Quasicrystals :: types, systems, and techniques /
Gespeichert in:
Weitere Verfasser: | |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
New York :
Nova Science Publishers, Inc.,
[2011]
|
Schriftenreihe: | Materials science and technologies series.
Physics research and technology. |
Schlagworte: | |
Online-Zugang: | Volltext |
Beschreibung: | 1 online resource. |
Bibliographie: | Includes bibliographical references and index. |
ISBN: | 9781617612305 1617612308 |
Internformat
MARC
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505 | 0 | |a QUASICRYSTALS: TYPES, SYSTEMS, AND TECHNIQUES -- QUASICRYSTALS: TYPES, SYSTEMS, AND TECHNIQUES -- Contents -- Preface -- Dominance of Magnetic Scattering in Al70Pd20+Xmn10-X (X = 0, 1 and 2), Al70Pd20Mn8(TM)2 (TM=Fe, Cr, Co and Ni) and Al70-Xbx Pd20Mn10 (X = 0, 0.5,1, 2 and 4) Stable Icosahedral Quasicrystals -- Abstract -- 1. Introduction -- 1.1. Phase Diagram -- 1.2. Magnetic Properties -- 1.3. Electrical Conductivity -- 2. Synthesis and Characterization Details -- 3. Part I -- 3.1. Results and Discussions -- 3.1.1. Structural Characterization | |
505 | 8 | |a 3.1.2. Magnetic Characterization3.1.3. Conductivity Vs. Temperature (( -T) -- 3.1.3.1. ( -T Minimum -- 3.1.3.2. ( -T Maximum -- 3.1.3.3. Possible Origin of Observed ( -T Behavior -- 3.1.4. Magneto-Resistance -- 4. Part II -- 4.1. Results and Discussion -- 4.1.1. Structural Characterization -- 4.1.2. Magnetic Characterization -- 4.1.3. Conductivity Vs. Temperature -- 4.1.3.1. (( -T) Minimum -- 4.1.3.2. ( -T Maximum -- 4.1.3.3. Possible Origin of ( -T Behavior -- 4.1.4. Magneto-Resistance -- 5. Part III -- 5.1. Results and Discussion | |
505 | 8 | |a 5.1.1. Structural Characterization5.1.2. Magnetic Characterization -- 5.1.3. Conductivity Vs. Temperature -- 5.1.4. Magneto-Resistance Measurement -- Conclusions -- Annexure I -- References -- Logarithmic Periodicity � Properties, Tests and Uncertainties -- Abstract -- 1. Introduction -- 2. Model -- 3. Properties -- 3.1. Observations -- 3.1.1 -- 3.1.2. -- 3.1.3. -- 3.1.4. -- 3.1.5. -- 3.1.6. -- 3.2. Consequences -- 3.2.1. Indexation -- 3.2.2. The Compromise Spacing Effect -- 3.2.3 Dimensions -- 3.2.4. Enthalpy, the Driving Force | |
505 | 8 | |a 3.2.5. Angular Filtering3.2.6. Double Diffraction -- 3.2.7. Electronic States -- 4. Evidence -- 4.1. Simplicity, Symmetry, and Sharpness -- 4.2. Ranking of Beam Intensities and Calculated �Structure Factors� -- 4.2.1. Logarithmic Periodicity -- 4.2.2. Double Diffraction in CBED -- 4.2.3. Bragg Anomaly in the 2-Fold Pattern -- 4.2.4. 2-Fold Pattern Orientation Anomaly -- 4.3. Diffraction Due to Clusters -- 4.4. HREM Images of Clusters and Superclusters -- 4.4.1. �Structure Factor� For The HREM Model Structure | |
505 | 8 | |a 4.4.2. The 3-Fold Cluster Center in the 5-Fold Pattern5. Uncertainties -- 5.1. Extension -- 5.2. Defects -- 5.2.1. The Aperiodic Cluster �Hole� -- 5.2.2. The �Hole� in Supercluster Order 1 -- 5.2.3. The �Hole� in Superclusters of Higher Order -- 5.2.4. Glassy Structures -- 5.3. Limitation to Binary Systems -- 5.4. Quasicrystal Growth Mechanisms -- Conclusion -- Appendix 1. Quasi Bragg Diffraction -- Appendix 2. Lemmas, Proofs and Corollaries -- Reference -- Vacancies in Quasicrystals -- Abstract -- 1. Introduction | |
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Datensatz im Suchindex
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author_facet | Puckermann, Beth E. |
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callnumber-first | Q - Science |
