Innovative Projects Realized

Explore thousands of successful projects resulting from collaboration between organizations and post-secondary talent.

30508 Completed Projects

2882
AB
5105
BC
825
MB
681
NL
860
SK
9051
ON
9491
QC
97
PE
586
NB
1141
NS

Projects by Category

Enhancing Wastewater Treatment Efficiency Through the Pilot-Scale Study of Zeelung MABR Technology

THIS IS A GENERIC TEXT PUT IN PLACE AS THERE WAS NO PROJECT OVERVIEW.

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Faculty Supervisor:

Carlos Diaz

Student:

Partner:

Veolia Water Technologies & Solutions

Discipline:

Engineering

Sector:

Administrative and support, waste management and remediation services; Construction and infrastructure; Professional, scientific and technical services

University:

Lambton College of Applied Arts and Technology

Program:

Accelerate

Les défis contemporains de l’activisme actionnarial : étude et regards croisés Suisse/Canada

Le projet de recherche consiste en une étude à la fois théorique et pratique de l’activisme actionnarial. Il s’inscrit dans le contexte d’une thèse de doctorat en droit des sociétés, gouvernance d’entreprise, menée à l’Université de Lausanne sous la supervision des professeurs Damiano Canapa et Jean-Luc Chenaux. Le séjour de plusieurs semaines à l’Université de Montréal vise à identifier les défis juridiques contemporains (sur les plans théorique et pratique) que pose l’activisme actionnarial sous l’angle du droit des sociétés canadien et suisse et d’interroger les outils règlementaires actuels et futurs en mesure de répondre à ces préoccupations. La recherche mêlera des approches académique et empirique. Cette dernière sera effectuée au travers de discussions et interviews avec des institutions pratiquant l’activisme. L’objectif du projet de recherche est de confronter ces deux approches pour en identifier les éventuels hiatus susceptibles d’être comblés. Le projet de recherche est co-supervisé par la Prof. Biron de l’Université de Montréal et le Prof. Canapa de l’Université de Lausanne.

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Faculty Supervisor:

Julie Biron

Student:

Partner:

Université de Lausanne

Discipline:

Sociology

Sector:

Education

University:

Université de Montréal

Program:

Globalink Research Award

Évaluation d’un programme de soins en étapes et de monitorage en continu pour les troubles anxiodépressifs et pour les troubles de la personnalité

La prévalence des troubles mentaux est en constante augmentation depuis plusieurs années. C’est ainsi que les demandes de services en santé mentale augmentent aussi, ce qui peut limiter l’accès aux soins. Afin d’assurer une prise en charge efficace et rapide des patient.e.s, des programmes de traitement offrant des interventions d’intensité croissante (p. ex., durée, fréquence) en fonction de la sévérité des difficultés, et reposant sur l’évaluation répétée des symptômes (p. ex., hebdomadairement) ont été implanté au Québec, notamment au Centre intégré universitaire de santé et de services sociaux de la Capitale-Nationale (CIUSSS-CN). Ce projet de recherche mené au CIUSSS-CN vise ainsi à documenter l’efficacité de tels programmes pour diminuer les symptômes psychologiques tout en favorisant un délai d’attente réduit. Ce projet de recherche constitue une des premières initiatives de documentation de l’efficacité de ce type de programme, permettant de faire rayonner le CIUSSS-CN ainsi que les pratiques et les recherches qui y sont conduites. Les données permettront aussi de cibler des interventions en santé mentale les plus efficaces en fonction des caractéristiques cliniques (p. ex., symptômes, diagnostic). Les intervenant.e.s du CIUSSS-CN seront ainsi mieux outiller pour intervenir auprès de la clientèle, qui pourra aussi bénéficier des meilleures interventions pour favoriser l’amélioration des difficultés. Plus globalement, ce projet de recherche permettra au CIUSSS-CN de se positionner en continuité avec les meilleures pratiques en santé mentale, internationalement reconnues et aussi préconisées dans le Plan d’action interministériel en santé mentale 2022-2026 du Gouvernement du Québec.

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Faculty Supervisor:

Claudia Savard

Student:

Partner:

Institut universitaire en santé mentale de Québec

Discipline:

Sociology

Sector:

Health and Related Sciences & Technology

University:

Université Laval

Program:

Elevate

The use of fracture network connectivity to characterize rock mass behaviour

Rock engineering has usually relied on fracture intensity to measure how good or bad rock quality is. But this measure does not really capture how fractures in the rock connect and interact with each other, which is important. We propose using a different approach based on fracture connectivity instead. This looks at how fractures are arranged and linked together in the rock. By understanding this, we can get a better picture of how stress moves through the rock and how it changes shape. Our plan is to study this using a new measure called the Network Connectivity Index (NCI), which tells us how connected the fractures are. We will compare this measure in real rock with what we find in models of synthetic rock masses. This should help us understand how different factors like the strength of the rock, how it is loaded, and how the rock masses fit together affect its behavior. We are teaming up with Equilibrium Mining, a Canadian company that knows a lot about mining and geotechnical engineering. They will help us make sure our findings can actually be used in real-world situations, not just in theory.

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Faculty Supervisor:

Davide Elmo

Student:

Partner:

Equilibrium Mining Ltd

Discipline:

Engineering

Sector:

Mining

University:

The University of British Columbia

Program:

Accelerate

Ergonomics Evaluation of Right Angle Power Tools

It has been estimated that approximately 70% of operators in automotive assembly use power-tools to complete their assembly tasks, yet companies have a difficult time determining why injuries happen when they are used. Before we can determine this, we need to understand the type of postures and the level of physical demand and the frequency of their use every minute. This survey will help to understand exactly how assembly workers use these tools with the overall goal to begin to reduce the risk associated when using them. Work-related injuries cause a national burden and benefits paid from these claims between 2001 and 2010 in Canada were in excess of $90 billion. The knowledge generated from this work will benefit Canadians over the short-term by reducing work-related musculoskeletal disorders, improving worker safety and reducing healthcare costs (~1-2 years) and longer by increasing manufacturing efficiency in the (~3-5 years+) term.

