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Impedance Spectroscopy. Applications to Electrochemical and Dielectric Phenomena Impedance Spectroscopy. Applications to Electrochemical and Dielectric Phenomena

Автор: Vadim Lvovich F.

Год издания: 

This book presents a balance of theoretical considerations and practical problem solving of electrochemical impedance spectroscopy. This book incorporates the results of the last two decades of research on the theories and applications of impedance spectroscopy, including more detailed reviews of the impedance methods applications in industrial colloids, biomedical sensors and devices, and supercapacitive polymeric films. The book covers all of the topics needed to help readers quickly grasp how to apply their knowledge of impedance spectroscopy methods to their own research problems. It also helps the reader identify whether impedance spectroscopy may be an appropriate method for their particular research problem. This includes understanding how to correctly make impedance measurements, interpret the results, compare results with expected previously published results form similar chemical systems, and use correct mathematical formulas to verify the accuracy of the data. Unique features of the book include theoretical considerations for dealing with modeling, equivalent circuits, and equations in the complex domain, review of impedance instrumentation, best measurement methods for particular systems and alerts to potential sources of errors, equations and circuit diagrams for the most widely used impedance models and applications, figures depicting impedance spectra of typical materials and devices, extensive references to the scientific literature for more information on particular topics and current research, and a review of related techniques and impedance spectroscopy modifications.


Building Electro-Optical Systems. Making It all Work Building Electro-Optical Systems. Making It all Work

Автор: Philip C. D. Hobbs

Год издания: 

Praise for the First Edition «Now a new laboratory bible for optics researchers has joined the list: it is Phil Hobbs's Building Electro-Optical Systems: Making It All Work.» —Tony Siegman, Optics & Photonics News Building a modern electro-optical instrument may be the most interdisciplinary job in all of engineering. Be it a DVD player or a laboratory one-off, it involves physics, electrical engineering, optical engineering, and computer science interacting in complex ways. This book will help all kinds of technical people sort through the complexity and build electro-optical systems that just work, with maximum insight and minimum trial and error. Written in an engaging and conversational style, this Second Edition has been updated and expanded over the previous edition to reflect technical advances and a great many conversations with working designers. Key features of this new edition include: Expanded coverage of detectors, lasers, photon budgets, signal processing scheme planning, and front ends Coverage of everything from basic theory and measurement principles to design debugging and integration of optical and electronic systems Supplementary material is available on an ftp site, including an additional chapter on thermal Control and Chapter problems highly relevant to real-world design Extensive coverage of high performance optical detection and laser noise cancellation Each chapter is full of useful lore from the author's years of experience building advanced instruments. For more background, an appendix lists 100 good books in all relevant areas, introductory as well as advanced. Building Electro-Optical Systems: Making It All Work, Second Edition is essential reading for researchers, students, and professionals who have systems to build.


ICP Emissionsspektrometrie fur Praktiker. Grundlagen, Methodenentwicklung, Anwendungsbeispiele ICP Emissionsspektrometrie fur Praktiker. Grundlagen, Methodenentwicklung, Anwendungsbeispiele

Автор: Joachim Nolte

Год издания: 

Das Basis-Know-how fur richtige ICP-OES-Analytik! Erstmalig ist eine deutschsprachige, leicht verstandliche und anwenderorientierte Einfuhrung in die ICP-Emissionspektrometrie verfugbar. Sie umfa?t die praxisrelevanten Grundlagen, geratetechnische Informationen, eine Anleitung zur Methodenentwicklung und viele praktische Anwendungsbeispiele. Das Buch ist kompakt und sehr ubersichtlich gestaltet, mit Infoboxen zu typischen Fragen und Problemen, Checklisten und detaillierten Hinweisen zur Handhabung. Es ist nicht nur ein Begleiter fur die eigenstandige Aus- und Weiterbildung, sondern ebenso ein verlasslicher Leitfaden fur die praktische Laborarbeit, denn auch die Aspekte Pflege und Wartung sowie Trouble-Shooting kommen nicht zu kurz. Alle Anwender der ICP-OES konnen vom bewahrten Erfahrungsschatz des Autors profitieren, den er in zwei Jahrzehnten bei der Ausbildung und Beratung von Anwendern sowie bei der Gerateentwicklung gesammelt hat. Er war Mitarbeiter eines fuhrenden Gerateherstellers und ist jetzt freiberuflicher Berater.


X-ray Photoelectron Spectroscopy. An introduction to Principles and Practices X-ray Photoelectron Spectroscopy. An introduction to Principles and Practices

Автор: Paul van der Heide

Год издания: 

This book introduces readers interested in the field of X-ray Photoelectron Spectroscopy (XPS) to the practical concepts in this field. The book first introduces the reader to the language and concepts used in this field and then demonstrates how these concepts are applied. Including how the spectra are produced, factors that can influence the spectra (all initial and final state effects are discussed), how to derive speciation, volume analysed and how one controls this (includes depth profiling), and quantification along with background substraction and curve fitting methodologies. This is presented in a concise yet comprehensive manner and each section is prepared such that they can be read independently of each other, and all equations are presented using the most commonly used units. Greater emphasis has been placed on spectral understanding/interpretation. For completeness sake, a description of commonly used instrumentation is also presented. Finally, some complementary surface analytical techniques and associated concepts are reviewed for comparative purposes in stand-alone appendix sections.


Colour and the Optical Properties of Materials. An Exploration of the Relationship Between Light, the Optical Properties of Materials and Colour Colour and the Optical Properties of Materials. An Exploration of the Relationship Between Light, the Optical Properties of Materials and Colour

Автор: Richard J. D. Tilley

Год издания: 

Colour and the Optical Properties of Materials carefully introduces the science behind the subject, along with many modern and cutting-edge applications, chosen to appeal to today's students. For science students, it provides a broad introduction to the subject and the many applications of colour. To more applied students, such as engineering and arts students, it provides the essential scientific background to colour and the many applications. New to this Edition: The chapter framework of the first edition will be retained, with each chapter being substantially rewritten and some material would be relocated. Some chapters will be rewritten in a clearer fashion, e.g. There have been no significant advances in the understanding of rainbows recently, but the text could be clarified and improved. Colour has been an important attribute of many nano-particle containing systems, such as quantum dots. This aspect will be included, e.g. the colour of gold ruby glass, described in Chapter 5 as part of scattering phenomena now is better treated in terms of gold nanoparticles and surface plasmons. This would probably be transferred to Chapter 10 and considered in tandem with the colour of metals such as copper, silver and gold. A similar state of affairs applies to silver nanoparticles and polychromic glass. Some chapters will include extensive new material, e.g. Chapter 8, colours due to molecular processes [organic LEDs etc], and Chapter 12, Displays, [touch screen technologies]. For all chapters it would be intended to take into account the current scientific literature up to the time of submission – say up to the end of 2009. The end of chapter Further Reading sections would reflect this up-to-date overview. The end of chapter problems will be strengthened and expanded.