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  • Electrochemical Engineering
    Electrochemical Engineering

    A Comprehensive Reference for Electrochemical Engineering Theory and Application From chemical and electronics manufacturing, to hybrid vehicles, energy storage, and beyond, electrochemical engineering touches many industries—any many lives—every day.As energy conservation becomes of central importance, so too does the science that helps us reduce consumption, reduce waste, and lessen our impact on the planet.Electrochemical Engineering provides a reference for scientists and engineers working with electrochemical processes, and a rigorous, thorough text for graduate students and upper-division undergraduates. Merging theoretical concepts with widespread application, this book is designed to provide critical knowledge in a real-world context.Beginning with the fundamental principles underpinning the field, the discussion moves into industrial and manufacturing processes that blend central ideas to provide an advanced understanding while explaining observable results.Fully-worked illustrations simplify complex processes, and end-of chapter questions help reinforce essential knowledge. With in-depth coverage of both the practical and theoretical, this book is both a thorough introduction to and a useful reference for the field.Rigorous in depth, yet grounded in relevance, Electrochemical Engineering: Introduces basic principles from the standpoint of practical applicationExplores the kinetics of electrochemical reactions with discussion on thermodynamics, reaction fundamentals, and transportCovers battery and fuel cell characteristics, mechanisms, and system designDelves into the design and mechanics of hybrid and electric vehicles, including regenerative braking, start-stop hybrids, and fuel cell systemsExamines electrodeposition, redox-flow batteries, electrolysis, regenerative fuel cells, semiconductors, and other applications of electrochemical engineering principles Overlapping chemical engineering, chemistry, material science, mechanical engineering, and electrical engineering, electrochemical engineering covers a diverse array of phenomena explained by some of the important scientific discoveries of our time.Electrochemical Engineering provides the critical understanding required to work effectively with these processes as they become increasingly central to global sustainability.

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  • Electrochemical Systems
    Electrochemical Systems

    Provides a comprehensive understanding of a wide range of systems and topics in electrochemistry This book offers complete coverage of electrochemical theories as they pertain to the understanding of electrochemical systems.It describes the foundations of thermodynamics, chemical kinetics, and transport phenomena—including the electrical potential and charged species.It also shows how to apply electrochemical principles to systems analysis and mathematical modeling.Using these tools, the reader will be able to model mathematically any system of interest and realize quantitative descriptions of the processes involved. This brand new edition of Electrochemical Systems updates all chapters while adding content on lithium battery electrolyte characterization and polymer electrolytes.It also includes a new chapter on impedance spectroscopy.Presented in 4 sections, the book covers: Thermodynamics of Electrochemical Cells, Electrode Kinetics and Other Interfacial Phenomena, Transport Processes in Electrolytic Solutions, and Current Distribution and Mass Transfer in Electrochemical Systems.It also features three appendixes containing information on: Partial Molar Volumes, Vectors and Tensors, and Numerical Solution of Coupled, Ordinary Differential Equations. Details fundamental knowledge with a thorough methodologyThoroughly updated throughout with new material on topics including lithium battery electrolyte characterization, impedance analysis, and polymer electrolytesIncludes a discussion of equilibration of a charged polymer material and an electrolytic solution (the Donnan equilibrium)A peerless classic on electrochemical engineering Electrochemical Systems, Fourth Edition is an excellent resource for students, scientists, and researchers involved in electrochemical engineering.

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  • Electrochemical Membrane Technology
    Electrochemical Membrane Technology

    Electrochemical Membrane Technology includes a comprehensive discussion of timely topics surrounding electrochemical membrane technologies, including SWOT analysis of each electrochemical membrane technology, along with a discussion on energy production.The book covers both theoretical and experimental studies on electrochemical membrane technologies and applications, making it ideal for chemical and environmental engineers, professors and other university teachers, research scientists, graduate students, water treatment managers, research institutions, and R&D departments of industries involved in sustainable water treatment and coproduction of valuable products from water treatment technologies.

