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Titlebook: Superconductivity; Basics and Applicati R.G. Sharma Book 20151st edition Springer International Publishing Switzerland 2015 High-Tc Superco

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楼主: Guffaw
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0933-033X delivered to scholars. A researcher and graduate student will enjoy reading the book to learn various aspects of magnet applications of superconductivity. The book provides the knowledge in the field of applied superconductivity in a comprehensive way..978-3-319-38487-0978-3-319-13713-1Series ISSN 0933-033X Series E-ISSN 2196-2812
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Book 20151st editionvity, type II superconductors and high-temperature cuprate superconductors. The main focus of the book is on the application to superconducting magnets to accelerators and fusion reactors and other applications of superconducting magnets. The thermal and electromagnetic stability criteria of the con
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The Phenomenon of Superconductivity,t the magnetic field is expelled out of the body of the superconductor. Field penetrates the material only a small distance, called London’s penetration depth, . which is of the order of 30–60 nm in metal superconductors. The transition to superconducting phase has been found to be of the second ord
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High Temperature Cuprate Superconductors and Later Discoveries,h the superconductivity community was reeling since 1973 when highest .. = 23 K was recorded in sputtered Nb.Ge films and .. went no further. Chu raised .. of this compound to 40 K by applying pressure and Cava to 36 K after substituting Sr at the La-site. A breakthrough came in early 1987 when Wu a
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Practical Superconductors,state. These instabilities lead to premature quench in superconducting magnets. To circumvent the problem, practical superconductors are produced in the form of fine filaments in high conductivity copper matrix. Most popular superconductor Nb–Ti had been produced this way by co-processing it with Cu
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Building Laboratory Superconducting Magnets,or physical property measurements. Broad parameters discussed are the design dimensions, homogeneity, current lead optimization, current supply, quench protection and persistent switches. Multifilamentary Cu/Nb–Ti conductor is the universal choice for building (multi-section) magnets producing field
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