Найти книгу: "Electromagnetic Time Reversal"


Electromagnetic Time Reversal Electromagnetic Time Reversal

Автор: Группа авторов

Год издания: 0000

The aim of this book is to familiarize the reader with the concept of electromagnetic time reversal, and introduce up-to-date applications of the concept found in the areas of electromagnetic compatibility and power systems. It is original in its approach to describing propagation and transient issues in power networks and power line communication, and is the result of the three main editors’ pioneering research in the area.
Electromagnetics in biology Electromagnetics in biology

Автор: M. Kato

Год издания: 

This book will serve as an ideal guide to the relatively new and complex field of bioelectromagnetics for students and researchers interested in the interaction of biological systems and electromagnetic fields. Coverage details:(1) biological responses of human and animals, both in vivo and in vitro methodologies, to magnetic and/or electromagnetic field exposure, (2) characteristics of effective fields, (3) hypotheses to explain possible mechanisms of interaction between the fields and cells, and (4) induced current in ELF and induced heat in RF fields as key interaction mechanisms.

Trading Price Action Reversals. Technical Analysis of Price Charts Bar by Bar for the Serious Trader Trading Price Action Reversals. Technical Analysis of Price Charts Bar by Bar for the Serious Trader

Автор: Al Brooks

Год издания: 

A detailed guide to profiting from trend reversals using the technical analysis of price action The key to being a successful trader is finding a system that works and sticking with it. Author Al Brooks has done just that. By simplifying his trading system and trading only 5-minute price charts he's found a way to capture profits regardless of market direction or economic climate. His first book, Reading Price Charts Bar by Bar, offered an informative examination of his system, but it didn't allow him to get into the real nuts and bolts of the approach. Now, with this new series of books, Brooks takes you step by step through the entire process. By breaking down his trading system into its simplest pieces: institutional piggybacking or trend trading, trading ranges, and transitions or reversals (the focus of this book), this three book series offers access to Brooks' successful methodology. Trading Price Action Reversals reveals the various types of reversals found in today's markets and then takes the time to discuss the specific characteristics of these reversals, so that you can use them in your everyday trading endeavors. While price action analysis works on all time frames, there are different techniques that you can use in trading intraday, daily, weekly and monthly charts. This, among many other issues, is also addressed throughout these pages. Offers insights on how to handle volatility and sharp reversals Covers the concept of using options when trading certain charts Examines how to deal with the emotions that come along with trading Other books in the series include Trading Price Action Trends and Trading Price Action Trading Ranges If you're looking to make the most of your time in today's markets the trading insights found in Trading Price Action Reversals will help you achieve this goal.

Field Computation for Accelerator Magnets. Analytical and Numerical Methods for Electromagnetic Design and Optimization Field Computation for Accelerator Magnets. Analytical and Numerical Methods for Electromagnetic Design and Optimization

Автор: Stephan Russenschuck

Год издания: 

Written by a leading expert on the electromagnetic design and engineering of superconducting accelerator magnets, this book offers the most comprehensive treatment of the subject to date. In concise and easy-to-read style, the author lays out both the mathematical basis for analytical and numerical field computation and their application to magnet design and manufacture. Of special interest is the presentation of a software-based design process that has been applied to the entire production cycle of accelerator magnets from the concept phase to field optimization, production follow-up, and hardware commissioning. Included topics: Technological challenges for the Large Hadron Collider at CERN Algebraic structures and vector fields Classical vector analysis Foundations of analytical field computation Fields and Potentials of line currents Harmonic fields The conceptual design of iron- and coil-dominated magnets Solenoids Complex analysis methods for magnet design Elementary beam optics and magnet polarities Numerical field calculation using finite- and boundary-elements Mesh generation Time transient effects in superconducting magnets, including superconductor magnetization and cable eddy-currents Quench simulation and magnet protection Mathematical optimization techniques using genetic and deterministic algorithms Practical experience from the electromagnetic design of the LHC magnets illustrates the analytical and numerical concepts, emphasizing the relevance of the presented methods to a great many applications in electrical engineering. The result is an indispensable guide for high-energy physicists, electrical engineers, materials scientists, applied mathematicians, and systems engineers.

Numerical Analysis in Electromagnetics. The TLM Method Numerical Analysis in Electromagnetics. The TLM Method

Автор: Pierre Saguet

Год издания: 

The aim of this book is to give a broad overview of the TLM (Transmission Line Matrix) method, which is one of the “time-domain numerical methods”. These methods are reputed for their significant reliance on computer resources. However, they have the advantage of being highly general. The TLM method has acquired a reputation for being a powerful and effective tool by numerous teams and still benefits today from significant theoretical developments. In particular, in recent years, its ability to simulate various situations with excellent precision, including complex materials, has been demonstrated. Application examples are included in the last two chapters of the book, enabling the reader to draw conclusions regarding the performance of the implemented techniques and, at the same time, to validate them. Contents 1. Basis of the TLM Method: the 2D TLM Method. 2. 3D Nodes. 3. Introduction of Discrete Elements and Thin Wires in the TLM Method. 4. The TLM Method in Matrix Form and the Z Transform. Appendix A. Development of Maxwell’s Equations using the Z Transform with a Variable Mesh. Appendix B. Treatment of Plasma using the Z Transform for the TLM Method.

Periodic Structures. Mode-Matching Approach and Applications in Electromagnetic Engineering Periodic Structures. Mode-Matching Approach and Applications in Electromagnetic Engineering

Автор: Ruey-Bing Hwang (Raybeam)

Год издания: 

Provides readers an understanding of the basic physics underlying meta-materials, providing a powerful tool for analyzing their electromagnetic properties Periodic Structures: Mode-Matching Approach and Applications in Electromagnetic Engineering presents the scattering and guiding characteristics of periodic structures using the mode-matching approach and their applications in electromagnetic engineering. The book is structured so that the first three chapters provide an introduction and prepare the reader for chapters 4 to 6, which expand the formulations to electromagnetic and optical structures applicable to practical device applications. The last chapters cover very recent research topics in electromagnetics and optics. Provides an analytic approach to describing the operation of photonic crystals and related periodic structures Covers guided and leaky mode propagation in periodic surroundings, from fundamentals to practical device applications Demostrates formulation of the periodic system and applications to practical electromagnetic / optical devices, even further to metamaterials Introduces the evolution of periodic structures and their applications in microwave, millimeter wave and THz. Written by a high-impact author in electromagnetics and optics Contains mathematical derivations which can be applied directly to MATLAB programs Ideal for Graduate students and advanced undergraduates in electronic engineering, optics, physics, and applied physics, or researchers working with periodic structures