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Mathematical control systems --- Functional analysis --- Analyse fonctionnelle --- Nonlinear functional analysis --- 517.988 --- Nonlinear theories --- Nonlinear functional analysis and approximation methods --- Nonlinear functional analysis. --- 517.988 Nonlinear functional analysis and approximation methods --- Analyse convexe --- Analyse fonctionnelle non linéaire --- Programmation (mathématiques)
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517.9 --- 517.988 --- 517.988 Nonlinear functional analysis and approximation methods --- Nonlinear functional analysis and approximation methods --- 517.9 Differential equations. Integral equations. Other functional equations. Finite differences. Calculus of variations. Functional analysis --- Differential equations. Integral equations. Other functional equations. Finite differences. Calculus of variations. Functional analysis --- Partial differential equations --- Mathematical physics --- Solitons. --- Solitons
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Electric filters --- Approximation theory --- Théorie de l'approximation --- Design and construction --- Approximation methods --- -621.3.011.7 --- Electric wave filters --- Electronic filters --- Wave filters, Electric --- Electric circuits --- Electric networks --- Signal theory (Telecommunication) --- Theory of approximation --- Functional analysis --- Functions --- Polynomials --- Chebyshev systems --- -Approximation methods --- Fundamental properties of active or passive networks. Network theory, analysis, synthesis. Fundamental formulae, quantities, properties --- 621.3.011.7 Fundamental properties of active or passive networks. Network theory, analysis, synthesis. Fundamental formulae, quantities, properties --- Théorie de l'approximation --- 621.3.011.7 --- Design and construction&delete& --- Télécommunications --- Télécommunications --- Réseaux électriques (circuits) --- Electric filters - Design and construction - Approximation methods --- Circuits actifs
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Prepared by the Council on Disaster Risk Management of ASCE. Quantitative Risk Assessment for Natural Hazards explains the practical aspects of using quantitative risk assessment (QRA) to develop optimal engineering designs that mitigate the effects of natural hazards, especially on civil infrastructure. Risk analysis of any asset cannot be considered complete without consideration of natural hazards. QRA involves determining the probability of a hazard occurring and estimating the consequences. This monograph demonstrates methods for calculating the vulnerability of infrastructure assets to the common natural hazards-earthquakes, hurricanes, tornadoes, and floods-as well as less-frequent events, such as ice storms, extreme cold, wildfires, avalanches, landslides, mud slides, and tsunamis. Chapters describe QRA for two types of asset (dams and bridges) and three hazards (wind, earthquakes, and hurricanes). Another chapter presents an all-hazards methodology for critical asset and portfolio risk analysis. This CDRM Monograph is a valuable reference for engineers involved in safeguarding infrastructure from natural hazards, risk assessment, disaster management, engineering mechanics, and structural engineering, as well as for engineers and government officials tasked with homeland security.
Civil engineering --- Natural disasters --- Quantitative research. --- Structural analysis (Engineering) --- System safety --- Risk management --- Wind loads --- Infrastructure vulnerability --- Asset management --- Geohazards --- Wind engineering --- Quantitative analysis --- Decision making. --- Risk assessment. --- Approximation methods. --- Mathematics.
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Probability theory --- Mathematical optimization --- Nonlinear theories --- 519.8 --- 517.988 --- Nonlinear problems --- Nonlinearity (Mathematics) --- Calculus --- Mathematical analysis --- Mathematical physics --- Optimization (Mathematics) --- Optimization techniques --- Optimization theory --- Systems optimization --- Maxima and minima --- Operations research --- Simulation methods --- System analysis --- Operational research --- Nonlinear functional analysis and approximation methods --- Mathematical optimization. --- Nonlinear theories. --- 517.988 Nonlinear functional analysis and approximation methods --- 519.8 Operational research --- Programmation (mathématiques) --- Programmation mathematique --- Fonctions de plusieurs variables reelles --- Extrema --- Programmation non lineaire
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Classical mechanics. Field theory --- System Analysis --- Nonlinear oscillations --- 534 --- System analysis --- #WSTE:STER --- 517.988 --- Network theory --- Systems analysis --- System theory --- Mathematical optimization --- Nonlinear theories --- Oscillations --- Vibrations. Acoustics --- Nonlinear functional analysis and approximation methods --- System analysis. --- Nonlinear oscillations. --- 517.988 Nonlinear functional analysis and approximation methods --- 534 Vibrations. Acoustics --- Network analysis --- Network science --- Vibration --- Vibrations --- Vibration. --- Vibrations. --- Oscillations non linéaires. --- Mechanics, Analytic --- Mécanique analytique. --- Oscillations non linéaires. --- Mécanique analytique.
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Chaotic behavior in systems --- Differentiable dynamical systems --- 517.988 --- Differential dynamical systems --- Dynamical systems, Differentiable --- Dynamics, Differentiable --- Differential equations --- Global analysis (Mathematics) --- Topological dynamics --- Chaos in systems --- Chaos theory --- Chaotic motion in systems --- Dynamics --- Nonlinear theories --- System theory --- 517.988 Nonlinear functional analysis and approximation methods --- Nonlinear functional analysis and approximation methods --- Differential geometry. Global analysis --- Differentiable dynamical systems. --- Chaotic behavior in systems. --- Systèmes dynamiques --- Chaos (théorie des systèmes) --- Systèmes dynamiques. --- Systèmes dynamiques. --- Chaos (théorie des systèmes)
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Chaotic behavior in systems --- Pendulum --- Chaos --- Pendule --- Chaotic behavior in systems. --- Pendulum. --- #TELE:SISTA --- #WPLT:dd.Prof.F.Symons --- 517.988 --- 517.988 Nonlinear functional analysis and approximation methods --- Nonlinear functional analysis and approximation methods --- Mechanics --- Rotational motion (Rigid dynamics) --- Gravity --- Chaos in systems --- Chaos theory --- Chaotic motion in systems --- Differentiable dynamical systems --- Dynamics --- Nonlinear theories --- System theory --- dynamica --- Differential geometry. Global analysis --- chaos --- Mathematical physics --- Classical mechanics. Field theory --- Physics --- Pendulums
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