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Wave and Scattering Methods for Numerical Simulation

for all of these techniques and addresses the question of how they are related to more standard numerical simulation techniques. Covering;

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Scattering Of Electromagnetic Waves

of Electromagnetic Waves contains detailed discussions of both analytical and numerical methods, including cutting-edge techniques for the recovery of earth;

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Scattering Of Electromagnetic Waves

of Electromagnetic Waves contains detailed discussions of both analytical and numerical methods, including cutting-edge techniques for the recovery of earth;

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Effective Computational Methods for Wave Propagation

simulation of nonlinear dispersive waves from nonlinear optics and the theory and numerical analysis of Boussinesq systems. The next section focuses;

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Effective Computational Methods for Wave Propagation

simulation of nonlinear dispersive waves from nonlinear optics and the theory and numerical analysis of Boussinesq systems. The next section focuses;

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Numerical Simulation of Water Waves

This book discusses the numerical simulation of water waves, which combines mathematical theories and modern techniques of numerical;

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Numerical Simulation of Water Waves

This book discusses the numerical simulation of water waves, which combines mathematical theories and modern techniques of numerical;

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Electromagnetic Modeling and Simulation

growing computer capacity and calculation speeds made it possible for numerical simulation methods to overcome this inability. Numerical;

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Wave Propagation in Complex Media

of seismic power. Several chapters describe numerical methods, such as fast algorithms for solving electromagnetic scattering problems, and the panel;

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Forward and Inverse Scattering Algorithms based on Contrast Source Integral Equations

computer modeling in 1D, 2D and 3D models Includes an online site for computer codes with adjustable configurations Written for students;

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Innovations in Wave Processes Modelling and Decision Making

This book presents methods for full-wave computer simulation that can be used in various applications and contexts, e.g. seismic;

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Modeling Fluctuations in Scattered Waves

intelligent choices that can be made for system analysis. Using experimental results and numerical simulation, the book illustrates the properties and;

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Computational Methods For Electromagnetic Phenomena

A unique and comprehensive graduate text and reference on numerical methods for electromagnetic phenomena, from atomistic to continuum;

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Radar Propagation and Scattering in a Complex Maritime Environment

Radar Propagation and Scattering in a Complex Maritime Environment addresses advanced numerical techniques used to significantly reduce;

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Electromagnetic Radiation, Scattering, and Diffraction

Electromagnetic Radiation, Scattering, and Diffraction Discover a graduate-level text for students specializing in electromagnetic wave;

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Electromagnetic Wave Scattering by Aerial and Ground Radar Objects

results of the scattering characteristics of different aerial and ground radar objects. This must-have book provides essential background for;

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Wide-Band Slow-Wave Systems

in Russian and Lithuanian. The authors examine electrodynamics, multiconductor lines, and numerical methods for the modeling, simulation;

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Wide-Band Slow-Wave Systems

in Russian and Lithuanian. The authors examine electrodynamics, multiconductor lines, and numerical methods for the modeling, simulation;

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Advances in Engineering Research

members, design of rock slopes using classification systems; structural control of cable-stayed bridges; and, numerical simulation of non-linear;

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Essential Numerical Methods in Electromagnetics

numerical methods and applications necessary for the development of technologies and simulation modeling. Numerical methods are a key ingredient;

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Advances in Engineering Research

members, design of rock slopes using classification systems; structural control of cable-stayed bridges; numerical simulation of non-linear wave;

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Nonlinear Wave Equations

this field including work on the Inverse Scattering Transform, scattering theory, inverse problems, numerical methods for dispersive wave;

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Mathematical Methods In Electromagnetism

modern mathematical methods: integral surface methods, and also semigroups, variational methods, etc., well adapted to a numerical approach.As;

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Mathematics of Wave Phenomena

Wave phenomena are ubiquitous in nature. Their mathematical modeling, simulation and analysis lead to fascinating and challenging problems;

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Mathematics of Wave Phenomena

Wave phenomena are ubiquitous in nature. Their mathematical modeling, simulation and analysis lead to fascinating and challenging problems;

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Sound Scattering on Spherical Objects

appropriate criteria for estimating the accuracy of numerical results, as well as their importance for practical applications. Python code is provided;

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Sound Scattering on Spherical Objects

appropriate criteria for estimating the accuracy of numerical results, as well as their importance for practical applications. Python code is provided;

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