Trojan Technologies Tour

3020 Gore Rd, London, Ontario, Canada, N5V 4T7

Fanshawe College students have the opportunity to attend a guided tour of one of London’s leading global technology manufacturers. Trojan Technologies is internationally recognized for its advanced water treatment and UV disinfection systems, supporting municipal and industrial infrastructure worldwide. Any Fanshawe College student may register and attend this tour. Please note that students are responsible for arranging their own transportation to and from the Trojan Technologies facility, located at 3020 Gore Rd, London, ON N5V 4<a href="http://T7.IF" target="_blank" title="T7.IF">T7.IF YOU REGISTER FOR THIS EVENT AND CAN NO LONGER ATTEND, PLEASE UNREGISTER SO OTHER STUDENTS HAVE THE OPPORTUNITY TO <a href="http://PARTICIPATE.Co-sponsored" target="_blank" title="PARTICIPATE.Co-sponsored">PARTICIPATE.Co-sponsored by: Trojan Technologies3020 Gore Rd, London, Ontario, Canada, N5V 4T7

[IEEE CAS04/ED15/EP21/PHO36 Photonics Society Distinguished Lecture] The Energy Challenges from a Materials’ Perspective

Room: 202, Bldg: Galbraith Building, 35 St George St, Toronto, Toronto, Ontario, Canada

IEEE Photonics Society Toronto is proud to invite you to a seminar by Dr. Federico Rosei of University of Trieste, <a href="http://Italy.Join" target="_blank" title="Italy.Join">Italy.Join us Tuesday, 24 February 2026 at 4PM (ET) on University of Toronto main campus. Refreshments will be <a href="http://served.Abstract---------------------------------------------------------------The" target="_blank" title="served.Abstract---------------------------------------------------------------The">served.Abstract---------------------------------------------------------------The quest for sustainable development dictates an urgent transition from fossil fuels to renewables. This presentation focuses on next generation (solar) energy technologies from a materials perspective. We study structure property/relationships in advanced materials, emphasizing multifunctional systems that exhibit several functionalities. Such systems are then used as building blocks for the fabrication of various emerging technologies. In particular, nanostructured materials synthesized via the bottom–up approach present an opportunity for future generation low cost and low energy intensive manufacturing of devices. We focus on recent developments in solar technologies, including third generation photovoltaics, solar hydrogen production, luminescent solar concentrators and other optoelectronic devices, highlighting the role and importance of critical raw <a href="http://materials.------------------------------------------------------------------------------------------------------------------------------Speaker(s):" target="_blank" title="materials.------------------------------------------------------------------------------------------------------------------------------Speaker(s):">materials.------------------------------------------------------------------------------------------------------------------------------Speaker(s): Dr. Federico Rosei, Room: 202, Bldg: Galbraith Building, 35 St George St, Toronto, Toronto, Ontario, Canada