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         Radiative Impacts of Low-Level Clouds on the Summertime Subtropical High in the South Indian Ocean Simulated in a Coupled General Circulation Model</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/10/JCLI-D-20-0743.1.xml</sm:loc><ifp:title>Direct Influence of Solar Spectral Irradiance on the High-Latitude Surface Climate</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/10/JCLI-D-20-0743.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>Direct Influence of Solar Spectral Irradiance on the High-Latitude Surface Climate</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/10/JCLI-D-20-0771.1.xml</sm:loc><ifp:title>Arctic Cyclone Activity and the Beaufort High</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/10/JCLI-D-20-0771.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>Arctic Cyclone Activity and the Beaufort High</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/10/JCLI-D-20-0784.1.xml</sm:loc><ifp:title>On the Varying Responses of East Asian Winter Monsoon to Three Types of El Niño: Observations and Model Hindcasts</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/10/JCLI-D-20-0784.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>On the Varying Responses of East Asian Winter Monsoon to Three Types of El Niño: Observations and Model Hindcasts</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-19-0914.1.xml</sm:loc><ifp:title>
         
            
         Kenyan Long Rains: A Subseasonal Approach to Process-Based Diagnostics</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-19-0914.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>
         
            
         Kenyan Long Rains: A Subseasonal Approach to Process-Based Diagnostics</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-19-0938.1.xml</sm:loc><ifp:title>Seasonal Sensitivity of the Cross-Equatorial Hadley Cell Response to Extratropical Thermal Forcings</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-19-0938.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>Seasonal Sensitivity of the Cross-Equatorial Hadley Cell Response to Extratropical Thermal Forcings</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-19-1013.1.xml</sm:loc><ifp:title>
         
            
         Changes in Annual Extremes of Daily Temperature and Precipitation in CMIP6 Models</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-19-1013.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>
         
            
         Changes in Annual Extremes of Daily Temperature and Precipitation in CMIP6 Models</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0170.1.xml</sm:loc><ifp:title>Observed Extreme Air–Sea Heat Flux Variations during Three Tropical Cyclones in the Tropical Southeastern Indian Ocean</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0170.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>Observed Extreme Air–Sea Heat Flux Variations during Three Tropical Cyclones in the Tropical Southeastern Indian Ocean</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0224.1.xml</sm:loc><ifp:title>Explicit versus Parameterized Convection in Response to the Atlantic Meridional Mode</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0224.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>Explicit versus Parameterized Convection in Response to the Atlantic Meridional Mode</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0288.1.xml</sm:loc><ifp:title>Transient Climate Response to Arctic Sea Ice Loss with Two Ice-Constraining Methods</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0288.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>Transient Climate Response to Arctic Sea Ice Loss with Two Ice-Constraining Methods</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0294.1.xml</sm:loc><ifp:title>
         
            
         Assessment and Ranking of Climate Models in Arctic Sea Ice Cover Simulation: From CMIP5 to CMIP6</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0294.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>
         
            
         Assessment and Ranking of Climate Models in Arctic Sea Ice Cover Simulation: From CMIP5 to CMIP6</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0325.1.xml</sm:loc><ifp:title>Combined Effects of the British–Baikal Corridor Pattern and the Silk Road Pattern on Eurasian Surface Air Temperatures in Summer</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0325.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>Combined Effects of the British–Baikal Corridor Pattern and the Silk Road Pattern on Eurasian Surface Air Temperatures in Summer</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0355.1.xml</sm:loc><ifp:title>
         
            
         Recent Water Mass Changes Reveal Mechanisms of Ocean Warming</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0355.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>
         
            
         Recent Water Mass Changes Reveal Mechanisms of Ocean Warming</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0387.1.xml</sm:loc><ifp:title>Local Atmospheric Response to the Kuroshio Large Meander Path in Summer and Its Remote Influence on the Climate of Japan</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0387.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>Local Atmospheric Response to the Kuroshio Large Meander Path in Summer and Its Remote Influence on the Climate of Japan</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0447.1.xml</sm:loc><ifp:title>
         
