Transport Phenomena In Micro And Nanoscale Functional Materials And Devices

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Transport Phenomena in Micro- and Nanoscale Functional Materials and Devices

Author : Joao B. Sousa,Joao O. Ventura,Andre Pereira
Publisher : Elsevier
Page : 484 pages
File Size : 49,7 Mb
Release : 2021-03-26
Category : Science
ISBN : 9780323460972

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Transport Phenomena in Micro- and Nanoscale Functional Materials and Devices by Joao B. Sousa,Joao O. Ventura,Andre Pereira Pdf

Transport Phenomena in Micro- and Nanoscale Functional Materials and Devices offers a pragmatic view on transport phenomena for micro- and nanoscale materials and devices, both as a research tool and as a means to implant new functions in materials. Chapters emphasize transport properties (TP) as a research tool at the micro/nano level and give an experimental view on underlying techniques. The relevance of TP is highlighted through the interplay between a micro/nanocarrier's characteristics and media characteristics: long/short-range order and disorder excitations, couplings, and in energy conversions. Later sections contain case studies on the role of transport properties in functional nanomaterials. This includes transport in thin films and nanostructures, from nanogranular films, to graphene and 2D semiconductors and spintronics, and from read heads, MRAMs and sensors, to nano-oscillators and energy conversion, from figures of merit, micro-coolers and micro-heaters, to spincaloritronics. Presents a pragmatic description of electrical transport phenomena in micro- and nanoscale materials and devices from an experimental viewpoint Provides an in-depth overview of the experimental techniques available to measure transport phenomena in micro- and nanoscale materials Features case studies to illustrate how each technique works Highlights emerging areas of interest in micro- and nanomaterial transport phenomena, including spintronics

Transport Phenomena in Micro- and Nanoscale Functional Materials and Devices

Author : Joao B. Sousa,Joao O. Ventura,Andre Pereira
Publisher : William Andrew
Page : 485 pages
File Size : 47,9 Mb
Release : 2021-03-23
Category : Science
ISBN : 9780323461245

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Transport Phenomena in Micro- and Nanoscale Functional Materials and Devices by Joao B. Sousa,Joao O. Ventura,Andre Pereira Pdf

Transport Phenomena in Micro- and Nanoscale Functional Materials and Devices offers a pragmatic view on transport phenomena for micro- and nanoscale materials and devices, both as a research tool and as a means to implant new functions in materials. Chapters emphasize transport properties (TP) as a research tool at the micro/nano level and give an experimental view on underlying techniques. The relevance of TP is highlighted through the interplay between a micro/nanocarrier’s characteristics and media characteristics: long/short-range order and disorder excitations, couplings, and in energy conversions. Later sections contain case studies on the role of transport properties in functional nanomaterials. This includes transport in thin films and nanostructures, from nanogranular films, to graphene and 2D semiconductors and spintronics, and from read heads, MRAMs and sensors, to nano-oscillators and energy conversion, from figures of merit, micro-coolers and micro-heaters, to spincaloritronics. Presents a pragmatic description of electrical transport phenomena in micro- and nanoscale materials and devices from an experimental viewpoint Provides an in-depth overview of the experimental techniques available to measure transport phenomena in micro- and nanoscale materials Features case studies to illustrate how each technique works Highlights emerging areas of interest in micro- and nanomaterial transport phenomena, including spintronics

Transport Phenomena in Micro Process Engineering

Author : Norbert Kockmann
Publisher : Springer Science & Business Media
Page : 365 pages
File Size : 46,9 Mb
Release : 2007-11-12
Category : Science
ISBN : 9783540746188

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Transport Phenomena in Micro Process Engineering by Norbert Kockmann Pdf

In this book, the fundamentals of chemical engineering are presented with respect to applications in micro system technology, microfluidics, and transport processes within microstructures. Special features of the book include the state-of-the-art in micro process engineering, a detailed treatment of transport phenomena for engineers, and a design methodology from transport effects to economic considerations.

