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2005


  1. Baumketner A., Shea J.-E. Free energy landscapes for amyloidogenic tetrapeptides dimerization // Biophys. J. – 2005. – 89. – Р. 1493.
  2. Baumketner A., Shea J.-E. The influence of different treatments of electrostatic interactions on the thermodynamics of folding of peptides // J. Phys. Chem. B. – 2005. – 109. – Р. 21322.
  3. Bernstein S.L., Wyttenbach T., Baumketner A., Shea J.-E., Bitan G., Teplow D.B., Bowers M.T. Amyloid beta-protein: Monomer structure and early aggregation states of Ab42 and its Pro19 alloform // J. Am. Chem. Soc. – 2005. – 127. – P. 2075–2084.
  4. Blavats’ka V., Dudka M., Folk R., Holovatch Yu. Critical dynamics and effective exponents of magnets with extended impurities // Phys. Rev. B. – 2005. – 72. – Р. 064417: 1–11.
  5. Blavats’ka V., von Ferber C., Folk R., Holovatch Yu. Renormalization group approaches to polymers in disordered media. – In: Statistics of Linear Polymers in Disordered Media / Ed. by Bikas K. Chakrabarti. - Elsevier, Amsterdam, 2005. – P. 103-147.
  6. Bryk T., Mryglod I. A comparative study of optic-like excitations in liquid mixtures and molten salts // J. Mol. Liq. – 2005. – 120, № 1–3. – P. 83–85.
  7. Bryk T., Mryglod I. Collective dynamics in binary liquids: Spectra dependence on mass ratio // J. Phys.: Cond. Matter. – 2005. – 17, № 3. – P. 413–427.
  8. Bryk T., Mryglod I. Collective excitations in molten NaCl and NaI: A theoretical generalized collective modes study // Phys. Rev. B. – 2005. – 71, № 13. – P. 132202: 1–4.
  9. Bryk T., Mryglod I. Editorial: Annual Conference “Statistical Physics 2005: Modern problems and new applications” (August 28-30, 2005, Lviv, Ukraine) // Condens. Matter Phys. – 2005. – 8, № 4(44). – P. 653.
  10. Caillol J.-M., Patsahan O., Mryglod I. The collective variables representation of simple fluids from the point of view of statistical field theory // Condens. Matter Phys. – 2005. – 8, № 4(44). – P. 665–684.
  11. Derzhko O. Localized magnons // Bulletin of the Lviv Polytechnic National University. Ser.: Phys. and Math. Sci. – 2005. – № 540. P. 5-13 (in Ukrainian).
  12. Derzhko O., Krokhmalskii T. Jordan-Wigner approach to dynamic correlations in 2D spin-1/2 models // Czechoslovak J. Phys. – 2005. – 55, № 5. – Р. 601–604.
  13. Derzhko O., Krokhmalskii T. Quantum phase transitions in spin-1/2 Ising chain in regularly alternating transverse field: Spin correlation functions // Physica B. – 2005. – 359-361C. – Р. 1384–1386.
  14. Derzhko O., Krokhmalskii T. Quantum phase transitions in s=1/2 Ising chain in a regularly alternating transverse field // Czech. J. Phys. – 2005. – 55, № 5. – Р. 605–608.
  15. Derzhko O., Krokhmalskii T., Hlushak P. Dynamics of dimer and z spin component fluctuations in spin-1/2 XY chain // Condens. Matter Phys. – 2005. – 8, №4(44). – Р. 859–867.
  16. Derzhko O., Krokhmalskii T., Stolze J., Muller G. Dimer and trimer fluctuations in the s=1/2 transverse XX chain // Phys. Rev. B. – 2005. – 71, № 10. – Р. 104432: 1–12.
  17. Derzhko O., Myhal V. The properties of a two-phase fluid of two-level atoms, a part of which is excited. A density functional approach // Journ. Phys. Stud. – 2005. – 9, № 2. – P. 156–162 (in Ukrainian).
  18. Derzhko O., Richter J. Structural instability of two- and three-dimensional pyrochlore spin lattices in high magnetic fields //Phys. Rev. B. – 2005. – 72, № 9. – Р. 094437: 1–6.
  19. Derzhko O., Richter J., Schulenburg J. Structural distortions of frustrated quantum spin lattices in high magnetic fields // Рhysica status solidi(b). – 2005. – 242, № 15. – Р. 3189–3194.
  20. Derzhko O., Verkholyak T. Dynamics of the spin-1/2 chain with Dzyaloshinskii-Moriya interaction // Physica B. – 2005. – 359–361С. – Р. 1403–1405.
