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Original Articles

Structure of molten alkali chlorides

II. Semi-analytic methods

, &
Pages 1113-1123 | Received 07 Aug 1980, Accepted 22 Sep 1980, Published online: 20 Aug 2006

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Read on this site (4)

Gilles Chabrier & Jean-Pierre Hansen. (1986) A perturbation theory of the miscibility gap in metal-salt solutions. Molecular Physics 59:6, pages 1345-1367.
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M. Dixon. (1983) Molecular dynamics studies of molten NaI I. Quasi-elastic neutron scattering. Philosophical Magazine B 47:5, pages 509-530.
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M.J. Gillan. (1982) Estimation of the free energy of charge transfer in molten UO2 . Philosophical Magazine B 46:3, pages 191-206.
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M. Dixon & M.J. Gillan. (1981) Structure of molten alkali chlorides. Philosophical Magazine B 43:6, pages 1099-1112.
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Articles from other publishers (18)

Santanu Roy, Fei Wu, Haimeng Wang, Alexander S. Ivanov, Shobha Sharma, Phillip Halstenberg, Simerjeet K Gill, A. M. Milinda Abeykoon, Gihan Kwon, Mehmet Topsakal, Bobby Layne, Kotaro Sasaki, Yong Zhang, Shannon M. Mahurin, Sheng Dai, Claudio J. Margulis, Edward J. Maginn & Vyacheslav S. Bryantsev. (2020) Structure and dynamics of the molten alkali-chloride salts from an X-ray, simulation, and rate theory perspective. Physical Chemistry Chemical Physics 22:40, pages 22900-22917.
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N. E. Cusack. 2003. digital Encyclopedia of Applied Physics. digital Encyclopedia of Applied Physics.
Pascal Hébant & Gérard S Picard. (1995) Equilibrium reactions between molecular and ionic species in pure molten LiCl and in LiCl + MCl (M = Na, K, Rb) melts investigated by computational chemistry. Journal of Molecular Structure: THEOCHEM 358:1-3, pages 39-50.
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J. -P. Hansen. (1990) Recent developments in the theory of ionic melts. Il Nuovo Cimento D 12:4-5, pages 703-717.
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Robert L. McGreevy. 1987. 247 325 .
D. Levesque, J. J. Weis & J. P. Hansen. 1987. Applications of the Monte Carlo Method in Statistical Physics. Applications of the Monte Carlo Method in Statistical Physics 37 91 .
Jochen Wiechen. (1986) A theory for the structure and thermodynamics of molten Li/K Cl. The Journal of Chemical Physics 85:12, pages 7364-7373.
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P. Ballone, G. Pastore, J.S. Thakur & M.P. Tosi. (1986) Pair structure and interionic forces in molten zinc chloride. Physica B+C 142:3, pages 294-300.
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M Revere & M P Tosi. (1986) Structure and dynamics of molten salts. Reports on Progress in Physics 49:9, pages 1001-1081.
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. 1986. Theory of Simple Liquids. Theory of Simple Liquids 509 526 .
J Wiechen. (1985) On the description of molten sat mixtures by integral equation theories. Journal of Physics C: Solid State Physics 18:24, pages L717-L724.
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J. Ralph & M.J. Gillan. (1985) Electronic excitations in molten UO2. Journal of Nuclear Materials 131:2-3, pages 93-98.
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M. Ross & F. J. Rogers. (1985) Structure of dense shock-melted alkali halides: Evidence for a continuous pressure-induced structural transition in the melt. Physical Review B 31:3, pages 1463-1468.
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J. P. Hansen. 1985. Amorphous Solids and the Liquid State. Amorphous Solids and the Liquid State 229 280 .
P. Ballone, G. Pastore & M. P. Tosi. (1984) Structure and thermodynamic properties of molten alkali chlorides. The Journal of Chemical Physics 81:7, pages 3174-3180.
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P Ballone, G Pastore & M P Tosi. (1984) Structure and thermodynamic properties of molten rubidium chloride. Journal of Physics C: Solid State Physics 17:13, pages L333-L336.
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J. B. Boyce & J. C. Mikkelsen. 1984. Physics and Chemistry of Electrons and Ions in Condensed Matter. Physics and Chemistry of Electrons and Ions in Condensed Matter 273 277 .
D. Levesque, J. J. Weis & J. P. Hansen. 1984. Applications of the Monte Carlo Method in Statistical Physics. Applications of the Monte Carlo Method in Statistical Physics 37 91 .

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