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1

Lamb, Robert G. A regional-scale (1000 km) model of photochemical air pollution. U.S. Environmental Protection Agency, Atmospheric Sciences Research Laaboratory, 1985.

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2

Lamb, Robert G. A regional-scale (1000 km) model of photochemical air pollution. U.S. Environmental Protection Agency, Atmospheric Sciences Research Laaboratory, 1985.

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3

Lamb, Robert G. A regional-scale (1000 km) model of photochemical air pollution. U.S. Environmental Protection Agency, Atmospheric Sciences Research Laaboratory, 1985.

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4

Lamb, Robert G. A regional-scale (1000 km) model of photochemical air pollution. U.S. Environmental Protection Agency, Atmospheric Sciences Research Laaboratory, 1985.

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5

Lamb, Robert G. A regional-scale (1000 km) model of photochemical air pollution. U.S. Environmental Protection Agency, Atmospheric Sciences Research Laaboratory, 1985.

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6

Whitten, G. Z. Development of a chemical kinetic mechanism for the U.S. EPA regional oxidant model. U.S. Environmental Protection Agency, Atmospheric Sciences Research Laboratory, 1985.

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7

Haney, Jay L. Evaluation and application of the urban airshed model in the Philadelphia air quality control region. U.S. Environmental Protection Agency, Office of Air and Radiation, Office of Air Quality Planning and Standards, 1985.

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8

Dymek, M. K. Photochemical model of ion composition and electron density in the terrestrial ionosphere between 70 and 300 KM. I'Institut royal météorologique de Belgique, 1989.

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9

Perego, Silvan. Ein numerisches Modell zur Simulation des Sommersmogs. Geographisches Institut der Universität Bern, 1996.

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10

Fuchs, Friedhelm. Modellierung der Ozon-Immissionsbelastung in Rheinland-Pfalz: Studien zur physikochemischen Entwicklung von Oxidanten in anthropogen kontaminierten Luftmassen. Geographisches Institut Johannes Gutenberg-Universität Mainz, 1994.

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11

Brock, J. R. Urban aerosol modeling: Incorporation of an SOb2s photochemical oxidation module in AROSOL. U.S. Environmental Protection Agency, Atmospheric Sciences Research Laboratory, 1986.

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12

Brock, J. R. Urban aerosol modeling: Incorporation of an SO. U.S. Environmental Protection Agency, Atmospheric Sciences Research Laboratory, 1986.

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13

A & WMA International Specialty Conference (1993 San Diego). Regional photochemical measurement and modeling studies: The proceedings of an International Specialty Conference hosted by: Air & Waste Management Association, San Diego Chapter, West Coast Section. Air & Waste Management Association, 1995.

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14

Bishop, James. Determination of hydrocarbon abundances and the strength of eddy mixing in the stratosphere of Neptune: Analysis of UVS solar occultation lightcurves : final report. Computational Physics Incorporated, 1995.

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15

Inc, Altostratus. Urban surface modification as a potential ozone air-quality improvement strategy in California: Fine-resolution meteorological and photochemical modeling of urban heat islands : PIER final project report. California Energy Commission, 2009.

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16

Nakashima. Novel Photochemical Model for Thrombosis & Evaluation of Antithrom. Churchill Livingstone, 1994.

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17

Hough, A. M. The Significance of Physical and Chemical Processes in a Photochemical Oxidant Model. AEA Technology Plc, 1987.

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18

M, Rodríguez José, and United States. National Aeronautics and Space Administration., eds. PEM-West trajectory climatology and photochemical model sensitivity study prepared using retrospective meteorological data. National Aeronautics and Space Administration, 1991.

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19

M, Rodríguez José, and United States. National Aeronautics and Space Administration., eds. PEM-West trajectory climatology and photochemical model sensitivity study prepared using retrospective meteorological data. National Aeronautics and Space Administration, 1991.

