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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 47, 1982 - Issue 5
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Original Articles

Fluids of polarizable hard spheres with dipoles and tetrahedral quadrupoles Integral equation results with application to liquid water

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Pages 1129-1151 | Received 21 May 1982, Accepted 18 Jun 1982, Published online: 22 Aug 2006

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Read on this site (24)

R. M. Lynden-bell & Teresa Head-gordon. (2006) Solvation in modified water models: towards understanding hydrophobic effects. Molecular Physics 104:22-24, pages 3593-3605.
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THOMASM. NYMAND, PER LINSE & PER-OLOF ÅSTRAND. (2001) A comparison of effective and polarizable intermolecular potentials in simulations: liquid water as a test case. Molecular Physics 99:4, pages 335-348.
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JOHANNES RICHARDI, PASCALH. FRIES & HARTMUT KRIENKE. (1999) Influence of the intermolecular electrostatic potential on properties of polar polarizable aprotic solvents. Molecular Physics 96:9, pages 1411-1422.
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JEAN-CHRISTOPHE SOETENS MARILIA T. C. MARTINS COSTA CLAUDE MILLOT. (1998) RESEARCH NOTE Static dielectric constant of the polarizable NCC water model. Molecular Physics 94:3, pages 577-579.
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Claude Millot, Jean-Christophe Soetens & MaríliaT. C. Martins Costa. (1997) Static Dielectric Constant of the Polarizable Stockmayer Fluid. Comparison of the Lattice Summation and Reaction Field Methods. Molecular Simulation 18:6, pages 367-383.
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Bedamati Das & Pinaki Gupta-Bhaya. (1996) Integral equation theory of polarizable spherical macroions in solution. Molecular Physics 87:3, pages 531-552.
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L. Blum & F. Vericat. (1995) An analytical model of water with sticky spheres of tetrahedral symmetry. Molecular Physics 86:4, pages 809-817.
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M. Kinoshita & M. Harada. (1994) Numerical solution of the RHNC theory for water-like fluids near a macroparticle and a planar wall. Molecular Physics 81:6, pages 1473-1488.
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JohanS. Høye & Enrique Lomba. (1994) A perturbative treatment of fluctuating polarizability in classical fluids. Molecular Physics 81:2, pages 385-393.
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Chris Joslin & Saul Goldman. (1993) Second dielectric and refractivity virial coefficients of the polarizable dipolar hard-sphere fluid. Molecular Physics 79:6, pages 1351-1364.
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Daniel Van Belle, Matheus Froeyen, Guy Lippens & ShoshanaJ. Wodak. (1992) Molecular dynamics simulation of polarizable water by an extended Lagrangian method. Molecular Physics 77:2, pages 239-255.
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AlbertL. Nichols$suffix/text()$suffix/text() & DanielF. Calef. (1990) Structure and thermodynamics of asymmetric molecules: Application to linear triatomic dipolar molecules. Molecular Physics 71:2, pages 269-295.
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P.G. Kusalik & G.N. Patey. (1988) The solution of the reference hypernetted-chain approximation for water-like models. Molecular Physics 65:5, pages 1105-1119.
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J.M. Caillol, D. Levesque, J.J. Weis, J.S. Perkyns & G.N. Patey. (1987) A theoretical study of a polar-polarizable model for liquid ammonia. Molecular Physics 62:5, pages 1225-1238.
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J.M. Caillol, D. Levesque, J.J. Weis, P.G. Kusalik & G.N. Patey. (1987) A comparison between computer simulation and theoretical results for ionic solutions. Molecular Physics 62:2, pages 461-473.
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G.N. Patey, D. Levesque & J.J. Weis. (1986) On the self-consistent mean field theory for polar-polarizable fluids. Molecular Physics 57:2, pages 337-349.
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J.M. Caillol, D. Levesque, J.J. Weis, P.G. Kusalik & G.N. Patey. (1985) Computer simulation and theoretical results for a polar-polarizable fluid. Molecular Physics 55:1, pages 65-76.
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C.G. Gray, C.G. Joslin, V. Venkatasubramanian & K.E. Gubbins. (1985) Induction effects in fluid mixtures of dipolar-quadrupolar polarizable molecules. Molecular Physics 54:5, pages 1129-1148.
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C.G. Joslin, C.G. Gray & K.E. Gubbins. (1985) Renormalized perturbation theory for dipolar and quadrupolar polarizable liquids. Molecular Physics 54:5, pages 1117-1128.
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V. Venkatasubramanian, K.E. Gubbins, C.G. Gray & C.G. Joslin. (1984) Induction effects in polar-polarizable liquid mixtures. Molecular Physics 52:6, pages 1411-1429.
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D. Levesque, J.J. Weis & G.N. Patey. (1984) Fluids of Lennard-Jones spheres with dipoles and tetrahedral quadrupoles. Molecular Physics 51:2, pages 333-348.
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