  21. Druchok M., Bryk T., Holovko M. A molecular dynamics study of uranyl hydration // J. Mol. Liq. – 2005. – 120, № 1–3. – Р. 11–14.
  22. Druchok M., Holovko M., Bryk T. Primitive model for cation hydrolysis: A molecular dynamics study // J. Chem. Phys. – 2005. – 123(15). – Р. 154505: 1–13.
  23. Dublenych Yu.I. Exact ground-state diagrams for the generalized Blume-Emery-Griffiths model // Phys. Rev. B. – 2005. – 71. – P. 012411: 1–4.
  24. Duda Y., Govea R., Galicia M., Beltran H., Zamudio L. Corrosion inhibitors: Desighn, Performance and Computer Simulations // J. Phys. Chem. B. – 2005. – 109, № 47. – P. 22674–22684.
  25. Duda Y., Vazquez F. Modeling of composite latex particles morphology by off-lattice Monte Carlo simulation // Langmuir. – 2005. – 21. – P. 1096–1102.
  26. Dudka M., Folk R., Holovatch Yu. Critical properties of random anisotropy magnets // J. Magn. Magn. Mat. – 2005. – 294. – Р. 305–329.
  27. Dudka M., Folk R., Holovatch Yu., Moser G. Critical dynamics of diluted relaxational models coupled to a conserved density (diluted model C) // Phys. Rev. E. – 2005. – 72. – P. 036107: 1–4.
  28. Dudka M.,Folk R., Holovatch Yu., Moser G. Critical slowing down in random anisotropy magnets // Condens. Matter Phys. – 2005. – 8, № 4(44). – Р. 737–748.
  29. Duviryak А., Darewych J.W. Variational wave equations of two fermions interacting via scalar, pseudoscalar, vector, pseudovector and tensor fields // Central Europ. J. Phys. – 2005. – 3, № 4. – Р. 467–483.
  30. Eisenberg B., Busath D., Trokhymchuk A. Douglas Henderson: from hard spheres to biological channels // Condens. Matter Phys. – 2005. – 8, № 2(42). – Р. 237–240.
  31. Fenz W., Omelyan I.P., Folk R. Integral equation study of an ideal Ising mixture // Phys. Rev. E. – 2005. – 72. – Р. 056121: 1–10.
  32. Haymet A.D.J., Bryk T., Smith E.J. Ions and excess stress at the ice/water interface. – In: Ionic Soft Matter: Modern Trends in Theory and Applications. NATO Science Series. II. Mathematics, Physics and Chemistry, 206 / Ed. by Henderson D., Holovko M., Trokhymchuk A. – Springer, 2005. – Р. 333–359.
  33. Henderson D., Trokhymchuk A., Nikolov A., Wasan D.T. In-layer structuring of like-charged macroions in a thin film //Industrial & Engineering Chemistry Research. – 2005. – 44, № 5. – Р. 1175–1180.
  34. Henderson D., Trokhymchuk A., Woodcock L.J., Chan K.Y. Simulation and approximate formulae for the radial distribution functions of highly asymmetric hard sphere mixtures // Molecular Phys. – 2005. – 103, № 5. – Р. 667–674.
  35. Holovatch Yu. "Ising Lectures – 2005": The 9th Annual Workshop on Phase Transitions and critical Phenomena (Lviv, May 17-20, 2005) // J. Phys. Studies. – 2005. –9, № 3. – Р. 272.
  36. Holovko M. Concept of ion association in the theory of electrolyte solutions. – In: Ionic Soft Matter: Modern Trends in Theory and Applications. NATO Science Series. II. Mathematics, Physics and Chemistry, 206 / Ed. by Henderson D., Holovko M., Trokhymchuk A. – Springer, 2005. – Р. 43–81.
  37. Holovko M.F., Badiali J.P. The contact theorem and sum rules in the theory of electrical double layer // Condens. Matter Phys. – 8, № 2(42). – Р. 281–286.
  38. Holovko M., Badiali J.P., di Caprio D. Contact conditions for the charge in the theory of the electrical double layer // J. Chem. Phys. – 2005. – 123. – Р. 234705: 1–5.
  39. Holovko M., Druchok M., Bryk Т. A molecular dynamics modeling of cation hydrolysis effects // J. Electroanal. Chem. – 2005. – 582, № 1–2. – Р. 50–56.
  40. Holovko M., Druchok M., Bryk T. Primitive model for cation hydrolysis; A molecular dynamic study // J. Chem. Phys. – 2005. – 123. – Р. 15405: 1–13.