Nanoscale Phenomena

Author : Zikang Tang,Ping Sheng
Publisher : Springer Science & Business Media
Page : 250 pages
File Size : 54,5 Mb
Release : 2007-11-22
Category : Technology & Engineering
ISBN : 9780387730486

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Nanoscale Phenomena by Zikang Tang,Ping Sheng Pdf

This book collects selected lectures from the Third Workshop of the Croucher Advanced Study Institute on Nano Science and Technology, and showcases contributions from world-renowned researchers. The book presents in-depth articles on the latest developments in nanomaterials and nanotechnology, and provides a cross-disciplinary perspective covering physics and biophysics, chemistry, materials science, and engineering.

Transport Phenomena in Materials Processing

Author : David R. Poirier,G. Geiger
Publisher : Springer
Page : 652 pages
File Size : 49,9 Mb
Release : 2016-12-06
Category : Technology & Engineering
ISBN : 9783319480909

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Transport Phenomena in Materials Processing by David R. Poirier,G. Geiger Pdf

This text provides a teachable and readable approach to transport phenomena (momentum, heat, and mass transport) by providing numerous examples and applications, which are particularly important to metallurgical, ceramic, and materials engineers. Because the authors feel that it is important for students and practicing engineers to visualize the physical situations, they have attempted to lead the reader through the development and solution of the relevant differential equations by applying the familiar principles of conservation to numerous situations and by including many worked examples in each chapter. The book is organized in a manner characteristic of other texts in transport phenomena. Section I deals with the properties and mechanics of fluid motion; Section II with thermal properties and heat transfer; and Section III with diffusion and mass transfer. The authors depart from tradition by building on a presumed understanding of the relationships between the structure and properties of matter, particularly in the chapters devoted to the transport properties (viscosity, thermal conductivity, and the diffusion coefficients). In addition, generous portions of the text, numerous examples, and many problems at the ends of the chapters apply transport phenomena to materials processing.

Transport Phenomena in Microfluidic Systems

Author : Pradipta Kumar Panigrahi
Publisher : John Wiley & Sons
Page : 554 pages
File Size : 45,5 Mb
Release : 2016-02-15
Category : Science
ISBN : 9781118298411

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Transport Phenomena in Microfluidic Systems by Pradipta Kumar Panigrahi Pdf

Fully comprehensive introduction to the rapidly emerging area of micro systems technology Transport Phenomena in Micro Systems explores the fundamentals of the new technologies related to Micro-Electro-Mechanical Systems (MEMS). It deals with the behavior, precise control and manipulation of fluids that are geometrically constrained to a small, typically sub-millimeter, scale, such as nl, pl, fl, small size, low energy consumption, effects of the micro domain and heat transfer in the related devices. The author describes in detail and with extensive illustration micro fabrication, channel flow, transport laws, magnetophoresis, micro scale convection and micro sensors and activators, among others. This book spans multidisciplinary fields such as material science and mechanical engineering, engineering, physics, chemistry, microtechnology and biotechnology. Brings together in one collection recent and emerging developments in this fast-growing area of micro systems Covers multidisciplinary fields such as materials science, mechanical engineering, microtechnology and biotechnology, et al Comprehensive coverage of analytical models in microfluidics and MEMS technology Introduces micro fluidics applications include the development of inkjet printheads, micro-propulsion, and micro thermal technologies Presented in a very logical format Supplies readers with problems and solutions

Adsorption and Transport at the Nanoscale

Author : Nick Quirke
Publisher : CRC Press
Page : 200 pages
File Size : 53,6 Mb
Release : 2005-12-15
Category : Science
ISBN : 0415327016

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Adsorption and Transport at the Nanoscale by Nick Quirke Pdf

Nanoporous materials are used widely in industry as adsorbents, particularly for applications where selective adsorption of one fluid component from a mixture is important. Nanoscale structures are of increasing interest for micro- and nanofluidic devices. Computational methods have an important role to play in characterizing, understanding, and designing such materials. Adsorption and Transport at the Nanoscale gives a survey of computational methods and their applications in this burgeoning field. Beginning with an overview of adsorption and transport phenomena at the nanoscale, this book details several important simulation techniques for characterization and modeling of nanomaterials and surfaces. Expert contributors from Europe, Asia, and the US discuss topics including Monte Carlo simulation for modeling gas adsorption; experimental and simulation studies of aniline in activated carbon fibers; molecular simulation of templated mesoporous materials and adsorption of guest molecules in zeolitic materials; as well as computer simulation of isothermal mass transport in graphitic slit pores. These studies elucidate the chemical and physical phenomena while demonstrating how to perform the simulation techniques, illustrating their advantages, drawbacks, and limitations. A survey of recent progress in numerical simulation of nanomaterials, Adsorption and Transport at the Nanoscale explains the central role of molecular simulation in characterizing and designing novel materials and devices.

