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Elektronenstructuur. --- Fullerenen. --- Fullerenes. --- Fullerenes. --- Intercalatieverbindingen. --- Nanostructuren. --- Spectrometrie. --- Vibratiespectra.
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This book provides readers with a comprehensive overview of the science of superconducting materials. It serves as a fundamental information source on the actual techniques and methodologies involved in superconducting materials growth, characterization and processing. This book includes coverage of several categories of medium and high-temperature superconducting materials: cuprate oxides, borides, and iron-based chalcogenides and pnictides. Provides a single-source reference on superconducting materials growth, characterization and processing; Bridges the gap between materials science and applications of superconductors; Discusses several categories of superconducting materials such as cuprate oxides, borides, and iron-based chalcogenides and pnictides; Covers synthesis, characterization, and processing of superconducting materials, as well as the nanoengineering approach to tailor the properties of the used materials at the nanoscale level.
Superconductivity. --- Magnetism. --- Nanotechnology. --- Materials Engineering. --- Magnetism, Magnetic Materials. --- Molecular technology --- Nanoscale technology --- High technology --- Mathematical physics --- Physics --- Electricity --- Magnetics --- Engineering—Materials. --- Magnetic materials. --- Materials
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Electromagnetism. Ferromagnetism --- Materials sciences --- Electrical engineering --- materiaalkennis --- nanotechniek --- magnetisme
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This book provides readers with a comprehensive overview of the science of superconducting materials. It serves as a fundamental information source on the actual techniques and methodologies involved in superconducting materials growth, characterization and processing. This book includes coverage of several categories of medium and high-temperature superconducting materials: cuprate oxides, borides, and iron-based chalcogenides and pnictides. Provides a single-source reference on superconducting materials growth, characterization and processing; Bridges the gap between materials science and applications of superconductors; Discusses several categories of superconducting materials such as cuprate oxides, borides, and iron-based chalcogenides and pnictides; Covers synthesis, characterization, and processing of superconducting materials, as well as the nanoengineering approach to tailor the properties of the used materials at the nanoscale level.
Electromagnetism. Ferromagnetism --- Materials sciences --- Electrical engineering --- materiaalkennis --- nanotechniek --- magnetisme
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