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20

Mitsuyoshi, Nakashima, ed. A novel photochemical model for thrombosis research and evaluation of antithrombotic and thrombolytic agents. Churchill Livingstone, 1994.

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21

Thomas, Chyba, and United States. National Aeronautics and Space Administration., eds. Interpretation of lidar and satellite data sets using a global photochemical model: Progress report--July 31, 1996; NASA grant #NCC-1-214. National Aeronautics and Space Administration, 1996.

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22

Solar Energy Conversion and Storage: Photochemical Modes. Taylor & Francis Group, 2015.

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23

W, Gery M., Carter William P. L, and Atmospheric Research and Exposure Assessment Laboratory (U.S.), eds. Protocols for evaluating oxidant mechanisms for urban and regional models. Atmospheric Research and Exposure Assessment Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1992.

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24

(Editor), Reck, and Hummel (Editor), eds. Interpretation of Climate and Photochemical Models (AIP Conference Proceedings). American Institute of Physics, 1998.

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25

E, Jeffries H., and Atmospheric Sciences Research Laboratory, eds. Outdoor smog chamber experiments to test photochemical models: Phase II. U.S. Environmental Protection Agency, Atmospheric Sciences Research Laboratory, 1985.

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26

Mike, Koerber, and Systems Applications International, eds. Lake Michigan ozone study photochemical modeling system: User's guide. [The Systems, 1993.

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27

United States. Environmental Protection Agency. Emissions, Monitoring, and Analysis Division, ed. Compilation of photochemical models' performance statistics for 11/94 ozone SIP applications. U.S. Environmental Protection Agency, Office of Air Quality Planning and Standards, Emissions, Monitoring, and Analysis Division, 1996.

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28

Wenjie, Hu, Ko Malcolm K. W, and United States. National Aeronautics and Space Administration., eds. Quarterly progress report on the utilization of UARS data in validation of photochemical and dynamical mechanism in stratospheric models: (contract NAS5-32844). Atmospheric and Environmental Research, Inc.], 1995.

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29

Utilization of UARS data in validation of photochemical and dynamical mechanisms in stratospheric models: Contract NAS5-32844. National Aeronautics and Space Administration, 1998.

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30

Determination of hydrocarbon abundances and the strength of eddy mixing in the stratosphere of Neptune: Analysis of UVS solar occultation lightcurves : final report. Computational Physics Incorporated, 1995.

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31

Wenjie, Hu, Ko Malcolm K. W, and United States. National Aeronautics and Space Administration., eds. Quarterly progress report on the utilization of UARS data in validation of photochemical and dynamical mechanism in stratospheric models: (contract NAS5-32844). National Aeronautics and Space Administration, 1996.

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32

Wenjie, Hu, Ko Malcolm K. W, and United States. National Aeronautics and Space Administration., eds. Quarterly progress report on the utilization of UARS data in validation of photochemical and dynamical mechanism in stratospheric models: (contract NAS5-32844). Atmospheric and Environmental Research, Inc.], 1995.

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33

Wenjie, Hu, Ko Malcolm K. W, and United States. National Aeronautics and Space Administration., eds. Quarterly progress report on the utilization of UARS data in validation of photochemical and dynamical mechanism in stratospheric models: (contract NAS5-32844). Atmospheric and Environmental Research, Inc., 1995.

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34

Wenjie, Hu, Ko Malcolm K. W, and United States. National Aeronautics and Space Administration., eds. Quarterly progress report on the utilization of UARS data in validation of photochemical and dynamical mechanism in stratospheric models: (contract NAS5-32844). National Aeronautics and Space Administration, 1996.

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35

Wenjie, Hu, Ko Malcolm K. W, and United States. National Aeronautics and Space Administration., eds. Quarterly progress report on the utilization of UARS data in validation of photochemical and dynamical mechanism in stratospheric models: (contract NAS5-32844). Atmospheric and Environmental Research, Inc., 1995.

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