New models for dislocation structure and motion are presented for nanocrystals, nucleation at grain boundaries, shocked crystals, interphase interfaces, quasicrystals, complex structures with non-planar dislocation cores, and colloidal crystals. A review of experimentally established main features of the magnetoplastic effect with their physical interpretation explains many diverse results of this type. The model has many potential applications for forming processes influenced by magnetic fields.
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Mª del Carmen Avendaño López received her doctoral degree in Pharmacy at the Complutense University of Madrid (UCM) in 1970. In 1986, she became Full Professor of Organic Chemistry at the Department of Organic and Pharmaceutical Chemistry of this university, being responsible for one of its research groups. Between 1993 and 2009, she was a member of the Scientific Advising Committee for the Profarma Program, organized by the Spanish Ministry for Industry to incentivize research activities at the pharmaceutical industry. She was appointed Vice-rector in charge of Postgraduate Degrees at the International University “Menéndez y Pelayo in 2005-2007. She participated in the development of the Spanish Society for Therapeutical Chemistry and has also been a member of several scientific international societies and assessment committees. Since 1999, she is a Fellow of the Spanish National Royal Academy of Pharmacy where she is in charge of all activities related to Medicinal Chemistry, with particular focus on the relevance of chemistry in drug discovery and development. She has co-authored several chapters in periodical series and encyclopedias, including “Comprehensive Heterocyclic Chemistry and “Science of Synthesis , and has edited and co-authored several Medicinal Chemistry textbooks, most notably “Introducción a la Química Farmacéutica , published by McGraw-Hill Interamericana in 1993 and 2001. In 2008, she co-authored with Dr. Menéndez the first edition of “Medicinal Chemistry of Anticancer Drugs“ for Elsevier. Her research activities, documented in about 200 publications and some patents in collaboration with the pharmaceutical industry, have dealt with the development of synthetic methodologies to obtain biologically active molecules, with particular focus on antitumor natural compounds.
New models for dislocation structure and motion are presented for nanocrystals, nucleation at grain boundaries, shocked crystals, interphase interfaces, quasicrystals, complex structures with non-planar dislocation cores, and colloidal crystals. A review of experimentally established main features of the magnetoplastic effect with their physical interpretation explains many diverse results of this type. The model has many potential applications for forming processes influenced by magnetic fields.
• Dislocation model for the magnetoplastic effect
• New mechanism for dislocation nucleation and motion in nanocrystals
• New models for the dislocation structure of interfaces between crystals with differing crystallographic structure
• A unified view of dislocations in quasicrystals, with a new model for dislocation motion
• A general model of dislocation behavior in crystals with non-planar dislocation cores
• Dislocation properties at high velocities
• Dislocations in colloidal crystals
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Hardback. Etat : New. New models for dislocation structure and motion are presented for nanocrystals, nucleation at grain boundaries, shocked crystals, interphase interfaces, quasicrystals, complex structures with non-planar dislocation cores, and colloidal crystals. A review of experimentally established main features of the magnetoplastic effect with their physical interpretation explains many diverse results of this type. The model has many potential applications for forming processes influenced by magnetic fields. N° de réf. du vendeur LU-9780444531667
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Gebunden. Etat : New. Dislocation model for the magnetoplastic effect New mechanism for dislocation nucleation and motion in nanocrystals New models for the dislocation structure of interfaces between crystals with differing crystallographic structure. N° de réf. du vendeur 594686224
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Hardback. Etat : New. New models for dislocation structure and motion are presented for nanocrystals, nucleation at grain boundaries, shocked crystals, interphase interfaces, quasicrystals, complex structures with non-planar dislocation cores, and colloidal crystals. A review of experimentally established main features of the magnetoplastic effect with their physical interpretation explains many diverse results of this type. The model has many potential applications for forming processes influenced by magnetic fields. N° de réf. du vendeur LU-9780444531667
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