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Titlebook: Magnetic Properties of Rare Earth Metals; R. J. Elliott Book 1972 Springer Science+Business Media New York 1972 alloy.electrons.magnetic p

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書目名稱Magnetic Properties of Rare Earth Metals
編輯R. J. Elliott
視頻videohttp://file.papertrans.cn/622/621299/621299.mp4
圖書封面Titlebook: Magnetic Properties of Rare Earth Metals;  R. J. Elliott Book 1972 Springer Science+Business Media New York 1972 alloy.electrons.magnetic p
描述The rare earths have a unique place among the elements. Although very much alike chemically and in most phy~ical properties they each have very different and striking magnetic properties. The reason, of course, lies in their 4f electrons which determine the magnetic properties but have little effect on other chemical and physical behaviour. Although they are not rare, some indeed are among the more common heavy elements in the earth‘s crust, the difficulty of separation has meant that their intricate magnetic properties have only recently been unravelled. Now, however, the general pattern of their magnetism is well charted and the underlying theory is well understood. Both are thoroughly summarised in this book. It provides an excellent example of the kind of extensive synthesis which is possible with modem solid state physics. it represents only a high plateau in the ascent to complete understanding. But It will become clear to the reader that while the overall position is satisfactory there are many details still to be elucidated experimentally and much to be done theoretically before all the underlying forces are identified and estimated from a priori calculations. It is hoped t
出版日期Book 1972
關(guān)鍵詞alloy; electrons; magnetic properties; magnetism; metals; physics; rare earth metal; solid; solid state phys
版次1
doihttps://doi.org/10.1007/978-1-4757-5691-3
isbn_softcover978-1-4757-5693-7
isbn_ebook978-1-4757-5691-3
copyrightSpringer Science+Business Media New York 1972
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Sam Legvoldcs. We consider dependent event types indexed by thematic roles and illustrate how, in the presence of refined event types, subtyping plays an essential role in semantic interpretations. We consider two extensions with dependent event types: first, the extension of Church’s simple type theory as emp
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Introduction,IIA elements of the periodic table like yttrium (Y). This arises of course from the fact that the 4. shell of electrons is being filled at this point in the periodic table, while the number of outer valence electrons remains unchanged. The 4. electrons are closely bound inside the outer closed shell
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Phenomenological Theory of Magnetic Ordering: Importance of Interactions with the Crystal Lattice,lly understood in terms of a very simple physical picture. The key element of this picture is that one makes a sharp distinction between localized, magnetic, 4. electrons and outer-shell conduction electrons; and one takes the magnetic system for these metals as a lattice of localized tripositive ra
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Magnetic Structures of Rare Earth Metals and Alloys,in the last ten years from neutron diffraction experiments. Complementary structural data have been provided by the results of classical magnetizaton experiments. A detailed survey of such data is given in Chapter 4. Ideally, both techniques should be, and indeed have been, used to obtain the maximu
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Bulk Magnetic Properties,he material to the microscopic interactions discussed in other chapters of this volume. The study of bulk features complements atomic scale experiments such as neutron diffraction, M?ssbauer and other resonance studies and is often required as a basic aid in their interpretation. In the areas of dir
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