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Continuum mechanics. --- Milieux continus, Mécanique des --- Continuum mechanics --- 539.3 --- 532 --- Mechanics of continua --- Elasticity --- Mechanics, Analytic --- Field theory (Physics) --- Elasticity. Deformation. Mechanics of elastic solids --- Fluid mechanics in general. Mechanics of liquids (hydromechanics) --- 532 Fluid mechanics in general. Mechanics of liquids (hydromechanics) --- 539.3 Elasticity. Deformation. Mechanics of elastic solids --- Monograph --- Fluid mechanics --- Strain --- Stress
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531 --- 534.2 --- 534.2 Propagation of vibrations. Processes in the acoustic field --- Propagation of vibrations. Processes in the acoustic field --- 531 General mechanics. Mechanics of solid and rigid bodies --- General mechanics. Mechanics of solid and rigid bodies --- 539.3 --- 539.3 Elasticity. Deformation. Mechanics of elastic solids --- Elasticity. Deformation. Mechanics of elastic solids --- Mechanics. --- Solid state physics. --- Elasticity. --- Metals --- Élasticité. --- Mécanique. --- Métaux --- Fatigue.
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539.3 --- 517.958 --- 532 --- 539.31 --- 539.32 --- Elasticity. Deformation. Mechanics of elastic solids --- Differential and integral equations of mathematical physics --- Fluid mechanics in general. Mechanics of liquids (hydromechanics) --- Generalities. Elastic forces. Elastic potential. Elastic region. Elastic limit --- Elasticity moduli. Variation of modulus with conditions, e.g. temperature. Young's modulus --- 539.32 Elasticity moduli. Variation of modulus with conditions, e.g. temperature. Young's modulus --- 539.31 Generalities. Elastic forces. Elastic potential. Elastic region. Elastic limit --- 532 Fluid mechanics in general. Mechanics of liquids (hydromechanics) --- 517.958 Differential and integral equations of mathematical physics --- 539.3 Elasticity. Deformation. Mechanics of elastic solids --- elasticiteit --- Élasticité --- Elasticity.
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Mechanical properties of solids --- Elasticity --- Elastic analysis (Theory of structures) --- Elasticité --- Analyse élastique (Théorie des constructions) --- Elastic analysis (Engineering) --- 539.3 --- 539.31 --- 539.32 --- 532 --- #KVIV --- #WNAT:d.d. Prof. L. Bouckaert --- Elastic properties --- Young's modulus --- Mathematical physics --- Matter --- Statics --- Rheology --- Strains and stresses --- Strength of materials --- Analysis, Elastic --- Structural analysis (Engineering) --- Elasticity. Deformation. Mechanics of elastic solids --- Generalities. Elastic forces. Elastic potential. Elastic region. Elastic limit --- Elasticity moduli. Variation of modulus with conditions, e.g. temperature. Young's modulus --- Fluid mechanics in general. Mechanics of liquids (hydromechanics) --- Properties --- Elasticity. --- Elastic analysis (Engineering). --- 532 Fluid mechanics in general. Mechanics of liquids (hydromechanics) --- 539.32 Elasticity moduli. Variation of modulus with conditions, e.g. temperature. Young's modulus --- 539.31 Generalities. Elastic forces. Elastic potential. Elastic region. Elastic limit --- 539.3 Elasticity. Deformation. Mechanics of elastic solids --- Elasticité --- Analyse élastique (Théorie des constructions) --- Structure
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Elastic waves --- Ondes élastiques --- Elastic solids --- Solides élastiques --- Théorie du mouvement ondulatoire --- 53.082.4 --- 621.372.8 --- Underground nuclear explosions --- Use of acoustic phenomena, e.g. sound waves --- Waveguides --- Elastic waves. --- 621.372.8 Waveguides --- 53.082.4 Use of acoustic phenomena, e.g. sound waves --- Ondes élastiques --- Solides élastiques --- Théorie du mouvement ondulatoire --- Boundary value problems --- Elasticity --- Waves --- Boundary conditions (Differential equations) --- Differential equations --- Functions of complex variables --- Mathematical physics --- Initial value problems --- Boundary value problems. --- Wave-motion, Theory of --- Problèmes aux limites
