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R C Flagan

Showing results (1-10 of 17) with videos related to

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Environmental Science & Technology|July 4, 2001
State-of-the-art chamber facility for studying atmospheric aerosol chemistryD R Cocker, R C Flagan, J H Seinfeld
Applied Optics|June 29, 2010
Resonance structures in elastic and Raman scattering from microspheresC K Chan, R C Flagan, J H Seinfeld
Environmental Science & Technology|January 5, 2002
Sampling atmospheric carbonaceous aerosols using a particle trap impactor/denuder samplerB T Mader, R C Flagan, J H Seinfeld
Journal of Forensic Sciences|July 29, 2000
Method for characterization of adhesion properties of trace explosives in fingerprints and fingerprint simulationsD J Phares, J K Holt, G T Smedley, et al.
Environmental Science & Technology|April 6, 2013
Reactive uptake and photo-Fenton oxidation of glycolaldehyde in aerosol liquid waterT B Nguyen, M M Coggon, R C Flagan, et al.
Environmental Science & Technology|September 9, 2004
Secondary organic aerosol formation from the ozonolysis of cycloalkenes and related compoundsM D Keywood, V Varutbangkul, R Bahreini, et al.
Clinical and Experimental Allergy : Journal of the British Society for Allergy and Clinical Immunology|October 14, 2004
Birch pollen rupture and the release of aerosols of respirable allergensP E Taylor, R C Flagan, A G Miguel, et al.
Analytical Chemistry|April 3, 2013
Continuous flow ion mobility separation with mass spectrometric detection using a nano-radial differential mobility analyzer at low flow ratesN A Brunelli, E L Neidholdt, K P Giapis, et al.
Science (New York, N.Y.)|April 4, 1997
The atmospheric aerosol-forming potential of whole gasoline vaporJ R Odum, T P Jungkamp, R J Griffin, et al.
Environmental Science & Technology|July 21, 2004
Secondary organic aerosol formation from cyclohexene ozonolysis: effect of OH scavenger and the role of radical chemistryM D Keywood, J H Kroll, V Varutbangkul, et al.
Pageof 2

Showing results (1-10 of 17) with videos related to

Sort By:
Pageof 2
Environmental Science & Technology|July 4, 2001
State-of-the-art chamber facility for studying atmospheric aerosol chemistryD R Cocker, R C Flagan, J H Seinfeld
Applied Optics|June 29, 2010
Resonance structures in elastic and Raman scattering from microspheresC K Chan, R C Flagan, J H Seinfeld
Environmental Science & Technology|January 5, 2002
Sampling atmospheric carbonaceous aerosols using a particle trap impactor/denuder samplerB T Mader, R C Flagan, J H Seinfeld
Journal of Forensic Sciences|July 29, 2000
Method for characterization of adhesion properties of trace explosives in fingerprints and fingerprint simulationsD J Phares, J K Holt, G T Smedley, et al.
Environmental Science & Technology|April 6, 2013
Reactive uptake and photo-Fenton oxidation of glycolaldehyde in aerosol liquid waterT B Nguyen, M M Coggon, R C Flagan, et al.
Environmental Science & Technology|September 9, 2004
Secondary organic aerosol formation from the ozonolysis of cycloalkenes and related compoundsM D Keywood, V Varutbangkul, R Bahreini, et al.
Clinical and Experimental Allergy : Journal of the British Society for Allergy and Clinical Immunology|October 14, 2004
Birch pollen rupture and the release of aerosols of respirable allergensP E Taylor, R C Flagan, A G Miguel, et al.
Analytical Chemistry|April 3, 2013
Continuous flow ion mobility separation with mass spectrometric detection using a nano-radial differential mobility analyzer at low flow ratesN A Brunelli, E L Neidholdt, K P Giapis, et al.
Science (New York, N.Y.)|April 4, 1997
The atmospheric aerosol-forming potential of whole gasoline vaporJ R Odum, T P Jungkamp, R J Griffin, et al.
Environmental Science & Technology|July 21, 2004
Secondary organic aerosol formation from cyclohexene ozonolysis: effect of OH scavenger and the role of radical chemistryM D Keywood, J H Kroll, V Varutbangkul, et al.
Pageof 2