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Titlebook: Nb3Sn Accelerator Magnets; Designs, Technologie Daniel Schoerling,Alexander V. Zlobin Book‘‘‘‘‘‘‘‘ 2019 The Editor(s) (if applicable) and T

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Alexander V. Zlobins (IT) have positively impacted the mentoring process through a more technology-mediated form of mentoring known as e-mentoring or online mentoring. This form of mentoring has particularly had a great impact in improving learning opportunities in the context of online communities where mentors and m
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Nb3Sn Accelerator Magnets: The Early Days (1960s–1980s)r critical magnetic field and critical temperature. This chapter is a review of the effort accomplished by the community in the first 25 years of development of Nb.Sn accelerator magnets, and an attempt to understand why it took so long before this technology became successful.
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Nb3Sn 11 T Dipole for the High Luminosity LHC (FNAL)h the European Organization for Nuclear Research (CERN) for the High Luminosity LHC project, and presents details of the single-aperture and twin-aperture dipole models that were constructed and tested. Magnet test results including magnet quench performance, magnetic measurements, and quench protec
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Nb3Sn 11 T Dipole for the High Luminosity LHC (CERN)igh Luminosity Large Hadron Collider (HL-LHC) project. The results for testing the short models as well as the first 5 m long magnet are also presented. Finally, the production process for the six units, of which four are to be installed in the HL-LHC, is described, with a description of the process
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CEA–CERN Block-Type Dipole Magnet for Cable Testing: FRESCA2nergie Atomique et aux Energies Alternatives (CEA) and the European Organization for Nuclear Research (CERN), in the framework of the European Coordination for Accelerator Research and Development (EuCARD) project. This chapter summarizes magnet design, technology development, fabrication, and test
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