            
         ENSO Diversity in a Tropical Stochastic Skeleton Model for the MJO, El Niño, and Dynamic Walker Circulation</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0447.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>
         
            
         ENSO Diversity in a Tropical Stochastic Skeleton Model for the MJO, El Niño, and Dynamic Walker Circulation</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0464.1.xml</sm:loc><ifp:title>
         
            
         Mechanisms of Decadal North Atlantic Climate Variability and Implications for the Recent Cold Anomaly</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0464.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>
         
            
         Mechanisms of Decadal North Atlantic Climate Variability and Implications for the Recent Cold Anomaly</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0477.1.xml</sm:loc><ifp:title>What Modulates the Intensity of Synoptic-Scale Variability over the Western North Pacific during Boreal Summer and Fall?</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0477.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>What Modulates the Intensity of Synoptic-Scale Variability over the Western North Pacific during Boreal Summer and Fall?</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0480.1.xml</sm:loc><ifp:title>Interdecadal Variation of the Wintertime Precipitation in Southeast Asia and Its Possible Causes</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0480.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>Interdecadal Variation of the Wintertime Precipitation in Southeast Asia and Its Possible Causes</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0487.1.xml</sm:loc><ifp:title>Impact of the Indian Ocean Dipole on Evolution of the Subsequent ENSO: Relative Roles of Dynamic and Thermodynamic Processes</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0487.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>Impact of the Indian Ocean Dipole on Evolution of the Subsequent ENSO: Relative Roles of Dynamic and Thermodynamic Processes</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0501.1.xml</sm:loc><ifp:title>Dynamics of East Asian Spring Rainband and Spring–Autumn Contrast: Environmental Forcings of Large-Scale Circulation</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0501.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>Dynamics of East Asian Spring Rainband and Spring–Autumn Contrast: Environmental Forcings of Large-Scale Circulation</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0533.1.xml</sm:loc><ifp:title>Radiative and Dynamic Controls on Atmospheric Heat Transport over Different Planetary Rotation Rates</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0533.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>Radiative and Dynamic Controls on Atmospheric Heat Transport over Different Planetary Rotation Rates</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0586.1.xml</sm:loc><ifp:title>
         
            
         Sources of Subseasonal Predictability over CONUS during Boreal Summer</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0586.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>
         
            
         Sources of Subseasonal Predictability over CONUS during Boreal Summer</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0604.1.xml</sm:loc><ifp:title>
         
            
         Climatology of Borneo Vortices in the HadGEM3-GC3.1 General Circulation Model</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0604.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>
         
            
         Climatology of Borneo Vortices in the HadGEM3-GC3.1 General Circulation Model</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0612.1.xml</sm:loc><ifp:title>
         
            
         Impact of Developing ENSO on Tibetan Plateau Summer Rainfall</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0612.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>
         
            
         Impact of Developing ENSO on Tibetan Plateau Summer Rainfall</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0620.1.xml</sm:loc><ifp:title>The Strong Upwelling Event off the Southern Coast of Sri Lanka in 2013 and Its Relationship with Indian Ocean Dipole Events</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0620.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>The Strong Upwelling Event off the Southern Coast of Sri Lanka in 2013 and Its Relationship with Indian Ocean Dipole Events</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0630.1.xml</sm:loc><ifp:title>
         
            
         Predictable Mode of Tropical Intraseasonal Variability in Boreal Summer</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0630.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>
         
            
         Predictable Mode of Tropical Intraseasonal Variability in Boreal Summer</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0655.1.xml</sm:loc><ifp:title>
         
            
         Transient Extratropical Response to Solar Ultraviolet Radiation in the Northern Hemisphere Winter</ifp:title><sm:lastmod>2022-01-30</sm:lastmod></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0655.1.pdf</sm:loc><sm:lastmod>2022-01-30</sm:lastmod><ifp:title>
         
            
         Transient Extratropical Response to Solar Ultraviolet Radiation in the Northern Hemisphere Winter</ifp:title></sm:url><sm:url xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/9/JCLI-D-20-0685.1.xml</sm:loc><ifp:title>
         
            
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