sadhna singh and shanthy sundaram anti oxidant property and ps ii electron transfer rate in bga

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Kühn Oliver Charge and Energy Transfer Dynamics in Molecular Systems

This second edition is based on the successful concept of the first edition in presenting a unified perspective on molecular charge and energy transfer processes. The authors bridge the regimes of coherent and dissipative dynamics, thus establishing the connection between classic rate theories and modern treatments of ultrafast phenomena. The book serves as an introduction for graduate students and researchers. Among the new topics of this second edition are – semiclassical and quantum-classical hybrid formulations of molecular dynamics – the basics of femtosecond nonlinear spectroscopy – electron transfer through molecular bridges and proteins – multidimensional tunneling in proton transfer reactions – two-exciton states and exciton annihilation in biological and nonbiological chromophore complexes More illustrating examples as well as an enlarged reference list are added. A new chapter gives an introduction into the theory of laser pulse control of molecular transfer processes.

16725.08 рублей

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Hans Hartnagel Vacuum Nanoelectronic Devices. Novel Electron Sources and Applications

Introducing up-to-date coverage of research in electron field emission from nanostructures, Vacuum Nanoelectronic Devices outlines the physics of quantum nanostructures, basic principles of electron field emission, and vacuum nanoelectronic devices operation, and offers as insight state-of-the-art and future researches and developments. This book also evaluates the results of research and development of novel quantum electron sources that will determine the future development of vacuum nanoelectronics. Further to this, the influence of quantum mechanical effects on high frequency vacuum nanoelectronic devices is also assessed. Key features: • In-depth description and analysis of the fundamentals of Quantum Electron effects in novel electron sources. • Comprehensive and up-to-date summary of the physics and technologies for THz sources for students of physical and engineering specialties and electronics engineers. • Unique coverage of quantum physical results for electron-field emission and novel electron sources with quantum effects, relevant for many applications such as electron microscopy, electron lithography, imaging and communication systems and signal processing. • New approaches for realization of electron sources with required and optimal parameters in electronic devices such as vacuum micro and nanoelectronics. This is an essential reference for researchers working in terahertz technology wanting to expand their knowledge of electron beam generation in vacuum and electron source quantum concepts. It is also valuable to advanced students in electronics engineering and physics who want to deepen their understanding of this topic. Ultimately, the progress of the quantum nanostructure theory and technology will promote the progress and development of electron sources as main part of vacuum macro-, micro- and nanoelectronics.

11248.25 рублей

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Rik Brydson Aberration-Corrected Analytical Transmission Electron Microscopy

The book is concerned with the theory, background, and practical use of transmission electron microscopes with lens correctors that can correct the effects of spherical aberration. The book also covers a comparison with aberration correction in the TEM and applications of analytical aberration corrected STEM in materials science and biology. This book is essential for microscopists involved in nanoscale and materials microanalysis especially those using scanning transmission electron microscopy, and related analytical techniques such as electron diffraction x-ray spectrometry (EDXS) and electron energy loss spectroscopy (EELS).

5912.12 рублей

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Mrityunjay Singh Advances in Materials Science for Environmental and Energy Technologies II

These proceedings contains a collection of 24 papers from five 2012 Materials Science and Technology (MS&T’12) symposia. Green Technologies for Materials Manufacturing and Processing III Materials Development for Nuclear Applications and Extreme Environments Materials Issues in Nuclear Waste Management in the 21st Century Energy Conversion – Photovoltaic, Concentrating Solar Power, and Thermoelectric Energy Storage: Materials, Systems and Applications

9973.3 рублей

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Andrzej Wieckowski Electrochemical Processes in Biological Systems

