Bibliographie

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G. Kiss, H. C. Hansson, and others, “Application of osmolality for the determination of water activity and the modelling of cloud formation,” Atmospheric Chemistry and Physics Discussions, vol. 4, no. 6, pp. 7667–7689, 2004.

[3]

A. A. Zavitsas, “Aqueous Solutions of Calcium Ions:  Hydration Numbers and the Effect of Temperature,” The Journal of Physical Chemistry B, vol. 109, no. 43, pp. 20636–20640, Nov. 2005.

[4]

Occidental Chemical Corporation, “Calcium Chloride: A Guide to Physical Properties,” Concrete international, p. 29, 2009.

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D. M. Broday and P. G. Georgopoulos, “Growth and deposition of hygroscopic particulate matter in the human lungs,” Aerosol Science & Technology, vol. 34, no. 1, pp. 144–159, 2001.

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I. R. Zamora, A. Tabazadeh, D. M. Golden, and M. Z. Jacobson, “Hygroscopic growth of common organic aerosol solutes, including humic substances, as derived from water activity measurements,” J. Geophys. Res, vol. 116, p. D23207, 2011.

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S. Metzger and J. Lelieveld, “Reformulating atmospheric aerosol thermodynamics and hygroscopic growth into fog, haze and clouds,” Atmospheric Chemistry & Physics, vol. 7, pp. 3163–3193, 2007.

[8]

L. A. Bromley, “Thermodynamic properties of strong electrolytes in aqueous solutions,” AIChE Journal, vol. 19, no. 2, pp. 313–320, 1973.

[9]

R. Pelletret and J.-D. Sylvain, “Transferts de masse et de chaleur entre une gouttelette d’un liquide hygroscopique et l’air humide,” Revue de Physique Appliquée, vol. 20, no. 10, pp. 699–709, 1985.

[10]

Manuel R. Conde-Petit, “Properties of aqueous solutions of lithium and calcium chlorides: formulations for use in air conditioning equipment design.” International Journal of Thermal Sciences, 43 (4), pp. 367-382., 2004.

[11]

Rosalind West, “Modelling Cloud Droplet Formation.” University of Oxford, Aug-2008.