1 - 16 |
Hygroscopic growth and evaporation in an aerosol with boundary heat and mass transfer Saleh R, Shihadeh A |
17 - 38 |
Polydispersity of primary particles in agglomerates made by coagulation and sintering Heine MC, Pratsinis SE |
39 - 51 |
The formation of incense smoke Chang YC, Lee HW, Tseng HH |
52 - 68 |
Diesel soot mass calculation in real-time with a differential mobility spectrometer Symonds JPR, Reavell KS, Olfert JS, Campbell BW, Swift SJ |
69 - 82 |
The effective density and fractal dimension of particles emitted from a light-duty diesel vehicle with a diesel oxidation catalyst Olfert JS, Symonds JPR, Collings N |
83 - 96 |
Performance assessment of UVAPS: Influence of fungal spore age and air exposure Kanaani H, Hargreaves M, Ristovski Z, Morawska L |
97 - 110 |
Collection efficiency and design of microbial air samplers Whyte W, Green G, Albisu A |
111 - 130 |
Computational investigation of particle inertia effects on submicron aerosol deposition in the respiratory tract Longest PW, Xi JX |
131 - 135 |
Lift and drag forces on a sphere attached to a wall in a Blasius boundary layer Sweeney LG, Finlay WH |
136 - 138 |
A comment on Sillanpaa et al. (2003) Field and laboratory tests of a high volume cascade impactor. Journal of Aerosol Science, 34, 485-500. Jones T, Moreno T, Gibbons W, BeruBe K, Richards R |
139 - 140 |
A comment on Sillanpaa et al. (2003) Field and laboratory tests of a high volume cascade impactor. Journal of Aerosol Science, 34, 485-500. Reply Hillamo R, Sillanpaa M, Makela T, Pennanen AS, Salonen RO |