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contents | QUASICRYSTALS: TYPES, SYSTEMS, AND TECHNIQUES -- QUASICRYSTALS: TYPES, SYSTEMS, AND TECHNIQUES -- Contents -- Preface -- Dominance of Magnetic Scattering in Al70Pd20+Xmn10-X (X = 0, 1 and 2), Al70Pd20Mn8(TM)2 (TM=Fe, Cr, Co and Ni) and Al70-Xbx Pd20Mn10 (X = 0, 0.5,1, 2 and 4) Stable Icosahedral Quasicrystals -- Abstract -- 1. Introduction -- 1.1. Phase Diagram -- 1.2. Magnetic Properties -- 1.3. Electrical Conductivity -- 2. Synthesis and Characterization Details -- 3. Part I -- 3.1. Results and Discussions -- 3.1.1. Structural Characterization 3.1.2. Magnetic Characterization3.1.3. Conductivity Vs. Temperature (( -T) -- 3.1.3.1. ( -T Minimum -- 3.1.3.2. ( -T Maximum -- 3.1.3.3. Possible Origin of Observed ( -T Behavior -- 3.1.4. Magneto-Resistance -- 4. Part II -- 4.1. Results and Discussion -- 4.1.1. Structural Characterization -- 4.1.2. Magnetic Characterization -- 4.1.3. Conductivity Vs. Temperature -- 4.1.3.1. (( -T) Minimum -- 4.1.3.2. ( -T Maximum -- 4.1.3.3. Possible Origin of ( -T Behavior -- 4.1.4. Magneto-Resistance -- 5. Part III -- 5.1. Results and Discussion 5.1.1. Structural Characterization5.1.2. Magnetic Characterization -- 5.1.3. Conductivity Vs. Temperature -- 5.1.4. Magneto-Resistance Measurement -- Conclusions -- Annexure I -- References -- Logarithmic Periodicity � Properties, Tests and Uncertainties -- Abstract -- 1. Introduction -- 2. Model -- 3. Properties -- 3.1. Observations -- 3.1.1 -- 3.1.2. -- 3.1.3. -- 3.1.4. -- 3.1.5. -- 3.1.6. -- 3.2. Consequences -- 3.2.1. Indexation -- 3.2.2. The Compromise Spacing Effect -- 3.2.3 Dimensions -- 3.2.4. Enthalpy, the Driving Force 3.2.5. Angular Filtering3.2.6. Double Diffraction -- 3.2.7. Electronic States -- 4. Evidence -- 4.1. Simplicity, Symmetry, and Sharpness -- 4.2. Ranking of Beam Intensities and Calculated �Structure Factors� -- 4.2.1. Logarithmic Periodicity -- 4.2.2. Double Diffraction in CBED -- 4.2.3. Bragg Anomaly in the 2-Fold Pattern -- 4.2.4. 2-Fold Pattern Orientation Anomaly -- 4.3. Diffraction Due to Clusters -- 4.4. HREM Images of Clusters and Superclusters -- 4.4.1. �Structure Factor� For The HREM Model Structure 4.4.2. The 3-Fold Cluster Center in the 5-Fold Pattern5. Uncertainties -- 5.1. Extension -- 5.2. Defects -- 5.2.1. The Aperiodic Cluster �Hole� -- 5.2.2. The �Hole� in Supercluster Order 1 -- 5.2.3. The �Hole� in Superclusters of Higher Order -- 5.2.4. Glassy Structures -- 5.3. Limitation to Binary Systems -- 5.4. Quasicrystal Growth Mechanisms -- Conclusion -- Appendix 1. Quasi Bragg Diffraction -- Appendix 2. Lemmas, Proofs and Corollaries -- Reference -- Vacancies in Quasicrystals -- Abstract -- 1. Introduction |
ctrlnum | (OCoLC)716068070 |
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dewey-ones | 530 - Physics |
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dewey-search | 530.4/1 |
dewey-sort | 3530.4 11 |
dewey-tens | 530 - Physics |
discipline | Physik |
format | Electronic eBook |
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series | Materials science and technologies series. Physics research and technology. |
series2 | Materials science and technologies Physics research and technology |
