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Titlebook: Resonances in Heavy Ion Reactions; Proceedings of the S Klaus A. Eberhard Conference proceedings 1982 Springer-Verlag Berlin Heidelberg 198

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K. Katori,K. Furuno,J. Schimizu,Y. Nagashima,S. Hanashima,M. Satot techniques employing sediment traps using a polyvinyl chloride pipe to capture suspended sediment and a handheld analyzer for X-ray fluorescent analysis and a digital scanner for image analysis were employed for sediment measurement and analysis. In laboratory experiments, the sediment catch perfo
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D. Konnerth,K. G. Bernhardt,K. A. Eberhard,R. Singh,A. Strzalkowski,W. Trautmann,W. Trombikweak, almost everywhere, when compared with the Coriolis acceleration and the pressure gradient. Friction rarely upsets the geostrophic balance to lowest order. Indeed, for many flows it is probably also true that the dissipative time scale is long compared to the advective time scale, i.e., that th
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W. Hoppe,E. Klauß,D. Sprengel,J. Drevermann,R. Isenbügel,H. v. Buttlar,N. Marquardt The radiant energy emitted by the sun may vary somewhat over very long periods, but a sensible idealization for most meteorological and oceanographic purposes consists in considering the solar source strength as fixed. Temporal variations in the incident radiation (and its spatial distribution) are
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S.T. Thorntonatics and dynamics as influenced by earth’s rotation. Its didactic value is based on elaborate treatment of basic principles, derived equations, exemplary solutions and their interpretation..Both starting graduate students and experienced scientists can closely follow the mathematical development of
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J. P. Schifferng blocks.Explains derived equations and re-interprets theirThis book develops a fundamental understanding of geophysical fluid dynamics based on a mathematical description of the flows of inhomogeneous fluids. It covers these topics:.1. development of the equations of motion for an inhomogeneous fl
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