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1. Changes in Soil Moisture Persistence in China over the Past 40 Years under a Warming Climate.

2. Groundwater Feedbacks on Climate Change in the CNRM Global Climate Model.

3. Role of Winter Soil Moisture in Subsequent Summer Thermal Anomalies on the Tibetan Plateau.

4. Trivariate Analysis of Changes in Drought Characteristics in the CMIP6 Multimodel Ensemble at Global Warming Levels of 1.5°, 2°, and 3°C.

5. CMIP6 Model-Projected Hydroclimatic and Drought Changes and Their Causes in the Twenty-First Century.

6. Response of Tropical Rainfall to Reduced Evapotranspiration Depends on Continental Extent.

7. Increasing Destructive Potential of Landfalling Tropical Cyclones over China.

8. Rising Temperatures Increase Importance of Oceanic Evaporation as a Source for Continental Precipitation.

9. Climate Change Amplification of Natural Drought Variability: The Historic Mid-Twentieth-Century North American Drought in a Warmer World.

10. Future Intensification of the Water Cycle with an Enhanced Annual Cycle over Global Land Monsoon Regions.

11. Potential Reemergence of Seasonal Soil Moisture Anomalies in North America.

12. Soil Moisture-Evapotranspiration Coupling in CMIP5 Models: Relationship with Simulated Climate and Projections.

13. Impact of Earth Greening on the Terrestrial Water Cycle.

14. Improvement of Short-Term Climate Prediction with Indirect Soil Variables Assimilation in China.

15. The Role of Soil Moisture-Atmosphere Interaction on Future Hot Spells over North America as Simulated by the Canadian Regional Climate Model (CRCM5).

16. Influence of the Ocean and Greenhouse Gases on Severe Drought Likelihood in the Central United States in 2012.

17. How Has Human-Induced Climate Change Affected California Drought Risk?

18. Recent and Projected Annual Cycles of Temperature and Precipitation in the Northeast United States from CMIP5.

19. The Response of the South Asian Summer Monsoon to Temporal and Spatial Variations in Absorbing Aerosol Radiative Forcing.

20. Bridging Past and Future Climate across Paleoclimatic Reconstructions, Observations, and Models: A Hydroclimate Case Study*.

21. Interannual Coupling between Summertime Surface Temperature and Precipitation over Land: Processes and Implications for Climate Change*.