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Earthquake and Volcano Deformation is the first textbook to present the mechanical models of earthquake and volcanic processes, emphasizing earth-surface deformations that can be compared with observations from Global Positioning System (GPS) receivers, Interferometric Radar (InSAR), and borehole strain- and tiltmeters. Paul Segall provides the physical and mathematical fundamentals for the models used to interpret deformation measurements near active faults and volcanic centers.Segall highlights analytical methods of continuum mechanics applied to problems of active crustal deformation. Topics include elastic dislocation theory in homogeneous and layered half-spaces, crack models of faults and planar intrusions, elastic fields due to pressurized spherical and ellipsoidal magma chambers, time-dependent deformation resulting from faulting in an elastic layer overlying a viscoelastic half-space and related earthquake cycle models, poroelastic effects due to faulting and magma chamber inflation in a fluid-saturated crust, and the effects of gravity on deformation. He also explains changes in the gravitational field due to faulting and magmatic intrusion, effects of irregular surface topography and earth curvature, and modern concepts in rate- and state-dependent fault friction. This textbook presents sample calculations and compares model predictions against field data from seismic and volcanic settings from around the world.Earthquake and Volcano Deformation requires working knowledge of stress and strain, and advanced calculus. It is appropriate for advanced undergraduates and graduate students in geophysics, geology, and engineering. Professors: A supplementary Instructor's Manual is available for this book. It is restricted to teachers using the text in courses. For information on how to obtain a copy, refer to: http://press.princeton.edu/class_use/solutions.html
Rock deformation --- Strains and stresses --- Volcanism. --- Earthquakes. --- Deformations (Mechanics) --- Mathematical models. --- Volcanism --- Earthquakes --- Volcanisme --- Tremblements de terre --- Déformations (Mécanique) --- Mathematical models --- Deformations (Mechanics). --- Rock deformation - Mathematical models. --- Rock deformation -- Mathematical models. --- Strains and stresses - Mathematical models. --- Strains and stresses -- Mathematical models. --- Volcanicity --- Vulcanism --- Stresses and strains --- Elastic solids --- Mechanics --- Rheology --- Structural failures --- Quakes (Earthquakes) --- Earth movements --- Natural disasters --- Seismology --- Geodynamics --- Volcanology --- Architectural engineering --- Engineering, Architectural --- Architecture --- Flexure --- Statics --- Structural analysis (Engineering) --- Elasticity --- Engineering design --- Graphic statics --- Strength of materials --- Stress waves --- Structural design --- Deformation, Rock --- Geology, Structural --- Rock deformation - Mathematical models --- Strains and stresses - Mathematical models --- 1906 San Francisco earthquake. --- 1980 eruption of Mount St. Helens. --- 1989 Loma Prieta earthquake. --- 1992 Landers earthquake. --- 1999 Hector Mine earthquake. --- Active fault. --- Atmospheric refraction. --- Cauchy stress tensor. --- Compressive stress. --- Continental collision. --- Continuum mechanics. --- Crust (geology). --- Deformation (engineering). --- Deformation (mechanics). --- Deformation monitoring. --- Dike (geology). --- Dislocation. --- Displacement field (mechanics). --- Earthquake prediction. --- Earthquake rupture. --- Earthquake swarm. --- Elasticity (physics). --- Explosive eruption. --- Fault (geology). --- Fault friction. --- Figure of the Earth. --- Fracture mechanics. --- Fracture toughness. --- Fracture zone. --- Fracture. --- Friction. --- Geodetic datum. --- Geologic time scale. --- Geothermal gradient. --- Gravitational acceleration. --- Gravitational potential. --- Gravity Recovery and Climate Experiment. --- Hawaiian Volcano Observatory. --- Infinitesimal strain theory. --- Intraplate earthquake. --- Lava dome. --- Lava lake. --- Lava. --- Long Valley Caldera. --- Magma chamber. --- Magnetic anomaly. --- Melting point. --- Mount St. Helens. --- Nucleation. --- Orogeny. --- Oscillation. --- Parkfield earthquake. --- Plane stress. --- Plate tectonics. --- Porosity. --- Pressure gradient. --- Radiation stress. --- Resurgent dome. --- Rift zone. --- Rock (geology). --- Rock mechanics. --- San Andreas Fault. --- Seafloor spreading. --- Seismic gap. --- Seismic hazard. --- Seismic moment. --- Seismic risk. --- Seismic tomography. --- Seismic wave. --- Seismology. --- Shear modulus. --- Shear stress. --- Shear zone. --- Shearing (physics). --- Shield volcano. --- Strain energy. --- Strain rate. --- Stratovolcano. --- Stress concentration. --- Stress functions. --- Stress intensity factor. --- Subduction. --- Subsidence. --- Surface energy. --- Surface gravity. --- Surface stress. --- Tectonophysics. --- Tension (physics). --- Thermal expansion. --- Thrust fault. --- Traction (engineering). --- Transform fault. --- Types of volcanic eruptions. --- Vibration. --- Viscoelasticity. --- Volcanic hazards. --- Volcanic pipe. --- Volcano. --- Wavenumber. --- Yield (engineering).
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