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         Comparison of Tropical Cyclone Center Positions Determined from Satellite Observations at Infrared and Microwave Frequencies</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/atsc/77/12/JAS-D-20-0153.1.xml</sm:loc><ifp:title>A Nonlinear Multiscale Theory of Atmospheric Blocking: Eastward and Upward Propagation and Energy Dispersion of Tropospheric Blocking Wave Packets</ifp:title><sm:lastmod>2021-03-20</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/atsc/77/12/JAS-D-20-0153.1.pdf</sm:loc><sm:lastmod>2021-02-22</sm:lastmod><ifp:title>A Nonlinear Multiscale Theory of Atmospheric Blocking: Eastward and Upward Propagation and Energy Dispersion of Tropospheric Blocking Wave Packets</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/atsc/77/12/JAS-D-20-0094.1.xml</sm:loc><ifp:title>Interactive Radiation Accelerates the Intensification of the Midlevel Vortex for Tropical Cyclogenesis</ifp:title><sm:lastmod>2021-03-20</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/atsc/77/12/JAS-D-20-0094.1.pdf</sm:loc><sm:lastmod>2021-02-22</sm:lastmod><ifp:title>Interactive Radiation Accelerates the Intensification of the Midlevel Vortex for Tropical Cyclogenesis</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/atot/37/12/jtech-d-20-0037.1.xml</sm:loc><ifp:title>
         A Classification of Ice Crystal Habits Using Combined Lidar and Scanning Polarimeter Observations during the SEAC4RS Campaign</ifp:title><sm:lastmod>2021-03-20</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/atot/37/12/jtech-d-20-0037.1.pdf</sm:loc><sm:lastmod>2020-12-29</sm:lastmod><ifp:title>
         A Classification of Ice Crystal Habits Using Combined Lidar and Scanning Polarimeter Observations during the SEAC4RS Campaign</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/atot/37/11/JTECH-D-20-0078.1.xml</sm:loc><ifp:title>
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         Toward the Standardization of Mesoscale Meteorological Networks</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/atot/37/11/jtechD200041.xml</sm:loc><ifp:title>
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         A Pressure-Tight Sampler with Flexible Titanium Bag for Deep-Sea Hydrothermal Fluid Samples</ifp:title><sm:lastmod>2021-03-20</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/atot/37/11/JTECH-D-20-0017.1.pdf</sm:loc><sm:lastmod>2020-12-04</sm:lastmod><ifp:title>
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         Challenges of Measuring Abyssal Temperature and Salinity at the Kuroshio Extension Observatory</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/atot/37/11/JTECH-D-19-0092.1.xml</sm:loc><ifp:title>
         A Technique for Estimating Liquid Droplet Diameter and Liquid Water Content in Stratocumulus Clouds Using Radar and Lidar Measurements</ifp:title><sm:lastmod>2021-03-21</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/atot/37/11/JTECH-D-19-0092.1.pdf</sm:loc><sm:lastmod>2021-01-29</sm:lastmod><ifp:title>
         A Technique for Estimating Liquid Droplet Diameter and Liquid Water Content in Stratocumulus Clouds Using Radar and Lidar Measurements</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/hydr/21/11/JHM-D-20-0067.1.xml</sm:loc><ifp:title>Future Changes in the Hydrologic Cycle Associated with Flood-Producing Storms in California</ifp:title><sm:lastmod>2021-03-21</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/hydr/21/11/JHM-D-20-0067.1.pdf</sm:loc><sm:lastmod>2021-01-08</sm:lastmod><ifp:title>Future Changes in the Hydrologic Cycle Associated with Flood-Producing Storms in California</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/apme/59/11/JAMC-D-20-0004.1.xml</sm:loc><ifp:title>Characteristics of Tropopause 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and Accuracy of Tropical Cyclone Outlooks for Australia</ifp:title><sm:lastmod>2021-03-21</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/apme/59/11/JAMC-D-20-0131.1.pdf</sm:loc><sm:lastmod>2021-01-29</sm:lastmod><ifp:title>Using Indicators of ENSO, IOD, and SAM to Improve Lead Time and Accuracy of Tropical Cyclone Outlooks for Australia</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/apme/59/11/JAMC-D-20-0116.1.xml</sm:loc><ifp:title>Aviation Turbulence Forecasting at Upper Levels with Machine Learning Techniques Based on Regression Trees</ifp:title><sm:lastmod>2021-03-21</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/apme/59/11/JAMC-D-20-0116.1.pdf</sm:loc><sm:lastmod>2021-01-29</sm:lastmod><ifp:title>Aviation 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xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/atsc/77/12/JAS-D-19-0349.1.pdf</sm:loc><sm:lastmod>2021-02-22</sm:lastmod><ifp:title>Unsteady Vortex Behavior in the Asian Monsoon Anticyclone</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/phoc/50/11/JPO-D-20-0035.1.xml</sm:loc><ifp:title>Warm Spiral Streamers over Gulf Stream Warm-Core