Published by University of Massachusetts Press, 2016
ISBN 10: 1625342527 ISBN 13: 9781625342522
Language: English
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Published by University of Massachusetts Press, 2016
ISBN 10: 1625342527 ISBN 13: 9781625342522
Language: English
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Published by University of Massachusetts Press, 2016
ISBN 10: 1625342527 ISBN 13: 9781625342522
Language: English
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Published by University of Massachusetts Press, 2016
ISBN 10: 1625342527 ISBN 13: 9781625342522
Language: English
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Published by University of Massachusetts Press, 2016
ISBN 10: 1625342527 ISBN 13: 9781625342522
Language: English
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Published by University of Massachusetts Press, 2016
ISBN 10: 1625342527 ISBN 13: 9781625342522
Language: English
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Published by University of Massachusetts Press, 2016
ISBN 10: 1625342527 ISBN 13: 9781625342522
Language: English
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Published by Taylor & Francis Ltd, London, 2024
ISBN 10: 1032204893 ISBN 13: 9781032204895
Language: English
Seller: Grand Eagle Retail, Mason, OH, U.S.A.
Paperback. Condition: new. Paperback. This book serves as a comprehensive treatment of the advanced microscopic properties of lithium- and sodium-based batteries. It focuses on the development of the quasiparticle framework and the successful syntheses of cathode/electrolyte/anode materials in these batteries.FEATURESHighlights lithium-ion and sodium-ion batteries as well as lithium sulfur-, aluminum-, and iron-related batteriesDescribes advanced battery materials and their fundamental propertiesAddresses challenges to improving battery performanceDevelops theoretical predictions and experimental observations under a unified quasiparticle frameworkTargets core issues such as stability and efficienciesLithium-Related Batteries: Advances and Challenges will appeal to researchers and advanced students working in battery development, including those in the fields of materials, chemical, and energy engineering. Lithium-Related Batteries: Advances and Challenges is a comprehensive treatment of advanced microscopic properties of lithium- and sodium-based batteries. It focuses on the development of the quasiparticle framework and the successful syntheses of cathode/electrolyte/anode materials in these batteries. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
Published by Taylor & Francis Ltd, London, 2024
ISBN 10: 1032434228 ISBN 13: 9781032434223
Language: English
Seller: Grand Eagle Retail, Mason, OH, U.S.A.
Paperback. Condition: new. Paperback. This book explores the fundamental properties of a wide range of energy storage and conversion materials, covering mainstream theoretical and experimental studies and their applications in green energy. It presents a thorough investigation of diverse physical, chemical, and material properties of rechargeable batteries, supercapacitors, solar cells, and fuel cells, covering the development of theoretical simulations, machine learning, high-resolution experimental measurements, and excellent device performance. Covers potential energy storage (rechargeable batteries and supercapacitors) and energy conversion (solar cells and fuel cells) materials. Develops theoretical predictions and experimental observations under a unified quasi-particle framework. Illustrate up-to-date calculation results and experimental measurements. Describes successful synthesis, fabrication, and measurements, as well as potential applications and near future challenges.Promoting a deep understanding of the basic science, application engineering, and commercial products, this work is appropriate for senior graduate students and researchers in materials, chemical, and energy engineering and related disciplines. This book explores energy storage and conversion materials, covering mainstream theoretical and experimental studies and applications. It investigates properties of rechargeable batteries, supercapacitors, solar cells, and fuel cells, theoretical simulations, machine learning, high-resolution experimental measurements, and device performance. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
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Published by Taylor & Francis Ltd, 2024
ISBN 10: 1032434228 ISBN 13: 9781032434223
Language: English
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Published by Univ of Massachusetts Pr, 2016
ISBN 10: 1625342527 ISBN 13: 9781625342522
Language: English
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Add to basketPaperback. Condition: Brand New. reprint edition. 224 pages. 8.75x6.00x1.00 inches. In Stock.
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Published by Taylor & Francis Ltd, 2024
ISBN 10: 1032204893 ISBN 13: 9781032204895
Language: English
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Published by Taylor & Francis Ltd, London, 2024
ISBN 10: 1032434228 ISBN 13: 9781032434223
Language: English
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Add to basketPaperback. Condition: new. Paperback. This book explores the fundamental properties of a wide range of energy storage and conversion materials, covering mainstream theoretical and experimental studies and their applications in green energy. It presents a thorough investigation of diverse physical, chemical, and material properties of rechargeable batteries, supercapacitors, solar cells, and fuel cells, covering the development of theoretical simulations, machine learning, high-resolution experimental measurements, and excellent device performance. Covers potential energy storage (rechargeable batteries and supercapacitors) and energy conversion (solar cells and fuel cells) materials. Develops theoretical predictions and experimental observations under a unified quasi-particle framework. Illustrate up-to-date calculation results and experimental measurements. Describes successful synthesis, fabrication, and measurements, as well as potential applications and near future challenges.Promoting a deep understanding of the basic science, application engineering, and commercial products, this work is appropriate for senior graduate students and researchers in materials, chemical, and energy engineering and related disciplines. This book explores energy storage and conversion materials, covering mainstream theoretical and experimental studies and applications. It investigates properties of rechargeable batteries, supercapacitors, solar cells, and fuel cells, theoretical simulations, machine learning, high-resolution experimental measurements, and device performance. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.
Published by University of Massachusetts Press, 2016
ISBN 10: 1625342527 ISBN 13: 9781625342522
Language: English
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Add to basketCondition: New. Tran Van Thuy is a celebrated Vietnamese filmmaker of more than twenty award-winning documentaries. Thuy s memoir, when published in Vietnam in 2013, immediately sold out. In this translation, English-language readers are now able to learn in rich detail ab.
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Published by Taylor & Francis Ltd, London, 2024
ISBN 10: 1032204893 ISBN 13: 9781032204895
Language: English
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Add to basketPaperback. Condition: new. Paperback. This book serves as a comprehensive treatment of the advanced microscopic properties of lithium- and sodium-based batteries. It focuses on the development of the quasiparticle framework and the successful syntheses of cathode/electrolyte/anode materials in these batteries.FEATURESHighlights lithium-ion and sodium-ion batteries as well as lithium sulfur-, aluminum-, and iron-related batteriesDescribes advanced battery materials and their fundamental propertiesAddresses challenges to improving battery performanceDevelops theoretical predictions and experimental observations under a unified quasiparticle frameworkTargets core issues such as stability and efficienciesLithium-Related Batteries: Advances and Challenges will appeal to researchers and advanced students working in battery development, including those in the fields of materials, chemical, and energy engineering. Lithium-Related Batteries: Advances and Challenges is a comprehensive treatment of advanced microscopic properties of lithium- and sodium-based batteries. It focuses on the development of the quasiparticle framework and the successful syntheses of cathode/electrolyte/anode materials in these batteries. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.