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Original Articles

Calibration of a Counterflow Virtual Impactor at Aerodynamic Diameters from 1 to 15 μm

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Pages 317-329 | Received 12 Nov 1992, Accepted 12 Apr 1993, Published online: 12 Jun 2007

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Junhong Chen, William C. Conant, Tracey A. Rissman, Richard C. Flagan & John H. Seinfeld. (2005) Effect of Angle of Attack on the Performance of an Airborne Counterflow Virtual Impactor. Aerosol Science and Technology 39:6, pages 485-491.
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F. J. Romay, D. L. Roberts, V. A. Marple, B. Y. H. Liu & B. A. Olson. (2002) A High-Performance Aerosol Concentrator for Biological Agent Detection. Aerosol Science and Technology 36:2, pages 217-226.
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A. Hallberg, K. J. Noone & J. A. Ogren. (1998) Aerosol particles and clouds: which particles form cloud droplets?. Tellus B: Chemical and Physical Meteorology 50:1, pages 59-75.
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MaryL. Laucks & CynthiaH. Twohy. (1998) Size-Dependent Collection Efficiency of an Airborne Counter flow Virtual Impactor. Aerosol Science and Technology 28:1, pages 40-61.
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Articles from other publishers (20)

Liansi Sun, Yin Cheng, Jiaoshi Zhang, Dexia Wu, Jie Wang, Yixin Yang & Huaqiao Gui. (2024) Development of a multi-stage fog droplet screening system based on the virtual impact principle. Review of Scientific Instruments 95:3.
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Daniel J. Cziczo, Luis Ladino, Yvonne Boose, Zamin A. Kanji, Piotr Kupiszewski, Sara Lance, Stephan Mertes & Heike Wex. (2017) Measurements of Ice Nucleating Particles and Ice Residuals. Meteorological Monographs 58, pages 8.1-8.13.
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Naruki Hiranuma, Ottmar Möhler, Gourihar Kulkarni, Martin Schnaiter, Steffen Vogt, Paul Vochezer, Emma Järvinen, Robert Wagner, David M. Bell, Jacqueline Wilson, Alla Zelenyuk & Daniel J. Cziczo. (2016) Development and characterization of an ice-selecting pumped counterflow virtual impactor (IS-PCVI) to study ice crystal residuals. Atmospheric Measurement Techniques 9:8, pages 3817-3836.
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J. C. Schroder, S. J. Hanna, R. L. Modini, A. L. Corrigan, S. M. Kreidenwies, A. M. Macdonald, K. J. Noone, L. M. Russell, W. R. Leaitch & A. K. Bertram. (2015) Size-resolved observations of refractory black carbon particles in cloud droplets at a marine boundary layer site. Atmospheric Chemistry and Physics 15:3, pages 1367-1383.
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S. J. Abel, R. J. Cotton, P. A. Barrett & A. K. Vance. (2014) A comparison of ice water content measurement techniques on the FAAM BAe-146 aircraft. Atmospheric Measurement Techniques 7:9, pages 3007-3022.
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M. I. A. Berghof, G. P. Frank, S. Sjogren & B. G. Martinsson. (2014) Inversion of droplet aerosol analyzer data for long-term aerosol–cloud interaction measurements. Atmospheric Measurement Techniques 7:4, pages 877-886.
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. 2013. Airborne Measurements for Environmental Research. Airborne Measurements for Environmental Research 551 640 .
C. H. Twohy, J. R. Anderson, D. W. Toohey, M. Andrejczuk, A. Adams, M. Lytle, R. C. George, R. Wood, P. Saide, S. Spak, P. Zuidema & D. Leon. (2013) Impacts of aerosol particles on the microphysical and radiative properties of stratocumulus clouds over the southeast Pacific Ocean. Atmospheric Chemistry and Physics 13:5, pages 2541-2562.
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T. Shingler, S. Dey, A. Sorooshian, F. J. Brechtel, Z. Wang, A. Metcalf, M. Coggon, J. Mülmenstädt, L. M. Russell, H. H. Jonsson & J. H. Seinfeld. (2012) Characterisation and airborne deployment of a new counterflow virtual impactor inlet. Atmospheric Measurement Techniques 5:6, pages 1259-1269.
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Anthony J. Prenni, Paul J. DeMott, Cynthia Twohy, Michael R. Poellot, Sonia M. Kreidenweis, David C. Rogers, Sarah D. Brooks, Mathews S. Richardson & Andrew J. Heymsfield. (2007) Examinations of ice formation processes in Florida cumuli using ice nuclei measurements of anvil ice crystal particle residues. Journal of Geophysical Research: Atmospheres 112:D10.
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Andrew J. Heymsfield, Aaron Bansemer & Cynthia H. Twohy. (2007) Refinements to Ice Particle Mass Dimensional and Terminal Velocity Relationships for Ice Clouds. Part I: Temperature Dependence. Journal of the Atmospheric Sciences 64:4, pages 1047-1067.
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K. Sellegri, P. Laj, R. Dupuy, M. Legrand, S. Preunkert & J.‐P. Putaud. (2003) Size‐dependent scavenging efficiencies of multicomponent atmospheric aerosols in clouds. Journal of Geophysical Research: Atmospheres 108:D11.
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C. H. Twohy, J. W. Strapp & M. Wendisch. (2003) Performance of a Counterflow Virtual Impactor in the NASA Icing Research Tunnel. Journal of Atmospheric and Oceanic Technology 20:6, pages 781-790.
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Paul Glantz, Kevin J. Noone & Simon R. Osborne. (2003) Comparisons of Airborne CVI and FSSP Measurements of Cloud Droplet Number Concentrations in Marine Stratocumulus Clouds. Journal of Atmospheric and Oceanic Technology 20:1, pages 133-142.
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Cynthia H. Twohy, James G. Hudson, Seong‐Soo Yum, James R. Anderson, Susan K. Durlak & Darrel Baumgardner. (2001) Characteristics of cloud‐nucleating aerosols in the Indian Ocean region. Journal of Geophysical Research: Atmospheres 106:D22, pages 28699-28710.
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Alfons Schwarzenboeck, Jost Heintzenberg & Stephan Mertes. (2000) Incorporation of aerosol particles between 25 and 850 nm into cloud elements: measurements with a new complementary sampling system. Atmospheric Research 52:4, pages 241-260.
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A. Schwarzenböck, J. Heintzenberg & S. Mertes. (1997) New minimum lower cut size for a counterflow virtual impactor complemented by the upper cut of an interstitial inlet. Journal of Aerosol Science 28, pages S277-S278.
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Hong Lin & Jost Heintzenberg. (1995) A theoretical study of the counterflow virtual impactor. Journal of Aerosol Science 26:6, pages 903-914.
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. (2012) Cloud droplet number studies with a counterflow virtual impactor. Journal of Geophysical Research: Atmospheres 99:D4, pages 8249-8256.
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Luis Castañeda. (2021) Use of Nebulizer Development: A Brief Review. SSRN Electronic Journal.
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