The first book to provdie a comprehensive look at bioenergetics, the energy flow in living systems, by studying ion exchange and electron transfer processes in biological membranes and artificial bio-films, and how these processes contribute to developing modern biosensor and ion-sensor technology, as well as biofuel cells. The book: Discusses the ion fluxes and electron transfer processes in biological membranes and artificial bio-films Provides an in-depth description of the processes at the interface between the membrane/film and substrate electrode Is the first of its kind to provide a comprehensive look at how these processes are understood in biology of living cells Addresses how these processes contribute to developing modern biosensor and ion-sensor technology, as well as biofuel cells

9373.54 рублей

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Kevin Jensen L. Introduction to the Physics of Electron Emission

A practical, in-depth description of the physics behind electron emission physics and its usage in science and technology Electron emission is both a fundamental phenomenon and an enabling component that lies at the very heart of modern science and technology. Written by a recognized authority in the field, with expertise in both electron emission physics and electron beam physics, An Introduction to Electron Emission provides an in-depth look at the physics behind thermal, field, photo, and secondary electron emission mechanisms, how that physics affects the beams that result through space charge and emittance growth, and explores the physics behind their utilization in an array of applications. The book addresses mathematical and numerical methods underlying electron emission, describing where the equations originated, how they are related, and how they may be correctly used to model actual sources for devices using electron beams. Writing for the beam physics and solid state communities, the author explores applications of electron emission methodology to solid state, statistical, and quantum mechanical ideas and concepts related to simulations of electron beams to condensed matter, solid state and fabrication communities. Provides an extensive description of the physics behind four electron emission mechanisms—field, photo, and secondary, and how that physics relates to factors such as space charge and emittance that affect electron beams. Introduces readers to mathematical and numerical methods, their origins, and how they may be correctly used to model actual sources for devices using electron beams Demonstrates applications of electron methodology as well as quantum mechanical concepts related to simulations of electron beams to solid state design and manufacture Designed to function as both a graduate-level text and a reference for research professionals Introduction to the Physics of Electron Emission is a valuable learning tool for postgraduates studying quantum mechanics, statistical mechanics, solid state physics, electron transport, and beam physics. It is also an indispensable resource for academic researchers and professionals who use electron sources, model electron emission, develop cathode technologies, or utilize electron beams.

10498.36 рублей

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Kühn Oliver Charge and Energy Transfer Dynamics in Molecular Systems

This 3rd edition has been expanded and updated to account for recent developments, while new illustrative examples as well as an enlarged reference list have also been added. It naturally retains the successful concept of its predecessors in presenting a unified perspective on molecular charge and energy transfer processes, thus bridging the regimes of coherent and dissipative dynamics, and establishing a connection between classic rate theories and modern treatments of ultrafast phenomena. Among the new topics are: – Time-dependent density functional theory – Heterogeneous electron transfer, e.g. between molecules and metal or semiconductor surfaces – Current flows through a single molecule. While serving as an introduction for graduate students and researchers, this is equally must-have reading for theoreticians and experimentalists, as well as an aid to interpreting experimental data and accessing the original literature.

16491.71 рублей

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Dileep Singh Developments in Strategic Materials and Computational Design II

This book is a collection of papers from The American Ceramic Society's 35th International Conference on Advanced Ceramics and Composites, held in Daytona Beach, Florida, January 23-28, 2011. This issue includes papers presented in the Thermal Management Materials and Technologies; Advanced Sensor Technology; Geopolymers; and Computational Design, Modeling, and Simulation of Ceramics and Composites symposia.

6745.39 рублей

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N. Sukumar A Matter of Density. Exploring the Electron Density Concept in the Chemical, Biological, and Materials Sciences