    Price: 170.00 £ | Shipping*: 0.00 £
  • Electrochemical Impedance Spectroscopy
    Electrochemical Impedance Spectroscopy

    Provides fundamentals needed to apply impedance spectroscopy to a broad range of applications with emphasis on obtaining physically meaningful insights from measurements. Emphasizes fundamentals applicable to a broad range of applications including corrosion, biomedical devices, semiconductors, batteries, fuel cells, coatings, analytical chemistry, electrocatalysis, materials, and sensors Provides illustrative examples throughout the text that show how the principles are applied to common impedance problemsNew Edition has improved pedagogy, with more than twice the number of examplesNew Edition has more in-depth treatment of background material needed to understand impedance spectroscopy, including electrochemistry, complex variables, and differential equations New Edition includes expanded treatment of the influence of mass transport and kinetics and reflects recent advances in understanding frequency dispersion and constant-phase elements

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  • Is the electrochemical series complete?

    Yes, the electrochemical series is considered complete as it lists all the elements in order of their standard electrode potentials. This series allows us to predict the direction of redox reactions and the relative strengths of oxidizing and reducing agents. The electrochemical series is a valuable tool in understanding and predicting the behavior of different elements in electrochemical reactions.

  • What is the electrochemical series?

    The electrochemical series is a list of elements and their standard electrode potentials, which indicates the relative ease with which they undergo oxidation or reduction reactions. It ranks elements in order of their tendency to gain or lose electrons, with the most reactive metals at the top and the least reactive metals at the bottom. This series is important in understanding the behavior of metals in electrochemical reactions, such as in batteries and corrosion processes. It helps predict the direction of redox reactions and the potential difference between two half-cells in a galvanic cell.

  • How does electrochemical corrosion work exactly?

    Electrochemical corrosion occurs when two different metals are in contact with each other in the presence of an electrolyte, such as water or salt. One metal acts as the anode and undergoes oxidation, releasing electrons into the electrolyte. The other metal acts as the cathode and gains these electrons, causing a reduction reaction. This flow of electrons between the anode and cathode leads to the deterioration of the anode, resulting in corrosion. The electrolyte facilitates the movement of ions and electrons, accelerating the corrosion process.

  • What is an assignment related to the electrochemical series?

    An assignment related to the electrochemical series could involve comparing the reactivity of different metals based on their position in the series. Students may be asked to predict the outcome of various redox reactions based on the positions of the metals in the series. They may also be tasked with designing a galvanic cell using metals from the series and calculating the cell potential. Additionally, students may be asked to explain the practical applications of the electrochemical series, such as in the selection of materials for corrosion resistance or in the design of batteries.

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  • Screen-Printing Electrochemical Architectures
    Screen-Printing Electrochemical Architectures

    This book offers an essential overview of screen-printing.Routinely utilised to fabricate a range of useful electrochemical architectures, screen-printing is also used in a broad range of areas in both industry and academia.It supports the design of next-generation electrochemical sensing platforms, and allows proven laboratory-based approaches to be upscaled and commercially applied.To those skilled in the art, screen-printing allows novel and useful electrochemical architectures to be mass produced, offering fabrication processes that are cost-effective yet highly reproducible and yield significant electrical benefits. However, there is no readily available textbook that actually equips readers to set about the task of screen-printing, explaining its techniques and implementation.Addressing that gap, this book will be of interest to both academics and industrialists delving into screen-printing for the first time.It offers an essential resource for those readers who want learn to successfully design, fabricate and implement (and mass-produce) electrochemical based architectures, as well as those who already have a basic understanding of the process and want to advance their technical knowledge and skills.

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  • Electrochemical Processes in Biological Systems
    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-filmsProvides an in-depth description of the processes at the interface between the membrane/film and substrate electrodeIs the first of its kind to provide a comprehensive look at how these processes are understood in biology of living cellsAddresses how these processes contribute to developing modern biosensor and ion-sensor technology, as well as biofuel cells

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  • Electrochemical Methods : Fundamentals and Applications
    Electrochemical Methods : Fundamentals and Applications

