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This book explores how to calculate thermodynamic magnetic properties. It will be of interest to advanced undergraduates, graduate students, and researchers specializing in solid state physics, magnetism, and superconductivity.
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This new book covers all known information about phase relations in ternary systems based on III-V semiconductors. It will be of interest to students studying materials science, solid state chemistry, and engineering, in addition to researchers, chemists, and physicists.
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This work details properties of graphene nanoribbons and covers computational methods and experimental tools. It studies geometric, electronic and magnetic properties of one-dimensional graphene nanoribbons using first-principles calculations.
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Examines lamellar (smectic) and columnar liquid crystals, which, in addition to orientational order,... Læs mere
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Methods and the latest results of experimental studies of the strength properties, polymorphism and metastable states of materials and substances with extremely short durations of shock-wave action are presented.
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Written by the leading names in this field, this book covers the technical properties, fabrication details, measurement results and applications of three-dimensional... Læs mere
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Develops the concepts of quantum theory for the solid state. This book covers three most significant topics in solid state physics: semiconductors, magnetism and superconductivity. It explains quantum mechanics techniques such as the variational method and perturbation theory.
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Theory of charged particle beam optics is basic to the design and working of charged particle beam devices from electron microscopes to accelerator machines.
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Presents a new physical and mathematical theory of irreversible deformations and ductile fracture of metals that acknowledges the continuous change in the structure of materials during deformation and the accumulation of deformation damage.