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Handbook of Magnetic Materials, Volume 11

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    eBay item number:265176920768
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    Item specifics

    Condition
    Good: A book that has been read but is in good condition. Very minimal damage to the cover including ...
    Subject Area
    Technology & Engineering, Science
    Book Title
    Handbook of Magnetic Materials
    Educational Level
    Adult & Further Education
    Level
    Technical, Advanced
    Subject
    Materials Science / General, Physics / Magnetism
    ISBN
    9780444829566
    Publication Year
    1998
    Series
    Handbook of Magnetic Materials Ser.
    Type
    Textbook
    Format
    Hardcover
    Language
    English
    Publication Name
    Handbook of Magnetic Materials
    Publisher
    Elsevier Science & Technology
    Item Weight
    52.8 Oz
    Number of Pages
    730 Pages

    About this product

    Product Identifiers

    Publisher
    Elsevier Science & Technology
    ISBN-10
    0444829563
    ISBN-13
    9780444829566
    eBay Product ID (ePID)
    229636

    Product Key Features

    Number of Pages
    730 Pages
    Publication Name
    Handbook of Magnetic Materials
    Language
    English
    Subject
    Materials Science / General, Physics / Magnetism
    Publication Year
    1998
    Type
    Textbook
    Subject Area
    Technology & Engineering, Science
    Series
    Handbook of Magnetic Materials Ser.
    Format
    Hardcover

    Dimensions

    Item Weight
    52.8 Oz

    Additional Product Features

    Intended Audience
    Scholarly & Professional
    Reviews
    This latest edition of the Handbook of Magnetic Materialslt;/i> presents a continuation of a fine balance between review articles of research on more basic properties of magnetic materials on applications oriented studies. ...The volume is unreservedly recommended to researchers in the field of magnetic materials. Magnetic and Electrical Separation, This latest edition of the Handbook of Magnetic Materials presents a continuation of a fine balance between review articles of research on more basic properties of magnetic materials on applications oriented studies. ...The volume is unreservedly recommended to researchers in the field of magnetic materials. Magnetic and Electrical Separation
    Dewey Edition
    21
    Series Volume Number
    Volume 11
    Illustrated
    Yes
    Volume Number
    Volume 11
    Dewey Decimal
    538.4
    Table Of Content
    Preface. Contents of Volumes 1-10. 1. Magnetism of ternary intermetallic compounds of uranium (V. Sechovský and L. Havela). 2. Magnetic recording hard disk thin film media (J.C. Lodder). 3. Magnetism of permanent magnet materials and related compounds as studied by NMR (Cz. Kapusta, P.C. Riedi, G.J. Tomka). 4. Crystal field effects in intermetallic compounds studied by inelastic neutron scattering (O. Moze). Author index. Subject index. Materials index.
    Synopsis
    Volume 11 of this prestigious series, as the preceding volumes, has a dual purpose. As a textbook it is intended to be of assistance to those who wish to be introduced to a given topic in the field of magnetism without the need to read the vast amount of literature published. As a work of reference it is intended for scientists active in magnetism research. In keeping with this dual purpose, Volume 11 of the Handbook is composed of topical review articles written by leading authorities. In each of these articles an extensive description is given in graphical as well as in tabular form, much emphasis being placed on the discussion of the experimental material in the framework of physics, chemistry and materials science. Chapter one focuses on the growing interest in intermetallic compounds based on uranium. Recent research activities have finally led to the crystallisation of new concepts in actinide magnetism which, together with the large amount of experimental work are reviewed in this chapter. The last few decades have witnessed quite an extraordinary development in magnetic recording technology. In the near future magnetic recording technology will have an enormous growth potential, one of it's main aims being the further reduction in the peripheral device sizes while maintaining an increase in capacity. Chapter two deals with the magnetism and materials aspects of hard disk media which are the most prominent type of mass storage today, due to their low cost, high speed and relatively high storage capacity. Magnets based on rare earth elements are unequalled with regard to coercivity and maximum energy production. Considerable progress has been made in the development of rare earth based permanent magnets which goes hand in hand with a better understanding of the physical properties and especially the magnetism of the underlying class of materials. Chapter three presents a survey of the physical principles involved with this technique and how these can be applied advantageously to the study of strongly ferromagnetic materials. The final chapter is devoted to inelastic neutron scattering when applied to study the crystal field interaction in lanthanide compounds. Included in this review is a description of how this technique is complementary to various other modern and conventional techniques.

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