Rings</ifp:title><sm:lastmod>2021-03-21</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/phoc/50/11/JPO-D-20-0035.1.pdf</sm:loc><sm:lastmod>2021-01-15</sm:lastmod><ifp:title>Warm Spiral Streamers over Gulf Stream Warm-Core Rings</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/apme/59/12/jamc-d-20-0236.1.xml</sm:loc><ifp:title>Data Availability Principles and Practice</ifp:title><sm:lastmod>2021-03-21</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/apme/59/12/jamc-d-20-0236.1.pdf</sm:loc><sm:lastmod>2021-01-29</sm:lastmod><ifp:title>Data Availability Principles and Practice</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/apme/59/11/JAMC-D-20-0026.1.xml</sm:loc><ifp:title>Terminal Wind Hazard Analyses Based on Assimilated Weather Data and Lagrangian Coherent Structures</ifp:title><sm:lastmod>2021-03-21</sm:lastmod></sm:url><sm:url 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xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/mwre/148/11/MWR-D-20-0117.1.pdf</sm:loc><sm:lastmod>2021-02-24</sm:lastmod><ifp:title>Track Deflection of Typhoon Maria (2018) during a Westbound Passage Offshore of Northern Taiwan: Topographic Influence</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/mwre/148/11/MWR-D-20-0056.1.xml</sm:loc><ifp:title>Diagnosing the Influence of a Receding Snow Boundary on Simulated Midlatitude Cyclones Using Piecewise Potential Vorticity Inversion</ifp:title><sm:lastmod>2021-03-21</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/mwre/148/11/MWR-D-20-0056.1.pdf</sm:loc><sm:lastmod>2021-02-24</sm:lastmod><ifp:title>Diagnosing the Influence of a Receding Snow Boundary on Simulated Midlatitude Cyclones Using 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xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/33/22/jcliD190504.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>Modeled Climate Responses to Realistic Extremes of Northern Hemisphere Spring and Summer Snow Anomalies</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/33/22/jcliD190672.xml</sm:loc><ifp:title>Contrasting Southern Hemisphere Monsoon Response: MidHolocene Orbital Forcing versus Future Greenhouse Gas–Induced Global Warming</ifp:title><sm:lastmod>2021-03-22</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/33/22/jcliD190672.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>Contrasting Southern Hemisphere Monsoon Response: MidHolocene Orbital Forcing versus Future Greenhouse Gas–Induced Global 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xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/33/22/jcliD200111.xml</sm:loc><ifp:title>Factors Regulating the Multidecadal Changes in MJO Amplitude over the Twentieth Century</ifp:title><sm:lastmod>2021-03-22</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/33/22/jcliD200111.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>Factors Regulating the Multidecadal Changes in MJO Amplitude over the Twentieth Century</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/33/22/jcliD200146.xml</sm:loc><ifp:title>A Global Quasigeostrophic Diagnosis of Extratropical Extreme Precipitation</ifp:title><sm:lastmod>2021-03-22</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/33/22/jcliD200146.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>A Global Quasigeostrophic Diagnosis of Extratropical Extreme Precipitation</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/33/22/jcliD200163.xml</sm:loc><ifp:title>The Impact of Warm and Moist Airmass Perturbations on Arctic Mixed-Phase Stratocumulus</ifp:title><sm:lastmod>2021-03-22</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/33/22/jcliD200163.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>The Impact of Warm and Moist Airmass Perturbations on Arctic Mixed-Phase Stratocumulus</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/33/22/jcliD200218.xml</sm:loc><ifp:title>Exploring the Factors Influencing the Strength and Variability of Convectively Coupled Mixed Rossby–Gravity Waves</ifp:title><sm:lastmod>2021-03-22</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/33/22/jcliD200218.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>Exploring the Factors Influencing the Strength and Variability of Convectively Coupled Mixed Rossby–Gravity Waves</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/33/22/jcliD200271.xml</sm:loc><ifp:title>Multidecadal Warming and Density Loss in the Deep Weddell Sea, Antarctica</ifp:title><sm:lastmod>2021-03-22</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/33/22/jcliD200271.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>Multidecadal Warming and Density Loss in the Deep Weddell Sea, Antarctica</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/33/22/jcliD200304.xml</sm:loc><ifp:title>Different Enhancement of the East Asian Summer Monsoon under Global Warming and Interglacial Epochs Simulated by CMIP6 Models: Role of the Subtropical High</ifp:title><sm:lastmod>2021-03-22</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/33/22/jcliD200304.