The origins and significance of electron density in the chemical, biological, and materials sciences Electron density is one of the fundamental concepts underlying modern chemistry and one of the key determinants of molecular structure and stability. It is also the basic variable of density functional theory, which has made possible, in recent years, the application of the mathematical theory of quantum physics to chemical and biological systems. With an equal emphasis on computational and philosophical questions, A Matter of Density: Exploring the Electron Density Concept in the Chemical, Biological, and Materials Sciences addresses the foundations, analysis, and applications of this pivotal chemical concept. The first part of the book presents a coherent and logically connected treatment of the theoretical foundations of the electron density concept. Discussion includes the use of probabilities in statistical physics; the origins of quantum mechanics; the philosophical questions at the heart of quantum theory, like quantum entanglement; and methods for the experimental determination of electron density distributions. The remainder of the book deals with applications of the electron density concept in the chemical, biological, and materials sciences. Contributors offer insights on how a deep understanding of the origins of chemical reactivity can be gleaned from the concepts of density functional theory. Also discussed are the applications of electron density in molecular similarity analysis and electron density-derived molecular descriptors, such as electrostatic potentials and local ionization energies. This section concludes with some applications of modern density functional theory to surfaces and interfaces. An essential reference for students as well as quantum and computational chemists, physical chemists, and physicists, this book offers an unparalleled look at the development of the concept of electron density from its inception to its role in density functional theory, which led to the 1998 Nobel Prize in Chemistry.

10273.54 рублей

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Russell Parr L. Intellectual Property. Valuation, Exploitation, and Infringement Damages, 2017 Cumulative Supplement

A comprehensive reference for valuation of intangible assets Intellectual Property, Valuation, Exploitation, and Infringement Damages provides in-depth, up-to-date guidance about the valuation of intangible assets. Covering patents, trademarks, copyrights, trade secrets, and more, this book describes the standards, best practices, and case law relating to valuation, licensing, and infringement damages. Intellectual property strategies are examined from a business economic standpoint, and analytical models are provided to streamline the calculation of valuations, licensing royalty rates, and fair equity splits in joint venture arrangements. Designed to ease the task of attaching monetary value to intangible assets, this invaluable reference includes extensive practical guidance including sample royalty rate information, diffusion sales forecasting models, detailed treatment of investment rate of return, and the valuation of early-stage technology. Intellectual property is rapidly becoming a major profit center for an increasing number of companies, who may invest billions of dollars in development of an irreplaceable asset. This book provides an authoritative reference for exploiting this property to its fullest extent, and quantifying its actual economic value. Now that intangible assets are becoming the cornerstones of corporations, applying a logical, analytical approach to valuation has become more important than ever. Intellectual Property, Valuation, Exploitation, and Infringement Damages provides expert guidance for each stage of the asset's life cycle, with recommended procedures and strategies grounded in case law and real-world practice.

14623.43 рублей

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S. K. Sundaram 74th Conference on Glass Problems

Ceramic Engineering and Science Proceedings Volume 35, Issue 1, 74th Conference on Glass Problems S.K. Sundaram, Editor In continuing the tradition that dates back to 1934, this volume is a collection of 25 papers presented at the 74th Glass Problems Conference, October 14–17, 2013 in Columbus, Ohio. These papers are essential reading for all who need to stay abreast of the latest research in the glass manufacturing field. Content is grouped into the below five sections: Batching and Forming Glass Melting Modeling, Sensing and Control Refractories I Refractories II

8008.59 рублей

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Gerhard Dehm In-situ Electron Microscopy. Applications in Physics, Chemistry and Materials Science

Adopting a didactical approach from fundamentals to actual experiments and applications, this handbook and ready reference covers real-time observations using modern scanning electron microscopy and transmission electron microscopy, while also providing information on the required stages and samples. The text begins with introductory material and the basics, before describing advancements and applications in dynamic transmission electron microscopy and reflection electron microscopy. Subsequently, the techniques needed to determine growth processes, chemical reactions and oxidation, irradiation effects, mechanical, magnetic, and ferroelectric properties as well as cathodoluminiscence and electromigration are discussed.

