Philip Stanford Stevens
Affiliations: | 1995- | School of Public and Environmental Affairs | Indiana University, Bloomington, Bloomington, IN, United States |
Area:
Atmospheric ChemistryWebsite:
https://oneill.indiana.edu/faculty-research/directory/profiles/faculty/full-time/stevens-philip.htmlGoogle:
"Philip Stevens"Mean distance: (not calculated yet)
Parents
Sign in to add mentorNorman C Craig | research assistant | 1983-1984 | Oberlin College |
James G. Anderson | grad student | 1984-1990 | Harvard |
William Henry Brune | post-doc | 1990-1995 | Penn State |
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Publications
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Reidy E, Bottorff BP, Rosales CMF, et al. (2023) Measurements of Hydroxyl Radical Concentrations during Indoor Cooking Events: Evidence of an Unmeasured Photolytic Source of Radicals. Environmental Science & Technology |
Heald CL, Gouw J, Goldstein AH, et al. (2020) Contrasting Reactive Organic Carbon Observations in the Southeast United States (SOAS) and Southern California (CalNex). Environmental Science & Technology |
Lew MM, Rickly PS, Bottorff BP, et al. (2020) OH and HO<sub>2</sub> radical chemistry in a midlatitude forest: measurements and model comparisons Atmospheric Chemistry and Physics. 20: 9209-9230 |
Duncianu M, Lahib A, Tomas A, et al. (2020) Characterization of a chemical amplifier for peroxy radical measurements in the atmosphere Atmospheric Environment. 222: 117106 |
Kundu S, Deming BL, Lew MM, et al. (2019) Peroxy Radical Measurements by Ethane – Nitric Oxide ChemicalAmplification and Laser-Induced Fluorescence/Fluorescence Assayby Gas Expansion during the IRRONIC field campaign in a Forestin Indiana Atmospheric Chemistry and Physics. 1-31 |
Kundu S, Deming BL, Lew MM, et al. (2019) Peroxy radical measurements by ethane – nitric oxide chemical amplification and laser-induced fluorescence during the IRRONIC field campaign in a forest in Indiana Atmospheric Chemistry and Physics. 19: 9563-9579 |
Akherati A, Cappa CD, Kleeman MJ, et al. (2019) Simulating secondary organic aerosol in a regional air quality model using the statistical oxidation model – Part 3: Assessing the influence of semi-volatile and intermediate-volatility organic compounds and NOx Atmospheric Chemistry and Physics. 19: 4561-4594 |
Lew MM, Dusanter S, Stevens PS. (2018) Measurement of interferences associated with the detection of the hydroperoxy radical in the atmosphere using laser-induced fluorescence Atmospheric Measurement Techniques. 11: 95-109 |
Sklaveniti S, Locoge N, Stevens PS, et al. (2018) Development of an instrument for direct ozone production rate measurements: measurement reliability and current limitations Atmospheric Measurement Techniques. 11: 741-761 |
Rickly P, Stevens PS. (2018) Measurements of a potential interference with laser-induced fluorescence measurements of ambient OH from the ozonolysis of biogenic alkenes Atmospheric Measurement Techniques. 11: 1-16 |