in continental crust 6—7
Gneiss, classification 5
Gneiss, equations of state 39
Gneiss, felsic, thermal conductivity 115
Goethite, reflectance spectra 179
Grain size, effect on magnetic susceptibility 192—194
Granite,crustal stress 136
Granite,equations of state 39
Granite,fault formation 132
Granite,internal friction 134
Granite,phase equilibria 173—174
Granite,shear stress vs. normal stress 137
Granite,velocities vs. azimuth 23
Granitic rocks, abundance in continental crust 6—7
Granodiorite, equations of state 39
Granodiorite, phase equilibria 174
Granodiorite, portions 17
Granulites, phase equilibria 171
Graphite, magnetic susceptibility 190
Graphite, thermal conductivity 118
Graywacke, classification 4
Greenstone, classification 6
Gruneisen constant, thermoelasticity 219
Gulf of Mexico, well-logs 30
Gypsum, reflectance spectra 181
Hafnium, partitioning 83—86
Halides, magnetic susceptibility 190
Halides, thermal conductivity 121—122
Halloysite, reflectance spectra 182
Hashin-Shtrikman bounds, formation factor 209
Hashin-Shtrikman bounds, polycrystals 210—212
Hashin-Shtrikman bounds, porous glass 214—215
Hashin-Shtrikman bounds, spherical inclusions 207—208 212—213
Hashin-Shtrikman bounds, thermoelasticity 219
Hashin-Shtrikman-Walpole bounds, polycrystals 211
Heat capacity, polycrystals 218—219
Heat capacity, water 51 56—58
Heat generation, rocks 105—124
Heat transport, rocks 105—124
Heat-flow direction, effect on thermal conductivity 115
Hectorite, reflectance spectra 182
Hematite, grain size and magnetic properties 193
Hematite, reflectance spectra 179
Henry’s law, argon solubility in silicate melts 93
Henry’s law, trace-element partitioning 74
Hibonite, rare-earth partitioning 97
High field strength elements, partitioning 83—86
Highly incompatible alkali elements, partitioning 84 86
Highly incompatible alkaline earth elements, partitioning 84 86
Highly incompatible elements, partitioning 83—86
Histosol, distribution 14
Homfels, classification 6
Hugoniot elastic limit compression 36
Hydraulic conductivity, polycrystals 224—225
Hydrocarbons, exploration 30—31
Hydrocarbons, liquid, ultrasonic velocity 219
Hydrocarbons, velocity 218
Hydrothermally altered rocks, classification 7
Ice magnetic susceptibility 190
Igneous rocks, magnetic susceptibility 190
Igneous rocks, thermal conductivity constants 116 (see also Magmatic rocks)
Ignimbrite, composition 3
Illite, reflectance spectra 181
Ilmenite, rare-earth partitioning 94
Inseptisol, distribution 14
Intermediate composition, magmatic rocks 2
Iron oxides, magnetic susceptibility 191
Iron oxides, room-temperature values of magnetocrystalline and magnetostriction constants 198
Iron sulfides, magnetic susceptibility 191
Iron, iron formation, classification 5
Iron, magnetic susceptibility 191
Iron, partitioning 74—78 83—86
Iron-nickel metal, solid, effect of pressure on partitioning 88—89
Iron-nickel metal, solid, experiments near the Fe-S eutectic temperature 89
Iron-nickel metal, solid, partitioning parameterization 86—88
Iron-nickel metal, solid, siderophile element partitioning 86—91
Iron-nickel-carbon system, partitioning 87
Iron-nickel-phosphorus system, partitioning 87
Iron-nickel-sulfur system, partitioning 87
Iron-titanium oxides, abundance in continental crust 6—7
Iron-titanium oxides, magnetic susceptibility 191
Iron-titanium oxides, rare-earth partitioning 93—94
Iron-titanium oxides, solid solution 193
Ironstone, classification 5
Isothermal remanent magnetization, minerals 198—199
Jacketed bulk modulus, poroelasticity 221
Jadeite, equations of state 39
Jarosite, reflectance spectra 181
Kaolinite, reflectance spectra 182
Kimberlite, composition 3
Kimberlite, phase equilibria 173
Koenigsberger ratio, rocks 200
Komatiite, partition coefficients 77
Komatiite, phase equilibria 171
Kopp’s law, polycrystals 218
Kozeny-Carman model, permeability 225
Kozeny-Carman model, poroelasticity 222
