Analysis of the Influence of Film-Forming Compounds on Droplet Growth: Implications for Cloud Microphysical Processes and Climate
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[1] James E. Dye,et al. Evaluation of the forward scattering spectrometer probe. Part II: Corrections for coincidence and dead-time losses , 1985 .
[2] G. Raga,et al. On the link between cloud‐top radiative properties and sub‐cloud aerosol concentrations , 1993 .
[3] D. Blanchard,et al. Sea-to-Air Transport of Surface Active Material , 1964, Science.
[4] J. Klett,et al. Microphysics of Clouds and Precipitation , 1978, Nature.
[5] M. Seaver,et al. Evaporation kinetics of ventilated waterdrops coated with octadecanol monolayers , 1992 .
[6] Rudolf B. Husar,et al. Thermal Analyses of the Los Angeles Smog Aerosol. , 1975 .
[7] Sonia M. Kreidenweis,et al. The Impact of Giant Cloud Condensation Nuclei on Drizzle Formation in Stratocumulus: Implications for Cloud Radiative Properties , 1999 .
[8] George A. Isaac,et al. Physical and chemical observations in marine stratus during the 1993 North Atlantic Regional Experiment: Factors controlling cloud droplet number concentrations , 1996 .
[9] V. R. Noonkester,et al. Droplet Spectra Observed in Marine Stratus Cloud Layers , 1984 .
[10] S. Kreidenweis,et al. Stratocumulus processing of gases and cloud condensation nuclei : 2. Chemistry sensitivity analysis , 1999 .
[11] R. Shaw,et al. Experimental determination of the thermal accommodation and condensation coefficients of water , 1999 .
[12] J. Warner. The Microstructure of Cumulus Cloud. Part I. General Features of the Droplet Spectrum , 1969 .
[13] J. Podzimek,et al. Retardation of condensation nuclei growth by surfactant , 1975 .
[14] R. G. Corbin,et al. The influence of entrainment on the evolution of cloud droplet spectra: I. A model of inhomogeneous mixing , 1980 .
[15] J. Zung,et al. The effects of insoluble films upon the evaporation kinetics of liquid droplets , 1968 .
[16] Steitz,et al. The Evaporation Resistance of Mixed Monolayers of Octadecanol and Cholesterol. , 1998, Journal of colloid and interface science.
[17] J. L. Brownscombe,et al. Fog Modification with Long-Chain Alcohols , 1969 .
[18] W. T. Roach. On the effect of radiative exchange on the growth by condensation of a cloud or fog droplet , 1976 .
[19] W. Cotton,et al. Radiative impacts on the growth of a population of drops within simulated summertime Arctic stratus , 2000 .
[20] E. J. Mack,et al. Modification of laboratory fog with organic surface films , 1972 .
[21] J. Seinfeld,et al. CCN measurements during ACE-2 and their relationship to cloud microphysical properties , 2000 .
[22] L. Collins,et al. Preferential Concentration of Cloud Droplets by Turbulence: Effects on the Early Evolution of Cumulus Cloud Droplet Spectra , 1998 .
[23] B. Derjaguin,et al. Influence of surfactant vapor on the spectrum of cloud drops forming in the process of condensation growth , 1985 .
[24] H. Gerber,et al. Microphysics of Marine Stratocumulus Clouds with Two Drizzle Modes , 1996 .
[25] E. Bigg. Discrepancy between observation and prediction of concentrations of cloud condensation nuclei , 1986 .
[26] G. D. Byrne,et al. VODE: a variable-coefficient ODE solver , 1989 .
[27] A. Heymsfield,et al. Parameterizations of Condensational Growth of Droplets for Use in General Circulation Models , 1992 .
[28] J. Brenguier,et al. Cloud condensation nuclei and cloud droplet measurements during ACE-2 , 2000 .
[29] M. Lippmann,et al. Influence of Organic Films on the Hygroscopicity of Ultrafine Sulfuric Acid Aerosol , 1998 .
[30] G. T. Barnes. The effects of monolayers on the evaporation of liquids , 1986 .
[31] J. Gentry,et al. Measurement of the kinetics of solution droplets in the presence of adsorbed monolayers: determination of water accommodation coefficients , 1984 .
[32] Charles J. Weschler,et al. Organic films on atmospheric aerosol particles, fog droplets, cloud droplets, raindrops, and snowflakes , 1983 .
[33] J. Curry. Interactions among Turbulence, Radiation and Microphysics in Arctic Stratus Clouds , 1986 .
[34] W. Garrett. Retardation of Water Drop Evaporation with Monomolecular Surface Films , 1971 .
[35] David B. Johnson. The Role of Giant and Ultragiant Aerosol Particles in Warm Rain Initiation. , 1982 .
[36] M. Facchini,et al. Cloud albedo enhancement by surface-active organic solutes in growing droplets , 1999, Nature.
[37] J. Hudson,et al. Droplet Spectral Broadening in Marine Stratus , 1997 .
[38] J. Warner,et al. A Determination of the Condensation Coefficient of Water from the Growth Rate of Small Cloud Droplets , 1974 .
[39] D. W. Johnson,et al. The Measurement and Parameterization of Effective Radius of Droplets in Warm Stratocumulus Clouds , 1994 .
[40] S. Nicholls. The dynamics of stratocumulus: Aircraft observations and comparisons with a mixed layer model , 1984 .
[41] Y. Otani,et al. Growth and deposition of saline droplets covered with a monolayer of surfactant , 1984 .