  41. Hryvnak N. On the problem of the strategy of teaching system in the papers of professor Zenon Hraplyvyj // Pedagogichna dumka. – 2005, № 2. – P. 39–46 (in Ukrainian).
  42. Iro H., Holovatch Yu., Mryglod I., von Ferber C. Fluctuations and criticality (dedicated to Reinhard Folk on his 60th birthday) // Condens. Matter Phys. – 2005. – 8, № 1(41). – P. 3–10.
  43. Ivaneyko D., Ilnytskyi J., Berche B., Holovatch Yu. Criticality of the random-site Ising model: Metropolis, Swendsen-Wang and Wolff Monte Carlo algorithms // Condens. Matter Phys. – 2005. – 8, № 1(41). – Р. 149–162.
  44. Kalyuzhnyi Yu.V., Kahl G., Cummings P.T. Phase coexistence in a polydisperse charged hard-sphere fluid: Polymer mean spherical approximation // J. Chem. Phys. – 2005. – 123. – P. 124501: 1–15.
  45. Kalyuzhnyi Yu.V., Kahl G., Cummings P.T. Towards the phase diagram of a polydisperse mixture of charged hard spheres // Europhys. Let. – 2005. – 72. – P. 96–102.
  46. Kapko V., Egorov S.A. Ionic solvation in polar supercritical fluids: an integral equation study // Chem. Phys. Let. – 2005. – 402, № 1–3. – Р. 258–264.
  47. Kobryn A.E., Yamaguchi T., Hirata F. Pressure dependence of diffusion coefficient and orientational relaxation time for acetonitrile and methanol in water: DRISM/mode-coupling study // J. Mol. Liq. – 2005. – 119. – P. 7–13.
  48. Kobryn A.E., Yamaguchi T., Hirata F. Site-site memory equation approach in study of density/pressure dependence of translational diffusion coefficient and rotational relaxation time of polar molecular solutions: acetonitrile in water, methanol in water, and methanol in acetonitrile // J. Chem. Phys. – 2005. – 122. – P. 184511: 1–13.
  49. Korynevskii N.A., Solovyan V.B. On the phase transitions in ferroelectric-antiferroelectric mixed systems // Ferroelectrics. – 2005. – 317. – Р. 19–24.
  50. Kozlovskii M.P. Critical behaviour of 3D systems in the external field // Ferroelectrics. – 2005. – 317. – Р. 25–29.
  51. Kozlovskii M.P. Recurrence relations for the three-dimensional Ising-like model in the external field // Condens. Matter Phys. – 2005. – 8. – Р. 473–506.
  52. Kozlovskii M.P., Pylyuk I.V., Prytula O.O. Behaviour of the order parameter of the simple magnet in an external field // Condens. Matter Phys. – 2005. – 8, № 4(44). – Р. 749–760.
  53. Levitskii R.R., Sorokov S.I., Vdovych A.S. Spin model with different types of competing interactions // Ferroelectrics. – 2005. – 316. – Р. 111–119.
  54. Levitskii R.R., Zachek I.R., Moina A.P. Monoclinic elastic and piezoelectric properties of Rochelle salt. Description within the modified Mitsui model // Condens. Matter Phys. – 2005. – 8, № 4(44). – Р. 881–890.
  55. Levitskii R.R., Sorokov S.I., Baran O.R. Thermodynamics of ising model within cluster expansion method // Journ. Phys. Stud. – 2005. – 9, №3. – P. 253–260 (in Ukrainian).
  56. Lipinski I.E., Kuriata J., Korynevskii N.A. Hydrostatic Pressure Dependence of Tc for SASD Type Crystals // Ferroelectrics. – 2005. – 317. – Р. 115–118.
  57. Moina A.P., Levitskii R.R., Zachek I.R. Piezoelectric resonance and sound attenuation in Rochelle salt // Ferroelectrics. – 2005. – 317. – Р. 31–36.
  58. Moina A.P., Levitskii R.R., Zachek I.R. Piezoelectric resonance and sound attenuation in Rochelle salt NaKC4 H4 O6 · 4H2 O // Phys. Rev. B. – 2005. – 71. – P. 134108: 1–8.
  59. Mryglod I., Bryk T., Kuporov V. Collective dynamics in ionic liquids: A comparative study with nonionic fluids. – In: Ionic Soft Matter: Modern Trends in Theory and Applications. NATO Science Series. II. Mathematics, Physics and Chemistry, 206 / Ed. by Henderson D., Holovko M., Trokhymchuk A. – Springer, 2005. – P. 109–141.
