By C. A. Angell (auth.), Miguel Rubí, Conrado Pérez-Vicente (eds.)
For the 1st time this topic, together with many platforms of curiosity in Condensed topic Physics, is taken care of in an unified means. Complexity emerges as one of many major components dictating the collective behaviour of many platforms. Glassy structures represent probably the most fascinating fields of Condensed topic Physics for which additionally a large amount of experimental facts and industial functions were accumulated over the last 20 years. platforms displaying glassy behaviour are for instance: actual glasses, spin glasses, vortex flasses in superconductors, protein folding, and so forth. during this e-book the reader can see how the current theoretical figuring out of those topics is predicated on comparable options and techniques optimistically permitting to enhance a unifying constitution that underlies the actual mechanism.
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Additional resources for Complex Behaviour of Glassy Systems: Proceedings of the XIV Sitges Conference Sitges, Barcelona, Spain, 10–14 June 1996
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Acknowledgments This analysis relies crucially on Super-Kamiokande data. The author acknowledges the extensive help and cooperation of the Super-Kamiokande collaboration as well as the Kamioka Mining and Smelting Company. S. S. National Science Foundation. Appendix: Fitting Method To estimate and limit oscillation parameters, a \2 describing the shape of the SK zenith spectrum is extended to take into account the measured neutrino interaction rates by various experiments. " (due to hep neutrinos) in energy bin i and zenith-angle bin z are calculated.