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Cartilage, Tissue and Knee Joint Biomechanics: Fundamentals, Characterization and Modelling is a cutting-edge multidisciplinary book specifically focused on modeling, characterization and related clinical aspects. The book takes a comprehensive approach towards mechanics, fundamentals, morphology and properties of Cartilage Tissue and Knee Joints. Leading researchers from health science, medical technologists, engineers, academics, government, and private research institutions across the globe have contributed to this book. This book is a very valuable resource for graduates and postgraduates, engineers and research scholars. The content also includes comprehensive real-world applications. As a reference for the total knee arthroplasty, this book focuses deeply on existing related theories (including: histology, design, manufacturing and clinical aspects) to assist readers in solving fundamental and applied problems in biomechanical and biomaterials characterization, modeling and simulation of human cartilages and cells. For biomedical engineers dealing with implants and biomaterials for knee joint injuries, this book will guide you in learning the knee anatomy, range of motion, surgical procedures, physiological loading and boundary conditions, biomechanics of connective soft tissues, type of injuries, and more.
Connective tissues. --- Areolar tissue --- Collagen --- Elastic tissue --- Musculoskeletal system --- Tissues --- Connective Tissue. --- Knee --- physiology. --- Mechanical properties. --- Genou --- Tissu conjonctif. --- Propriétés mécaniques.
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Composite materials --- Composites --- Mechanical properties. --- Propriétés mécaniques --- -plastic --- kunststoffen --- laminaten --- analyse --- mechanica --- breuken --- composieten --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Materials --- Mechanical properties --- Propriétés mécaniques --- plastic
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Foot --- Movements. --- Abnormalities. --- Orthopedic shoes --- Foot motility --- Foot movements --- Motility, Foot --- Movements, Foot --- Biomechanics --- Abnormities and deformities --- Ankle --- Biomechanical Phenomena --- Mechanical properties. --- anatomy & histology --- Pied --- Cheville --- Malformations. --- Mouvements. --- Propriétés mécaniques. --- Biomechanical Phenomena. --- anatomy & histology.
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Dynamics of Soft Matter: Neutron Applications provides an overview of neutron scattering techniques that measure temporal and spatial correlations simultaneously, at the microscopic and mesoscopic scale. Emphasizing the complementarities of scattering techniques with other spectroscopic ones, this volume also highlights the potential gain in combining with techniques such as rheology, NMR, light scattering, dielectric spectroscopy, as well as synchrotron radiation experiments. Key areas covered include polymer science,biological materials, complex fluids and surface science. Neutron scattering techniques offer answers to new questions arising at the interface of physics, chemistry,and biology. Knowledge of the dynamics at these levels is crucial to understanding the soft matter field, which includes colloids, polymers,membranes, biological macromolecules, foams, emulsions with applications towards biological and biomimetic systems, and phenomena involving wetting, friction,adhesion, or micro- and nano-fluidics. In summary, this book: Explores neutron scattering techniques to examine soft matter at the micro- and mesoscopic scales Examines soft matter, with a focus in polymer science, biological materials, complex fluids and surface science Discusses neutron scattering techniques combined with other spectroscopic methods Dynamics of Soft Matter Neutron Applications is an ideal book for scientists,engineers and advanced students seeking a reference on how neutrons are a key tool to study of the dynamical processes in soft materials.
Fluid mechanics --- Matter physics --- Macromolecules --- Chemistry of complexes --- General biophysics --- Materials sciences --- biologische materialen --- materiaalkennis --- biofysica --- complexen (chemie) --- materialen (technologie) --- polymeren --- moleculaire biologie --- vloeistoffen --- Soft condensed matter. --- Materials --- Neutrons --- Matière molle (Physique) --- Matériaux --- Mechanical properties --- Scattering --- Technique --- Propriétés mécaniques --- EPUB-LIV-FT LIVINGEN SPRINGER-B
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Selected, peer reviewed papers from the fourth edition ACMA 2012, May 9-12, 2012, Fez, Morocco.
