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IEEE Student Competition Innovate for Impact Dec 7th up to 50 Teams

Virtual: https://events.vtools.ieee.org/m/436714

Details of the competition can be found at this landing page. Open to R1-7&9 (https://r3.ieee.org/ieee-mga-r3-and-atlanta-innovate-for-impact-university-student-competition/) Prizes awarded to IEEE Student Sections Registration (https://docs.google.com/forms/d/e/1FAIpQLSfWblOpxSoR3zxlNrj9HUu55rQp3QDnbzghJ8mZ_0p_QIBrUQ/viewform)(https://docs.google.com/forms/d/e/1FAIpQLSfWblOpxSoR3zxlNrj9HUu55rQp3QDnbzghJ8mZ_0p_QIBrUQ/viewform) https://1drv.ms/f/s!Agwc1kEvCwYXjIpMGXW5XM_uirZc2Q?e=knH23 Documents repository including recommended materials, Guidelines... Read more

Integrated Photonics: materials, switches and careers

Room: MC603, 6th floor, Bldg: McConnell Engineering building, 3480 rue University, Montreal, Quebec, Canada, H3A 0C3, Virtual: https://events.vtools.ieee.org/m/442904

Abstract : You are invited to join Dr. Matthew Delaney for a technical and career presentation exploring the opportunities and challenges of the photonics integrated ecosystem. In the first part... Read more

Lancement: les 101 mots de la photonique

Montréal, Quebec, Canada

Co-sponsored by: IEEE Photonics Society. Optica. Optonique. COPL. McGill Univeristy. Université Laval. Ansys. Montréal, Quebec, Canada

AGM & Banquet for the IEEE Montreal Section

Bldg: Golf Le Royal, 400 ch. Compton, Bromont, Quebec, Canada, J2L 1E9

[] IEEE Montreal Section 2024 Banquet & Annual General Meeting This annual event is an opportunity to network with colleagues, celebrate member achievements with our awards ceremony. DATE: Friday, November... Read more

The 8th Montreal Photonics Networking Event

Room: Gallerie Rolland (6e étage), Bldg: Pavillion Principal, 2500 Chemin de Polytechnique , Montréal, Quebec, Canada, H3T 1J4

You are invited to attend the 8th Montreal Photonics Networking Event on Friday 29th November 2024. The Montreal Photonics Networking Event is an annual event that brings together students doing... Read more

Evaluating the High Voltage and High Frequency Capability of Future GaN-Based Diodes, MOSFETs, and Novel Photoconductive Switches

Room: EV3.309, Bldg: Engineering Building, Concordia University, 1515 St. Catherine W, Montreal, Quebec, Canada, H3G1M8

Wide bandgap semiconductor devices based on gallium nitride (GaN) offer myriads of advantages over traditional silicon (Si)-based devices for applications in power electronics. These advantages include higher voltage-handling capability with... Read more