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Results: 8,033
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  • Frenkel, D. (2000). Metastability and Nucleation. Europhysics News, 31, 113-144.
  • Frenkel, D. (2000). Phase behavior of lyotropic liquid crystals. In P. Pasini, & C. Zannoni (Eds.), Advances in the Computer Simulations of Liquid Crystals (pp. 51-72). Kluwer.
  • Farrell, P. A., Hartl, F., Zalis, S., Mahabiersing, T., & jr. Vlcek, A. (2000). The spectroscopic, electrochemical and photophysical effects of the b1/a2 pi* lowest unoccupied molecular orbital switching in [M(CO)4(N,N)]; M = Cr, W; N,N = 1,10-phenanthroline or 3,4,7,8-tetramethyl-1,10-phenanthroline. An experimental and DFT computational study. Dalton : an international journal of inorganic chemistry, 4323-4331.
  • Groen, C. P., Oskam, A., & Kovacs, Z. (2000). Theoretical study of mixed LiLnX4 (Ln = La, Dy; X = F, Cl, Br, I) rare earth/alkali halide complexes. Inorganic Chemistry, (39), 6001-6008.
  • Groen, C. P., Oskam, A., & Kovacs, Z. (2000). Theoretical study of mixed LiCeX4 (X = F, Cl, Br, I) rare earth/alkali halide complexes. Journal of molecular structure. Theochem, (531), 23-31.
  • van Vliet, R. E., Hoefsloot, H. C. J., Hamersma, P. J., & Iedema, P. D. (2000). Pressure induced phase separation with DPD. Macromolecular Theory and Simulations, 9, 698-702. https://doi.org/10.1002/1521-3919(20001201)9:9<698::AID-MATS698>3.0.CO;2-1
  • Willemsen, S. M., Hoefsloot, H. C. J., & Iedema, P. D. (2000). No-slip boundary condition in dissipative particle dynamics. International Journal of Modern Physics C, 11, 881-890. https://doi.org/10.1142/S0129183100000778
  • Willemsen, S. M., Hoefsloot, H. C. J., Visser, D. C., Hamersma, P. J., & Iedema, P. D. (2000). Modelling phase change with DPD using a consistent boundary condition. Journal of comparative physiology, 162, 385-394.
  • Frenkel, D., & ten Wolde, P. R. (2000). From Van der Waals to Protein Crystallization. In M. Lal, R. A. Mashelkar, B. D. Kulkarni, & V. M. Naik (Eds.), Structure and Dynamics of Materials in the Mesoscopic Domain (pp. 139-149). ICP.
  • Noro, M. G., & Frenkel, D. (2000). Extended corresponding-states behavior for particles with variable range attractions. Journal of Chemical Physics, 113, 2941-2944. https://doi.org/10.1063/1.1288684
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