  60. Mryglod I., Holovko M., Ivankiv O., Kozlovskii M., Stasyuk I., Tokarchuk M. Ihor Yukhnovskii and the Lviv school of statistical physics – In book: “Selected papers of I.R.Yukhnovskii: Physics”. – Lviv. Publ. by Lviv Polytechnic National University. – 2005. – P. 7–22 (in Ukrainian).
  61. Mryglod I.M., Omelyan I.P., Yukhnovsky I.R. Dynamics of submicron particles in air environment: Chornobyl aspects // Ukr. Journ. Phys. – 2005. – 50, № 8A. – P. A52-A64 (in Ukrainian).
  62. Omelyan I.P., Fenz W., Mryglod I.M., Folk R. XY spin fluid in an external magnetic field // Phys. Rev. Let. – 2005. – 94. – Р. 045701: 1–4.
  63. Omelyan I.P., Fenz W., Mryglod I.M., Folk R. XY spin fluids in an external magnetic field: An integral equation approach // Phys. Rev. E. – 2005. – 72. – P. 031506: 1–17.
  64. Omelyan I., Hirata F., Kovalenko A. Criticality of a liquid–vapor interface from an inhomogeneous integral equation theory // Phys. Chem. Chem. Phys. – 2005. – 7. – Р. 4132–4137.
  65. Omelyan I.P., Mryglod I.M., Tokarchuk M.V. Wavevector- and frequency-dependent shear viscosity of water: the modified collective mode approach and molecular dynamics calculations // Condens. Matter Phys. – 2005. – 8, № 1(41). – P. 25–46.
  66. Omelyan I.P., Solovyan V.B. Improved cubature formulae of high degrees of exactness for the square // J. Comput. Appl. Math. – 2005. – 188. – Р. 190–204.
  67. Patsahan O.V. First principle study of the phase behaviour of ionic fluids // J. Mol. Liq. – 2005. – 120. – P. 23–25.
  68. Patsahan O., Mryglod I., Caillol J.-M. Ionic liquids: charge and density correlations near gas-liquid criticality // J. Phys.: Cond. Matter. – 2005. – 17. – P. L251-L256.
  69. Portnyagin D. Estimates of weak solutions to nondiagonal quasilinear parabolic systems // Annales Polonici Mathematici. – 2005. – 85.1. – P. 55–75.
  70. Pylyuk I.V., Kozlovskii M.P., Prytula O.O. Analytic method of calculating thermodynamic functions for Ising-like system in an external field // Ferroelectrics. – 2005. – 317. – P. 43–47.
  71. Reyes Y., Duda Y. Modelling of drying in films of colloidal particles // Langmuir. – 2005. – 21. – P. 7057–7060.
  72. Reyes Y., Vazquez F., Duda Y. The simplest model of the latex film formation through evaporation deposition: Monte Carlo study. // Adv. Tech. Mat. Mat. Proc. – 2005. – 7, № 2. – P. 127–130.
  73. Shchur Ya. Lattice dynamics simulation of CsH2 PO4 crystal // Ferroelectrics. – 2005. – 317. – Р. 69–73.
  74. Shovgenyuk M.V., Kozlovskii Yu.M. Images of optical periodic elements in the fractional Fourier transform domain // In: Proc. SPIE: Photonics Applications in Industry and Research IV; Ed. by R.S. Romaniuk, S. Simrock, V.M. Lutkovski – 2005, 5948. – P. 812–822.
  75. Shpot M.A., Pis’mak Yu.M., Diehl H.W. Large-n expansion for m-axial Lifshitz points // J. Phys.: Cond. Matter. – 2005. – 17, №20. – Р. S1947-S1972.
  76. Shvaika A.M., Vorobyov O., Freericks J.K., Devereaux T.P. Electronic Raman scattering in correlated materials: A treatment of nonresonant, mixed, and resonant scattering using dynamical mean-field theory // Phys. Rev. B. – 2005. – 71, № 4. – P. 045120: 1–17.
  77. Shvaika A.M., Vorobyov O., Freericks J.K., Devereaux T.P. Resonant electronic Raman scattering near a quantum critical point // Physica B. – 2005. – 359–361. – P. 705–707.
  78. Slivka A.G., Kedyulich V.M., Levitskii R.R., Moina A.P., Romanyuk M.O., Guivan A.M. The effect of external factors on dielectric permittivity of Rochelle salt: humidity, annealing, stresses, electric field // Condens. Matter Phys. – 2005. – 8, № 3(43). – Р. 623–638.
  79. Smith E.J., Bryk T., Haymet A.D.J. Free energy of solvation of simple ions: Molecular-dynamics study of solvation of Cl− and Na+ in the ice/water interface // J. Chem. Phys. – 2005. – 123, № 3. – Р. 034706:1-16.