    The latest edition of a classic textbook in electrochemistry The third edition of Electrochemical Methods has been extensively revised to reflect the evolution of electrochemistry over the past two decades, highlighting significant developments in the understanding of electrochemical phenomena and emerging experimental tools, while extending the book's value as a general introduction to electrochemical methods. This authoritative resource for new students and practitioners provides must-have information crucial to a successful career in research.The authors focus on methods that are extensively practiced and on phenomenological questions of current concern. This latest edition of Electrochemical Methods contains numerous problems and chemical examples, with illustrations that serve to illuminate the concepts contained within in a way that will assist both student and mid-career practitioner. Significant updates and new content in this third edition include: An extensively revised introductory chapter on electrode processes, designed for new readers coming into electrochemistry from diverse backgroundsNew chapters on steady-state voltammetry at ultramicroelectrodes, inner-sphere electrode reactions and electrocatalysis, and single-particle electrochemistryExtensive treatment of Marcus kinetics as applied to electrode reactions, a more detailed introduction to migration, and expanded coverage of electrochemical impedance spectroscopyThe inclusion of Lab Notes in many chapters to help newcomers with the transition from concept to practice in the laboratory The new edition has been revised to address a broader audience of scientists and engineers, designed to be accessible to readers with a basic foundation in university chemistry, physics and mathematics.It is a self-contained volume, developing all key ideas from the fundamental principles of chemistry and physics. Perfect for senior undergraduate and graduate students taking courses in electrochemistry, physical and analytical chemistry, this is also an indispensable resource for researchers and practitioners working in fields including electrochemistry and electrochemical engineering, energy storage and conversion, analytical chemistry and sensors.

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  • Electrochemical Engineering : From Discovery to Product
    Electrochemical Engineering : From Discovery to Product

    This volume in the "Advances in Electrochemical Sciences and Engineering" series focuses on problem-solving, illustrating how to translate basic science into engineering solutions. The book's concept is to bring together engineering solutions across the range of nano-bio-photo-micro applications, with each chapter co-authored by an academic and an industrial expert whose collaboration led to reusable methods that are relevant beyond their initial use. Examples of experimental and/or computational methods are used throughout to facilitate the task of moving atomistic-scale discoveries and understanding toward well-engineered products and processes based on electrochemical phenomena.

    Price: 162.00 £ | Shipping*: 0.00 £
  • Can you describe the electrochemical process of iron rusting?

    Iron rusting is an electrochemical process that occurs when iron is exposed to oxygen and water. The iron atoms lose electrons and become positively charged ions (Fe2+), while the oxygen atoms gain electrons and become negatively charged ions (O2-). This creates an electrochemical cell, with the iron acting as the anode and the oxygen as the cathode. The positively charged iron ions then react with water and oxygen to form iron oxide, or rust. This process is accelerated in the presence of electrolytes such as salt, which can increase the rate of electron transfer and speed up the rusting process.

  • What is the zero point of the electrochemical series?

    The zero point of the electrochemical series is the standard hydrogen electrode (SHE), which is assigned a potential of 0 volts. It serves as the reference point for measuring the electrode potentials of other half-reactions in the electrochemical series. The SHE consists of a platinum electrode in contact with a solution of 1 M H+ ions at 1 atm pressure of H2 gas. All other electrode potentials in the electrochemical series are measured relative to the potential of the SHE.

  • What is an assignment on the electrochemical series of potentials?

    An assignment on the electrochemical series of potentials typically involves studying and analyzing the relative reactivity of different metals and their ability to undergo oxidation or reduction reactions. Students may be asked to arrange metals in order of their standard electrode potentials, predict the outcome of various redox reactions, or calculate cell potentials for different electrochemical cells. This assignment helps students understand the relationship between the standard electrode potential of a metal and its reactivity in redox reactions, as well as how to use this information to predict the feasibility of different electrochemical processes.

  • What is the purpose of the electrochemical series in chemistry?

    The electrochemical series is a list of elements and their standard electrode potentials, which indicates the relative reactivity of different metals and their ability to undergo oxidation or reduction reactions. The purpose of the electrochemical series in chemistry is to predict the outcome of redox reactions and to determine the feasibility of a particular redox reaction. It helps in understanding the behavior of different metals in terms of their ability to donate or accept electrons, and it is also useful in determining the direction of electron flow in electrochemical cells. Overall, the electrochemical series is a valuable tool for understanding the behavior of metals in redox reactions and their relative reactivity.

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