Please use this identifier to cite or link to this item: http://hdl.handle.net/2122/4906
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dc.contributor.authorallBoschi, E.; Istituto Nazionale di Geofisica e Vulcanologiaen
dc.date.accessioned2009-02-19T09:40:26Zen
dc.date.available2009-02-19T09:40:26Zen
dc.date.issued1973-10-24en
dc.identifier.urihttp://hdl.handle.net/2122/4906en
dc.description.abstractThe asymptotic behaviour of the inclting curves for substances with closepacked structures is analysed by means of Monte Carlo caIculations on model systems of hard spheres. The Kraut--Kennedy melting law does not show the correct asymptotic behaviour. On this basis some recent results on the physics of the Earth's core are rejected.en
dc.language.isoEnglishen
dc.relation.ispartofGeophys. J. R, astr. Soc.en
dc.relation.ispartofseries37 (1974)en
dc.subjectpressuresen
dc.titleOn the Melting Curve at High Pressuresen
dc.typearticleen
dc.description.statusPublisheden
dc.description.pagenumber45-50.en
dc.subject.INGV04. Solid Earth::04.02. Exploration geophysics::04.02.99. General or miscellaneousen
dc.relation.referencesBirch, F., 1972. The melting relations of iron and temperatures in the Earth's core, Geophys. J. R. a~11.S. oc., 29, 373-387. Bridgman, P. W., 1931. The physics of high pressures, Bell, London. Bullard, E. C. & Gubbins, D., 1971. Geomagnetic dynamos in a stable core, Nature, 232, 548-549. Busse, F. N., 1972. Comment on the paper ' The adiabatic gradient and the melting point of the earth ' by G. Higgins and G. C. Kennedy, J. geophys. Res., 77, 1589-1 590. Elsasser, W., 1972. Thermal stratification and core convection, paper presented at the Core-Maiztle interface coulference, NASA, Melbourne, Fla. April 1972. Evans, R. & Jain, A., 1972. Calculations of electrical transport propertics of liquid metals at high pressures, Phys. Earth Pkunet. Int., 6, 141-145. I-Iiggins, G. H. & Kennedy, G. C., 1971. The adiabatic gradient and the melting point gradient in the core of the earth, J. geophys. Res., 76, 1870-1878. Hoover, W. G. & Kse, F. H., 1967. Use of computer experiments to locate the melting transition and ca!culate the entropy in the solid phase, J. Chew. P!~ys., 47,4873-4878. Jacobs, J. A., 1971. Boundaries of the Earth's core, Nattlre, 241, 170-171. Jacobs, J. A., 1973. Physical state of the ear~h'sc ore, Nature, 24413, 113-1 14. John, M. S. & Eyring, H., 1971. The significant structure theory of liquids, in Physical chemistgl: an advanced treatise, Vol. VEIIa, edited by D. Henderson, Academic Press, New York/London. Kennedy, G. C. & Higgins, G. H., 1973. The core paradox, J. geophys. R~.s.7,8 , 900-904, 1973. Kraut, E. A. & Kennedy, G, C., 1966. New melting law at high pressures. PhJl,y. Rev., 156, 668-675. Leppaluoto, D. A., 1972. Melting of iron by significant structure theory, Phys. Earth Planet. Znt., 6, 175-181. Malkus, W. V. R., 1973. Convection at the melting point: a thermal history of the Earth's core, Geophysical Fluid Dynamics, 4, 267-278. Ree, F. H., 1971. Computer calculations for model systems in Physical chemistry, an advanced treatise, Vol. VIIIa, edited by D. Hendersoa, Academic Press, New York, London. Sterrett, K. F., Klement, W. & Kennedy, G. C., 1965. Effect of pressure on the melting of iron, J. geoplzys. Res., 70, 1979-1984. Tuerpe, D. R. & Keeler, R. N., 1967. Anomalous melting transition in the significant structure theory of liquids, J. Chem. Phys., 47,4283-4285. Urlin, V. D., 1965. Melting at ultra-high pressures in a sllock wave, J. exp. theoret. Plzys. (U.S.S.R.), 49, 485492. (Soviet Physics JETP, 22, 341-346, 1966.) Verhoogen, J., 1973. Thermal regime of the Earth's core, Phys. Earth Planet. Int., 7, 47-58.en
dc.description.journalTypeJCR Journalen
dc.description.fulltextopenen
dc.contributor.authorBoschi, E.en
dc.contributor.departmentIstituto Nazionale di Geofisica e Vulcanologiaen
item.openairetypearticle-
item.cerifentitytypePublications-
item.languageiso639-1en-
item.grantfulltextopen-
item.openairecristypehttp://purl.org/coar/resource_type/c_18cf-
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crisitem.classification.parent04. Solid Earth-
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