spelling | Quasicrystals : types, systems, and techniques / Beth E. Puckermann, editor. New York : Nova Science Publishers, Inc., [2011] 1 online resource. text txt rdacontent computer c rdamedia online resource cr rdacarrier Materials science and technologies Physics research and technology Includes bibliographical references and index. Description based on print version record. QUASICRYSTALS: TYPES, SYSTEMS, AND TECHNIQUES -- QUASICRYSTALS: TYPES, SYSTEMS, AND TECHNIQUES -- Contents -- Preface -- Dominance of Magnetic Scattering in Al70Pd20+Xmn10-X (X = 0, 1 and 2), Al70Pd20Mn8(TM)2 (TM=Fe, Cr, Co and Ni) and Al70-Xbx Pd20Mn10 (X = 0, 0.5,1, 2 and 4) Stable Icosahedral Quasicrystals -- Abstract -- 1. Introduction -- 1.1. Phase Diagram -- 1.2. Magnetic Properties -- 1.3. Electrical Conductivity -- 2. Synthesis and Characterization Details -- 3. Part I -- 3.1. Results and Discussions -- 3.1.1. Structural Characterization 3.1.2. Magnetic Characterization3.1.3. Conductivity Vs. Temperature (( -T) -- 3.1.3.1. ( -T Minimum -- 3.1.3.2. ( -T Maximum -- 3.1.3.3. Possible Origin of Observed ( -T Behavior -- 3.1.4. Magneto-Resistance -- 4. Part II -- 4.1. Results and Discussion -- 4.1.1. Structural Characterization -- 4.1.2. Magnetic Characterization -- 4.1.3. Conductivity Vs. Temperature -- 4.1.3.1. (( -T) Minimum -- 4.1.3.2. ( -T Maximum -- 4.1.3.3. Possible Origin of ( -T Behavior -- 4.1.4. Magneto-Resistance -- 5. Part III -- 5.1. Results and Discussion 5.1.1. Structural Characterization5.1.2. Magnetic Characterization -- 5.1.3. Conductivity Vs. Temperature -- 5.1.4. Magneto-Resistance Measurement -- Conclusions -- Annexure I -- References -- Logarithmic Periodicity � Properties, Tests and Uncertainties -- Abstract -- 1. Introduction -- 2. Model -- 3. Properties -- 3.1. Observations -- 3.1.1 -- 3.1.2. -- 3.1.3. -- 3.1.4. -- 3.1.5. -- 3.1.6. -- 3.2. Consequences -- 3.2.1. Indexation -- 3.2.2. The Compromise Spacing Effect -- 3.2.3 Dimensions -- 3.2.4. Enthalpy, the Driving Force 3.2.5. Angular Filtering3.2.6. Double Diffraction -- 3.2.7. Electronic States -- 4. Evidence -- 4.1. Simplicity, Symmetry, and Sharpness -- 4.2. Ranking of Beam Intensities and Calculated �Structure Factors� -- 4.2.1. Logarithmic Periodicity -- 4.2.2. Double Diffraction in CBED -- 4.2.3. Bragg Anomaly in the 2-Fold Pattern -- 4.2.4. 2-Fold Pattern Orientation Anomaly -- 4.3. Diffraction Due to Clusters -- 4.4. HREM Images of Clusters and Superclusters -- 4.4.1. �Structure Factor� For The HREM Model Structure 4.4.2. The 3-Fold Cluster Center in the 5-Fold Pattern5. Uncertainties -- 5.1. Extension -- 5.2. Defects -- 5.2.1. The Aperiodic Cluster �Hole� -- 5.2.2. The �Hole� in Supercluster Order 1 -- 5.2.3. The �Hole� in Superclusters of Higher Order -- 5.2.4. Glassy Structures -- 5.3. Limitation to Binary Systems -- 5.4. Quasicrystal Growth Mechanisms -- Conclusion -- Appendix 1. Quasi Bragg Diffraction -- Appendix 2. Lemmas, Proofs and Corollaries -- Reference -- Vacancies in Quasicrystals -- Abstract -- 1. Introduction English. Quasicrystals. http://id.loc.gov/authorities/subjects/sh90003929 Quasicristaux. SCIENCE Physics Condensed Matter. bisacsh Quasicrystals fast Puckermann, Beth E., editor. Print version: Quasicrystals New York : Nova Science Publishers, c2011. 9781617611230 (hardcover) (DLC) 2010027150 Materials science and technologies series. http://id.loc.gov/authorities/names/no2009129021 Physics research and technology. http://id.loc.gov/authorities/names/no2011035503 FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=362399 Volltext |
