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Small Polaron Hopping DC Conductivity in 3D & 1D Disordered Materials

to find their way travelling across the complex paths of small polaron transport in 3D or 1D disordered materials, studying their dc;

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Polarons

' superconductivity, electronic switching of small-polaron semiconductors, electronically stimulated atomic desorption and diffusion of light interstitial;

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Is Hopping A Science?

The book provides an overview of the author's work devoted to experimental study of hopping conductivity, which includes substantial;

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1D and Multi-D Modeling Techniques for IC Engine Simulation

models and coupled 1D-3D modeling techniques, including 0D combustion models, quasi-3D methods, and some 3D model applications.;

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Electrical Methods

geophysical inversion results are represented in form of 1D, 2D and 3D imaging. Both DC sensitivity analysis and synthetic modeling are discussed;

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Computational Electromagnetics for RF and Microwave Engineering

FEM - to open source MATLAB codes (freely available online) in 1D, 2D and 3D, together with many practical hints and tips gleaned from the;

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Electrical Measurements

experimental techniques that characterize materials at the level of dc and ac conductivity. In ac conductivity, several approaches are presented from;

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Theory of Charge Transport in Carbon Electronic Materials

coupling strength, the charge transport mechanism is classified into three different categories, namely, the localized hopping model, the extended;

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Nanostructured Zinc Oxide

activity, drug delivery, and electrodes for optoelectronics. Reviews methods to synthesize, tailor, and characterize 1D, 2D, and 3D;

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Low-Dimensional Solids

With physical properties that often may not be described by the transposition of physical laws from 3D space across to 2D or even 1D space;

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The Electrical Properties of Disordered Metals

electrical conductivity, Hall coefficient, magnetoresistance and thermopower of disordered metals and alloys. The author begins by showing how;

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Computational Modelling of Nanomaterials

Due to their small size and their dependence on very fast phenomena, nanomaterials are ideal systems for computational modelling. This;

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Polaron Theory

example, to the linearized polaron model, the book goes on to deal with the equilibrium state objective being to derive Bogolubov's inequality for;

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Nanomaterials for Optoelectronic Applications

Provides an overview of and introduction to nanoscale materials Explains the features of 0D, 1D, 2D and 3D nanomaterials Exhibits the wide;

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Ion-Beam-Based Nanofabrication

It is increasingly apparent that ion-beam-based processing offers unique capabilities for fabrication and complex patterning of 3D, 2D or;

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Development & Application of Nanofiber Materials

One-dimensional structured (1D) nanofibre materials have attracted great interest over the past decade because they can potentially address;

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Vlsi Design Of Wavelet Transform

is presented from the VLSI design perspective, and the related theories, algorithms, and architectures are discussed for 1D, 2D, and 3D DWT.The book;

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Aspects Of Polaron Theory

The linear polaron model is an excellent example of an exactly soluble, yet nontrivial polaron system. It serves as a trial system or zero;

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Cambridge Solid State Science Series

electrical conductivity, Hall coefficient, magnetoresistance and thermopower of disordered metals and alloys. The author begins by showing how;

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Advances in Materials Science Research

of nanotechnology and bioengineering; parametric identification of nonlinear model of hydrogen thermal desorption from structural materials; testing 1D;

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Charge Transport in Disordered Solids with Applications in Electronics

The field of charge conduction in disordered materials is a rapidly evolving area owing to current and potential applications of these;

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Top Down Design of Disordered Photonic Structures

in conventional disordered materials. It develops new concepts for disordered photonics inspired by notions in quantum mechanics, solid-state physics;

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Disordered Semiconductors Second Edition

Devices based on disordered semiconductors have wide applications. It is difficult to imagine modern life without printers and copiers, LCD;

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Electrospinning

chemistry of the polymers in use. The basic understanding provided in the book, is useful for producing 1D and 3D fibrous structures with specific;

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Advanced Characterization Techniques For

in 1D, 2D and 3D. Building on a proven concept, this new edition also covers thermography, transient optoelectronic methods, and absorption and;

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The Boundary Element Method in Geophysical Survey

the sounding of geological media using direct current (DC). Adaptive mesh generation algorithms and numerical methods for solving a system;

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The Boundary Element Method in Geophysical Survey

the sounding of geological media using direct current (DC). Adaptive mesh generation algorithms and numerical methods for solving a system;

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