Microstructure and Properties of High Temperature Superconductors

This book PDF is perfect for those who love Technology & Engineering genre, written by I. A. Parinov and published by Springer Science & Business Media which was released on 06 September 2007 with total hardcover pages 586. You could read this book directly on your devices with pdf, epub and kindle format, check detail and related Microstructure and Properties of High Temperature Superconductors books below.

Microstructure and Properties of High Temperature Superconductors
Author : I. A. Parinov
File Size : 44,7 Mb
Publisher : Springer Science & Business Media
Language : English
Release Date : 06 September 2007
ISBN : 9783540709770
Pages : 586 pages
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Microstructure and Properties of High Temperature Superconductors by I. A. Parinov Book PDF Summary

This book provides a comprehensive presentation of all types of HTSC and includes a broad overview on HTSC computer simulations and modeling. Especial attention is devoted to the Bi-Sr-Ca-Cu-O and Y-Ba-Cu-O families that today are the most perspective for applications. The book includes a great number of illustrations and references. The monograph is addressed to students, post-graduate students and specialists, taking part in the development, preparation and researching of new materials.

Microstructure and Properties of High Temperature Superconductors

This book provides a comprehensive presentation of all types of HTSC and includes a broad overview on HTSC computer simulations and modeling. Especial attention is devoted to the Bi-Sr-Ca-Cu-O and Y-Ba-Cu-O families that today are the most perspective for applications. The book includes a great number of illustrations and references.

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Microstructure and Properties of High Temperature Superconducting Wires

Download or read online Microstructure and Properties of High Temperature Superconducting Wires written by Christopher J. Eastell, published by Unknown which was released on 1998. Get Microstructure and Properties of High Temperature Superconducting Wires Books now! Available in PDF, ePub and Kindle.

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Physical Properties of High Temperature Superconductors II

The second in a series of books devoted to the title subject, this one reviewing some major areas of activity not covered extensively in volume 1 (1988): structure, microstructure, thermodynamics, oxygen stoichiometry effects, nuclear magnetic and quadruple resonance, transport of charge and heat, photoemission, microwave properties, films, and the pairing state. Acidic

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Physical Properties of High Temperature Superconductors III

This volume brings the reader up to date on transport phenomena, including electrical and thermal conductivity and infrared properties. In addition, electron tunneling and the characteristics and applications of films are discussed; the preparation of the necessary samples has proceeded, and a sizeable body of reproducible data has become available.

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This book provides an extensive introduction to the microstructures and structural defects in high-temperature superconductors. It illustrates the application of modern experimental techniques as well as theoretical modeling tools in the study of these complex materials. The readers are given an overview of the structure-sensitive properties, such as transport properties,

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High Temperature Superconductivity 1

In contrast to research on the fundamental mechanisms of High-Temperature Superconductivity, in recent years we have seen enormous developments in the fabrication and application of High-Tc-superconductors. The two volumes of High Temperature Superconductivity provide a survey of the state of the technology and engineering applications of these materials. They comprise

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Electrodynamics of High Temperature Superconductors

These lectures are concerned with the application of high temperature superconductors to both passive and active high-frequency devices. The central issue addressed is the electrodynamics of granular superconductors, particularly where grain boundaries (either natural or synthetic) act as Josephson weak-links. Grain boundaries are responsible for residual dissipation and for unwanted

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