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Part of the book series: NATO ASI Series ((NSSE,volume 292))

Abstract

It is shown that the electrical resistance of any finite physical system is always greater than zero.

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References

  1. Mannhart J., (1994) High-Tc Superconductors Tailored at the Nanometer Scale, Proc. Roy. Soc., in press.

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  2. Mannhart J., (1992) Critical Currents in High-Tc Superconductors, in “Physics of High-Temperature Superconductors” by S. Maekawa and M. Sato (eds.), Springer Series in Solid-State Sciences 106, 367–393.

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  3. Huse, D.A., Fisher, M.P.A., and Fisher, D.S. (1992) Are Superconductors Really Superconducting?, Nature 358, 553–559.

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  4. Feigel’man, M.V., Geshkenbein, V.B., Larkin, A.I., and Vinokur, V.M., (1989) Theory of Collective Flux Creep, Phys. Rev. Lett. 63, 2303–2306.

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  5. See for example: “Applied Superconductivity,” H.C. Freyhardt (ed.), Proc. 1st Euro. Conf. Appl. Superconductivity, Oct. 4–9, 1993, Göttingen, Germany (DGM Informationsgesellschaft Verlag, Oberursel, 1993).

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© 1995 Springer Science+Business Media Dordrecht

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Mannhart, J. (1995). The Limit of Resistance. In: Welland, M.E., Gimzewski, J.K. (eds) Ultimate Limits of Fabrication and Measurement. NATO ASI Series, vol 292. Springer, Dordrecht. https://doi.org/10.1007/978-94-011-0041-0_34

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  • DOI: https://doi.org/10.1007/978-94-011-0041-0_34

  • Publisher Name: Springer, Dordrecht

  • Print ISBN: 978-94-010-4023-5

  • Online ISBN: 978-94-011-0041-0

  • eBook Packages: Springer Book Archive

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