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Dean Chris Yip addressing a crowd

How a unique co-location space is catalyzing new forms of partnership at U of T Engineering

Katie Hung and Anastasia Polulyakhova in front of building on campus.

U of T Engineering students getting a leg up with Project Leap

Left to right: Co-leads on the study, Professor Caitlin Maikawa (BME) and Lucia Huang (BME MSc student), say the technology could make monitoring and treatment of inflammatory bowel diseases easier and accessible. (Photo by KITE Studio/UHN)

Researchers develop swallowable sensor that offers simpler way to monitor gut inflammation

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Wireless routers and ethernet among the many ways to connect to the Internet. (Photo: twenty20photos, via Envato)

Internet connectivity, explained

Left: Fish such as tilapia can disperse and collect pigment granules in their skin to change their colour and shading. Right: An optofluidic cell created by U of T Engineering researchers achieves the same effect by mixing two immiscible fluids, one of which contains a dye. (Image credits: left, Richard Wheeler (licensed under Creative Commons); right, Raphael Kay.)

Dynamic building facades inspired by marine organisms could reduce heating, cooling and lighting costs

U of T Engineering's Professor Mark Fox (MIE) leads the initiative to create a Canadian catalogue of urban data sets. (Photo: Laura Pedersen)

U of T’s Urban Data Centre to help ‘wrangle’ the data needed to build smarter cities

This model heart ventricle, made with real living heart cells, beats strongly enough to pump fluid inside a tube. It can be used to study heart disease and test out potential therapies, without the need for invasive surgery. (Photo: Sargol Okhovatian)

Reverse engineering the heart: U of T Engineering team creates bioartificial left ventricle