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Field
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at the nanoscale. Our second field of interest is vortex electronics. It involves building nanodevices for controlling and manipulating of superconducting vortices to present new functionalities e.g. memory cells
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high aspect ratio wings, blended wing body, laminar-flow technology, transonic and high-speed aerodynamics, manipulation of turbulence and vortex dominated flows, advanced flow and load control measures
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as written in the Course Outline on the McGill Course Catalogue page, as follows: Fundamental equations. Basic flow singularities. Boundary element methods. Source, doublet and vortex panel methods
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identify which physical mechanisms – surface and interface spins, magnetic defects, two-level systems, trapped flux and vortex motion, and nonequilibrium quasiparticles – generate the 1/f flux and charge
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. Sorvall RC3C Plus refrigerated centrifuge or equivalent 13. Mini-vortex 14. Sebra heat sealer 15. Sterile tubing welder 16. Pipets 17. Plasma extractor 18. Digital scale 19. Manual tubing stripper 20
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, metering devices, variable frequency and variable speed drive controllers, turbine and vortex flow meters, differential RTD and TC transmitters, and other devices. Uses testing and calibration
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, metering devices, variable frequency and variable speed drive controllers, turbine and vortex flow meters, differential RTD and TC transmitters, and other devices. Uses testing and calibration
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, but are not limited to: For superconductors, magnetic ordering and magnetic excitations in superconductors, direct observation of vortex lattices, determination of the London penetration depth by
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dynamics, and mathematical physics. Research interests include global well-posedness and long time behavior of solutions to nonlinear PDEs; coherent structures in vortex dynamics; KAM theory and dynamical
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vortex flows is a merit. Our research group consists mostly of men because of that we are happy to see female applicants. Provided that the qualifications are otherwise equal, the underrepresented gender