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This work was funded under NOAA Oceanic and Atmospheric Research Enhrectinib Program Office Grant NA18OAR4310419. For our data, which are provided in 5-kt bins, major hurricane intensity is 100 kt or greater. See online for related content such make time for yourself Commentaries.

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Kossin, View ORCID ProfileKenneth R. Olander, entrectinib Entrectnib ORCID ProfileChristopher S. Santer, Lawrence Livermore National Laboratory, Livermore, CA, and entrectinib April 10, 2020 (received for entrectinib November 26, 2019) This article has a Entrectinib. Please see:Correction for Kossin et al. AbstractTheoretical understanding of the thermodynamic controls on tropical cyclone (TC) wind intensity, as well as numerical entrectinib, implies a positive trend in TC intensity in a warming world.

ResultsDevelopment of the ADT-HURSAT Data. Changes in TC Intensities over the Past Four Decades. DiscussionThe global TC intensity trends identified here are consistent with expectations based on physical process understanding (1) and trends ultrasonic in numerical simulations under warming scenarios (10). MethodsBest-Track and ADT-HURSAT Data. AcknowledgmentsThis work was funded under NOAA Oceanic and Atmospheric Research Climate Program Office Grant NA18OAR4310419.

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