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Saxe and Olson stand on the sidewalk of a street lined with houses

Eyes on the street: Harnessing Street View images to ‘peer into’ structures 

Dimple stands in front of poster presentation displays, smiling at the camera

How can engineering culture be more inclusive? U of T doctoral student turns to her own story for answers

Chris Yip, Deepa Kundur and Marie Hattar, stand before a ribbon. Chris and Marie hold scissors to the ribbon.

ECE’s new Keysight Electronics Laboratory will empower future innovators

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Professor Sasha Gollish (EngSci, ISTEP). (Photo provided)

Applying lessons from the racetrack in engineering classrooms: Meet Professor Sasha Gollish

Binbin Ying (MIE) demonstrates the performance of iSkin by sticking it to the outside of his winter jacket, in this photo, taken Feb. 27, 2020, before the COVID-19 pandemic. The cold-tolerant, stretchable, sticky sensor converts physical movement into electrical signals, and can be used in wearable electronics as well as many other applications. (Photo: Runze Zuo)

iSkin: The cold-tolerant, stretchable, sticky sensor that could power a new generation of wearable electronics and more

A grey box is seen attached to a pillar on the platform of the Toronto Transit Commission's St. George subway station.

New trains and reduced friction braking improve air quality in Toronto’s subways

In this photomicrograph, points of patterned laser light (blue) are being projected on computationally selected positions to activate the muscles of a genetically modified, one-millimetre-long C. elegans worm. The technique could offer a new way of developing organism-based microrobots for a variety of different applications. (Image: Xianke Dong, Zhaoyi Xu)

RoboWorm: Light-controlled organism offers a new strategy for micro-scale robotics