Source: Bulletin of the American Meteorological Society:;2009:;volume( 090 ):;issue: 012:;page 1843
Author(s): Weaver, C. P.; Cooter, E.; Gilliam, R.; Gilliland, A.; Grambsch, A.; Grano, D.; Hemming, B.; Hunt, S. W.; Nolte, C.; Winner, D. A.; Liang, X-Z.; Zhu, J.; Caughey, M.; Kunkel, K.; Lin, J-T.; Tao, Z.; Williams, A.; Wuebbles, D. J.; Adams, P. J.; Dawson, J. P.; Amar, P.; He, S.; Avise, J.; Chen, J.; Cohen, R. C.; Goldstein, A. H.; Harley, R. A.; Steiner, A. L.; Tonse, S.; Guenther, A.; Lamarque, J-F.; Wiedinmyer, C.; Gustafson, W. I.; Leung, L. R.; Hogrefe, C.; Huang, H-C.; Jacob, D. J.; Mickley, L. J.; Wu, S.; Kinney, P. L.; Lamb, B.; Larkin, N. K.; McKenzie, D.; Liao, K-J.; Manomaiphiboon, K.; Russell, A. G.; Tagaris, E.; Lynn, B. H.; Mass, C.; Salathé, E.; O'neill, S. M.; Pandis, S. N.; Racherla, P. N.; Rosenzweig, C.; Woo, J-H.
Publisher: American Meteorological Society
Abstract: This paper provides a synthesis of results that have emerged from recent modeling studies of the potential sensitivity of U.S. regional ozone (O3) concentrations to global climate change (ca. 2050). This research has been ...