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Eric D. Maloney, Andrew Gettelman, Yi Ming, J. David Neelin, Daniel Barrie, Annarita Mariotti, C.-C. Chen, Danielle R. B. Coleman, Yi-Hung Kuo, Bohar Singh, H. Annamalai, Alexis Berg, James F. Booth, Suzana J. Camargo, Aiguo Dai, Alex Gonzalez, Jan Hafner, Xianan Jiang, Xianwen Jing, Daehyun Kim, Arun Kumar, Yumin Moon, Catherine M. Naud, Adam H. Sobel, Kentaroh Suzuki, Fuchang Wang, Junhong Wang, Allison A. Wing, Xiaobiao Xu, and Ming Zhao

. (2010) proposed a methodology for combining the radar reflectivity profile from CloudSat ( Marchand et al. 2008 ) and the cloud properties (optical thickness and effective radius) from MODIS ( Platnick et al. 2003 ; Nakajima et al. 2010 ) to probe how the warm rain process occurs within clouds. The methodology composites the radar reflectivity profiles in the form of the probability density function normalized at each in-cloud optical depth, which is determined by vertically slicing the cloud

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