spellingShingle | Quasicrystals : types, systems, and techniques / Materials science and technologies series. Physics research and technology. QUASICRYSTALS: TYPES, SYSTEMS, AND TECHNIQUES -- QUASICRYSTALS: TYPES, SYSTEMS, AND TECHNIQUES -- Contents -- Preface -- Dominance of Magnetic Scattering in Al70Pd20+Xmn10-X (X = 0, 1 and 2), Al70Pd20Mn8(TM)2 (TM=Fe, Cr, Co and Ni) and Al70-Xbx Pd20Mn10 (X = 0, 0.5,1, 2 and 4) Stable Icosahedral Quasicrystals -- Abstract -- 1. Introduction -- 1.1. Phase Diagram -- 1.2. Magnetic Properties -- 1.3. Electrical Conductivity -- 2. Synthesis and Characterization Details -- 3. Part I -- 3.1. Results and Discussions -- 3.1.1. Structural Characterization 3.1.2. Magnetic Characterization3.1.3. Conductivity Vs. Temperature (( -T) -- 3.1.3.1. ( -T Minimum -- 3.1.3.2. ( -T Maximum -- 3.1.3.3. Possible Origin of Observed ( -T Behavior -- 3.1.4. Magneto-Resistance -- 4. Part II -- 4.1. Results and Discussion -- 4.1.1. Structural Characterization -- 4.1.2. Magnetic Characterization -- 4.1.3. Conductivity Vs. Temperature -- 4.1.3.1. (( -T) Minimum -- 4.1.3.2. ( -T Maximum -- 4.1.3.3. Possible Origin of ( -T Behavior -- 4.1.4. Magneto-Resistance -- 5. Part III -- 5.1. Results and Discussion 5.1.1. Structural Characterization5.1.2. Magnetic Characterization -- 5.1.3. Conductivity Vs. Temperature -- 5.1.4. Magneto-Resistance Measurement -- Conclusions -- Annexure I -- References -- Logarithmic Periodicity � Properties, Tests and Uncertainties -- Abstract -- 1. Introduction -- 2. Model -- 3. Properties -- 3.1. Observations -- 3.1.1 -- 3.1.2. -- 3.1.3. -- 3.1.4. -- 3.1.5. -- 3.1.6. -- 3.2. Consequences -- 3.2.1. Indexation -- 3.2.2. The Compromise Spacing Effect -- 3.2.3 Dimensions -- 3.2.4. Enthalpy, the Driving Force 3.2.5. Angular Filtering3.2.6. Double Diffraction -- 3.2.7. Electronic States -- 4. Evidence -- 4.1. Simplicity, Symmetry, and Sharpness -- 4.2. Ranking of Beam Intensities and Calculated �Structure Factors� -- 4.2.1. Logarithmic Periodicity -- 4.2.2. Double Diffraction in CBED -- 4.2.3. Bragg Anomaly in the 2-Fold Pattern -- 4.2.4. 2-Fold Pattern Orientation Anomaly -- 4.3. Diffraction Due to Clusters -- 4.4. HREM Images of Clusters and Superclusters -- 4.4.1. �Structure Factor� For The HREM Model Structure 4.4.2. The 3-Fold Cluster Center in the 5-Fold Pattern5. Uncertainties -- 5.1. Extension -- 5.2. Defects -- 5.2.1. The Aperiodic Cluster �Hole� -- 5.2.2. The �Hole� in Supercluster Order 1 -- 5.2.3. The �Hole� in Superclusters of Higher Order -- 5.2.4. Glassy Structures -- 5.3. Limitation to Binary Systems -- 5.4. Quasicrystal Growth Mechanisms -- Conclusion -- Appendix 1. Quasi Bragg Diffraction -- Appendix 2. Lemmas, Proofs and Corollaries -- Reference -- Vacancies in Quasicrystals -- Abstract -- 1. Introduction Quasicrystals. http://id.loc.gov/authorities/subjects/sh90003929 Quasicristaux. SCIENCE Physics Condensed Matter. bisacsh Quasicrystals fast |
subject_GND | http://id.loc.gov/authorities/subjects/sh90003929 |
title | Quasicrystals : types, systems, and techniques / |
title_auth | Quasicrystals : types, systems, and techniques / |
title_exact_search | Quasicrystals : types, systems, and techniques / |
title_full | Quasicrystals : types, systems, and techniques / Beth E. Puckermann, editor. |
title_fullStr | Quasicrystals : types, systems, and techniques / Beth E. Puckermann, editor. |
title_full_unstemmed | Quasicrystals : types, systems, and techniques / Beth E. Puckermann, editor. |
title_short | Quasicrystals : |
title_sort | quasicrystals types systems and techniques |
title_sub | types, systems, and techniques / |
topic | Quasicrystals. http://id.loc.gov/authorities/subjects/sh90003929 Quasicristaux. SCIENCE Physics Condensed Matter. bisacsh Quasicrystals fast |
topic_facet | Quasicrystals. Quasicristaux. SCIENCE Physics Condensed Matter. Quasicrystals |
url | https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=362399 |
work_keys_str_mv | AT puckermannbethe quasicrystalstypessystemsandtechniques |