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52. EUCAARI ion spectrometer measurements at 12 European sites – analysis of new particle formation events

53. Hygroscopic properties of Amazonian biomass burning and European background HULIS and investigation of their effects on surface tension with two models linking H-TDMA to CCNC data

54. Hygroscopic properties of Amazonian biomass burning and European background HULIS and investigation of their effects on surface tension with two models linking H-TDMA to CCNC data

56. Hygroscopic properties of submicrometer atmospheric aerosol particles measured with H-TDMA instruments in various environments–a review

62. The reduced nitrogen budget of an orographic cloud

63. The Great Dun Fell Cloud Experiment 1993: an overview

64. Contrasting Organic Aerosol Behaviour in Continental Polluted, Biomass Burning and Pristine Tropical Forest Environments.

65. Modelling non-equilibrium secondary organic aerosol formation and evaporation with the aerosol dynamics, gas- and particle-phase chemistry kinetic multi-layer model ADCHAM.

67. The great dun fell cloud experiment 1993: An overview

68. The reduced nitrogen budget of an orographic cloud

69. Experimental determination of the connection between cloud droplet size and its dry residue size

70. Field validation of the droplet aerosol analyser

71. Observations and modelling of the processing of aerosol by a hill cap cloud

73. Secondary organic aerosol formation from gasoline passenger vehicle emissions investigated in a smog chamber.

74. Hygroscopic properties of Amazonian biomass burning and European background HULIS and investigation of their effects on surface tension with two models linking H-TDMA to CCNC data.

76. Hygroscopic growth and critical supersaturations for mixed aerosol particles of inorganic and organic compounds of atmospheric relevance.

79. Overview of the biosphere-aerosol-cloud-climate interactions (BACCI) studies

80. Global environmental solutions require global funding

84. Missed Evaporation from Atmospherically Relevant Inorganic Mixtures Confounds Experimental Aerosol Studies.

85. Using Novel Molecular-Level Chemical Composition Observations of High Arctic Organic Aerosol for Predictions of Cloud Condensation Nuclei.

86. Corrigendum: Collocated observations of cloud condensation nuclei, particle size distributions, and chemical composition.

87. Collocated observations of cloud condensation nuclei, particle size distributions, and chemical composition.

88. Effective density and mixing state of aerosol particles in a near-traffic urban environment.

89. Volatility of organic aerosol: evaporation of ammonium sulfate/succinic acid aqueous solution droplets.

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