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GEOLOGIE DE L'INGENIEUR --- PROPRIETES MECANIQUES ROCHES --- ROCHES MEUBLES --- PROPRIETES MECANIQUES ROCHES --- ROCHES MEUBLES
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Reliability (Engineering) --- Soil mechanics --- Structural analysis (Engineering) --- Congresses. --- COMPTE RENDUS D'ACTIVITE --- GEOLOGIE DE L'INGENIEUR --- CONGRES, COLLOQUES... --- PROPRIETES MECANIQUES ROCHES --- RECONNAISSANCE TERRAINS --- PROPRIETES GEOLOGIQUES ROCHES --- STRUCTURES
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Rock deformation. --- Rocks --- Testing. --- Roches --- Déformation --- Déformation --- Rock deformation --- Testing --- Rocks - Testing --- Geologie de l'ingenieur --- Proprietes mecaniques roches --- Geotechnique --- Donnees experimentales --- Roches coherentes
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Materials --- Engineering geology --- Slopes (Soil mechanics) --- Matériaux --- Géologie appliquée --- Testing --- Essais --- -Engineering geology --- Soil mechanics --- Engineering --- Civil engineering --- Geology, Economic --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Geology --- Engineering geology. --- Fysische geografie geomorfologie --- Testing. --- Slopes (Soil mechanics). --- Fysische geografie geomorfologie. --- Matériaux --- Géologie appliquée --- GEOMORPHOLOGIE GENERALE --- ALTERATION MECANIQUE, CHIMIQUE --- GEOLOGIE DE L'INGENIEUR --- PROPRIETES MECANIQUES ROCHES --- GEOMORPHOLOGIE CLIMATIQUE --- GEOTECHNIQUE --- DONNEES EXPERIMENTALES
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Mechanics of Particulate Materials
Particles. --- Bulk solids. --- Mechanics. --- Classical mechanics --- Newtonian mechanics --- Physics --- Dynamics --- Quantum theory --- Bulk materials --- Particulate solids --- Materials --- Particles --- Solids --- Size of particles --- Clay --- Colloids --- Sand --- Soils --- Grammar, Comparative and general Particles --- Grammar, Comparative and general --- Function words --- Génie civil --- Techniques, methodes d'etude et modeles --- Geologie de l'ingenieur --- Proprietes mecaniques roches --- Soil mechanics. --- Rock mechanics.
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Engineering geology is an interdisciplinary subject concerned with the application of geological science to engineering practice, and it is therefore important for the engineering geologist to recognize the boundary between engineering application and purely scientific enquiry. Much research in applied clay science results from imperfectly understood engineering behaviour. Engineering geology is most closely allied to the geotechnical and materials areas of civil engineering. The scope of the present book is limited to the influence of clay but because clay is almost ubiquitous in earth mat
Geology. Earth sciences --- Engineering sciences. Technology --- Geology. --- Soil mechanics. --- Clay --- Clay minerals --- Clay soils --- soil mechanics --- Engineering geology --- #Hist.Geol --- 552.52 --- 552.52 Argillaceous rocks. Non-crystalline schists. Shales. Clays. Clayslates. Mud --- Argillaceous rocks. Non-crystalline schists. Shales. Clays. Clayslates. Mud --- Engineering --- Civil engineering --- Geology, Economic --- Aluminum silicates --- Binders (Materials) --- Sediments (Geology) --- Soils --- Geology --- Clay. --- Engineering geology. --- Geotechnique --- Consolidation --- Proprietes mecaniques roches --- Roches meubles
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Continuum mechanics. --- Rock deformation. --- Rock mechanics. --- Rock deformation --- Rock mechanics --- Roches --- Mécanique des roches --- Milieux continus, Mécanique des --- Déformation --- Geotechnical engineering --- Mécanique des roches --- Milieux continus, Mécanique des --- Déformation --- Continuum mechanics --- #Hist.Geol --- 551.242 --- Mechanics --- Deformation, Rock --- Deformations (Mechanics) --- Geology, Structural --- Mechanics of continua --- Elasticity --- Mechanics, Analytic --- Field theory (Physics) --- 551.242 Tectonic movements, fluctuations etc. Crust movements. Tectonic structures and their elements --- Tectonic movements, fluctuations etc. Crust movements. Tectonic structures and their elements --- GEOLOGIE DE L'INGENIEUR --- PROPRIETES MECANIQUES ROCHES --- TECTONIQUE --- TECTONIQUE DETAIL --- SEDIMENTOLOGIE --- DIAGENESE ET METASOMATOSE