Kuster-Toksoz method, lahar, composition 3
Kuster-Toksoz method, nonspherical inclusions 213—214
Lame parameters, polycrystals 210 218—219
Lapilli tuff, composition 3
Lead, partitioning in rock-forming minerals 81—83
Levin’s formula, polycrystals 218
Lignite, classification 5
Limestone, classification 4
Limestone, diffusion flow 151
Limestone, equations of state 39—40
Limestone, shear wave slowness 21—22
Liquid/gas mixture, velocity 217
Liquid/liquid mixture, velocity 217
Liquid/solid mixture, velocity 217
Liquids, actinide partitioning 83
Lithification 4
Lithosphere, rheology 127—145
Lithosphere, rocks 1—7
Lizardite, reflectance spectra 182 184
Local flow, attenuation 28—29
Lorentz-Lorenz formula, spherical inclusions 207—208
Macroscopic flow, attenuation 27—28
Mafic rocks, abundance in continental crust 6—7
Mafic rocks, magmatic rocks 2
Mafic rocks, thermal conductivity constants 116
Maghemite, grain size and magnetic properties 193
Magma chambers, phase equilibria 170
Magma ocean, phase equilibria 167—168
Magmatic rocks, classification 1—3
Magmatic rocks, equations of state 37—41
Magnesiowiistite, phase equilibria 166—168
Magnesiowiistite, trace-element partitioning 77—78
Magnesium oxide, partition coefficients in basalts 77
Magnesium silicates, hydrous, phase equilibria 168
Magnesium, partitioning 74—78
Magnesium-perovskite, trace-element partitioning 77
Magnetic granularity, grain size 193
Magnetic hysteresis, rocks 189
Magnetic parameters, grain-size dependence 193
Magnetic permeability, mixtures 207—210
magnetic properties 189—204
Magnetic properties, minerals 192—197
Magnetic properties, reflectance spectra 178—188
Magnetic properties, rocks and minerals 189—204
Magnetic properties, thermal conductivity 105—126
magnetic susceptibility 191
Magnetic susceptibility, rocks and minerals 189—192 (see also Diamagnetic magnetic)
Magnetic susceptibility, thermal conductivity 119
Magnetic susceptibility, weathering reactions 15
Magnetic transitions, minerals 195—196
Magnetite, grain size and magnetic properties 193
Magnetite, rare-earth partitioning 95—96
Magnetocrystalline anisotropy, minerals 195
Magnetocrystalline anisotropy, pressure dependence 197
Magnetocrystalline anisotropy, room-temperature values 198
Magnetostriction vs. temperature 199
Magnetostriction, minerals 195—197
Magnetostriction, pressure dependence 197
Magnetostriction, room-temperature values 198
Major elements, olivine 76
Major elements, weathering profiles and soils 17
Majorite, phase equilibria 167—168
Majorite, rare-earth partitioning 80—83
Majorite, trace-element partitioning 77—78
Manganese, partitioning 74—78
Mantle, phase equilibria 166—177
Mantle, rheology 127—165
Marble, abundance in continental crust 6—7
Marble, classification 6
Marble, equations of state 40
Mare basalt, partition coefficients 77
Massilon sandstone, compressional and shear wave velocity 223
Massilon sandstone, extensional wave and shear wave attenuation 28
Massilon sandstone, velocity vs. water saturation 24
Maxwell-Gamett formula, spherical inclusions 207—208
Melilite, rare-earth partitioning 96—97
Merrilite, rare-earth partitioning 94—95
Metals, magnetic properties 196
Metals, siderophile element partitioning 91
Metamorphic minerals, weathering, reactions 15
Metamorphic rocks, classification 1 5—7
Metamorphic rocks, equations of state 39—41
Microcracks, acoustic velocity 20
Mineralogy, rock velocity 21
Minerals, rock-forming, thermal conductivity 124
Mixture theories, rock properties 205—228
Moderately compatible elements, partitioning 74—78
Mollisol, distribution 14
Montmorillonite, reflectance spectra 185
Moon, basalts 77
MORB, partition coefficients 77
Morin transition, magnetic transitions 196
Mountain soil, distribution 14
Mudrock, abundance in continental crust 6—7
Multidomains, grain size 193
Muscovite, reflectance spectra 181
Mylonite, classification 5