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>Different Enhancement of the East Asian Summer Monsoon under Global Warming and Interglacial Epochs Simulated by CMIP6 Models: Role of the 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xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/hydr/21/12/jhm-d-20-0040.1.pdf</sm:loc><sm:lastmod>2021-01-08</sm:lastmod><ifp:title>Assessment of Extremes in Global Precipitation Products: How Reliable Are They?</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/hydr/21/12/jhm-d-20-0041.1.xml</sm:loc><ifp:title>Object-Based Comparison of Data-Driven and Physics-Driven Satellite Estimates of Extreme Rainfall</ifp:title><sm:lastmod>2021-03-26</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/hydr/21/12/jhm-d-20-0041.1.pdf</sm:loc><sm:lastmod>2021-01-08</sm:lastmod><ifp:title>Object-Based Comparison of Data-Driven and Physics-Driven Satellite Estimates of Extreme 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/hydr/21/12/jhm-d-20-0079.1.xml</sm:loc><ifp:title>Improvements to Lake-Effect Snow Forecasts Using a One-Way Air–Lake Model Coupling Approach</ifp:title><sm:lastmod>2021-03-26</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/hydr/21/12/jhm-d-20-0079.1.pdf</sm:loc><sm:lastmod>2021-01-28</sm:lastmod><ifp:title>Improvements to Lake-Effect Snow Forecasts Using a One-Way Air–Lake Model Coupling Approach</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/hydr/21/12/jhm-d-20-0083.1.xml</sm:loc><ifp:title>Assessing the Impact of Changes in Land Surface Conditions on WRF Predictions in Arid Regions</ifp:title><sm:lastmod>2021-03-26</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/hydr/21/12/jhm-d-20-0083.1.pdf</sm:loc><sm:lastmod>2021-01-28</sm:lastmod><ifp:title>Assessing the Impact of Changes in Land Surface Conditions on WRF Predictions in Arid Regions</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/hydr/21/12/jhm-d-20-0114.1.xml</sm:loc><ifp:title>Evaluation of IMERG V05B 30-Min Rainfall Estimates over the High-Elevation Tropical Andes Mountains</ifp:title><sm:lastmod>2021-03-26</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/hydr/21/12/jhm-d-20-0114.1.pdf</sm:loc><sm:lastmod>2021-01-08</sm:lastmod><ifp:title>Evaluation of IMERG V05B 30-Min Rainfall Estimates over the High-Elevation Tropical Andes Mountains</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/hydr/21/12/jhm-d-20-0232.1.xml</sm:loc><ifp:title>Data Availability Principles and Practice</ifp:title><sm:lastmod>2021-03-26</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/hydr/21/12/jhm-d-20-0232.1.pdf</sm:loc><sm:lastmod>2021-01-28</sm:lastmod><ifp:title>Data Availability Principles and Practice</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/atot/37/11/JTECH-D-20-0070.1.xml</sm:loc><ifp:title>
         Bootstrap Methods for Statistical Inference. Part II: Extreme-Value Analysis</ifp:title><sm:lastmod>2021-03-28</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/atot/37/11/JTECH-D-20-0070.1.pdf</sm:loc><sm:lastmod>2020-12-04</sm:lastmod><ifp:title>
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Part I: Real-Time Probabilities of Peak Tornado Wind Speeds</ifp:title><sm:lastmod>2021-03-28</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/wefo/35/6/waf-d-20-0010.1.pdf</sm:loc><sm:lastmod>2021-02-10</sm:lastmod><ifp:title>WSR-88D Tornado Intensity Estimates. 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Conditions</ifp:title><sm:lastmod>2021-03-28</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/phoc/50/11/JPO-D-20-0102.1.pdf</sm:loc><sm:lastmod>2021-02-01</sm:lastmod><ifp:title>On the Wave State Dependence of the Sea Surface Roughness at Moderate Wind Speeds under Mixed Wave Conditions</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/33/22/jcliD200305.xml</sm:loc><ifp:title>Influence of Madden–Julian Oscillation on the Intraseasonal Variability of Summer and Winter Monsoon Rainfall in the Philippines</ifp:title><sm:lastmod>2021-03-28</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/33/22/jcliD200305.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>Influence of Madden–Julian Oscillation on the 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xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/phoc/50/11/JPO-D-19-0316.1.xml</sm:loc><ifp:title>An Objective Method for Probabilistic Forecasting of Multimodal Kuroshio States using Ensemble Simulation and Machine Learning</ifp:title><sm:lastmod>2021-03-28</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/phoc/50/11/JPO-D-19-0316.1.pdf</sm:loc><sm:lastmod>2021-02-01</sm:lastmod><ifp:title>An Objective Method for Probabilistic Forecasting of Multimodal Kuroshio States using Ensemble Simulation and Machine Learning</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/33/22/jcliD200189.xml</sm:loc><ifp:title>Drier North American Monsoon in Contrast to Asian–African Monsoon under Global Warming</ifp:title><sm:lastmod>2021-03-28</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/33/22/jcliD200189.