An Introduction to Transport Phenomena in Materials Engineering

Author : David R Gaskell,Matthew John M Krane
Publisher : Unknown
Page : 0 pages
File Size : 46,7 Mb
Release : 2023-11-30
Category : Electronic
ISBN : 0367821079

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An Introduction to Transport Phenomena in Materials Engineering by David R Gaskell,Matthew John M Krane Pdf

This classic textbook book helps readers understand the basic physics of transport phenomena and how to apply them to materials processing. The Third Edition offers a significant shift in the approach to this subject, representing an evolution incorporating the original ideas and extending them to a more comprehensive approach to the topic.

Science

Author : John Michels (Journalist)
Publisher : Unknown
Page : 1644 pages
File Size : 50,9 Mb
Release : 2012
Category : Science
ISBN : UCD:31175034446149

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Science by John Michels (Journalist) Pdf

Basic Transport Phenomena in Materials Engineering

Author : Manabu Iguchi,Olusegun J. Ilegbusi
Publisher : Springer Science & Business Media
Page : 260 pages
File Size : 48,7 Mb
Release : 2013-09-12
Category : Technology & Engineering
ISBN : 9784431540205

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Basic Transport Phenomena in Materials Engineering by Manabu Iguchi,Olusegun J. Ilegbusi Pdf

This book presents the basic theory and experimental techniques of transport phenomena in materials processing operations. Such fundamental knowledge is highly useful for researchers and engineers in the field to improve the efficiency of conventional processes or develop novel technology. Divided into four parts, the book comprises 11 chapters describing the principles of momentum transfer, heat transfer, and mass transfer in single phase and multiphase systems. Each chapter includes examples with solutions and exercises to facilitate students’ learning. Diagnostic problems are also provided at the end of each part to assess students’ comprehension of the material. The book is aimed primarily at students in materials science and engineering. However, it can also serve as a useful reference text in chemical engineering as well as an introductory transport phenomena text in mechanical engineering. In addition, researchers and engineers engaged in materials processing operations will find the material useful for the design of experiments and mathematical models in transport phenomena. This volume contains unique features not usually found in traditional transport phenomena texts. It integrates experimental techniques and theory, both of which are required to adequately solve the inherently complex problems in materials processing operations. It takes a holistic approach by considering both single and multiphase systems, augmented with specific practical examples. There is a discussion of flow and heat transfer in microscale systems, which is relevant to the design of modern processes such as fuel cells and compact heat exchangers. Also described are auxiliary relationships including turbulence modeling, interfacial phenomena, rheology, and particulate systems, which are critical to many materials processing operations.

Optoelectronics, Materials, and Devices for Communications

Author : Tien-Pei Lee,Qiming Wang
Publisher : SPIE-International Society for Optical Engineering
Page : 712 pages
File Size : 51,6 Mb
Release : 2001
Category : Technology & Engineering
ISBN : UOM:39015054446896

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Optoelectronics, Materials, and Devices for Communications by Tien-Pei Lee,Qiming Wang Pdf

Microfluidics and Microscale Transport Processes

Author : Suman Chakraborty
Publisher : CRC Press
Page : 368 pages
File Size : 53,6 Mb
Release : 2012-10-04
Category : Science
ISBN : 9781439899243

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Microfluidics and Microscale Transport Processes by Suman Chakraborty Pdf

The advancements in micro- and nano-fabrication techniques, especially in the last couple of decades, have led research communities, over the world, to invest unprecedented levels of attention on the science and technology of micro- and nano-scale devices and the concerned applications. With an intense focus on micro- and nanotechnology from a fluidic perspective, Microfluidics and Microscale Transport Processes provides a broad review of advances in this field. A comprehensive compendium of key indicators to recent developments in some very active research topics in microscale transport processes, it supplies an optimal balance between discussions of concrete applications and development of fundamental understanding. The chapters discuss a wide range of issues in the sub-domains of capillary transport, fluidic resistance, electrokinetics, substrate modification, rotational microfluidics, and the applications of the phenomena of these sub-domains in diverse situations ranging from non-biological to biological ones like DNA hybridization and cellular biomicrofluidics. The book also addresses a generic problem of particle transport in nanoscale colloidal suspensions and includes a chapter on Lattice-Boltzmann methods for phase-changing problems which represents a generic particle based approach that may be useful to address many microfluidic problems of interdisciplinary relevance.

