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2. Reflectometry Applications to ITER

8. The quiescent double barrier regime in DIII-D

12. Quiescent double barrier high-confinement mode plasmas in the DIII-D tokamak

13. Progress toward long-pulse high-performance Advanced Tokamak discharges on the DIII-D tokamak

15. Advanced tokamak physics in DIII-D

16. Observation of simultaneous internal transport barriers in all four transport channels and correlation with turbulence behaviour in NCS discharges on DIII-D

17. Impurity-induced turbulence suppression and reduced transport in the DIII-D tokamak

19. Study of the phase transition dynamics of the L to H transition

22. Role of E×B flow shear on confinement enhancement in DIII-D high internal inductance discharges with high-confinement edge

26. Higher Fusion Power Gain with Current and Pressure Profile Control in Strongly Shaped DIII-D Tokamak Plasmas

28. High performance low and highqdischarges in DIII-D

29. Confinement and stability of DIII-D negative central shear discharges

31. Beyond paradigm: Turbulence, transport, and the origin of the radial electric field in low to high confinement mode transitions in the DIII‐D tokamak

32. Erratum: ‘‘Role of the radial electric field in the transition from L (low) mode to H (high) mode to VH (very high) mode in the DIII‐D tokamak’’ [Phys. Plasmas 1, 1536 (1994)]

35. Evidence for modified transport due to sheared E×B flows in high-temperature plasmas

38. Recent VH-mode results on DIII-D

39. Overview of H-mode studies in DIII-D

41. Role of the radial electric field in the transition from L (low) mode to H (high) mode to VH (very high) mode in the DIII‐D tokamak*

43. Investigations of VH-mode in DIII-D and JET

46. Physics of the L-mode to H-mode transition in tokamaks

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