17547.55 рублей

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Matthew Asbell D. Intellectual Property Strategies for the 21st Century Corporation. A Shift in Strategic and Financial Management

A practical approach to the modern management of intellectual property The world has changed significantly in the past decade, resulting in new behavior and practice related to the ownership and management of intellectual property. This book helps executives, attorneys, accountants, managers, owners, and others understand the legal, technological, economic, and cultural changes that have affected IP ownership and management. It provides case studies, practical examples and advice from seasoned and enduring professionals who have adopted new and streamlined methods and practices whether as in-house or outside counsel, or service providers. Provides a practical yet global approach to corporate IP management Serves as a resource for in-house and outside counsel, executives, managers, accountants, consultants and others at mid-size and large corporations Helps professionals navigate the numerous new challenges that have changed the ways in which intellectual property is obtained and managed Details the latest trends in valuation, exploitation, and protection of intellectual property Extensive coverage of the legal, financial, accounting and general business aspects of intellectual property The combined expertise of lawyers, accountants, economists and other business professionals Timely and relevant in view of the global economic recession amidst rampant technological development, this book offers new solutions, practices, policies and strategies as a result of changes in economies and markets, laws, globalization, environment, and public perception.

8816.32 рублей

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Paul Lerner J. Essentials of Intellectual Property

ESSENTIALS OF INTELLECTUAL PROPERTY Full of valuable tips, techniques, illustrative real-world examples, exhibits, and best practices, this handy and concise paperback will help you stay up to date on the newest thinking, strategies, developments, and technologies in intellectual property. «Alexander Poltorak and Paul Lerner have written the definitive primer on intellectual property for business professionals. Thorough in its coverage and understandable in its delivery, Essentials of Intellectual Property provides not only an outstanding summary of intellectual property basics, but a useful and sensible strategy for using intellectual property to the best needs of a business. Poltorak and Lerner have combined their in-depth knowledge of patent law with their savvy business skills to yield an indispensable reference for the business professional.» —Jeffrey L. Brandt, Patent Attorney, Former Senior Vice President and Intellectual Property & Licensing Counsel, priceline.com «Alex Poltorak and Paul Lerner have pulled off a mighty feat with Essentials of Intellectual Property. They have crafted a work that is clear for the beginning practitioner while nuanced and sophisticated for the savvy tech transfer and IP management veteran. Lively and often witty writing is a treat not often found in tomes on what can be a dry subject. With Essentials of Intellectual Property, the practitioner has a new literary tool for tying IP strategy to the business reality of tomorrow.» —Edward Kahn, Founder and President, EKMS, Inc., Cambridge, MA «This critically important new volume of work not only provides the professional with a greater knowledge of this vast subject, but also the novice with a better understanding and appreciation for the results of their creative abilities.» —Lawrence J. Udell, Executive Director, California Invention Center, Professor of New Ventures and Entrepreneurship The Wiley Essentials Series—because the business world is always changing…and so should you.

2718.8 рублей

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Alan Romero R. Property Law For Dummies

The easy way to make sense of property law Understanding property law is vital for all aspiring lawyers and legal professionals, and property courses are foundational classes within all law schools. Property Law For Dummies tracks to a typical property law course and introduces you to property law and theory, exploring different types of property interests—particularly «real property.» In approachable For Dummies fashion, this book gives you a better understanding of the important property law concepts and aids in the reading and analysis of cases, statutes, and regulations. Tracks to a typical property law course Plain-English explanations make it easier to grasp property law concepts Serves as excellent supplemental reading for anyone preparing for their state's Bar Exam The information in Property Law For Dummies benefits students enrolled in a property law course as well as non-students, landlords, small business owners, and government officials, who want to know more about the ins and outs property law.

1749.65 рублей

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Dileep Singh Advances in Ceramic Armor VII

This book is a collection of papers from The American Ceramic Society's 35th International Conference on Advanced Ceramics and Composites, held in Daytona Beach, Florida, January 23-28, 2011. This issue includes papers presented in the Armor Ceramics Symposium on topics such as Manufacturing; High-Rate Real-Time Characterization; Microstructural Design; Nondestructive Characterization; and Phenomenology and Mechanics of Ceramics Subjected to Ballistic Impact.

