
- Aerosol production from the surface of the Great Lakes J. H. Slade,1,2
- Photochemistry and nature of organic matter in Arctic and Antarctic Amanda M. Grannas1
- Atmos. Chem. Phys., 9, 49454956, 2009 www.atmos-chem-phys.net/9/4945/2009/
- Atmospheric Environment 36 (2002) 27212731 Molecular halogens before and during ozone depletion events
- A comparison of isoprene nitrate concentrations at two forest-impacted sites
- Atmos. Meas. Tech., 3, 249261, 2010 www.atmos-meas-tech.net/3/249/2010/
- Aircraft measurement of HONO vertical profiles over a forested region Ning Zhang,1
- Atmospheric Environment 36 (2002) 25232534 Impacts of snowpack emissions on deduced levels of OH and
- Boundary-Layer Meteorol DOI 10.1007/s10546-007-9237-y
- Negative heat capacity of small systems in the microcanonical ensemble
- Revised March 2010 -1-CURRICULUM VITAE
- INTRODUCTION Quantification of the magnitude and uncertainties of
- Revised April 2004 -1-CURRICULUM VITAE
- Studies of Peroxyacetyl nitrate (PAN) and its interaction with the snowpack at Summit, Greenland
- Atmos. Meas. Tech., 2, 703712, 2009 www.atmos-meas-tech.net/2/703/2009/
- 20. M. Xue, D.-H. Wang, J.-D. Gao, K. Brewster, K. K. Droegemeier, Meteorol. Atmos. Phys. 82, 139 (2003).
- A Fast-Response Method for Determination of Atmospheric Isoprene Using Quadrupole Ion Trap
- Investigating the Kinetics of Mercury Oxidation and the Contribution of Halogen Radicals from Field Measurements in Barrow, Alaska
- Measurement of wet deposition of inorganic and organic nitrogen in a forest environment
- A study of the NOx dependence of isoprene oxidation Dennis J. Barket Jr.,1,2
- Development of an Automated Cylindrical Ion Trap Mass Spectrometer for the Determination of
- Standard Gas Cylinder Preparation and Analysis Benjamin A. Nault1 and Paul B. Shepson1,2,3
- Development of a Chemical Ionization Ion Trap Mass Spectrometric Method for Trace Level
- Atmos. Chem. Phys., 10, 61696178, 2010 www.atmos-chem-phys.net/10/6169/2010/
- The Production of Organic Nitrates from Atmospheric
- Chlorine and bromine atom ratios in the springtime Arctic troposphere as determined from measurements of halogenated
- Analysis of Air Quality Data Using Positive Matrix Factorization
- The INFLUX Project: Indianapolis as a Case Study for the Accurate and High Resolution Determination of CO2 and CH4
- Proton Affinity of Peroxyacetyl Nitrate Sampled by Membrane Introduction Mass Spectrometry
- Ions at the ice/vapor interface Marcelo A. Carignano *, Paul B. Shepson, Igal Szleifer
- A comparison of Arctic BrO measurements by chemical ionization mass spectrometry and long pathdifferential optical
- Quantitative Determination of Biogenic Volatile Organic Compounds in the Atmosphere Using
- Halide and sodium ion parameters for modeling aqueous solutions in TIP5P-Ew water
- Atmos. Chem. Phys., 9, 76797690, 2009 www.atmos-chem-phys.net/9/7679/2009/
- Regional surface flux of CO2 inferred from changes in the advected CO2 column density
- Development of a Proton-Transfer Reaction-Linear Ion Trap Mass Spectrometer for Quantitative
- Foliar uptake of atmospheric organic nitrates Amanda L. Lockwood,1
- Molecular dynamics simulation of ice growth from supercooled pure water and from salt solution
- RESEARCH FRONT CSIRO PUBLISHINGRapid Communication
- An Airborne and Wind Tunnel Evaluation of a Wind Turbulence Measurement System for Aircraft-Based Flux Measurements*
- The Production of Organic Nitrates from Various
- Molecular dynamics simulations of ice growth from supercooled water
- Nitrogen is a major nutrient in terrestrial ecosystems and an important catalyst in tropo-
- Comparison of the measured and simulated isoprene nitrate distributions above a forest canopy
- Peroxyacetyl nitrate photochemistry and interactions with the Arctic surface
- Atmospheric Chemistry of Nonanal J U L I A H U R S T B O W M A N ,
- Atmospheric Environment 36 (2002) 25532562 Atmospheric chemistry of formaldehyde in the Arctic
- Investigation of the role of the snowpack on atmospheric formaldehyde chemistry at Summit, Greenland
- Atmospheric Environment 36 (2002) 26952705 Formaldehyde in Arctic snow. Incorporation into ice particles
- Atmospheric Environment 36 (2002) 27792787 Processes and properties of snowair transfer in the high Arctic
- Atmospheric Environment 36 (2002) 25732583 Distribution and trends of oxygenated hydrocarbons in the
- Atmospheric Environment 36 (2002) 27432752 Snowpack processing of acetaldehyde and acetone in the Arctic
- NMR Investigation of the Quasi-Brine Layer in Ice/Brine Mixtures H. Cho,*, P. B. Shepson, L. A. Barrie,,|| J. P. Cowin, and R. Zaveri
- Loss of isoprene and sources of nighttime OH radicals at a rural site in the United States
- References and Notes 1. H. K. Mao, Y. Wu, L. C. Chen, J. Shu, A. P. Jephcoat, J.
- Atmospheric Environment 33 (1999) 323--335 Observational evidence for the impact of the lake breeze
- 1999 Macmillan Magazines Ltd poly ether ether ketone (PEEK). Typically, 0.5 g of the catalystcalcined to
- Determination of the Hydroxy Nitrate Yields from the Reaction of C2-C6 Alkenes with OH in the Presence of NO
- Production of organic nitrates represents an important sink for NOX [1]. Water/particle soluble hydroxy nitrates are formed during the
- Atmospheric Environment 36 (2002) 27332742 A study of photochemical and physical processes affecting
- Eos,Vol. 84, No. 36, 9 September 2003 Wees,Netherlands Institute ofApplied Geosciences;
- Atmospheric Environment 36 (2002) 24672469 An introduction to the ALERT 2000 and SUMMIT 2000
- Processing of atmospheric nitrogen by clouds above a forest environment
- 10, 1062510651, 2010 Isoprene nitrates
- r XXXX American Chemical Society A dx.doi.org/10.1021/jp110208a |J. Phys. Chem. A XXXX, XXX, 000000 pubs.acs.org/JPCA
- Aircraft-Based Measurements of the Carbon Footprint of Indianapolis
- A study of the vertical scale of halogen chemistry in the Arctic troposphere during Polar Sunrise at Barrow, Alaska