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Nicholson, S. E., Nash, D. J., Chase, B. M., Grab, S. W., Shanahan, T. M., Verschuren, D., et al. (2013). Temperature variability over Africa during the last 2000 years. The Holocene, 23(8), 1085–1094.
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Obeysekera, J., Graham, W., Sukop, M. C., Asefa, T., Wang, D., Ghebremichael, K., et al. (2017). Implications of climate change on Florida's water resources. In E. P. Chassignet, J. W. Jones, V. Misra, & J. Obeysekera (Eds.), Florida's climate: Changes, variations, & impacts (pp. 83–124). Gainesville, FL: Florida Climate Institute.
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Park, T. - W., Jeong, J. - H., Deng, Y., Zhou, R., & Cai, M. (2015). Quantitative decomposition of radiative and non-radiative contributions to temperature anomalies related to siberian high variability. Clim Dyn, 45(5-6), 1207–1217.
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Pau, S., Detto, M., Kim, Y., & Still, C. J. (2018). Tropical forest temperature thresholds for gross primary productivity. Ecosphere, 9(7), e02311.
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Pau, S., Detto, M., Kim, Y., & Still, C. J. (2018). Tropical forest temperature thresholds for gross primary productivity. Ecosphere, 9(7), e02311.
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Peng, J., Ma, J., Liu, Q., Liu, Y., Hu, Y. 'na, Li, Y., et al. (2018). Spatial-temporal change of land surface temperature across 285 cities in China: An urban-rural contrast perspective. Sci Total Environ, .
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Potter, H., Drennan, W. M., & Graber, H. C. (2017). Upper ocean cooling and air-sea fluxes under typhoons: A case study. J. Geophys. Res. Oceans, 122(9), 7237–7252.
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Pusack, T. J., Kimbro, D. L., White, J. W., & Stallings, C. D. (2019). Predation on oysters is inhibited by intense or chronically mild, low salinity events: Low salinity stress reduces predation. Limnol Oceanogr, 64(1), 81–92.
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Quesada, T., Lucas, S., Smith, K., & Smith, J. (2019). Response to Temperature and Virulence Assessment of Fusarium circinatum Isolates in the Context of Climate Change. Forests, 10(1).
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Raymundo, R., Asseng, S., Prassad, R., Kleinwechter, U., Concha, J., Condori, B., et al. (2017). Performance of the SUBSTOR-potato model across contrasting growing conditions. Field Crops Research, 202, 57–76.
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Ren, R. - C., Yang, Y., Cai, M., & Rao, J. (2015). Understanding the systematic air temperature biases in a coupled climate system model through a process-based decomposition method. Clim Dyn, 45(7-8), 1801–1817.
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Robbins,, & Lisle,. (2018). Regional Acidification Trends in Florida Shellfish Estuaries: a 20+ Year Look at pH, Oxygen, Temperature, and Salinity. Estuaries and Coasts, 41(5), 1268–1281.
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Ruane, A. C., Hudson, N. I., Asseng, S., Camarrano, D., Ewert, F., Martre, P., et al. (2016). Multi-wheat-model ensemble responses to interannual climate variability. Environmental Modelling & Software, 81, 86–101.
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Ruane, A. C., McDermid, S., Rosenzweig, C., Baigorria, G. A., Jones, J. W., Romero, C. C., et al. (2014). Carbon-Temperature-Water change analysis for peanut production under climate change: a prototype for the AgMIP Coordinated Climate-Crop Modeling Project (C3MP). Glob Change Biol, 20(2), 394–407.
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Rudzin, J. E., Morey, S. L., Bourassa, M. A., & Smith, S. R. (2013). The influence of Loop Current position on winter sea surface temperatures in the Florida Straits. Earth Interact., 17(16), 1–9.
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Ryan, S., Stewart-Ibarra, A., Ordóñez-Enireb, E., Chu, W., Finkelstein, J., King, C., et al. (2018). Spatiotemporal Variation in Environmental Vibrio cholerae in an Estuary in Southern Coastal Ecuador. International Journal of Environmental Research and Public Health, 15(3), 486.
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Ryan, S. J., Carlson, C. J., Carlson CJ, Mordecai, E. A., Mordecai EA, Johnson, L. R., et al. (2019). Global expansion and redistribution of Aedes-borne virus transmission risk with climate change. PLoS Negl Trop Dis, 13(3), e0007213.
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Scheffers, B. R., Shoo, L., Phillips, B., Macdonald, S. L., Anderson, A., VanDerWal, J., et al. (2017). Vertical (arboreality) and horizontal (dispersal) movement increase the resilience of vertebrates to climatic instability. Global Ecol. Biogeogr., 26(7), 787–798.
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Sejas, S. A., Cai, M., Hu, A., Meehl, G. A., Washington, W., & Taylor, P. C. (2014). Individual Feedback Contributions to the Seasonality of Surface Warming. J. Climate, 27(14), 5653–5669.
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Selman, C., & Misra, V. (2015). Simulating diurnal variations over the southeastern United States: Simulation of SEUS Diurnal Variations. J. Geophys. Res. Atmos., 120(1), 180–198.
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