Description
Handbook of Magnetic Materials
Handbook of Magnetic Materials Series
Coordinator: Brück Ekkes H.
Language: EnglishSubject for Handbook of Magnetic Materials:
Keywords
Antiferromagnets; Atomic magnetic moments; Co-based alloys; Compensation temperature; Conventional and inverse magnetocaloric effects; Fe-based alloys; Ferrimagnets; Ferromagnetic and metamagnetic Heusler-type shape memory alloys; Ferromagnets; Heat capacity; Interstitial intermetallic compounds; Landau-type theory of inverse and conventional magnetocaloric effects; Magnetic anisotropy; Magnetic field-induced transformation and adiabatic temperature change; Magnetic skyrmions; Magnetic structures; Magnetic sublattices; Magnetocalorics; Magnetostructural transformation; Permanent magnets; Rare-earth transition-metal compounds; Ternary magnetic alloys; Transition metal compounds
238 p. · 15x22.8 cm · Hardback
Description
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Handbook of Magnetic Materials, Volume 28, covers the expansion of magnetism over the past few decades and its applications in research, notably the magnetism of several classes of novel materials that share the presence of magnetic moments with truly ferromagnetic materials. The book is an ideal reference for scientists active in magnetism research, providing readers with novel trends and achievements in magnetism. Each article contains an extensive description given in graphical, as well as tabular form, with much emphasis placed on the discussion of the experimental material within the framework of physics, chemistry and materials science.
1. Fundamentals of magnetocaloric effect in magnetic shape memory alloys Volodymyr A. Chernenko, Victor A. L'vov, Eduard Cesari and Jose M. Barandiaran 2. Magnetically ordered compounds of transition elements with nonmetals Yvonne Andersson and Per Nordblad 3. Magnetic properties of ternary rare-earth transition-metal compounds Hong-Shuo LI and J. M. D. Coey
- Comprises topical review articles written by leading authorities
- Includes a variety of self-contained introductions to a given area in the field of magnetism without requiring recourse to the published literature
- Introduces given topics in the field of magnetism
- Describes novel trends and achievements in magnetism
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