A high-resolution, empirical approach to climate impact assessment for regulatory analysis
Michael Delgado1, Justin Gerard Simcock2, Michael Greenstone3, Solomon M Hsiang4, Robert E Kopp5, Tamma Carleton6, Andrew Hultgren7, Amir Jina8, James A Rising9, Ishan Nath10, Dr. Jiacan Yuan11, Ashwin Rode12, Trinetta Chong13, Greg Dobbels14, Azhar Hussain14, Jingyuan Wang15, Yuqi Song14, Shashank Mohan2, Kate Larsen2 and Trevor Houser1, (1)Rhodium Group, Oakland, United States, (2)Rhodium Group, Oakland, CA, United States, (3)University of Chicago, Kenneth C. Griffin Department of Economics, Chicago, United States, (4)University of California, Berkeley, Goldman School of Public Policy, Berkeley, United States, (5)Rutgers University, Department of Earth and Planetary Sciences, New Brunswick, United States, (6)University of California, Berkeley, Berkeley, CA, United States, (7)University of Illinois at Urbana Champaign, Agricultural and Resource Economics, Urbana, United States, (8)University of Chicago, Harris School of Public Policy Studies, Chicago, IL, United States, (9)London School of Economics, Grantham Institute on Climate Change, London, United Kingdom, (10)University of Chicago, Economics, Chicago, United States, (11)Rutgers University New Brunswick, Earth and Planetary Sciences, New Brunswick, NJ, United States, (12)University of Chicago, Economics, Chicago, IL, United States, (13)University of Chicago, Energy Policy Institute at Chicago, Chicago, United States, (14)University of Chicago, Energy Policy Institute of Chicago, Chicago, IL, United States, (15)Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Key Laboratory of Land Surface Process and Climate Change in Cold and Arid Regions, Lanzhou, China