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2. CMIP5 Projections of Arctic Amplification, of the North American/North Atlantic Circulation, and of Their Relationship
3. Contrasting short and long term projections of the hydrological cycle in the Southern extratropics
4. Drivers of the Recent Tropical Expansion in the Southern Hemisphere: Changing SSTs or Ozone Depletion?
5. On the surface impact of Arctic stratospheric ozone extremes
6. The impact of ozone depleting substances on the circulation, temperature, and salinity of the Southern Ocean: An attribution study with CESM1(WACCM)
7. Biases in Southern Hemisphere climate trends induced by coarsely specifying the temporal resolution of stratospheric ozone
8. Delayed Southern Hemisphere Climate Change Induced by Stratospheric Ozone Recovery, as Projected by the CMIP5 Models
9. Influence of projected Arctic sea ice loss on polar stratospheric ozone and circulation in spring
10. Is climate sensitivity related to dynamical sensitivity? A Southern Hemisphere perspective
11. Seasonal Ventilation of the Stratosphere: Robust Diagnostics from One-Way Flux Distributions
12. Separating the stratospheric and tropospheric pathways of El Niño–Southern Oscillation teleconnections
13. Southern Hemisphere Cloud–Dynamics Biases in CMIP5 Models and Their Implications for Climate Projections
14. The response midlatitude jets to increased CO2: Distinguishing the roles of sea surface temperature and direct radiative forcing
15. The surface impacts of Arctic stratospheric ozone anomalies
16. Are Recent Arctic Ozone Losses Caused by Increasing Greenhouse Gases?
17. Climate Change from 1850 to 2005 Simulated in CESM1(WACCM)
18.
Modeling Evidence that Ozone Depletion Has Impacted Extreme
Precipitation in the Austral Summer
19. Stratospheric ozone depletion: a key driver of recent precipitation trends in South Eastern South America
20. The Antarctic Atmospheric Energy Budget. Part I: Climatology and Intraseasonal-to-Interannual Variability
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