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Results: 10
Number of items: 10
  • van Gemert, A., Lauxtermann, M., Janssen, M., Wennekendonk-Visser, M., Boletsi, M., Bot, A., Markaki, T., Nicolai, J., Schotman, D., & Zervou, R. (2008). Prisma μεγάλο Ελληνο-ολλανδικό λεξικό = Prisma groot woordenboek Nieuwgrieks-Nederlands. Prisma Woordenboeken en Taaluitgaven.
  • Bot, A. S. M. (1998). Pos metadidetai o efthys logos tot prosopon tou Erotokritou. Cretan Studies, 6, 427-439.
  • Bot, A., & Wegdam, G. H. (1992). Light scattering as a probe of thermodynamic quantities in a binary mixture. Fluid Phase Equilibria, 77, 285-295. https://doi.org/10.1016/0378-3812(92)85109-L
  • Open Access
    Schram, R. P. C., Wegdam, G. H., & Bot, A. (1992). Rayleigh-Brillouin Light-Scattering Study of Both Fast and Slow Sound in Binary Gas-Mixtures. Physical Review A, 44, 8062-8071. https://doi.org/10.1103/PhysRevA.44.8062
  • Bot, A., & Wegdam, G. H. (1991). Rayleigh-Brillouin Light Scattering from Noble Gas Mixtures. 2. Partial Structure Factors. Journal of Physical Chemistry, 95, 4679-4685. https://doi.org/10.1021/j100165a017
  • Open Access
    Bot, A., Schaink, H. M., Schram, R. P. C., & Wegdam, G. H. (1991). Rayleigh-Brillouin Light Scattering from Noble Gas Mixtures. 1. The Landau-Placzek Ratio. The Journal of Physical Chemistry. A, 95, 4673-4679.
  • Schram, R. P. C., Bot, A., Schaink, H. M., & Wegdam, G. H. (1990). Fast and slow sound in binary fluid mixtures. Journal of Physics-Condensed Matter, 2, SA157-SA160. https://doi.org/10.1088/0953-8984/2/S/021
  • Open Access
    Wegdam, G. H., Bot, A., Schram, R. P. C., & Schaink, H. M. (1989). Observation of fast sound in disparate-mass gas mixtures by light scattering. Physical Review Letters, 63(25), 2697-2700. https://doi.org/10.1103/PhysRevLett.63.2697
  • Open Access
    Michielsen, J. C. F., Bot, A., & Vanderelsken, J. (1988). Small-Angle X-Ray-Scattering from Supercooled Water. Physical Review A. General Physics, 38, 6439-6441. https://doi.org/10.1103/PhysRevA.38.6439
  • van der Elsken, J., van Boom, L., & Bot, A. (1988). Hydrodynamic states in water below the temperature of the density maximum: the limit to supercooling. Chemical Physics Letters, 145(3), 242-246. https://doi.org/10.1016/0009-2614(88)80187-8
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