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      </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/34/21/JCLI-D-21-0167.1.xml</sm:loc><ifp:title>Origins of a Relatively Tight Lower Bound on Anthropogenic Aerosol Radiative Forcing from Bayesian Analysis of Historical Observations</ifp:title><sm:lastmod>2022-01-31</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/34/21/JCLI-D-21-0167.1.pdf</sm:loc><sm:lastmod>2022-01-31</sm:lastmod><ifp:title>Origins of a Relatively Tight Lower Bound on Anthropogenic Aerosol Radiative Forcing from Bayesian Analysis of Historical Observations</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/34/21/JCLI-D-21-0190.1.xml</sm:loc><ifp:title>Imprint of the Pacific Walker Circulation in Global Precipitation δ
         18O</ifp:title><sm:lastmod>2022-01-31</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/34/21/JCLI-D-21-0190.1.pdf</sm:loc><sm:lastmod>2022-01-31</sm:lastmod><ifp:title>Imprint of the Pacific Walker Circulation in Global Precipitation δ
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xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/21/jcli3421masthead.pdf</sm:loc><sm:lastmod>2022-01-31</sm:lastmod><ifp:title>Masthead</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/34/21/JCLI-D-20-0933.1.xml</sm:loc><ifp:title>Ocean Dynamics are Key to Extratropical Forcing of El Niño</ifp:title><sm:lastmod>2022-01-31</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/34/21/JCLI-D-20-0933.1.pdf</sm:loc><sm:lastmod>2022-01-31</sm:lastmod><ifp:title>Ocean Dynamics are Key to Extratropical Forcing of El Niño</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/34/21/JCLI-D-20-0946.1.xml</sm:loc><ifp:title>Future Projection of Extreme 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xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/21/JCLI-D-20-0967.1.pdf</sm:loc><sm:lastmod>2022-01-31</sm:lastmod><ifp:title>Tracing the Origin of the South Asian Summer Monsoon Precipitation and Its Variability Using a Novel Lagrangian Framework</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/34/21/JCLI-D-20-0278.1.xml</sm:loc><ifp:title>Reanalyses and a High-Resolution Model Fail to Capture the “High Tail” of CAPE Distributions</ifp:title><sm:lastmod>2022-01-31</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/34/21/JCLI-D-20-0278.1.pdf</sm:loc><sm:lastmod>2022-01-31</sm:lastmod><ifp:title>Reanalyses and a High-Resolution Model Fail to Capture the “High Tail” of CAPE Distributions</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/34/21/JCLI-D-20-0646.1.xml</sm:loc><ifp:title>Effects of Suppressed Transient Eddies by the Tibetan Plateau on the East Asian Summer Monsoon</ifp:title><sm:lastmod>2022-01-31</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/34/21/JCLI-D-20-0646.1.pdf</sm:loc><sm:lastmod>2022-01-31</sm:lastmod><ifp:title>Effects of Suppressed Transient Eddies by the Tibetan Plateau on the East Asian Summer Monsoon</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/34/21/JCLI-D-20-0802.1.xml</sm:loc><ifp:title>Roles of the North Indian Ocean SST and Tropical North Atlantic SST in the Latitudinal Extension of the Anomalous Western North Pacific Anticyclone during the El Niño Decaying Summer</ifp:title><sm:lastmod>2022-01-31</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/34/21/JCLI-D-20-0802.1.pdf</sm:loc><sm:lastmod>2022-01-31</sm:lastmod><ifp:title>Roles of the North Indian Ocean SST and Tropical North Atlantic SST in the Latitudinal Extension of the Anomalous Western North Pacific Anticyclone during the El Niño Decaying 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/34/21/JCLI-D-20-0892.1.xml</sm:loc><ifp:title>A Global Perspective of Tropical Cyclone Precipitation in Reanalyses</ifp:title><sm:lastmod>2022-01-31</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/34/21/JCLI-D-20-0892.1.pdf</sm:loc><sm:lastmod>2022-01-31</sm:lastmod><ifp:title>A Global Perspective of 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xmlns:sm="http://www.sitemaps.org/schemas/sitemap/0.9"><sm:loc>https://test-journals.ametsoc.org/view/journals/clim/34/21/JCLI-D-21-0088.1.pdf</sm:loc><sm:lastmod>2022-01-31</sm:lastmod><ifp:title>Revisiting the Tropical Atlantic Influence on El Niño–Southern Oscillation</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/34/21/JCLI-D-21-0121.1.xml</sm:loc><ifp:title>Statistical Relationships between Two Types of Heavy Rainfall and Low-Level Jets in South China</ifp:title><sm:lastmod>2022-01-31</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/34/21/JCLI-D-21-0121.1.pdf</sm:loc><sm:lastmod>2022-01-31</sm:lastmod><ifp:title>Statistical Relationships between Two Types of Heavy Rainfall and Low-Level Jets in South China</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/34/21/JCLI-D-21-0139.1.xml</sm:loc><ifp:title>A Weak Temperature Gradient Framework to Quantify the Causes of Potential Intensity Variability in the Tropics</ifp:title><sm:lastmod>2022-01-31</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/34/21/JCLI-D-21-0139.1.pdf</sm:loc><sm:lastmod>2022-01-31</sm:lastmod><ifp:title>A Weak Temperature Gradient Framework to Quantify the Causes of Potential Intensity Variability in the Tropics</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/34/21/JCLI-D-21-0149.1.xml</sm:loc><ifp:title>Mechanisms of Regional Winter Sea-Ice Variability in a Warming Arctic</ifp:title><sm:lastmod>2022-01-31</sm:lastmod></sm:url><sm:url 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