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>Drier North American Monsoon in Contrast to Asian–African Monsoon under Global 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/33/22/jcliD190934.xml</sm:loc><ifp:title>The Enhancement of the Impact of the Wintertime North Atlantic Oscillation on the Subsequent Sea Surface Temperature over the Tropical Atlantic since the Middle 1990s</ifp:title><sm:lastmod>2021-03-28</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/33/22/jcliD190934.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>The Enhancement of the Impact of the 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xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/33/21/jcliD190921.xml</sm:loc><ifp:title>Direct Temporal Cascade of Temperature Variance in Eddy-Permitting Simulations of Multidecadal Variability</ifp:title><sm:lastmod>2021-04-21</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/33/21/jcliD190921.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>Direct Temporal Cascade of Temperature Variance in Eddy-Permitting Simulations of Multidecadal Variability</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/33/21/jcliD190923.xml</sm:loc><ifp:title>Freeze–Thaw Changes of Seasonally Frozen Ground on the Tibetan Plateau from 1960 to 2014</ifp:title><sm:lastmod>2021-04-21</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/33/21/jcliD190923.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>Freeze–Thaw Changes of Seasonally Frozen Ground on the Tibetan Plateau from 1960 to 2014</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/33/21/jcliD190943.xml</sm:loc><ifp:title>Dependence of Beaufort Sea Low Ice Condition in the Summer of 1998 on Ice Export in the Prior Winter</ifp:title><sm:lastmod>2021-04-21</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/33/21/jcliD190943.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>Dependence of Beaufort Sea Low Ice Condition in the Summer of 1998 on Ice Export in the Prior 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/33/21/jcliD190948.xml</sm:loc><ifp:title>Processes Shaping the Frontal-Scale Time-Mean Surface Wind Convergence Patterns around the Gulf Stream and Agulhas Return Current in Winter</ifp:title><sm:lastmod>2021-04-21</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/33/21/jcliD190948.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>Processes Shaping the Frontal-Scale Time-Mean Surface Wind Convergence Patterns around the Gulf Stream and Agulhas Return Current in 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/33/21/jcliD190962.xml</sm:loc><ifp:title>Regional Variability and Trends of Temperature Inversions in 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xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/33/21/jcliD200002.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>Quantifying the Anthropogenic Greenhouse Gas Contribution to the Observed Spring Snow-Cover Decline Using the CMIP6 Multimodel Ensemble</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/33/21/jcliD200042.xml</sm:loc><ifp:title>Predictive Skill Assessment for Land Water Storage in CMIP5 Decadal Hindcasts by a Global Reconstruction of GRACE Satellite Data</ifp:title><sm:lastmod>2021-04-21</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/33/21/jcliD200042.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>Predictive Skill Assessment for Land Water Storage in CMIP5 Decadal Hindcasts by a Global 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xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/33/21/jcliD200096.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>The Leading Intraseasonal Variability Mode of Wintertime Surface Air Temperature over the North American Sector</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/33/21/jcliD200186.xml</sm:loc><ifp:title>Understanding the Distribution of Multimodel Ensembles</ifp:title><sm:lastmod>2021-04-21</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/33/21/jcliD200186.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>Understanding the Distribution of Multimodel Ensembles</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/33/21/jcliD200195.xml</sm:loc><ifp:title>The Impact of SST Biases in the Tropical East Pacific and Agulhas Current Region on Atmospheric Stationary Waves in the Southern Hemisphere</ifp:title><sm:lastmod>2021-04-21</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/33/21/jcliD200195.pdf</sm:loc><sm:lastmod>2021-07-19</sm:lastmod><ifp:title>The Impact of SST Biases in the Tropical East Pacific and Agulhas Current Region on Atmospheric Stationary Waves in the Southern Hemisphere</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/33/21/jcliD200225.xml</sm:loc><ifp:title>Atmospheric Subseasonal Variability and Circulation Regimes: Spectra, Trends, and 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