Mylonite, natural remanent magnetization minerals 199—200
Mylonite, oceanic crust models 200
Nephelinite, phase equilibria 173
Nickel, partitioning 74—78 (see also Iron-nickel-carbon system)
Niobium, partitioning 83—86
Noble gases, partitioning 92—95
Nonlinear acoustics, stress-dependent velocities 23—24
Nonspherical inclusions, elasticity 213—214
Nonspherical inclusions, physical properties 208—209
Obsidian, composition 3
Oceanic crust, natural remanent magnetization 200
Oceanic plateaus, phase equilibria 171
Oil shale, equations of state 41
Olivine rocks, power law creep constants 157
Olivine, abundance in continental crust 6—7
Olivine, actinide partitioning 83
Olivine, high-pressure, experimental, predicted vs. measured major element compositions 76
Olivine, magnetic susceptibility 191
Olivine, phase equilibria 166—168
Olivine, rare-earth partitioning 78—79
Olivine, reflectance spectra 179
Olivine, thermal conductivity 118 122
Olivine, trace-element partitioning 74—76
Olivine, weathering reactions 15
Olivine-orthopyroxene, calcium partitioning 83
Olivine/carbonate liquid, partitioning 98
Olivinite, equations of state 40
Ophiolite, composition 2
Ophiolitic rocks 3
Ophiolitic rocks, phase equilibria 170
Orthopyroxene, actinide partitioning 83
Orthopyroxene, phase equilibria 166—168 (see also Olivine-orthopyroxene)
Orthopyroxenes, magnetic susceptibility 191
Oxides, magnetic properties 196
Oxides, magnetic susceptibility 191
Oxides, thermal conductivity 120
Oxisol, distribution 14
Oxyhydroxides, magnetic properties 196
Paramagnetic magnetic susceptibility, rocks 189
Partial pressure, attenuation 25
Partial saturation, effect on thermal conductivity 112—114
Particle velocity, vs. shock velocity 36
Particulate flux, oceans 9
Partition coefficients, trace elements 73
Partitioning in hibonite 95
Partitioning in iron-titanium oxides 93
Partitioning in magnetite 95
Partitioning in major rock-forming minerals 78
Partitioning in olivines/liquids 76
Partitioning in perovskite 96
Partitioning in sphene 94
Partitioning in zircon 95
Partitioning, experimental, trace elements 73—104
Peat, equations of state 41
Pegmatite, magmatic rocks 2
Periclase, rare-earth partitioning 80—81
Periclase, synthetic, thermal conductivity 122
Peridotite, feldspar, equations of state 39
Peridotite, phase equilibria 166—168 172—173
Peritectic melting, phase equilibria 169
Perlite, composition 3
Permeability, attenuation 27—28
Permeability, normalized, bounds for penetrable sphere model 225
Perovskite, phase equilibria 167—168
Perovskite, rare-earth partitioning 80—83 96—97
Phaneritic rocks, classification 2—4
Phase equilibria 169—170
Phase equilibria, rare-earth partitioning 81 83
Phase equilibria, rocks 166—177
Phase equilibria, trace-element partitioning 76
Phase velocity, vs. frequency 25
Phlogopite, reflectance spectra 181
Phosphates, reflectance spectra 182
Phosphates, thermal conductivity 121
Phosphorite, classification 5
Phosphorus (see Iron-nickel-phosphorus system)
Phyllite, classification 5
Pickett’s crossplot, velocity correlations 29—30
Picrite, phase equilibria 171
Pigeonite, rare-earth partitioning 78—80
Plagioclase, abundance in continental crust 6—7
Plagioclase, iron partitioning 86
Plutonic rocks, thermal conductivity 108—112
Poisson’s ratio, polycrystals 211
Polycrystals 224—225
Polycrystals, elastic constants 210—215
Pore fluid, effect on rock strength 137
Pore fluid, well-logs 30
Pores, acoustic velocity 20
Poroelastic constants, solid/fluid mixtures 219—223
Poroelasticity 222
Porosity vs. compressional wave slowness 21
Porosity, acoustic velocity 20
Porosity, effect on thermal conductivity 112—113
Porous rocks, acoustic velocity and attenuation 20—34
Porphyritic rocks, classification 2
Porphyry, magmatic rocks 2
Pressure solution, constitutive equations 155—160
Pressure solution, interface transport models 159
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