| Referências: |
WANG, Y., Fundamental elements of applied superconductivity in electrical engineering. Singapore: Wiley, 2013.
POOLE Jr, C.; FARACH, H. A., CRESWICK, R. J., PROZOROV, R.. Superconductivity, 2nd Edition. San Diego: Academic Press, 2007.
TINKHAM, M. Introduction to Superconductivity, 2nd Edition (Dover Books on Phisics). Mineola: Dover, 2004;
KRABBES, G, FUCHS, G., CANDERS, W.-R., MAY, H. E PALKA, R.. High Temperature Superconductors Bulk Materials. Darmsdat: Wiley, 2006.
KALSI, S. S., Applications of high temperature superconductors to electric power equipment. Singapore: Wiley, 2011.
SILBERGLITT, R., ETTEDGUI, E., HOVE, A. Strengthening the Grid: Effect of High-Temperature Superconducting Power Technologies on Reliability, Power Transfer Capacity, and Energy Use (Prepared for the Department of Energy). Santa Monica: RAND & Science and Technology Policy Institute, 2002.
BIBLIOGRAFIA COMPLEMENTAR
ROSE-INNES, A. C., RHODERICK, H.. Introduction to Superconductivity, Second Edition (International Series in Solid State Physics; V. 6). Oxford: Butterworth-Heinemann, 1978.
REITZ, J. R., MILFORD, F. J. e CHRISTY, R. W., Fundamentos da Teoria Eletromagnética, Editora Campus, Rio de Janeiro, 1982.
EKIN, J. W., Experimental Techniques: Cryostat Design, Material Properties and Superconductor Critical-Current Testing. New York: Oxford University Press, 2006.
VENTURA, G., RISEGARI, L., The Art of Cryogenics: Low-Temperature Experimental Techniques. Oxford: Elsevier, 2008.
OHANLON, J.F.. A users guide to vacuum technology 2nd edition, New York: John Wiley & Sons, 1989. |