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Numerical Analysis with Applications in Mechanics and Engineering

Written in simple engineering language with ample application examples, Numerical Analysis with Applications in Mechanics and Engineering;

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The Best Approximation Method in Computational Mechanics

mathematics, numerical analysis and computational mechanics. The Best Approximation Method in Computational Mechanics serves as an introduction to;

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Offshore Mechanics

fluid dynamics (CFD) and finite element methods (FEM) along with the high fidelity numerical analysis of recent applications in offshore;

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Computational Contact Mechanics

numerical simulation methods are used to model these objects and their behaviour. Contact problems are an area of great technical importance;

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Engineering Mechanics

diagrams, principles of the transmissibility of forces, Coulomb's law of friction, analysis of forces in members of truss and rectilinear motion;

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Numerical Simulation of Water Waves

sediment transport, and introduces numerical wave flumes and wave basins. The material is self-contained, with numerous illustrations and tables;

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Numerical Simulation of Water Waves

sediment transport, and introduces numerical wave flumes and wave basins. The material is self-contained, with numerous illustrations and tables;

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MATLAB

, numerical methods, optimization, direct numerical integration methods, engineering mechanics and mechanical vibrations using MATLAB;

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Applied Soil Mechanics with ABAQUS Applications

analysis. Applied Soil Mechanics with ABAQUS(r) Applications provides civil engineering students and practitioners with a simple, basic;

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Mathematical Analysis of Continuum Mechanics and Industrial Applications

This book focuses on mathematical theory and numerical simulation related to various aspects of continuum mechanics, such as fracture;

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Advances in Discontinuous Numerical Methods and Applications in Geomechanics and Geoengineering

distinct element method (DEM) and the discontinuous deformation analysis (DDA), are associated with geomechanics and geoengineering. Discontinuous;

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Thermo Mechanics Applications and Engineering Technology

. Along with the development of computer industry and the advancement of numerical methods, solid foundation in both hardware and software has;

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Computational Granular Mechanics and Its Engineering Applications

GPU-based parallel algorithm to guide the programming of DEM and examines commercial and open-source codes and software for the analysis;

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Computational Granular Mechanics and Its Engineering Applications

GPU-based parallel algorithm to guide the programming of DEM and examines commercial and open-source codes and software for the analysis;

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Applications of Computational Mechanics in Geotechnical Engineering

The development of constitutive relations for geotechnical materials, with the help of numerical models, have increased notably the ability;

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Calculus of Variations, Applications and Computations

, control theory, modelling, numerical analysis and various applications in physics, mechanics and engineering. These topics are now part of many;

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Trends in Differential Equations and Applications

Mathematics (CEDYA/CMA) in Cadiz (Spain) in 2015. It supports further research in differential equations, numerical analysis, mechanics, control and;

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Methods of Fundamental Solutions in Solid Mechanics

numerical analysis of solid mechanics and heat transferExtends the application of the MFS for use with complex problemsConsiders;

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Advanced Engineering and Technology

conservation, numerical software and applications, climate change and environmental dynamics, intelligent safety systems, chemistry, biochemical and;

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Working Analysis

showing how mathematics connects with other areas of science and engineering. In particular, effective numerical computation is developed as an;

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Crack Analysis in Structural Concrete

analysis and mixed-mode fracture.Compared with other mature engineering disciplines, fracture mechanics of concrete is still a;

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Multiphysics Phase-Field Fracture

in multiphysics. State-of-the-art phase-field fracture models are complemented with prototype explanations and rigorous numerical analysis. These;

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Transport Phenomena

with numerical methods used to solve the problems encountered earlier. The basic concepts of finite difference and finite volume methods are;

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Wood Fracture Characterization

in structural engineering, which commonly involve discontinuities and irregularities. The authors cover the tests, data reduction schemes and numerical;

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Rock Dynamics: From Research to Engineering: Proceedings of the 2nd International Conference on Rock Dynamics and Applications

experimental techniques are collected in Section 3, including new testing facilities, data monitoring and data analysis. Section 4 deals with case;

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Computational Modeling of Multiphase Geomaterials

, finite element analysis, and numerical methods to predict the behavior of soil and rock.;

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Computational Modeling of Multiphase Geomaterials

, finite element analysis, and numerical methods to predict the behavior of soil and rock.;

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