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Viscoelasticity. --- Numerical analysis. --- Analyse numérique. --- Numerical analysis --- Éléments finis, Méthode des --- Finite element method --- Finite element method. --- Analyse numérique --- Éléments finis, Méthode des. --- Viscosité
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Finite element method --- 519.6 --- FEA (Numerical analysis) --- FEM (Numerical analysis) --- Finite element analysis --- Numerical analysis --- Isogeometric analysis --- Computational mathematics. Numerical analysis. Computer programming --- Finite element method. --- 519.6 Computational mathematics. Numerical analysis. Computer programming --- Éléments finis, Méthode des --- Analyse numérique. --- Numerical analysis. --- Analyse numérique --- Éléments finis, Méthode des. --- Milieu continu
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Continuum mechanics --- Finite element method --- Structural analysis (Engineering) --- Milieux continus, Mécanique des --- Éléments finis, Méthode des --- Constructions, Théorie des --- Milieux continus, Mécanique des. --- Éléments finis, Méthode des. --- Constructions, Théorie des. --- Milieux continus, Mécanique des. --- Éléments finis, Méthode des. --- Constructions, Théorie des.
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Mathematical analysis --- Numerical approximation theory --- Mathematical physics --- Structural analysis (Engineering) --- 519.6 --- 681.3 *G18 --- Architectural engineering --- Engineering, Architectural --- Structural mechanics --- Structures, Theory of --- Structural engineering --- Computational mathematics. Numerical analysis. Computer programming --- Partial differential equations: difference methods; elliptic equations; finite element methods; hyperbolic equations; method of lines; parabolic equations (Numerical analysis) --- Structural analysis (Engineering). --- 681.3 *G18 Partial differential equations: difference methods; elliptic equations; finite element methods; hyperbolic equations; method of lines; parabolic equations (Numerical analysis) --- 519.6 Computational mathematics. Numerical analysis. Computer programming --- Éléments finis, Méthode des --- Finite element method --- Analyse numérique. --- Numerical analysis --- Finite element method. --- Numerical analysis. --- Analyse numérique --- Éléments finis, Méthode des. --- Éléments finis, Méthode des --- Elements finis et analyse numerique des milieux continus --- Mathematique de l'ingenieur --- Milieu continu --- Structural analysis (engineering)
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Programming --- Finite element method --- Data processing --- 517.96 --- -#TWER:BIOM --- 519.6 --- 681.3 *G18 --- 681.3*G4 --- FEA (Numerical analysis) --- FEM (Numerical analysis) --- Finite element analysis --- Numerical analysis --- Isogeometric analysis --- Finite differences. Functional and integral equations --- Computational mathematics. Numerical analysis. Computer programming --- Partial differential equations: difference methods; elliptic equations; finite element methods; hyperbolic equations; method of lines; parabolic equations (Numerical analysis) --- Mathematical software: algorithm analysis; certification and testing; efficiency; portability; reliability and robustness; verification --- Data processing. --- 681.3*G4 Mathematical software: algorithm analysis; certification and testing; efficiency; portability; reliability and robustness; verification --- 681.3 *G18 Partial differential equations: difference methods; elliptic equations; finite element methods; hyperbolic equations; method of lines; parabolic equations (Numerical analysis) --- 519.6 Computational mathematics. Numerical analysis. Computer programming --- 517.96 Finite differences. Functional and integral equations --- #TWER:BIOM --- Éléments finis, Méthode des --- Analyse numérique. --- Finite element method. --- Numerical analysis. --- Analyse numérique --- Éléments finis, Méthode des. --- Finite element method - Data processing --- Milieu continu
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51-74 --- 681.3 *G18 --- 681.3*G17 --- 681.3*J2 --- Mathematics--?-74 --- Partial differential equations: difference methods; elliptic equations; finite element methods; hyperbolic equations; method of lines; parabolic equations (Numerical analysis) --- Ordinary differential equations: boundary value problems; convergence and stability; error analysis; initial value problems; multistep methods; single step methods; stiff equations (Numerical analysis) --- Physical sciences and engineering (Computer applications) --- Finite element method --- Boundary element methods --- 681.3*J2 Physical sciences and engineering (Computer applications) --- 681.3*G17 Ordinary differential equations: boundary value problems; convergence and stability; error analysis; initial value problems; multistep methods; single step methods; stiff equations (Numerical analysis) --- 681.3 *G18 Partial differential equations: difference methods; elliptic equations; finite element methods; hyperbolic equations; method of lines; parabolic equations (Numerical analysis) --- 51-74 Mathematics--?-74 --- Éléments finis, Méthode des --- Analyse numérique. --- Numerical analysis --- Éléments finis, Méthode des. --- Finite element method. --- Analyse numérique --- Numerical analysis. --- Calcul numerique --- Application a la physique --- Calcul d'erreur
