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Ursula Carow Watamura

    Phase diagrams and physical properties of nonequilibrium alloys
    Quantum field theory and noncommutative geometry
    • This volume reflects the growing collaboration between mathematicians and theoretical physicists to treat the foundations of quantum field theory using the mathematical tools of q-deformed algebras and noncommutative differential geometry. A particular challenge is posed by gravity, which probably necessitates extension of these methods to geometries with minimum length and therefore quantization of space. This volume builds on the lectures and talks that have been given at a recent meeting on „Quantum Field Theory and Noncommutative Geometry.“ A considerable effort has been invested in making the contributions accessible to a wider community of readers - so this volume will not only benefit researchers in the field but also postgraduate students and scientists from related areas wishing to become better acquainted with this field.

      Quantum field theory and noncommutative geometry
    • In the present volume physical properties of ternary amorphous alloys are presented. For each of the 385 alloy systems the data, e.g., on density and structure, on thermal, mechanical, magnetic, electrical and optical properties, as well as on corrosion behavior, are provided in text, tables and figures. The data are published in three parts, the present 1st part covering 115 alloy systems from Ag-Al-Ca to Au-Pd-Si.

      Phase diagrams and physical properties of nonequilibrium alloys