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Numerical Simulations of Physical and Engineering Processes
Edited by Jan Awrejcewicz, ISBN 978-953-307-620-1, Hard cover, 594 pages, Publisher: InTech, Published: September 26, 2011 under CC BY-NC-SA 3.0 license, in subject Numerical Analysis and Scientific Computing
DOI: 10.5772/1828
Numerical Simulations of Physical and Engineering Process is an edited book divided into two parts. Part I devoted to Physical Processes contains 14 chapters, whereas Part II titled Engineering Processes has 13 contributions. The book handles the recent research devoted to numerical simulations of physical and engineering systems. It can be treated as a bridge linking various numerical approaches of two closely inter-related branches of science, i.e. physics and engineering. Since the numerical simulations play a key role in both theoretical and application oriented research, professional reference books are highly needed by pure research scientists, applied mathematicians, engineers as well post-graduate students. In other words, it is expected that the book will serve as an effective tool in training the mentioned groups of researchers and beyond.
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Book contents
- Chapter 1Numerical Solution of Many-Body Wave Scattering Problem for Small Particles and Creating Materials with Desired Refraction Coefficient
- Chapter 2Simulations of Deformation Processes in Energetic Materials
- Chapter 3Numerical Simulation of EIT-Based Slow Light in the Doppler-Broadened Atomic Media of the Rubidium D2 Line
- Chapter 4Importance of Simulation Studies in Analysis of Thin Film Transistors Based on Organic and Metal Oxide Semiconductors
- Chapter 5Numerical Simulation of a Gyro-BWO with a Helically Corrugated Interaction Region, Cusp Electron Gun and Depressed Collector
- Chapter 6Numerical Simulations of Nano-Scale Magnetization Dynamics
- Chapter 7A Computationally Efficient Numerical Simulation for Generating Atmospheric Optical Scintillations
- Chapter 8A Unifying Statistical Model for Atmospheric Optical Scintillation
- Chapter 9Numerical Simulation of Lasing Dynamics in Choresteric Liquid Crystal Based on ADE-FDTD Method
- Chapter 10Complete Modal Representation with Discrete Zernike Polynomials - Critical Sampling in Non Redundant Grids
- Chapter 11Master Equation - Based Numerical Simulation in a Single Electron Transistor Using Matlab
- Chapter 12Numerical Simulation of Plasma Kinetics in Low-Pressure Discharge in Mixtures of Helium and Xenon with Iodine Vapours
- Chapter 13Dynamics of Optical Pulses Propagating in Fibers with Variable Dispersion
- Chapter 14Stochastic Dynamics Toward the Steady State of Self-Gravitating Systems
- Chapter 15Advanced Numerical Techniques for Near-Field Antenna Measurements
- Chapter 16Numerical Simulations of Seawater Electro-Fishing Systems
- Chapter 17Numerical Analysis of a Rotor Dynamics in the Magneto-Hydrodynamic Field
- Chapter 18Mathematical Modeling in Chemical Engineering: A Tool to Analyse Complex Systems
- Chapter 19Monitoring of Chemical Processes Using Model-Based Approach
- Chapter 20The Static and Dynamic Transfer-Matrix Methods in the Analysis of Distributed-Feedback Lasers
- Chapter 21Adaptive Signal Selection Control Based on Adaptive FF Control Scheme and Its Applications to Sound Selection Systems
- Chapter 22Measurement Uncertainty of White-Light Interferometry on Optically Rough Surfaces
- Chapter 23On the Double-Arcing Phenomenon in a Cutting Arc Torch
- Chapter 24Statistical Mechanics of Inverse Halftoning
- Chapter 25A Framework Providing a Basis for Data Integration in Virtual Production
- Chapter 26Mathematical Modelling and Numerical Simulation of the Dynamic Behaviour of Thermal and Hydro Power Plants
- Chapter 27Numerical Simulations of the Long-Haul RZ-DPSK Optical Fibre Transmission System
