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1. Observations of Tidally Driven Turbulence over Steep, Small-Scale Topography Embedded in the Tasman Slope.

2. Numerical Simulations of Internal Tide Dynamics in a Steep Submarine Canyon.

3. Prolonged thermocline warming by near-inertial internal waves in the wakes of tropical cyclones.

4. Energy and Momentum of a Density-Driven Overflow in the Samoan Passage.

5. Tidally Forced Turbulent Dissipation on a Three-Dimensional Fan in Luzon Strait.

6. Is Deep-Sea Mining Worth It?

7. Variability and Sources of the Internal Wave Continuum Examined from Global Moored Velocity Records.

8. Turbulence Driven by Reflected Internal Tides in a Supercritical Submarine Canyon.

9. Internal Tide Structure and Temporal Variability on the Reflective Continental Slope of Southeastern Tasmania.

10. Microstructure Mixing Observations and Finescale Parameterizations in the Beaufort Sea.

11. Global Calculations of Local and Remote Near-Inertial-Wave Dissipation.

12. Revisiting Near-Inertial Wind Work: Slab Models, Relative Stress, and Mixed Layer Deepening.

13. Topographic Form Drag on Tides and Low-Frequency Flow: Observations of Nonlinear Lee Waves over a Tall Submarine Ridge near Palau.

14. Frequency Shift of Near-Inertial Waves in the South China Sea.

15. Mixing Rates and Bottom Drag in Bering Strait.

16. Global Assessment of Semidiurnal Internal Tide Aliasing in Argo Profiles.

17. Internal Tide Attenuation in the North Pacific.

18. Satellite Investigation of the M2 Internal Tide in the Tasman Sea.

19. Internal Waves in the East Australian Current.

20. Space-Time Scales of Shear in the North Pacific.

21. Warming and Weakening of the Abyssal Flow through Samoan Passage.

22. Global Observations of Open-Ocean Mode-1 M2 Internal Tides.

23. An Inductive Charging and Real-Time Communications System for Profiling Moorings.

24. The formation and fate of internal waves in the South China Sea.

25. Transition from partly standing to progressive internal tides in Monterey Submarine Canyon.

26. Observations of Near-Inertial Internal Gravity Waves Radiating from a Frontal Jet.

27. Internal Bores and Breaking Internal Tides on the Oregon Continental Slope.

28. Internal Tides and Mixing in a Submarine Canyon with Time-Varying Stratification.

29. Annual Cycle and Depth Penetration of Wind-Generated Near-Inertial Internal Waves at Ocean Station Papa in the Northeast Pacific.

30. Velocity Structure of Internal Tide Beams Emanating from Kaena Ridge, Hawaii.

31. Energy Flux and Dissipation in Luzon Strait: Two Tales of Two Ridges.

32. Observations of Internal Tides on the Oregon Continental Slope.

33. The Breaking and Scattering of the Internal Tide on a Continental Slope.

34. Sustained, Full-Water-Column Observations of Internal Waves and Mixing near Mendocino Escarpment.

35. Speed and Evolution of Nonlinear Internal Waves Transiting the South China Sea.

36. Long-Range Propagation of the Semidiurnal Internal Tide from the Hawaiian Ridge.

37. New Altimetric Estimates of Mode-1 M2 Internal Tides in the Central North Pacific Ocean.

38. Seasonal and Spatial Variability of Near-Inertial Kinetic Energy from Historical Moored Velocity Records.

39. Global Patterns of Low-Mode Internal-Wave Propagation. Part II: Group Velocity.

40. Global Patterns of Low-Mode Internal-Wave Propagation. Part I: Energy and Energy Flux.

41. Structure, Propagation, and Mixing of Energetic Baroclinic Tides in Mamala Bay, Oahu, Hawaii.

42. An Ocean Refractometer: Resolving Millimeter-Scale Turbulent Density Fluctuations via the Refractive Index.

43. Estimating Internal Wave Energy Fluxes in the Ocean.

44. Mixing, 3D Mapping, and Lagrangian Evolution of a Thermohaline Intrusion.

45. Redistribution of energy available for ocean mixing by long-range propagation of internal waves.

47. Internal Swell Generation: The Spatial Distribution of Energy Flux from the Wind to Mixed Layer Near-Inertial Motions.

48. Near-slope turbulence in a Rockall canyon.

49. Double Diffusion, Shear Instabilities, and Heat Impacts of a Pacific Summer Water Intrusion in the Beaufort Sea.

50. Data‐Driven Identification of Turbulent Oceanic Mixing From Observational Microstructure Data.

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