Structure Of The Rare Earth Metals At Low Temperatures
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Magnesium Alloys Containing Rare Earth Metals
Author | : L.L. Rokhlin |
Publisher | : CRC Press |
Total Pages | : 256 |
Release | : 2003-02-20 |
Genre | : Science |
ISBN | : 1482265168 |
Magnesium-based alloys containing rare-earth metals are important structural materials, as they combine low density with high-strength properties. This makes them particularly attractive for industry, especially in cases where the low weight of constructions is critical, as in aircraft and space apparatus construction. One of the remarkable feature
Handbook on the Physics and Chemistry of Rare Earths
Author | : K.A. Gschneidner |
Publisher | : Elsevier |
Total Pages | : 656 |
Release | : 2000-12-15 |
Genre | : Science |
ISBN | : 0080544371 |
This volume of the Handbook is the first of a two-volume set of reviews devoted to the rare-earth-based high-temperature oxide superconductors (commonly known as hiTC superconductors). The history of hiTC superconductors is a few months short of being 14 years old when Bednorz and Müller published their results which showed that (La,BA)2CuO4 had a superconducting transition of ~30 K, which was about 7K higher than any other known superconducting material. Within a year the upper temperature limit was raised to nearly 100K with the discovery of an ~90K superconducting transition in YBa2Cu3O7-&dgr;. The announcement of a superconductor with a transition temperature higher than the boiling point of liquid nitrogen set-off a frenzy of research on trying to find other oxide hiTC superconductors. Within a few months the maximum superconducting transition reached 110 K (Bi2Sr2Ca2Cu3010, and then 122K (TlBa2Ca3Cu4O11. It took several years to push TC up another 11 K to 133 K with the discovery of superconductivity in HgBa2Ca2Cu3O8, which is still the record holder today.
The Structure of Rare-earth Metal Surfaces
Author | : Stephen David Barrett |
Publisher | : World Scientific |
Total Pages | : 260 |
Release | : 2001 |
Genre | : Science |
ISBN | : 1860941656 |
The Structure of Rare-Earth Metal Surfaces introduces the concepts of surface crystallography and surface-structure determination, outlines the principles of the most widely used experimental techniques and theoretical simulations, and reviews their application to the surfaces of rare-earth metals. In particular, the results of quantitative low-energy electron-diffraction experiments and multiple-scattering calculations axe covered in some depth. The book is aimed at science graduates with an interest in surface crystallography.
Extractive Metallurgy of Niobium
Author | : A.K. Suri |
Publisher | : Routledge |
Total Pages | : 272 |
Release | : 2017-11-13 |
Genre | : Science |
ISBN | : 1351448978 |
The growth and development witnessed today in modern science, engineering, and technology owes a heavy debt to the rare, refractory, and reactive metals group, of which niobium is a member. Extractive Metallurgy of Niobium presents a vivid account of the metal through its comprehensive discussions of properties and applications, resources and resource processing, chemical processing and compound preparation, metal extraction, and refining and consolidation. Typical flow sheets adopted in some leading niobium-producing countries for the beneficiation of various niobium sources are presented, and various chemical processes for producing pure forms of niobium intermediates such as chloride, fluoride, and oxide are discussed. The book also explains how to liberate the metal from its intermediates and describes the physico-chemical principles involved. It is an excellent reference for chemical metallurgists, hydrometallurgists, extraction and process metallurgists, and minerals processors. It is also valuable to a wide variety of scientists, engineers, technologists, and students interested in the topic.
Progress in Low Temperature Physics
Author | : |
Publisher | : Elsevier |
Total Pages | : 545 |
Release | : 2011-09-22 |
Genre | : Science |
ISBN | : 0080872980 |
Progress in Low Temperature Physics
Handbook on the Physics and Chemistry of Rare Earths
Author | : Karl A. Gschneidner |
Publisher | : Elsevier |
Total Pages | : 434 |
Release | : 2000-07-11 |
Genre | : Science |
ISBN | : 9780444503466 |
Even at the beginning of the new millenium the rare earths still remain, to a certain extent, a mystery. The chapters in this volume will help to unravel some of these. In the filling of the 4f electronic orbitals the lanthanides defy the elementary aufbau principle that underlies the periodic sequence of the elements, and the authors of the first chapter introduce the readers to the basic physics of the orbital collapse leading to that failure. Furthermore an explanation is offered in terms of double-well potentials. The phenomenon is illustrated using the valence transitions observed in some of the rare earth atoms, including Sm group metals and the higher oxides of cerium, praseodymium and terbium. In the second chapter the synthesis and structure of the many types of rare earth halides are described. They have been described as simple, complex, binary, ternary and multinuclear complex, and other categories needed to deal with the most studied of the rare earth compounds. The structure types are skillfully illustrated to show the elementary architecture of each type. In chapter three the authors discuss the science and applications of rare earth super ionic conductors as solid electrolytes. Conduction by oxygen and fluorine anions as well as hydrogen and other cations associated with these electrolytes is emphasized. They deal with extrinsic and intrinsic types together with their associated structures and structural types including structural defects. The chapter concludes with an outline of the many applications of solid electrolytes. Chapter four introduces the reader to the principles that underlie thermoluminescence and its application to dosimetry and provides detailed information on the R-activated phosphors that support dosimetry. This is a selective review of detailed literature based on the areas making most progress. The final chapter elaborates on the data gained by the studies and interpretation around the analytical separation of the individual rare earth elements utilizing chromatographic techniques. The authors describe the fundamental chemistry that underpins contemporary analytical separation techniques for lanthanide separation and analysis. This is done after a description of the rich assortment of separation methods in use has been introduced.
The Specific Heat Of Matter At Low Temperatures
Author | : Ahmet Tari |
Publisher | : World Scientific |
Total Pages | : 360 |
Release | : 2003-08-12 |
Genre | : Science |
ISBN | : 1783261293 |
Recent discoveries of new materials and improvements in calorimetric techniques have given new impetus to the subject of specific heat. Nevertheless, there is a serious lack of literature on the subject. This invaluable book, which goes some way towards remedying that, is concerned mainly with the specific heat of matter at ordinary temperatures. It discusses the principles that underlie the theory of specific heat and considers a number of theoretical models in some detail. The subject matter ranges from traditional materials to those recently discovered — heavy fermion compounds, high temperature superconductors, spin glasses and so on — and includes a large number of figures, tables and references. The book will be particularly useful for advanced undergraduate and postgraduate students as well as academics and researchers./a
The Magnetic and Electron Structures of Transition Metals and Alloys
Author | : V. G. Veselago |
Publisher | : Nova Publishers |
Total Pages | : 228 |
Release | : 1988 |
Genre | : Science |
ISBN | : 9780941743143 |
Handbook of Crystal Structures and Magnetic Properties of Rare Earth Intermetallics
Author | : Andrej Szytula |
Publisher | : CRC Press |
Total Pages | : 289 |
Release | : 2020-07-09 |
Genre | : Science |
ISBN | : 0429612834 |
Rare-earth intermetallics, also known as lanthanide elements, play an important role in the study of magnetic materials and the development of semi- and super-conducting materials. This handbook provides an up-to-date compilation of crystallographic, physical, and magnetic data on rare-earth intermetallic compounds. Over 20 different structure types are described in detail with an emphasis on how crystal structure can affect magnetic properties. Theoretical models for magnetic interactions are described as well as the impact of crystal electric fields on transport properties, magneto crystalline anistropy and hyperfine interactions. This book provides materials scientists, engineers and physicists with all the critical information needed to use rare-earth intermetallics effectively in the development of new materials.