By Delaunay Ch.
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Publishers. Schofield P. (1960) Phys. Rev. Lett ~ 239. F. (1965) Proc. Phys. Soc. (London) 86, 953 and 965. D. and Egelstaff PA (1984) Chem. Phys. ~ 167. A (1988) J. Non-Cryst. Solids 106, 100. A and Bodensteiner T. (1990) J. Phys. Cond. Mat. b 8427. U. (1964) Phys. Rev. 135, A603. A, Egelstaff PA, Mutka H. and Suck J-B. (1992) To be published. Dore (Physics Laboratory, University of Kent, Canterbury, CT2 7NR, UK) Abstract The diffraction pattern for coherently-scattered radiation (neutrons or X-rays) gives information on spatial correlations.
He observed disagreement (-5%) with the hydrodynamic predictions at pressures corresponding to y '" 2. 017 nm-l and several densities as shown in figure 1 (where only half the symmetrical function is plotted). They compared their results to equation 1 using the known hydrodynamic parameters, and these predictions are shown by the full lines in the figures. Thus the only adjustment was that of a normalizing scale factor. It was seen again that deviations are not observed until the side peak has become very broad: figure la is for y 16 while figure lc corresponds to y '" 2 and shows deviations of about 10% in magnitude.
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Theorie du mouvement de la lune by Delaunay Ch.