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Theoretical Foundation Engineering provides up-to-date, state-of-the-art reviews of the existing literature on lateral earth pressure, sheet pile walls, ultimate bearing capacity of shallow foundations, holding capacity of plate and helical anchors in sand and clay, and slope stability analysis.The discussion of the ultimate bearing capacity of shallow foundations is the most comprehensive presentation on the subject to be found anywhere, and the review of earth anchors is unique to this book. In addition, each chapter includes several topics which have never appeared in any other boo
Foundations --- Soil mechanics --- Grouting. --- Rock excavation. --- Diaphragm walls. --- Rock mechanics. --- Soil mechanics. --- Soil engineering --- Soils --- Soils (Engineering) --- Geotechnical engineering --- Mechanics --- Soil physics --- Walls --- Excavation --- Compaction grouting --- Grouting --- Jet grouting --- Low mobility grouting --- Pressure grouting --- Concrete construction --- Soil compaction --- Soil stabilization --- Shaft sinking. --- Ground control (Mining) --- Control of ground in mining --- Ground support (Mining) --- Mine subsidences --- Mining engineering --- Rock mechanics --- Boring --- Mine shafts --- Finite element method. --- Groundwater flow -- Mathematical models. --- Groundwater flow --- Finite element method --- Mechanical Engineering --- Engineering & Applied Sciences --- Hydraulic Engineering --- FEA (Numerical analysis) --- FEM (Numerical analysis) --- Finite element analysis --- Numerical analysis --- Isogeometric analysis --- Mathematical models --- Plastic properties. --- Breakwaters --- Shore protection --- Hydrodynamics. --- Fluid dynamics --- Beach erosion --- Coast protection --- Coast protective works --- Coastal zone management --- Coastal engineering --- Hydraulic engineering --- Reclamation of land --- Harbors --- Hydraulic structures --- Sea-walls --- Design and construction. --- Prevention --- Slopes (Soil mechanics) --- Probabilities. --- Statistical methods. --- Rockfills. --- Rockfills --- Design and construction --- Méthode des éléments finis --- Géophysique. --- Geophysics --- Géodynamique. --- Geodynamics --- Sismologie. --- Seismology --- Géophysique --- Géodynamique --- Sismologie --- Probability --- Statistical inference --- Combinations --- Mathematics --- Chance --- Least squares --- Mathematical statistics --- Risk --- Geotechnical engineering. --- Engineering, Geotechnical --- Geotechnics --- Geotechnology --- Engineering geology --- Rheology. --- Colloids --- Deformations (Mechanics) --- Elasticity --- Plasticity --- Viscosity --- Buildings --- Stochastic processes --- Earthquake engineering --- Civil engineering --- Engineering --- Shear walls --- Earthquake effects --- Statistical methods --- Construction --- Foundations. --- Grouting (Soil stabilization) --- Geological surveys. --- Retaining walls. --- Permeability. --- Porosity. --- Slopes (Soil mechanics). --- Mathematical models. --- Hydraulic structures - Design and construction --- Ocean waves --- Roches, Mécanique des. --- Géologie appliquée. --- Grands travaux. --- Ocean waves. --- Vagues --- Breakers --- Sea waves --- Surf --- Swell --- Oceanography --- Water waves --- Earthquake engineering. --- Earthquake resistant design. --- Aseismic design --- Seismic design --- Structural design --- Vertical evacuation structures --- Earthquakes and building --- Earthquake effects. --- Subsidences (Earth movements) --- Land subsidences --- Earth movements --- Soil dynamics --- Mining engineering. --- Engineering, Mining --- Mines and mining --- Mining --- Architecture --- Building --- Structural engineering --- Underground construction --- Caissons --- Earthwork --- Masonry --- Soil consolidation --- Details --- Fills, Rock --- Rocks --- Equilibrium (physics) --- Slopes --- GEOLOGIE DE L'INGENIEUR --- GRANDS TRAVAUX --- PROPRIETES MECANIQUES ROCHES --- GEOMORPHOLOGIE GENERALE --- GEOMORPHOLOGIE VERSANTS --- Wave propagation --- Coastal engineering.
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