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Computational Nanotechnology Using Finite Difference Time Domain

Using Finite Difference Time Domain describes the key concepts of the computational FDTD method used in nanotechnology. The book discusses the;

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Computational Nanotechnology Using Finite Difference Time Domain

Using Finite Difference Time Domain describes the key concepts of the computational FDTD method used in nanotechnology. The book discusses the;

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Scattering Analysis of Periodic Structures Using Finite-difference Time-domain

efficient computational algorithms to analyze the scattering properties of various electromagnetic periodic structures using the finite-difference;

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Recent Trends in Computational Photonics

This book brings together the recent cutting-edge work on computational methods in photonics and their applications. The latest advances;

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Advances In Fdtd Computational Electrody

models of these interactions. Maxwell's equations are solved using the finite-difference time-domain (FDTD) technique, pioneered by the senior;

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Computational Photonics

presentation of the state-of-the art in computational modelling techniques for photonics * Contains broad coverage of both frequency- and time-domain;

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The Finite-Difference Time-Domain Method for Electromagnetics With MATLAB Simulations

This book introduces the powerful Finite-Difference Time-Domain method to students and interested researchers and readers. An effective;

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Computational Simulation in Architectural and Environmental Acoustics

acoustic problems. Following an introduction providing an overview of computational simulation of sound environment, the book is in two parts;

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The Finite Difference Time Domain Method for Electromagnetics

The Finite-Difference Time-domain (FDTD) method allows you to compute electromagnetic interaction for complex problem geometries with ease;

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The Finite Difference Time Domain Method for Electromagnetics

The Finite-Difference Time-domain (FDTD) method allows you to compute electromagnetic interaction for complex problem geometries with ease;

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Finite-Difference Modelling Of Earthquake Motions

Among all the numerical methods in seismology, the finite-difference (FD) technique provides the best balance of accuracy and computational;

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Development of Complex Electromagnetic Problems Using FDTD Subgridding in Hybrid Computational Techniques

Complex electromagnetic problems using new hybridised computational techniques combining the frequency domain Method of Moments (MoM;

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Computational Electromagnetics with MATLAB, Fourth Edition

This fourth edition of the text reflects the continuing increase in awareness and use of computational electromagnetics and incorporates;

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Computational Electromagnetics with MATLAB, Fourth Edition

This fourth edition of the text reflects the continuing increase in awareness and use of computational electromagnetics and incorporates;

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Computational Finite Element Methods in Nanotechnology

Computational Finite Element Methods in Nanotechnology demonstrates the capabilities of finite element methods in nanotechnology for a;

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Electromagnetic Scattering Using the Iterative Multi-Region Technique

In this work, an iterative approach using the finite difference frequency domain method is presented to solve the problem of scattering;

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Computational Finite Element Methods in Nanotechnology

Computational Finite Element Methods in Nanotechnology demonstrates the capabilities of finite element methods in nanotechnology for a;

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Multiresolution Frequency Domain Technique for Electromagnetics

In this book, a general frequency domain numerical method similar to the finite difference frequency domain (FDFD) technique is presented;

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Modern EMC Analysis Techniques Volume I

The objective of this two-volume book is the systematic and comprehensive description of the most competitive time-domain computational;

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Computational Partial Differential Equations

This text teaches finite element methods and basic finite difference methods from a computational point of view. It emphasizes developing;

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Computational Methods For Electromagnetics

Computational Methods for Electromagnetics is an indispensable resource for making efficient and accurate formulations for electromagnetics;

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What Every Engineer Should Know about Computational Techniques of Finite Element Analysis

efficient, numerically solvable form, and the solution of the problem using specific computational techniques. The author discusses time and;

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Double-Grid Finite-Difference Frequency-Domain Method of Scattering from Chiral Objects

This book presents the application of the overlapping grids approach to solve chiral material problems using the FDFD method. Due to the;

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Numerical Methods in Computational Finance

approximation by the finite difference method and applications to computational finance. The book is structured so that it can be read by beginners;

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Perfectly Matched Layer (PML) for Computational Electromagnetics

Maxwell equations with such finite methods as the finite difference time domain (FDTD) method or the finite element method. The frequency domain;

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Perfectly Matched Layer (PML) for Computational Electromagnetics

Maxwell equations with such finite methods as the finite difference time domain (FDTD) method or the finite element method. The frequency domain;

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Structural Dynamic Systems Computational Techniques and Optimization

Computational techniques for the analysis and design of structural dynamic systems using numerical methods have been the focus of an;

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