6745.39 рублей

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John Lindeman Unlocking the Property Market. The 7 Keys to Property Investment Success

The 7 keys to property investment success Brimming with fresh content designed to suit current trends in the market, Unlocking the Property Market shares expert property market analyst John Lindeman's tips and techniques on where to buy, what to buy, how much to pay, and when to sell. Written with your needs in mind, Lindeman reveals the seven keys to property investment success and shows you how to unlock the property market's secrets. The media talks up a housing market boom one minute and then warns of a crash the next, but the housing market's behaviour is predictable. Housing prices move slowly upwards, and then they stagnate for some years—and may even fall for a year or two. However, there are always suburbs in any market that go against the grain and offer property investors a chance to secure the highest returns in the shortest possible time in any market condition. To find these properties, follow John Lindeman in Unlocking the Property Market and successfully discover the seven keys to property investment success including: Understand how the market works and find locations with the best growth potential Know where and when to buy and the best time to sell Narrow down your property search, decide what to buy and determine how much to pay. If you're a private housing investor or just starting out in the field looking for authoritative, accessible information on the topic, Unlocking the Property Market gives you the confidence and know-how to successfully obtain the best possible results from property investment.

1555.82 рублей

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Haluk Beyenal Biofilms in Bioelectrochemical Systems. From Laboratory Practice to Data Interpretation

This book serves as a manual of research techniques for electrochemically active biofilm research. Using examples from real biofilm research to illustrate the techniques used for electrochemically active biofilms, this book is of most use to researchers and educators studying microbial fuel cell and bioelectrochemical systems. The book emphasizes the theoretical principles of bioelectrochemistry, experimental procedures and tools useful in quantifying electron transfer processes in biofilms, and mathematical modeling of electron transfer in biofilms. It is divided into three sections: Biofilms: Microbiology and microbioelectrochemistry – Focuses on the microbiologic aspect of electrochemically active biofilms and details the key points of biofilm preparation and electrochemical measurement Electrochemical techniques to study electron transfer processes – Focuses on electrochemical characterization and data interpretation, highlighting key factors in the experimental procedures that affect reproducibility Applications – Focuses on applications of electrochemically active biofilms and development of custom tools to study electrochemically active biofilms. Chapters detail how to build the reactors for applications and measure parameters

11244.69 рублей

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A practical, in-depth description of the physics behind electron emission physics and its usage in science and technology Electron emission is both a fundamental phenomenon and an enabling component that lies at the very heart of modern science and technology. Written by a recognized authority in the field, with expertise in both electron emission physics and electron beam physics, An Introduction to Electron Emission provides an in-depth look at the physics behind thermal, field, photo, and secondary electron emission mechanisms, how that physics affects the beams that result through space charge and emittance growth, and explores the physics behind their utilization in an array of applications. The book addresses mathematical and numerical methods underlying electron emission, describing where the equations originated, how they are related, and how they may be correctly used to model actual sources for devices using electron beams. Writing for the beam physics and solid state communities, the author explores applications of electron emission methodology to solid state, statistical, and quantum mechanical ideas and concepts related to simulations of electron beams to condensed matter, solid state and fabrication communities. Provides an extensive description of the physics behind four electron emission mechanisms—field, photo, and secondary, and how that physics relates to factors such as space charge and emittance that affect electron beams. Introduces readers to mathematical and numerical methods, their origins, and how they may be correctly used to model actual sources for devices using electron beams Demonstrates applications of electron methodology as well as quantum mechanical concepts related to simulations of electron beams to solid state design and manufacture Designed to function as both a graduate-level text and a reference for research professionals Introduction to the Physics of Electron Emission is a valuable learning tool for postgraduates studying quantum mechanics, statistical mechanics, solid state physics, electron transport, and beam physics. It is also an indispensable resource for academic researchers and professionals who use electron sources, model electron emission, develop cathode technologies, or utilize electron beams.

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