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Atmos. Chem. Phys., 12, 8567–8574, 2012 www.atmos-chem-phys.net[removed]doi:[removed]acp[removed] © Author(s[removed]CC Attribution 3.0 License. Atmospheric
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Document Date: 2013-01-17 20:40:38


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City

New York / Novato / Norfolk / Report / San Diego / /

Company

Parrish D. D. / Air Inc. / Russell / John Wiley & Sons Inc. / USA Resources Laboratory / Air Resources Laboratory / /

Continent

North America / Europe / /

Country

United States / /

/

Event

Natural Disaster / Man-Made Disaster / Environmental Issue / /

Facility

College Park / Air Resources Laboratory / /

IndustryTerm

gas-phase photochemical precursor concentrations / gas-phase oxidation / chemical system / computational algorithms / chemical scheme / particular chemical mechanism / chemical mechanisms / satellite-derived aerosol optical depths / chemical mechanism / sulfate chemical processes / gas-phase chemistry / sulfate production chemical pathways / sulfate formation chemical pathways / chemical comparison / chemical / main chemical processes / sulfate chemical formation processes / /

Organization

European Geosciences Union / United States Environmental Protection Agency / U.S. Environmental Protection Agency / Eta / National Oceanic and Atmospheric Administration / Department of Energy / North Atlantic Treaty Organization / Atmospheric Turbulence and Diffusion Division / Yocke / /

Person

Jacob / Luecken / J. Geophys / /

Position

D. J. / global aerosol model / Atmos / regional air quality model / Model / representative / /

ProvinceOrState

Texas / Ohio / Virginia / New York / California / /

PublishedMedium

Atmospheric Chemistry and Physics / Atmospheric Research / /

RadioStation

RT-04 / /

Region

eastern US / eastern United States / southeast Texas / /

Technology

radiation / simulation / /

URL

www.atmos-chem-phys.net/12/8567/2012 / http /

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