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1. Critical Current Measurement of REBCO Cables by Using a Superconducting Transformer

2. An Initial Look at the Magnetic Design of a 150 mm Aperture High-Temperature Superconducting Magnet With a Dipole Field of 8 to 10 T

3. Developing a Vacuum Pressure Impregnation Procedure for CORC Wires

4. Development and performance of a 2.9 Tesla dipole magnet using high-temperature superconducting CORC®wires

5. A viable dipole magnet concept with REBCO CORC® wires and further development needs for high-field magnet applications

6. GATE : a simulation toolkit for PET and SPECT

8. Performance of the 500 kW superconducting DC and AC links of the ASCEND demonstrator at Airbus

9. Performance of the 500 kW Superconducting DC and AC Links of the ASCEND Demonstrator at Airbus

17. Distributed Fiber Optic Sensing to Identify Locations of Resistive Transitions in REBCO Conductors and Magnets

20. ATROPINE VAKER INGEZET VOOR REMMEN MYOPIE

22. Variation in paediatric hospital antibiotic guidelines in Europe

24. Durchflussmesstechnik für Flüssigsalz

27. reclin2: a Toolkit for Record Linkage and Deduplication.

31. A CORC® cable insert solenoid: the first high-temperature superconducting insert magnet tested at currents exceeding 4 kA in 14 T background magnetic field

36. High-temperature superconducting CORC® wires with record-breaking axial tensile strain tolerance present a breakthrough for high-field magnets.

39. Variation in paediatric hospital antibiotic guidelines in Europe

41. SMART conductor on round core (CORC®) wire via integrated optical fibers.

42. Quench detection using Hall sensors in high-temperature superconducting CORC®-based cable-in-conduit-conductors for fusion applications.

43. CORC® wires containing integrated optical fibers for temperature and strain monitoring and voltage wires for reliable quench detection.

44. AC loss and contact resistance in REBCO CORC®, Roebel, and stacked tape cables.

45. A CORC® cable insert solenoid: the first high-temperature superconducting insert magnet tested at currents exceeding 4 kA in 14 T background magnetic field.

47. Erratum: Bending of CORC® cables and wires: finite element parametric study and experimental validation (2018 Supercond. Sci. Technol. 31 115006)

48. Bending of CORC® cables and wires: finite element parametric study and experimental validation

50. Bending of CORC (R) cables and wires: finite element parametric study and experimental validation

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