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Discovering superconductivity = an i...
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Ireson, Gren.
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Discovering superconductivity = an investigative approach /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Discovering superconductivity/ Gren Ireson.
其他題名:
an investigative approach /
作者:
Ireson, Gren.
出版者:
Chichester, West Sussex :Wiley, : 2012.,
面頁冊數:
1 online resource (xxii, 160 p.) :col. ill.
內容註:
Section I: Introduction. Introduction -- Resistivity and Conduction in Metals -- A Brief History of Superconductivity -- Section II: Superconductivity. Superconductivity -- An Explanation of Superconductivity? -- The Meissner6Ochsenfeld Effect -- Diamagnetic Effects -- Persistence of Current -- Type I and Type II Superconductors -- Flux Pinning -- Section III: Superconducting Materials. Superconducting Materials -- Low-Temperature Superconductors -- Organic Superconductors -- High-Temperature Superconductors -- Section IV: Applications. Applications -- Superconducting Wire -- Medical Imaging -- CERN and the LHC -- Maglev Trains -- Appendices. Appendix A: The BCS Theory -- Appendix B: Flux Penetration -- Appendix C: The Josephson Junction and the SQUID -- Appendix D: MRI -- Appendix E: A Note on Superfluidity -- Appendix F: A Note on Safety.
標題:
Superconductivity - Study and teaching (Higher) -
電子資源:
http://onlinelibrary.wiley.com/book/10.1002/9781118343180
ISBN:
9781118343197 (electronic bk.)
Discovering superconductivity = an investigative approach /
Ireson, Gren.
Discovering superconductivity
an investigative approach /[electronic resource] :Gren Ireson. - Chichester, West Sussex :Wiley,2012. - 1 online resource (xxii, 160 p.) :col. ill.
Section I: Introduction. Introduction -- Resistivity and Conduction in Metals -- A Brief History of Superconductivity -- Section II: Superconductivity. Superconductivity -- An Explanation of Superconductivity? -- The Meissner6Ochsenfeld Effect -- Diamagnetic Effects -- Persistence of Current -- Type I and Type II Superconductors -- Flux Pinning -- Section III: Superconducting Materials. Superconducting Materials -- Low-Temperature Superconductors -- Organic Superconductors -- High-Temperature Superconductors -- Section IV: Applications. Applications -- Superconducting Wire -- Medical Imaging -- CERN and the LHC -- Maglev Trains -- Appendices. Appendix A: The BCS Theory -- Appendix B: Flux Penetration -- Appendix C: The Josephson Junction and the SQUID -- Appendix D: MRI -- Appendix E: A Note on Superfluidity -- Appendix F: A Note on Safety.
"The highly-illustrated text will serve as excellent introduction for students, with and without a physics background, to superconductivity. With a strong practical, experimental emphasis, it will provide readers with an overview of the topic preparing them for more advanced texts used in more advanced undergraduate and post-graduate courses. The book will feature a series of practical, investigative, activities which can be used as tutor demonstrations or, more usefully, as student lab' exercises. All of the activities have been designed and tested by the author and colleagues and are designed to be as low cost as possible in order to promote whole class use. Contents: 1. Introduction Resistivity and Conduction in metals History of Superconductivity2. Superconductivity An explanation of superconductivity The Meissner-Ochsenfeld Effect Diamagnetic Effects Persistence of current Type I and Type II Superconductors Flux Pinning3. Superconducting Materials Low Temperature Superconductors Organic Superconductors High Temperature Superconductors4. Applications Medical Imaging CERN Maglev TrainsPractical Activities - will be integrated into the text; a-f in section 2 and f and g in section 4 a. Diamagnetism 1: pyrolitic graphite b. Diamagnetism 2: Bismuth c. Diamagnetism 3: Meissner-Ochsenfeld Effect d. Transition Temperature e. Persistence of Current f. Flux Pinning g. Maglev Train Model"--
ISBN: 9781118343197 (electronic bk.)
LCCN: 2012022784Subjects--Topical Terms:
1968476
Superconductivity
--Study and teaching (Higher)
LC Class. No.: QC611.96 / .I74 2012
Dewey Class. No.: 537.6/23076
Discovering superconductivity = an investigative approach /
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Section I: Introduction. Introduction -- Resistivity and Conduction in Metals -- A Brief History of Superconductivity -- Section II: Superconductivity. Superconductivity -- An Explanation of Superconductivity? -- The Meissner6Ochsenfeld Effect -- Diamagnetic Effects -- Persistence of Current -- Type I and Type II Superconductors -- Flux Pinning -- Section III: Superconducting Materials. Superconducting Materials -- Low-Temperature Superconductors -- Organic Superconductors -- High-Temperature Superconductors -- Section IV: Applications. Applications -- Superconducting Wire -- Medical Imaging -- CERN and the LHC -- Maglev Trains -- Appendices. Appendix A: The BCS Theory -- Appendix B: Flux Penetration -- Appendix C: The Josephson Junction and the SQUID -- Appendix D: MRI -- Appendix E: A Note on Superfluidity -- Appendix F: A Note on Safety.
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"The highly-illustrated text will serve as excellent introduction for students, with and without a physics background, to superconductivity. With a strong practical, experimental emphasis, it will provide readers with an overview of the topic preparing them for more advanced texts used in more advanced undergraduate and post-graduate courses. The book will feature a series of practical, investigative, activities which can be used as tutor demonstrations or, more usefully, as student lab' exercises. All of the activities have been designed and tested by the author and colleagues and are designed to be as low cost as possible in order to promote whole class use. Contents: 1. Introduction Resistivity and Conduction in metals History of Superconductivity2. Superconductivity An explanation of superconductivity The Meissner-Ochsenfeld Effect Diamagnetic Effects Persistence of current Type I and Type II Superconductors Flux Pinning3. Superconducting Materials Low Temperature Superconductors Organic Superconductors High Temperature Superconductors4. Applications Medical Imaging CERN Maglev TrainsPractical Activities - will be integrated into the text; a-f in section 2 and f and g in section 4 a. Diamagnetism 1: pyrolitic graphite b. Diamagnetism 2: Bismuth c. Diamagnetism 3: Meissner-Ochsenfeld Effect d. Transition Temperature e. Persistence of Current f. Flux Pinning g. Maglev Train Model"--
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http://onlinelibrary.wiley.com/book/10.1002/9781118343180
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