  80. Sokolovska T.G., Sokolovskii R.O., Patey G.N. Nematic fluid structure in wall-field geometry // J. Chem. Phys. – 2005. – 122. – Р. 034703.
  81. Sokolovska T.G., Sokolovskii R.O., Patey G.N. Colloid-induced structure in liquid crystal media // J. Chem. Phys. – 2005. – 122. – Р. 124907.
  82. Solodyak M.T., Tokarchuk M.V. Radionuclides electro-diffusion in the lava-like fuel-containing materials. // Phys. Chem. Mech. Matter. – 2005. – 41, № 1. – P. 46–52 (in Ukrainian).
  83. Sorokov S.I., Levitskii R.R., Vdovych A.S. Spin-glass model with essential short-range competing interactions // Condens. Matter Phys. – 2005. – 8, № 3(43). – Р. 603–622.
  84. Stasyuk I., Dublenych Yu. Phase transitions and phase separations in an S=1 pseudospin-electron model: Application of the model to the intercaled crystals // Phys. Rev. B. – 2005. – 72, № 22. – Р.
  85. Stasyuk I.V., Hera O.B. Densities of states of the Falicov-Kimball model off half filling in infinite dimensions // Phys. Rev. B. – 2005. – 72, № 4. – P. 045134: 1–9.
  86. Stasyuk I.V., Hera O.B. Mott transition in the asymmetric Hubbard model at half-filling within dynamical mean-field theory // Europ. Phys. J . – 2005. – 48, № 3. – Р. 339–348.
  87. Stasyuk I.V., Velychko O.V. Theory of Rochelle salt: beyond the Mitsui model // Ferroelectrics. – 2005. – 316. – P. 51–58.
  88. Tabunshchyk K.V. Thermodynamic properties of pseudospin-electron model in the gaussian fluctuation approximation // J. Phys. Studies. – 2005. – 9, № 1. – P. 52–65.
  89. Tabunshchyk K.V., Gooding R.J. Magnetic susceptibility of a CuO2 plane in the La2 CuO4 system: I. Random-phase approximation treatment of the Dzyaloshinskii-Moriya interactions // Phys. Rev. B. – 2005. – 71. – P. 214418: 1–20.
  90. Tabunshchyk K.V., Gooding R.J. Magnetic susceptibility of the body-centred orthorhombic La2 CuO4 system // J. Phys.: Cond. Matter. – 2005. – 17. – P. 6701–6728.
  91. Trokhymchuk A., Henderson D., Nikolov A., Wasan D.T. Computer simulation of macroion layering in a wedge film // Langmuir. – 2005. – 21, № 22. – Р. 10240–10250.
  92. Trokhymchuk A., Henderson D., Wasan D.T., Nikolov A. Macroions under confinement. – In: Ionic Soft Matter: Modern trends in theory and applications. NATO Science Series. II. Mathematics, Physics and Chemistry, 206 / Ed. by Henderson D., Holovko M., Trokhymchuk A. – Springer, 2005. – P. 249–290.
  93. Trokhymchuk A., Nezbeda I., Jirsek J., Henderson D. Hard-sphere radial distribution function again // J. Chem. Phys. – 2005. – 123, № 2. – P. 024501: 1–10.
  94. Vakarin E.V., Badiali J.P. Role of structural fluctuations in the insertion into complex host matrices // Electrochim. Acta. – 2005. – 50. – Р. 1719–1724.
  95. Vlachy V., Hribar-Lee B., Rescic J., Kalyuzhnyi Yu.V. Macroions in solution: theory, experiment and computer simulations. – In: Ionic Soft Matter: Modern Trends in Theory and Applications. NATO Science Series. II. Mathematics, Physics and Chemistry, 206 / Ed. by Henderson D., Holovko M., Trokhymchuk A. – Springer, 2005. – P. 199–231.
  96. Voloshinovskii A., Myagkota S., Levitskii R. Luminescence of ferroelastic CsPbCl3 nanocrystals // Ferroelectrics. – 2005. – 317. – Р. 119–123.
  97. von Ferber C., Holovatch Yu., Palchykov D. Scaling in public transport networks // Condens. Matter Phys. – 2005. – 8, № 1(41). – Р. 225–234.
  98. Yaremko Yu. Interference of outgoing electromagnetic waves generated by two point-like sources // Int. J. Mod. Phys. A. – 2005. – 20, № 1. – P. 129–159.
  99. Yaremko Yu. Radiation reaction, renormalization and Poincare symmetry // Symmetry, Integrability and Geometry: Methods and Applications. – 2005. – 1. – Paper. 012, 10 pg.