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Neutron Applications in Materials for Energy - Gordon J. Kearly
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Gordon J. Kearly:

Neutron Applications in Materials for Energy - gebunden oder broschiert

ISBN: 9783319066554

ID: 9783319066554

Neutron Applications in Materials for Energy collects results and conclusions of recent neutron-based investigations of materials that are important in the development of sustainable energy. Chapters are authored by leading scientists with hands-on experience in the field, providing overviews, recent highlights, and case-studies to illustrate the applicability of one or more neutron-based techniques of analysis. The theme follows energy production, storage, and use, but each chapter, or section, can also be read independently, with basic theory and instrumentation for neutron scattering being outlined in the introductory chapter. Whilst neutron scattering is extensively used to understand properties of condensed matter, neutron techniques are exceptionally-well suited to studying how the transport and binding of energy and charge-carrying molecules and ions are related to their dynamics and the material`s crystal structure. These studies extend to in situ and in operando in some cases. The species of interest in leading energy-technologies include H 2 , H + , and Li + which have particularly favourable neutron-scattering properties that render these techniques of analysis ideal for such studies and consequently, neutron-based analysis is common-place for hydrogen storage, fuel-cell, catalysis, and battery materials. Similar research into the functionality of solar cell, nuclear, and CO 2 capture/storage materials rely on other unique aspects of neutron scattering and again show how structure and dynamics provide an understanding of the material stability and the binding and mobility of species of interest within these materials. Scientists and students looking for methods to help them understand the atomic-level mechanisms and behaviour underpinning the performance characteristics of energy materials will find Neutron Applications in Materials for Energy a valuable resource, whilst the wider audience of sustainable energy scientists, and newcomers to neutron scattering should find this a useful reference. Neutron Applications in Materials for Energy: Neutron Applications in Materials for Energy collects results and conclusions of recent neutron-based investigations of materials that are important in the development of sustainable energy. Chapters are authored by leading scientists with hands-on experience in the field, providing overviews, recent highlights, and case-studies to illustrate the applicability of one or more neutron-based techniques of analysis. The theme follows energy production, storage, and use, but each chapter, or section, can also be read independently, with basic theory and instrumentation for neutron scattering being outlined in the introductory chapter. Whilst neutron scattering is extensively used to understand properties of condensed matter, neutron techniques are exceptionally-well suited to studying how the transport and binding of energy and charge-carrying molecules and ions are related to their dynamics and the material`s crystal structure. These studies extend to in situ and in operando in some cases. The species of interest in leading energy-technologies include H 2 , H + , and Li + which have particularly favourable neutron-scattering properties that render these techniques of analysis ideal for such studies and consequently, neutron-based analysis is common-place for hydrogen storage, fuel-cell, catalysis, and battery materials. Similar research into the functionality of solar cell, nuclear, and CO 2 capture/storage materials rely on other unique aspects of neutron scattering and again show how structure and dynamics provide an understanding of the material stability and the binding and mobility of species of interest within these materials. Scientists and students looking for methods to help them understand the atomic-level mechanisms and behaviour underpinning the performance characteristics of energy materials will find Neutron Applications in Materials for Energy a valuable resource, whilst the wider audience of sustainable energy scientists, and newcomers to neutron scattering should find this a useful reference. Nanotechnologie Technologie / Nanotechnologie Arbeitsstoff Material Werkstoff SCIENCE / Energy, Springer-Verlag Gmbh

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Neutron Applications in Materials for Energy - Herausgegeben von Kearly, Gordon J. Peterson, Vanessa K.
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Herausgegeben von Kearly, Gordon J. Peterson, Vanessa K.:

Neutron Applications in Materials for Energy - gebunden oder broschiert

2015, ISBN: 9783319066554

[ED: Hardcover], [PU: Springer, Berlin Springer International Publishing], Neutron Applications in Materials for Energy collects results and conclusions of recent neutron-based investigations of materials that are important in the development of sustainable energy. Chapters are authored by leading scientists with hands-on experience in the field, providing overviews, recent highlights, and case-studies to illustrate the applicability of one or more neutron-based techniques of analysis. The theme follows energy production, storage, and use, but each chapter, or section, can also be read independently, with basic theory and instrumentation for neutron scattering being outlined in the introductory chapter. Whilst neutron scattering is extensively used to understand properties of condensed matter, neutron techniques are exceptionally-well suited to studying how the transport and binding of energy and charge-carrying molecules and ions are related to their dynamics and the material's crystal structure. These studies extend to in situ and in operando in some cases. The species of interest in leading energy-technologies include H 2 , H + , and Li + which have particularly favourable neutron-scattering properties that render these techniques of analysis ideal for such studies and consequently, neutron-based analysis is common-place for hydrogen storage, fuel-cell, catalysis, and battery materials. Similar research into the functionality of solar cell, nuclear, and CO 2 capture/storage materials rely on other unique aspects of neutron scattering and again show how structure and dynamics provide an understanding of the material stability and the binding and mobility of species of interest within these materials. Scientists and students looking for methods to help them understand the atomic-level mechanisms and behaviour underpinning the performance characteristics of energy materials will find Neutron Applications in Materials for Energy a valuable resource, whilst the wider audience of sustainable energy scientists, and newcomers to neutron scattering should find this a useful reference. 2015. 2015. x, 306 S. 85 SW-Abb., 81 Farbabb., 4 Tabellen. 235 mm Sofort lieferbar, [SC: 0.00], Neuware, gewerbliches Angebot

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Neutron Applications in Materials for Energy - Kearley, Gordon J.; Peterson, Vanessa K.
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Kearley, Gordon J.; Peterson, Vanessa K.:
Neutron Applications in Materials for Energy - neues Buch

ISBN: 9783319066554

ID: 1968281

Neutron Applications in Materials for Energy collects results and conclusions of recent neutron-based investigations of materials that are important in the development of sustainable energy.Chapters are authored by leading scientists with hands-on experience in the field, providing overviews, recent highlights, and case-studies to illustrate the applicability of one or more neutron-based techniques of analysis. The theme follows energy production, storage, and use, but each chapter, or section, can also be read independently, with basic theory and instrumentation for neutron scattering being outlined in the introductory chapter. Whilst neutron scattering is extensively used to understand properties of condensed matter, neutron techniques are exceptionally-well suited to studying how the transport and binding of energy and charge-carrying molecules and ions are related to their dynamics and the material's crystal structure. These studies extend to in situ and in operando in some cases. The species of interest in leading energy-technologies include H 2 , H + , and Li + which have particularly favourable neutron-scattering properties that render these techniques of analysis ideal for such studies and consequently, neutron-based analysis is common-place for hydrogen storage, fuel-cell, catalysis, and battery materials. Similar research into the functionality of solar cell, nuclear, and CO 2 capture/storage materials rely on other unique aspects of neutron scattering and again show how structure and dynamics provide an understanding of the material stability and the binding and mobility of species of interest within these materials. Scientists and students looking for methods to help them understand the atomic-level mechanisms and behaviour underpinning the performance characteristics of energy materials will find Neutron Applications in Materials for Energy a valuable resource, whilst the wider audience of sustainable energy scientists, and newcomers to neutron scattering should find this a useful reference. Technology Technology eBook, Springer International Publishing

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Neutron Applications in Materials for Energy - Gordon J. Kearly
Vergriffenes Buch, derzeit bei uns nicht verfügbar.
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Gordon J. Kearly:
Neutron Applications in Materials for Energy - neues Buch