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The objective of this book is to analyze within reasonable limits (it is not a treatise) the basic mathematical aspects of the finite element method. The book should also serve as an introduction to current research on this subject. On the one hand, it is also intended to be a working textbook for advanced courses in Numerical Analysis, as typically taught in graduate courses in American and French universities. For example, it is the author’s experience that a one-semester course (on a three-hour per week basis) can be taught from Chapters 1, 2 and 3 (with the exception of Section 3.3), while another one-semester course can be taught from Chapters 4 and 6. On the other hand, it is hoped that this book will prove to be useful for researchers interested in advanced aspects of the numerical analysis of the finite element method. In this respect, Section 3.3, Chapters 5, 7 and 8, and the sections on "Additional Bibliography and Comments" should provide many suggestions for conducting seminars.
Numerical solutions of differential equations --- Éléments finis, Méthode des --- Finite element method --- Differential equations, Elliptic --- Boundary value problems --- Finite element method. --- Numerical solutions. --- Équations différentielles elliptiques --- Problèmes aux limites --- Méthode des éléments finis --- Numerical solutions --- Solutions numériques --- ELSEVIER-B EPUB-LIV-FT --- 519.6 --- 681.3 *G18 --- FEA (Numerical analysis) --- FEM (Numerical analysis) --- Finite element analysis --- Numerical analysis --- Isogeometric analysis --- 681.3 *G18 Partial differential equations: difference methods; elliptic equations; finite element methods; hyperbolic equations; method of lines; parabolic equations (Numerical analysis) --- Partial differential equations: difference methods; elliptic equations; finite element methods; hyperbolic equations; method of lines; parabolic equations (Numerical analysis) --- 519.6 Computational mathematics. Numerical analysis. Computer programming --- Computational mathematics. Numerical analysis. Computer programming --- Éléments finis, Méthode des. --- Boundary value problems - Numerical solutions --- Differential equations, elliptic
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This book presents the mathematical theory of finite elements, starting from basic results on approximation theory and finite element interpolation and building up to more recent research topics, such as and Discontinuous Galerkin, subgrid viscosity stabilization, and a posteriori error estimation. The body of the text is organized into three parts plus two appendices collecting the functional analysis results used in the book. The first part develops the theoretical basis for the finite element method and emphasizes the fundamental role of inf-sup conditions. The second party addresses various applications encompassing elliptic PDE's, mixed formulations, first-order PDEs, and the time-dependent versions of these problems. The third part covers implementation issues and should provide readers with most of the practical details needed to write or understand a finite element code. Written at the graduate level, the text contains numerous examples and exercises and is intended to serve as a graduate textbook. Depending on one's interests, several reading paths can be followed, emphasizing either theoretical results, numerical algorithms, code efficiency, or applications in the engineering sciences. The book will be useful to researchers and graduate students in mathematics, computer science and engineering.
Finite element method. --- Méthode des éléments finis --- Finite element method --- Méthode des éléments finis --- Mathematical analysis. --- Analysis (Mathematics). --- Applied mathematics. --- Engineering mathematics. --- Computer science—Mathematics. --- Partial differential equations. --- Computer mathematics. --- Analysis. --- Applications of Mathematics. --- Math Applications in Computer Science. --- Partial Differential Equations. --- Computational Mathematics and Numerical Analysis. --- Mathematical and Computational Engineering. --- Computer mathematics --- Electronic data processing --- Mathematics --- Partial differential equations --- Engineering --- Engineering analysis --- Mathematical analysis --- 517.1 Mathematical analysis --- Éléments finis, Méthode des --- Acqui 2006 --- Éléments finis, Méthode des.
