By M. R. Beasley (auth.), Prof. Dr. Koichi Kitazawa, Prof. Dr. Takehiko Ishiguro (eds.)
Intense fresh job within the box of high-temperature superconductivity either in Japan and within the remainder of the area used to be mentioned on the First overseas Symposium on Superconductivity held in Nagoya in August 1988. present study and improvement efforts by means of significant eastern businesses within the box of high-temperature superconductivity are suggested through prime corporation scientists, to provide an outline of the excessive point of job within the quarter. growth within the improvement of recent fabrics and up to date theoretical paintings is mentioned either from jap and overseas researchers. Contributions are equipped by way of subject, with such subject matters as crystal chemistry and digital constitution, processing and microstructure, tapes and thick motion pictures, wires and coils, and skinny movie processing and houses. destiny functions of superconductivity together with magnetic levitation automobiles, electronics in line with Josephson junctions, strength supply, power garage, send propulsion and magnetic resonance imaging are fairly stressed.
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Extra info for Advances in Superconductivity: Proceedings of the 1st International Symposium on Superconductivity (ISS ’88), August 28–31, 1988, Nagoya
How did we begin to know that it was really the electron-phonon interaction that produced superconductivity? The first critical step was the discovery of superconducting tunneling by Giaever. Giaever found that it was possible to tunnel from a normal metal through an insulating barrier into a superconductor. More importantly, as illustrated in Fig. 14, he found that the diffential conductance of the junction, dI/ dV, as a function of bias voltage had a particular shape, a shape we now know to be the thermally-smeared density of states in the superconductor.
Both Ontario Hydro and Hydro Quebec, the latter under contract to the Canadian Electrical Association, have been reexamining previous conclusions in the light of the recent developments. The objective of this paper is to present a preliminary perspective on possible applications and future developments of these materials. It should be mentioned that new advances are occurring regularly which could easily change the present assessment of applicability. SYSTEM CONSIDERATIONS Table I presents some relevant data on Canada's power systems.
Utilities in Canada are prepared to work with the research community to meet the challenges for exploiting the potential advantages of applying HTSC materials in the electric power system. ACKNOWLEDGEMENT The authors would like to thank members of the Ontario Hydro HTSC Task Force and the Hydro Quebec Research Division for their helpful discussions. Hydro Quebec acknowledges the financial contribution of the Canadian Electrical Association. REFERENCES  G. Bogner, "Large Scale Applications of Superconductivity", ed.
Advances in Superconductivity: Proceedings of the 1st International Symposium on Superconductivity (ISS ’88), August 28–31, 1988, Nagoya by M. R. Beasley (auth.), Prof. Dr. Koichi Kitazawa, Prof. Dr. Takehiko Ishiguro (eds.)