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Anisotropy --- Mathematical models. --- Anisotropic crystals --- Crystallography --- Matter --- Properties
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Anisotropy --- -Seismic waves --- Waves, Seismic --- Elastic waves --- Anisotropic crystals --- Crystallography --- Matter --- Mathematical models --- Properties --- Seismic waves
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Over the last few years, anisotropy has become a ""hot topic"" in seismic exploration and seismology. It is now recognised that geological media deviate more or less from isotropy. This has consequences for acquisition, processing and interpretation of seismic data and also helps determine the cause of anisotropy and adds to our knowledge concerning the structure of the medium at scales beyond the resolution of the seismic method. This volume addresses the theoretical foundations of wave propagation in anisotropic media at an easily accessible level. The treatment is not restricted to explorat
Seismic prospecting. --- Anisotropy. --- Anisotropic crystals --- Crystallography --- Matter --- Prospecting --- Seismometry --- Properties --- Geophysical methods
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Anisotropy. --- Particles --- Optical properties. --- Anisotropic crystals --- Crystallography --- Matter --- Properties --- Grammar, Comparative and general Particles --- Grammar, Comparative and general --- Function words
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'Anisotropic Elasticity' offers for the first time a comprehensive survey of the analysis of anisotropic materials that can have up to twenty-one elastic constants. Focusing on the mathematically elegant and technically powerful Stroh formalism as a means to understanding the subject, the author tackles a broad range of key topics, including antiplane deformations, Green's functions, stress singularities in composite materials, elliptic inclusions, cracks, thermo-elasticity, and piezoelectric materials, among many others. Well written, theoretically rigorous, and practically oriented, the book will be welcomed by students and researchers alike.
Composite materials --- Elasticity. --- Anisotropy. --- Elastic properties --- Young's modulus --- Mathematical physics --- Matter --- Statics --- Rheology --- Strains and stresses --- Strength of materials --- Anisotropic crystals --- Crystallography --- Mechanical properties. --- Properties
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In addition to their great beauty, crystals and other textured materials are enormously useful in electronics, optics, acoustics and many other engineering applications. This text describes the underlying principles of crystal physics and chemistry, covering a wide range of topics and illustrating numerous applications.
Crystals. --- Crystallography. --- Leptology --- Physical sciences --- Mineralogy --- Crystallography --- Powders --- Solids --- Anisotropy. --- Materials. --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Anisotropic crystals --- Matter --- Materials --- Properties
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Following the breakthrough in the last decade in identifying the key parameters for time and depth imaging in anisotropic media and developing practical methodologies for estimating them from seismic data, this title primarily focuses on the far reaching exploration benefits of anisotropic processing. This volume provides the first comprehensive description of reflection seismic signatures and processing methods in anisotropic media. It identifies the key parameters for time and depth imaging in transversely isotropic media and describes practical methodologies for estimating them from
Seismic waves. --- Anisotropy. --- Seismic reflection method. --- Reflection seismic method --- Seismic prospecting --- Seismic refraction method --- Anisotropic crystals --- Crystallography --- Matter --- Waves, Seismic --- Elastic waves --- Properties
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Rocks --- Anisotropy. --- Magnetic properties. --- 551.245 --- -Anisotropy --- #Hist.Geol. --- Anisotropic crystals --- Crystallography --- Matter --- Petrology --- Stone --- Jointing of rocks. Forms --- Magnetic properties --- Properties --- 551.245 Jointing of rocks. Forms --- Anisotropy --- #Hist.Geol --- Geomagnetism --- Rocks - Magnetic properties.
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551.245 --- 550.38 --- Jointing of rocks. Forms --- Terrestrial magnetism (geomagnetism) --- 550.38 Terrestrial magnetism (geomagnetism) --- 551.245 Jointing of rocks. Forms --- Anisotropy --- Materials --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Anisotropic crystals --- Crystallography --- Matter --- Magnetic properties --- Properties
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Cosmology --- Anisotropy --- SINGULARITIES (Mathematics) --- Mathematical models --- Modèle dynamique --- Dynamic models --- -Singularities (Mathematics) --- 100.1 --- 51 --- Geometry, Algebraic --- Astronomy --- Deism --- Metaphysics --- Anisotropic crystals --- Crystallography --- Matter --- Properties --- Special issues --- Anisotropy. --- Singularities (Mathematics) --- Mathematical models. --- Belgium --- cosmic theory --- cosmology --- dynamics --- mathematical models --- physics --- Singularities (Mathematics). --- Cosmology. --- Cosmologie. --- Anisotropie. --- Cosmologie --- Cosmology - Mathematical models
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