PPT-2 TE-VSC reporting to: Superconducting RF R&D coordination meeting 01
Author : mediumgeneral | Published Date : 2020-08-03
on CERNLNLSTFC collaboration KE2722BEFCC 3 Meetings Kickoff meeting at CERN on 23062015 Discuss the Laboratories capabilities confirm common scope Agree on planning
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2 TE-VSC reporting to: Superconducting RF R&D coordination meeting 01: Transcript
on CERNLNLSTFC collaboration KE2722BEFCC 3 Meetings Kickoff meeting at CERN on 23062015 Discuss the Laboratories capabilities confirm common scope Agree on planning deliverables and milestones. efciency. Superconducting power cable systems consist of the cable, which is comprised of 100’s of strands of superconducting wire wrapped around a copper core, and the Supercondu Brian Utter. Super. conductivity. Saturday Morning Physics. Heike . Kamerlingh-. Onnes. Dutch physicist. University of Leiden. (1853 – 1926) . The Race. to the Bottom. Sir James Dewar. Scottish chemist. . . . . Paul Cruikshank on behalf of . TE-VSC colleagues & AL4030 Consortium (S133. ). 1. Paul Cruikshank . TE/VSC - VSC SMACC Status Report - LSC, 11/04/2014. Cold vacuum system recall. Phase 1, 2 & 3 VSC activities. Resources, Infrastructure. Still to do.......... . Paul Cruikshank on behalf of TE-VSC. Paul Cruikshank TE/VSC Leak Testing in SMACC 3. Tom Peterson, . SLAC . USPAS. January, 2017. January, 2017 USPAS. Superconducting Magnets Tom Peterson. 2. O. utline . Introduction – magnet thermal design issues . An example of thermal considerations for forced-flow, normal helium I cooling – . Exploring the Vendor Support Center Laura E. Smith Industrial Operations Analyst Southwest Supply & Acquisition Center February 22, 2017 Schedules 56, 66, & 73 Vendor Support Center GSA’s Vendor Support Center Exploring the Vendor Support Center Laura E. Smith Industrial Operations Analyst Southwest Supply & Acquisition Center May 9, 2017 Schedule 84 Vendor Support Center GSA’s Vendor Support Center LHC-YETS 2017/18. Coordination meeting . #22. 27th February, 2018. AGENDA. . YETS planning follow-up . . Marta Alcaide Leon, Maria . Barberan, . Marzia Bernardini, Sebastien Bustamante. . 16-Jan-18. have demonstrated that fundamentally new physical phenomena are found, when systems are reduced in size to dimensions that become comparable to the fundamental microscopic length scales of a material under study. Superconductivity is a macroscopic quantum phenomenon, and therefore it is of particular interest to see how this quantum state is influenced when the samples are reduced to nanometer sizes. Nowadays, developments in nanotechnologies and measurement techniques allow the experimental investigation of the magnetic and thermodynamic superconducting properties of . . Gijs de Rijk. CERN. 10. th. April 2019. Magnet types: field. 1.5 - 2T resistive (Cu or Al coils, steel yoke, all warm), ramp rates 10 . th. T/s, ~40kCHF/m. 2 - 3 T . Superferric. (Superconducting, . diagnostic . and cleaning of the CMS cold box . contaminated . with . Breox. B35 . oil. CHARVET Colette . DENIS Maxime (IUT chimie de Besançon) TEISSANDIER Benoit . 1. /29. Courtesy. Nebojsa . Smiljkovic. Roberto Leoni . IFN-CNR. , Istituto di Fotonica e Nanotecnologie, Via Cineto Romano 42, 00156 Roma, . Italy. Coauthors. :. - . Alessandro . Gaggero. . (IFN-CNR) . - . Francesco . Mattioli. . (IFN-CNR) . 2. structure, and the diborane-like PH. 5. structure predicted by quantum mechanical calculations. Phosphorus atoms are gold, hydrogen atoms are white. Computational Design of Novel Superconductors. Superconducting. . Devices. Paolo Chiggiato. CERN. Technology. . Department. Vacuum, Surfaces and . Coatings. Group. May 3rd, 2013. CAS Superconductivity for Accelerators, Erice. Vacuum Techniques for Superconducting Devices.
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