By Professor G. S. Anagnostatos, Professor Dr. W. von Oertzen (eds.)
The topic of clusters - small aggregates of debris - is a subject of basic curiosity in either atomic and nuclear physics, and in addition in different fields resembling the quark-structures of baryons and cosmology. The interaction among atomic and nuclear physics is a very interesting one simply because many techniques are universal to either fields (quantal results, shells, geometric constructions, collective modes, fission, etc.). those complaints include a wealth of papers illustrating the interdisciplinary position of cluster physics. a few of them are reprinted from Zeitschrift für Physik A and D.
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The interplay among neutrinos and subject is an instance of the kind labeled as susceptible, and such interactions additionally permit many simple particle decays and the beta decay of the nuclei. the improvement of gauge theories has supplied the root for an entire and constant account of susceptible interactions, even as exhibiting their cohesion with electromagnetism.
Within the varied disposal innovations for high-level nuclear waste, corrosion of the steel obstacles and particularly the overpack/container is an immense factor. it really is relevant for functionality review to foretell the life of those boxes. within the lifetime prediction of steel limitations for the disposal of excessive point nuclear waste (HLW) or of spent gas, the presence of (reduced) sulphur species is an argument of growing to be significance, because the sulphur species are considering localised corrosion phenomena.
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Extra resources for Atomic and Nuclear Clusters: Proceedings of the Second International Conference at Santorini, Greece, June 28 – July 2, 1993
Phys. E. The concept of alpha-clustering has found many applications to nuclear reactions and nuclear structure. Calculations of the properties of nuclear matter indicate that condensation into alpha-particles occurs when the density is somewhat less than the central nuclear density, suggesting that alpha clustering is favoured in the nuclear surface. This provides an explanation of alpha-decay which is now quantitatively successful. The concept of the alpha-particle mean field is now widely used to unify the alpha-particle bound and unbound states found by alpha-transfer reactions, and the scattering of alpha-particles by nuclei.
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