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1. Spatial Variability of Dropsonde‐Derived Moist Static Energy in North Atlantic Tropical Cyclones

2. How Does Organized Convection Impact Explicitly Resolved Cloud Feedbacks in the Radiative‐Convective Equilibrium Model Intercomparison Project?

3. Control of Stability and Relative Humidity in the Radiative‐Convective Equilibrium Model Intercomparison Project

4. Gulf Stream Sea Surface Temperature Anomalies Associated With the Extratropical Transition of North Atlantic Tropical Cyclones

5. Properties, Changes, and Controls of Deep‐Convecting Clouds in Radiative‐Convective Equilibrium

6. A Spectrum of Convective Self‐Aggregation Based on Background Rotation

7. Recent advances in research on tropical cyclogenesis

8. Tropical Cyclone Frequency

9. Understanding the Extreme Spread in Climate Sensitivity within the Radiative‐Convective Equilibrium Model Intercomparison Project

10. Clouds and Convective Self‐Aggregation in a Multimodel Ensemble of Radiative‐Convective Equilibrium Simulations

11. Tropical Cyclogenesis From Self‐Aggregated Convection in Numerical Simulations of Rotating Radiative‐Convective Equilibrium

13. Process-oriented diagnosis of tropical cyclones in reanalyses using a moist static energy variance budget

15. An Evaluation of Tropical Cyclone Rainfall Structures in the HighResMIP Simulations against Satellite Observations

16. Acceleration of Tropical Cyclone Development by Cloud-Radiative Feedbacks

18. Process-oriented diagnostics: principles, practice, community development and common standards

19. A Global Perspective of Tropical Cyclone Precipitation in Reanalyses

20. Characteristics of Model Tropical Cyclone Climatology and the Large-Scale Environment

21. Recent advances in research on tropical cyclogenesis

22. Using Radiative Convective Equilibrium to Explore Clouds and Climate in the Community Atmosphere Model

23. Tropical Cyclone Frequency

24. A High-Altitude Long-Range Aircraft Configured as a Cloud Observatory: The NARVAL Expeditions

25. Self-Aggregation of Deep Convection and its Implications for Climate

26. The Importance of Radiative Feedbacks in Tropical Cyclogenesis in Idealized Simulations

27. The Critical Role of Cloud–Infrared Radiation Feedback in Tropical Cyclone Development

28. Increased tropical cyclone risk to coasts

29. EUREC4A

30. The critical role of cloud–infrared radiation feedback in tropical cyclone development

33. Azimuthally Averaged Wind and Thermodynamic Structures of Tropical Cyclones in Global Climate Models and Their Sensitivity to Horizontal Resolution

34. Clouds and Convective Self-Aggregation in a Multimodel Ensemble of Radiative-Convective Equilibrium Simulations

35. Understanding the Extreme Spread in Climate Sensitivity within the Radiative‐Convective Equilibrium Model Intercomparison Project

36. Process-Oriented Diagnosis of Tropical Cyclones in High-Resolution GCMs

37. Accessible Environments for Diurnal-Period Waves in Simulated Tropical Cyclones

39. Moist static energy budget analysis of tropical cyclone intensification in high-resolution climate models

40. Process-Oriented Evaluation of Climate and Weather Forecasting Models

41. Role of Radiative–Convective Feedbacks in Spontaneous Tropical Cyclogenesis in Idealized Numerical Simulations

42. Radiative–convective equilibrium model intercomparison project

46. Tropical cyclones in climate models

48. Self‐aggregation of convection in long channel geometry

49. Observing Convective Aggregation

50. Clouds, Circulation, and Climate Sensitivity in a Radiative-Convective Equilibrium Channel Model

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