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Finite element method --- 681.3 *G18 --- FEA (Numerical analysis) --- FEM (Numerical analysis) --- Finite element analysis --- Numerical analysis --- Isogeometric analysis --- 681.3 *G18 Partial differential equations: difference methods; elliptic equations; finite element methods; hyperbolic equations; method of lines; parabolic equations (Numerical analysis) --- Partial differential equations: difference methods; elliptic equations; finite element methods; hyperbolic equations; method of lines; parabolic equations (Numerical analysis) --- Mathematical analysis --- Enseignement --- Teaching --- Éléments finis, Méthode des --- Calculs numériques --- Mathématiques --- Matrices --- Calculs numériques --- Éléments finis, Méthode des. --- Mathématiques
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Principles of Airway Management is the leading text on the essentials of airway management. First published in 1988 and now in its Fourth Edition, it remains the text of choice for clinicians and trainees across a range of specialties – anesthesiology, emergency medicine, critical care medicine, surgery, and acute care medicine – who confront the issue of airway management. Highlights: · Step-by-step guidance on airway management · More than 400 illustrations, tables, and boxes – many now in color! · New chapter on innovations in airway equipment · New chapter on extubation strategies · Major update on the pediatric airway · The latest on equipment, techniques, surgical approaches, and the Laryngeal Mask Airway · Comprehensive coverage of complications · Well referenced, with suggestions for additional reading · Thorough coverage of applied anatomy From the reviews of the Third Edition: “Airway texts tend to fall into one of two extremes: the oversimplified handbook... or the comprehensive text that can be overburdening to read. Principles of Airway Management is a superb bridge of these two worlds." --Anesthesia & Analgesia “Covers well the basic principles of airway management...I would definitely recommend it for Anaesthetic or Emergency Department Libraries." -- Anaesthesia + Intensive Care “A worthy reference for those in any specialty concerned with airway management. It is readable for the student as well as the senior practitioner... [it] should remain a valuable selection on a critical care or anesthesia reference shelf for years to come.” --Doody’s.
Logic and law --- Medicine. --- Anesthesiology. --- Emergency medicine. --- Critical care medicine. --- Pain medicine. --- Medicine & Public Health. --- Intensive / Critical Care Medicine. --- Emergency Medicine. --- Pain Medicine. --- Ordered algebraic structures --- Airway (Medicine) --- Respiration. --- Animal respiration --- Animals --- Breathing --- Ventilation (Physiology) --- Physiology --- Vital signs --- Aerobic exercises --- Breathing exercises --- Respiration --- Airway (Medicine). --- Airway Management --- Airway Obstruction --- Cardiopulmonary Resuscitation --- Lie algebras. --- Modules (Algebra). --- Representations of algebras. --- Respiratory Therapy. --- Trachea --- instrumentation. --- methods. --- therapy. --- Intubation. --- Finite element method. --- Navier-Stokes equations --- Viscous flow. --- Numerical solutions. --- Medicine --- Medicine, Emergency --- Critical care medicine --- Disaster medicine --- Medical emergencies --- Intensive care --- Intensive medicine --- Emergency medicine --- Intensive care units --- Anaesthesiology --- Surgery --- Lie, Algèbres de. --- Algiatry --- Finite element method --- Éléments finis, Méthode des --- Équations aux dérivées partielles --- Lie, Algèbres de --- Lie, Groupes de --- Représentations d'algèbres --- Lie, Algèbres de --- Représentations d'algèbres --- Représentations de groupes de Lie --- Éléments finis, Méthode des. --- Équations aux dérivées partielles --- Problèmes aux limites --- Numerical solutions of differential equations --- 532.516 --- 519.6 --- 681.3 *G18 --- 681.3 *G18 Partial differential equations: difference methods; elliptic equations; finite element methods; hyperbolic equations; method of lines; parabolic equations (Numerical analysis) --- Partial differential equations: difference methods; elliptic equations; finite element methods; hyperbolic equations; method of lines; parabolic equations (Numerical analysis) --- 519.6 Computational mathematics. Numerical analysis. Computer programming --- Computational mathematics. Numerical analysis. Computer programming --- 532.516 Classical theory of viscous liquids. Friction in lubricants --- Classical theory of viscous liquids. Friction in lubricants
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