Materials --- Strength of materials --- Architectural engineering --- Engineering, Architectural --- Materials, Strength of --- Resistance of materials --- Building materials --- Flexure --- Mechanics --- Testing --- Elasticity --- Graphic statics --- Strains and stresses --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Dynamic testing --- Technological innovations --- Matériaux --- Essais --- Propriétés mécaniques
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L'analyse des structures et milieux continus, discipline fondamentale pour l'ingénieur, intervient tant dans la conception d'un ouvrage que dans son calcul détaillé. Faisant suite au volume 1, Statique appliquée, la Mécanique des structures, matière riche et féconde, conduit au dimensionnementdes éléments structuraux. Pour construire, l'ingénieur doit posséder une connaissance aiguë despropriétés mécaniques des matériaux, du jeu des contraintes internes, de la déformation de la matière, de la sécurité et des dangers attachés à certaines sollicitations. Ces notions sont présentées dans ce livre sur la base des structures en barres, poutres et câbles avant tout, en se limitant à l'essentiel et au concret. Assorti de nombreux exercices, ce livre s'adresse aux étudiants du premier cycle universitaire ainsi qu'aux ingénieurs praticiens. Il constitue le deuxième volet d'une série d'ouvrages consacrés à l'analyse des structures et mileux continus.
Structural analysis (Engineering) --- Strength of materials --- Deformations (Mechanics) --- Continuum mechanics --- Constructions, Théorie des --- Résistance des matériaux --- Déformations (Mécanique) --- Milieux continus, Mécanique des --- Génie mécanique --- Mechanical engineering --- Résistance mécanique --- Strength --- Propriété mécanique --- Mechanical properties --- Matériau de construction --- Construction materials --- Élasticité --- Elasticity --- Propriété rhéologique --- Rheological properties --- Constructions, Théorie des --- Résistance des matériaux --- Déformations (Mécanique) --- Milieux continus, Mécanique des --- Déformations (mécanique) --- Mechanics, Applied --- Mécanique appliquée --- Ventilation --- Commande, Théorie de la. --- Monograph --- Civil engineering --- Génie civil --- #KVIV:BB --- Building construction --- Building components --- Dimensions. --- Dimensions --- Stability --- Building, Iron and steel --- Construction metallique --- Fluid flow --- Hydraulic engineering --- Hydrodynamique --- Hydrodynamics --- Fluid mechanics --- Concrete --- Construction --- Écologie des forêts. --- Constructions --- Bois --- Assemblages (construction) --- Foresterie --- Construction en bois --- Stabilité. --- Détérioration. --- Aspect économique --- Propriétés mécaniques. --- Conception et construction --- Normes. --- Rivers --- canals --- Measurement --- Mécanique des milieux continus --- Méthode des éléments finis --- Charges permanentes --- Théorie des constructions --- Structure --- Mécanique --- Construction métallique --- Dimensionnement --- Ecoulement non permanent --- Hydraulique --- Construction métallique --- Building, Wooden. --- Building --- Details. --- Détails --- Construction en béton --- Structures (construction) --- Hysdraulic structures --- Ouvrages hydrauliques --- Technologie fluviale. --- Assemblage --- Bois d'oeuvre --- Forêt --- Matériau --- Pont --- Structure en bois --- Technologie --- Acier --- Aluminium --- Assemblage, technique --- Béton --- Element de construction --- Construction en béton --- Béton architectonique --- Béton armé --- Béton précontraint --- Colonne --- Processus de conception --- Dalle --- Détail de construction --- Fondations --- Mur --- Pathologie de la construction --- Aspect économique --- Propriétés mécaniques. --- Prestressed concrete. --- Reinforced concrete. --- Finite element method --- Dead loads (Mechanics) --- Architectural engineering --- Engineering, Architectural --- Structural mechanics --- Structures, Theory of --- Structural engineering --- Loading, Static --- Static loads --- Loads (Mechanics) --- Materials, Strength of --- Resistance of materials --- Building materials --- Flexure --- Mechanics --- Testing --- Graphic statics --- Strains and stresses --- FEA (Numerical analysis) --- FEM (Numerical analysis) --- Finite element analysis --- Numerical analysis --- Isogeometric analysis --- Mechanics of continua --- Mechanics, Analytic --- Field theory (Physics) --- Génie civil. --- 69 --- 69 Bouwbedrijf. Bouwmaterialen. Praktijk en procedures in de bouwnijverheid --- Bouwbedrijf. Bouwmaterialen. Praktijk en procedures in de bouwnijverheid --- 69 Building (construction) trade. Building materials. Building practice and procedure --- Building (construction) trade. Building materials. Building practice and procedure --- Écologie des forêts. --- Stabilité --- Détérioration. --- Écoulement permanent --- Fluides, mécanique des --- Beams --- Structure métallique --- Structural design --- Dimensionnement (ingénierie) --- Calcul --- Génie civil. --- Milieux continus, Mécanique des. --- Déformations (mécanique) --- Mécanique appliquée --- Commande, Théorie de la.
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