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Superconductivity Research Developments
James R Tobin
Nova Science Publishers Inc (2007)
Kovakantinen kirja
189,40
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Joint Ventures, Mergers&Acquisitions,&Capital Flow
James B. Tobin; Lawrence R. Parker
Nova Science Publishers Inc (2009)
Kovakantinen kirja
198,10
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ostoskoriin kpl
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Neoclassical Music in America - Voices of Clarity and Restraint
R. James Tobin
Rowman & Littlefield (2014)
Kovakantinen kirja
130,40
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United State Department of Agricukture, Bulletin, No. 660 - Highway Cost Keeping, September 12, 1918
James J Tobin; A R Losh
Trieste Publishing (2018)
Pehmeäkantinen kirja
41,30
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Superconductivity Research Developments
189,40 €
Nova Science Publishers Inc
Sivumäärä: 248 sivua
Asu: Kovakantinen kirja
Julkaisuvuosi: 2007, 06.06.2007 (lisätietoa)
Kieli: Englanti
Superconductivity is a phenomenon occurring in certain materials at extremely low temperatures, characterized by exactly zero electrical resistance and the exclusion of the interior magnetic field (the Meissner effect). The electrical resistivity of a metallic conductor decreases gradually as the temperature is lowered. However, in ordinary conductors such as copper and silver, impurities and other defects impose a lower limit. Even near absolute zero a real sample of copper shows a non-zero resistance. The resistance of a superconductor, on the other hand, drops abruptly to zero when the material is cooled below its "critical temperature", typically 20 kelvin or less. An electrical current flowing in a loop of superconducting wire can persist indefinitely with no power source. Like ferromagnetism and atomic spectral lines, superconductivity is a quantum mechanical phenomenon. It cannot be understood simply as the idealisation of "perfect conductivity" in classical physics. Superconductivity occurs in a wide variety of materials, including simple elements like tin and aluminium, various metallic alloys and some heavily-doped semiconductors. Superconductivity does not occur in noble metals like gold and silver, nor in most ferromagnetic metals. In 1986 the discovery of a family of cuprate-perovskite ceramic materials known as high-temperature superconductors, with critical temperatures in excess of 90 kelvin, spurred renewed interest and research in superconductivity for several reasons. As a topic of pure research, these materials represented a new phenomenon not explained by the current theory. And, because the superconducting state persists up to more manageable temperatures, more commercial applications are feasible, especially if materials with even higher critical temperatures could be discovered. This new book presents leading research from around the world in this dynamic field.

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Tampere
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ISBN:
9781600218484
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