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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 30, 1975 - Issue 1
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Original Articles

The dipole-dipole potential in statistical mechanics

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Pages 31-36 | Received 23 Sep 1974, Published online: 23 Aug 2006

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Read on this site (9)

Ian Snook. (2011) The scientific contributions of Edgar R. Smith. Molecular Simulation 37:4, pages 260-263.
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SERGEYV. LISHCHUK. (2002) Lekner summation of dipolar interaction in quasi-two-dimensional simulations. Molecular Physics 100:24, pages 3789-3793.
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MOHAMMED HOUSSA ABDELKRIM OUALID LUIS F. RULL. (1998) Reaction field and Ewald summation study of mesophase formation in dipolar Gay-Berne model. Molecular Physics 94:3, pages 439-446.
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By ALEJANDRO GIL-VILLEGAS & SIMON C. McGROTHER and GEORGE JACKSON. (1997) Reaction-field and Ewald summation methods in Monte Carlo simulations of dipolar liquid crystals. Molecular Physics 92:4, pages 723-734.
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D.J. Adams & E.M. Adams. (1981) Static dielectric properties of the Stockmayer fluid from computer simulation. Molecular Physics 42:4, pages 907-926.
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A.J.C. Ladd. (1978) Long-range dipolar interactions in computer simulations of polar liquids. Molecular Physics 36:2, pages 463-474.
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D. Levesque, G.N. Patey & J.J. Weis. (1977) A Monte Carlo study of dipolar hard spheres The pair distribution function and the dielectric constant. Molecular Physics 34:4, pages 1077-1091.
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A.J.C. Ladd. (1977) Monte-Carlo simulation of water. Molecular Physics 33:4, pages 1039-1050.
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Articles from other publishers (16)

S Enders, H Kahl, M Mecke & J Winkelmann. (2004) Molecular dynamics simulation of the liquid–vapor interface: I. The orientational profile of 2-center Lennard–Jones and of Stockmayer fluid molecules. Journal of Molecular Liquids 115:1, pages 29-39.
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Matthias Mecke, Johann Fischer & Jochen Winkelmann. (2001) Molecular dynamics simulation of the liquid–vapor interface of dipolar fluids under different electrostatic boundary conditions. The Journal of Chemical Physics 114:13, pages 5842-5852.
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Holly B. Lavender, Karthik A. Iyer & Sherwin J. Singer. (1994) Global orientational order in model polar clusters. The Journal of Chemical Physics 101:9, pages 7856-7867.
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D. Levesque, J. J. Weis & J. P. Hansen. 1986. Monte Carlo Methods in Statistical Physics. Monte Carlo Methods in Statistical Physics 47 120 .
D. J. Tildesley. 1984. Molecular Liquids. Molecular Liquids 519 560 .
J. Yao, R. A. Greenkorn & K. C. Chao. (1982) Thermodynamic properties of Stockmayer molecules by Monte Carlo simulation. The Journal of Chemical Physics 76:9, pages 4657-4664.
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John W. Perram & Simon W. de Leeuw. (1981) Statistical mechanics of two-dimensional coulomb systems. Physica A: Statistical Mechanics and its Applications 109:1-2, pages 237-250.
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. (1997) Simulation of electrostatic systems in periodic boundary conditions. I. Lattice sums and dielectric constants. Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences 373:1752, pages 27-56.
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S. Romano & E.W. Lee. (1980) Magnetic dipole energies in tetragonally-distorted cubic crystals. Journal of Magnetism and Magnetic Materials 21:2, pages 139-142.
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D. Levesque, J. J. Weis & J. P. Hansen. 1979. Monte Carlo Methods in Statistical Physics. Monte Carlo Methods in Statistical Physics 47 120 .
J. J. Weis. 1978. Microscopic Structure and Dynamics of Liquids. Microscopic Structure and Dynamics of Liquids 381 401 .
Franz J. Vesely. (1977) N-particle dynamics of polarizable Stockmayer-type molecules. Journal of Computational Physics 24:4, pages 361-371.
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C S Hoskins, M L Glasser & E R Smith. (1977) Half-space electrostatic lattice sums. Journal of Physics A: Mathematical and General 10:6, pages 879-884.
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J. A. Barker & D. Henderson. (1976) What is "liquid"? Understanding the states of matter. Reviews of Modern Physics 48:4, pages 587-671.
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E.R. Smith. (1976) Effects of boundary conditions on the numerical simultation of systems with dipolar interactions. Physics Letters A 58:1, pages 9-10.
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C.S. Hoskins & E.R. Smith. (1976) Electrostatic potentials in periodic boundary conditions. Chemical Physics 13:1, pages 33-41.
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