ISBN: 9783319066554

[ED: Buch], [PU: Springer-Verlag GmbH], Neuware - Neutron Applications in Materials for Energy collects results and conclusions of recent neutron-based investigations of materials that are important in the development of sustainable energy. Chapters are authored by leading scientists with hands-on experience in the field, providing overviews, recent highlights, and case-studies to illustrate the applicability of one or more neutron-based techniques of analysis. The theme follows energy production, storage, and use, but each chapter, or section, can also be read independently, with basic theory and instrumentation for neutron scattering being outlined in the introductory chapter. Whilst neutron scattering is extensively used to understand properties of condensed matter, neutron techniques are exceptionally-well suited to studying how the transport and binding of energy and charge-carrying molecules and ions are related to their dynamics and the material's crystal structure. These studies extend to in situ and in operando in some cases. The species of interest in leading energy-technologies include Hsub2/sub, Hsup+/sup, and Lisup+/sup which have particularly favourable neutron-scattering properties that render these techniques of analysis ideal for such studies and consequently, neutron-based analysis is common-place for hydrogen storage, fuel-cell, catalysis, and battery materials. Similar research into the functionality of solar cell, nuclear, and COsub2/sub capture/storage materials rely on other unique aspects of neutron scattering and again show how structure and dynamics provide an understanding of the material stability and the binding and mobility of species of interest within these materials. Scientists and students looking for methods to help them understand the atomic-level mechanisms and behaviour underpinning the per, [SC: 0.00], Neuware, gewerbliches Angebot, 244x159x20 mm, [GW: 582g]

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Neutron Applications in Materials for Energy - Gordon J. Kearly
Vergriffenes Buch, derzeit bei uns nicht verfügbar.
(*)
Gordon J. Kearly:
Neutron Applications in Materials for Energy - neues Buch

ISBN: 9783319066554

[ED: Buch], [PU: Springer-Verlag GmbH], Neuware - Neutron Applications in Materials for Energy collects results and conclusions of recent neutron-based investigations of materials that are important in the development of sustainable energy. Chapters are authored by leading scientists with hands-on experience in the field, providing overviews, recent highlights, and case-studies to illustrate the applicability of one or more neutron-based techniques of analysis. The theme follows energy production, storage, and use, but each chapter, or section, can also be read independently, with basic theory and instrumentation for neutron scattering being outlined in the introductory chapter. Whilst neutron scattering is extensively used to understand properties of condensed matter, neutron techniques are exceptionally-well suited to studying how the transport and binding of energy and charge-carrying molecules and ions are related to their dynamics and the material's crystal structure. These studies extend to in situ and in operando in some cases. The species of interest in leading energy-technologies include Hsub2/sub, Hsup+/sup, and Lisup+/sup which have particularly favourable neutron-scattering properties that render these techniques of analysis ideal for such studies and consequently, neutron-based analysis is common-place for hydrogen storage, fuel-cell, catalysis, and battery materials. Similar research into the functionality of solar cell, nuclear, and COsub2/sub capture/storage materials rely on other unique aspects of neutron scattering and again show how structure and dynamics provide an understanding of the material stability and the binding and mobility of species of interest within these materials. Scientists and students looking for methods to help them understand the atomic-level mechanisms and behaviour underpinning the per, [SC: 0.00], Neuware, gewerbliches Angebot, FixedPrice, [GW: 582g]

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Details zum Buch
Neutron Applications in Materials for Energy
Autor:

Gordon J. Kearley (Editor), Vanessa K. Peterson (Editor)

Titel:

Neutron Applications in Materials for Energy

ISBN-Nummer:

9783319066554

Detailangaben zum Buch - Neutron Applications in Materials for Energy


EAN (ISBN-13): 9783319066554
ISBN (ISBN-10): 3319066552
Gebundene Ausgabe
Erscheinungsjahr: 2015
Herausgeber: Springer International Publishing

Buch in der Datenbank seit 10.10.2014 07:00:08
Buch zuletzt gefunden am 08.10.2016 02:20:42
ISBN/EAN: 9783319066554

ISBN - alternative Schreibweisen:
3-319-06655-2, 978-3-319-06655-4

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