Materials and Devices for Optical and Wireless Communications

Author : Connie J. Chang-Hasnain,Yuxing Xia
Publisher : SPIE-International Society for Optical Engineering
Page : 682 pages
File Size : 53,9 Mb
Release : 2002
Category : Technology & Engineering
ISBN : UOM:39015056190237

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Materials and Devices for Optical and Wireless Communications by Connie J. Chang-Hasnain,Yuxing Xia Pdf

Electrokinetic Particle Transport in Micro-/Nanofluidics

Author : Shizhi Qian,Ye Ai
Publisher : CRC Press
Page : 398 pages
File Size : 41,9 Mb
Release : 2012-06-19
Category : Medical
ISBN : 9781439854396

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Electrokinetic Particle Transport in Micro-/Nanofluidics by Shizhi Qian,Ye Ai Pdf

Numerous applications of micro-/nanofluidics are related to particle transport in micro-/nanoscale channels, and electrokinetics has proved to be one of the most promising tools to manipulate particles in micro/nanofluidics. Therefore, a comprehensive understanding of electrokinetic particle transport in micro-/nanoscale channels is crucial to the development of micro-/nanofluidic devices. Electrokinetic Particle Transport in Micro-/Nanofluidics: Direct Numerical Simulation Analysis provides a fundamental understanding of electrokinetic particle transport in micro-/nanofluidics involving electrophoresis, dielectrophoresis, electroosmosis, and induced-charge electroosmosis. The book emphasizes the direct numerical simulation of electrokinetic particle transport phenomena, plus several supportive experimental studies. Using the commercial finite element package COMSOL Multiphysics®, it guides researchers on how to predict the particle transport subjected to electric fields in micro-/nanoscale channels. Researchers in the micro-/nanofluidics community, who may have limited experience in writing their own codes for numerical simulations, can extend the numerical models and codes presented in this book to their own research and guide the development of real micro-/nanofluidics devices. Corresponding COMSOL® script files are provided with the book and can be downloaded from the author’s website.

Micromechanics and Nanoscale Effects

Author : Vasyl Michael Harik,Li-Shi Luo
Publisher : Springer Science & Business Media
Page : 251 pages
File Size : 51,6 Mb
Release : 2012-12-06
Category : Technology & Engineering
ISBN : 9789400710139

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Micromechanics and Nanoscale Effects by Vasyl Michael Harik,Li-Shi Luo Pdf

This volume consists of the state-of-the-art reports on new developments in micromechanics and the modeling of nanoscale effects, and is a companion book to the recent Kluwer volume on nanomechanics and mul- scale modeling (it is entitled Trends in Nanoscale Mechanics). The two volumes grew out of a series of discussions held at NASA Langley Research Center (LaRC), lectures and other events shared by many researchers from the national research laboratories and academia. The key events include the 2001 Summer Series of Round-Table Discussions on Nanotechnology at ICASE Institute (NASA LaRC) organized by Drs. V. M. Harik and M. D. Salas and the 2002 NASA LaRC Workshop on Multi-scale Modeling. The goal of these interactions was to foster collaborations between academic researchers and the ICASE Institute (NASA LaRC), a universi- based institute, which has pioneered world-class computational, theoretical and experimental research in the disciplines that are important to NASA. Editors gratefully acknowledge help of Ms. E. Todd (ICASE, NASA LaRC), the ICASE Director M. D. Salas and all reviewers, in particular, Dr. B. Diskin (ICASE/NIA, NASA LaRC), Prof. R. Haftka (University of Florida), Dr. V. M. Harik (ICASE/Swales Aerospace, NASA LaRC), Prof.