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1.Ж26988 Holovko M. F. A Multidensity Integral Equation Approach to the Theory of Complex Fluids: a New Application to Ionic Systems [Текст] 45: 4-5 // Укр. фіз. журн.-С.502-507
2.IP7800 Patsahan T. Molecular dynamics study of aqueous uranyl in hydrophilic mesoporous confinement: The case of slit-like pore in amorphous silica [Текст]
3.iP7794 Holovko M. F. Simple microscopic model of a ternary amphiphilic system - phase diagram and mesoscopic correlations [Текст]
4.Holovko M. Simple microscopic model of a ternary amphiphilic system - phase diagram and mesoscopic correlations [Текст]
5.Ж41279 Kapko V. I. Associative electrolyte solution near the charge hard wall. Density, charge, polarization and potential profiles [] // Condensed Matter Physics, 2001. т.Т. 4,N № 2.-С.201-208
6.Ж41279 Holovko M. F. Modelling of the elementary surface processes occurring in the cours of heterogeneous catalytic reactions [] // Condensed Matter Physics, 2000. т.Т. 3,N № 2.-С.417-436
7.Ж41279 Holovko M. F. The multi-density integral equation approach in the theory of complex Liquids [] // Condensed Matter Physics, 1999. т.Т. 2,N № 2.-С.205-220
8.Ж41279 Holovko M. F. The screening potentials of ion-dipole system adsorbed in ion-dipolar disordered matrices [] // Condensed Matter Physics, 1999. т.Т. 2,N № 2.-С.267-272
9.Ж41279 Barthel J. The application of the associative mean spherical approximation in the theory of nonaqueous electrolyte solutions [] // Condensed Matter Physics, 2000. т.Т. 3,N № 3.-С.657-674
10.Ж41279 Vakarin E. V. Clustering as a mechanism of enhanced adsorption [] // Condensed Matter Physics, 2003. т.Т. 6,N № 1.-С.119-126
11.Ж41279 Patsahan T. Computer simulation study of the diffusion of water molecules confined in silica gel [] // Condensed Matter Physics, 2004. т.Т. 7,N № 1.-С.3-13
12.Ж41279 Patsahan T. Computer simulations of the dynamic properties of methane in a model silica gel [] // Condensed Matter Physics, 2003. т.Т. 6,N № 1.-С.3-21
13.Ж41279 D. di Caprio Density field theory to study association in a Yukawa fluid. Role of the fluctuations [] // Condensed Matter Physics, 2003. т.Т. 6,N № 4.-С.693-702
14.Ж41279 Kalyuzhnyi Yu. V. Polymer mean spherical approximation for the fluid of flexible hard-sphere Yukawa star molecules [] // Condensed Matter Physics, 2002. т.Т. 5,N № 2.-С.211-226
15.Ж41279 Vakarin E. V. Selective adsorption from polymer mixtures on solid surfaces [] // Condensed Matter Physics, 2001. т.Т. 4,N № 4.-С.749-757
16.Ж41279 Patsahan T. Simple fluid in an attractive, disordered polydisperse matrix [] // Condensed Matter Physics, 2004. т.Т. 7,N № 2.-С.321-330
17.Ж41279 Holovko M. F. The contact theorem and sum rules in the theory of electrical double layer [] // Condensed Matter Physics, 2005. т.Т. 8,N № 2.-С.281-286
18.Ж41279 Druchok M. A molecular dynamics study of <$E bold roman Al sup 3+> in water: hydrolysis effects [] // Condensed Matter Physics, 2004. т.Т. 7,N № 4.-С.699-707
19.Ж41279 Holovko M. F. Ion-dipole model for electrolyte solutions: Application of the associative mean spherical approximation [] // Condensed Matter Physics, 2007. т.Т. 10,N № 3.-С.397-406
20.Ж41279 Patsahan T. Molecular dynamics study of aqueous uranyl in hydrophilic mesoporous confinement: the case of slit-like pore in amorphous silica [] // Condensed Matter Physics, 2007. т.Т. 10,N № 2.-С.143-150
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