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Title: Superconducting Magnets & Superconductivity
Sub-title: Research, Technology & Applications
Edited by: Henry Tovar, Jonathon Fortier
ISBN10-13: 1607410176 : 9781607410171
Illustrations: tables, charts & illus
Format: Hardback
Size: 180x260mm
Pages: 428
Weight: .918 Kg.
Published: Nova Science Publishers, Inc (US) - September   2009
List Price: 172.99 Pounds Sterling
Availability: In Stock   Qty Available: 1
Subjects: Semi-conductors & super-conductors
This book presents current areas of research in the field of superconductors and superconducting magnets. The ways in which these magnets produce stronger magnetic fields than ordinary iron-core electromagnets is explored. A review of the electronic structure of transition metal oxides and salts is also included in this book, specifically what concerns electron transfer, electron correlation, electron-nuclear coupling, and inter-metal interaction in cuprates. Combining a number of well-known theories of conventional superconductors, a general vortex theory for inhomogeneous superconductors is proposed. Ways to fabricate superconducting magnets in a faster, cheaper and more practical way is also presented.
Table of Contents:
Preface; Correlation Effects and Superconductivity In Cuprates. A Critical Account; Improved Flux Pinning Properties for RE123 Superconductors by Chemical Methods; Mechanical Characterization at Nanometric Scale of Ceramic Superconductor Composites; Understanding the Roles of Heavy Ion and Gamma-Irradiations On the Magnetic and Transport Properties of Superconductors; On the Melt Processing of Bi-2223 High-Tc Superconductor Challenges and Perspectives; Vortex of Inhomogeneous Superconductors; Fabrication of Pyrochlore-Based Buffer Layers For Coated Conductors Via Chemical Solution Deposition; Radiation Shielding Schemes and Advanced Fabrication Techniques for Superconducting Magnets; Thermal Stability Characteristics of High Temperature Superconducting Composites; Thermo-Mechanical Pumps For a Large Superconducting Magnet In Space Operated by Use of Superfluid Helium; Index.
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