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  • J.T.M. Walraven: New levels of control at low temperature In: NWO/Huygenslezing 2000, Nederlandse Organisatie voor Wetenschappelijk Onderzoek, 2000. - pp. 25-33

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  • J.F.M. Aarts, F.J. de Heer, B.F.J. Luyken, F.W. Saris, L. Vriens and D.A. Vroom, New developments for the absolute calibration of light intensities in the far ultraviolet, Physica 41, 209-212 (1969)

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  • W. Windig, Pyrolysis mass spectrometry of yeasts: a new tool for chemical differentiation, Utrecht University, 1982-09-13

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  • W.J. Huisman, J.F. Peters, J.W. Derks, H.G. Ficke, D.L. Abernathy and J.F. van der Veen, A new X-ray diffraction method for structural investigations of solid-liquid interfaces, Rev. Sci. Instrum. 68, 4169-4176 (1997)

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  • H.A. van Hoof, A new method for numerical calculation of potentials and trajectories in systems of cylindrical, J. Phys. E 13, 1081-1089 (1980)

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  • J.J. Boon, Analytical pyrolysis mass spectrometry: new vistas opened by temperature-resolved in-source PYMS, Int. J. Mass Spectrom. Ion Processes 118/119, 755-787 (1992)

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  • E.J. van Loenen, J.F. van der Veen and F.K. LeGoues, Ni-Si mixing: a new model for low temperature silicide formation, Surf. Sci. 157, 1-16 (1985)

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  • P.I.C. Teixeira and M.M. Telo da Gama, A model nematic liquid crystal revisited: some new phase diagrams from density-functional theory, Mol. Phys. 86, 1537-1543 (1995)

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  • M. Saltini, Dynamic reorganization of microtubule networks:building the new by breaking down the old, Wageningen University, 2019-12-02

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  • P.H. Woerlee, H.W. de Waard and F.W. Saris, A new charge exchange contribution to K-vacancy production, J. Phys. B: At., Mol. Opt. Phys. 13, 2965-2973 (1980)

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