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Faculty Supervisor:

Joel Cort

Student:

Partner:

United States Council for Automotive Research;FCA Canada;Ford Motor Company

Discipline:

Engineering

Sector:

Manufacturing

University:

University of Windsor

Program:

Accelerate

Visible manifestation of chemical systems in interactive sculptural environments

This project will explore reversible chemical reactions that can be used in interactive installation works to modulate light and enhance viewer experience in these immersive environments. The outcome will benefit the Riverside Architectural Press and the Living Architecture Systems Group by establishing the viability of key components, positioning proof-of-concept prototypes for potential integration into next-generation experimental architectural environments, and disseminating related skills for technology transfer and cultural paradigm-setting exchanges, drawing upon specialized decades-long sculptural and publication practices of Beesley and the LASG.

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Faculty Supervisor:

Philip Beesley

Student:

Partner:

Riverside Architectural Press

Discipline:

Sociology

Sector:

Information and cultural industries

University:

University of Waterloo

Program:

Accelerate

Digital and Physical Replication of Railcar Lid Configurations for Machine Learning in an Automated Loading System

RAYHAWK has an autonomous solution for opening and closing railcar lids are actively working to expand their capabilities. Railcars are not standardized and all Railcar Top Objects (RTObjects) include lids, lid strappings, latches, latch seals, and walkways which make for expansive railcar configurations that need be supported in future solutions. The key challenge to expanding the solution is to rapidly support a multitude of additional railcar types needed to address more markets. This project will augment physical replicas of railcar tops with digital replicas and behavioral models, or digital twins, that can be used to create a Virtual Training Platform, VTP. The VTP can be used to more efficiently and comprehensively train the system, and the physical replicas will still be required for real world performance validation. This project lays the foundation for future autonomous loading solutions requiring expanded railcar configurations, in both digital and physical form, for machine learning, training, and performance validation.

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Faculty Supervisor:

Leon Lipoth

Student:

Partner:

RAYHAWK

Discipline:

Engineering

Sector:

Manufacturing; Professional, scientific and technical services

University:

Saskatchewan Polytechnic

Program:

Accelerate

Behaviour of dielectric barrier discharges with nanoparticles-coated dielectrics

Electrifying the chemical industry is a necessity towards a more sustainable future. A potential approach to achieve this ambitious goal, is the use of plasma catalysis. Herein, a plasma is generated by applying a high voltage to generate a discharge in the gas mixture of interest. In the same volume, catalysts can be packed to optimize the overall process. However, up till now, these processes don’t perform efficient enough to be able to apply them at an industrial scale. This is in part due to a lack of understanding of the fundamental underlying physical processes. When introducing catalytic materials to this discharge gap, numerous physical properties change, potentially drastically altering the plasma discharge. This plasma discharge in turn seems to have a significant impact on the overall chemistry taking place. In order to be able to optimize such systems, we aim at furthering our understanding of the interaction between metal particles and the overall plasma discharge. By combining the complementary expertise of the home and host institution, we believe we are able to obtain these new insights, benefiting the people involved, but also the lab and institution where this research is taking place.

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Faculty Supervisor:

Sylvain Coulombe

Student:

Partner:

University of Antwerp

Discipline:

Physics

Sector:

Education

University:

McGill University

Program:

Globalink Research Award

Software architectures and control systems for interactive sculptural environments

This project will extend and generalize the software architecture that underlies Living Architecture Systems Group installations. These originally incorporated one-off and bespoke software to enable the specific context of the installation. Gradually the software has become more systematized, and some theoretical principles have emerged. This project will focus on extending and generalizing the current software to create flexible and extensible database structures and consistent application programming interfaces (APIs), providing the means for more flexible deployment, deeper integration with third-party software, and easier authoring of interaction and behaviour. This will be particularly beneficial to STEAM education initiatives, a key focus of the partner organization, Riverside Architectural Press.

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Faculty Supervisor:

Philip Beesley

Student:

Partner:

Riverside Architectural Press

Discipline:

Sociology

Sector:

Information and cultural industries

University:

University of Waterloo

Program:

Accelerate

Impact of intracellular mechanics on electro-mechanical coupling in heart failure with preserved ejection fraction in humans

The proposed project aims to study how a novel microRNA can improve heart muscle function in patients with heart failure. This microRNA helps heart muscle cells relax better, which is a key issue in patients with heart failure with preserved ejection fraction (HFpEF).
By combining the biophysics expertise and force measurements techniques developed at McGill University and the advanced electrophysiology techniques available at the University of Montpellier, this research will deepen our understanding of how heart cells work. This research will bridge two different but complementary disciplines to fill a crucial gap in our understanding of the heart. The knowledge exchange between these two institutions will help us find new ways to treat heart disease, benefiting both research teams and the broader scientific community.

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Faculty Supervisor:

Allen Ehrlicher

Student:

Partner:

Université de Montpellier

Discipline:

Life Sciences

Sector:

Education

University:

McGill University

Program:

Globalink Research Award

Developing an AI learning and training program – Pedagogy focus

Appleby College is in the early stages of developing its AI learning and training program for high-school-age students. The program aims to provide students an interactive platform focusing on AI literacy and competency. AI technology is a trending domain incorporated in every aspect of life. Therefore, ensuring that students understand AI at an earlier age is essential, providing motivation, curiosity, and technical skills to succeed in an AI-enabled future. The curriculum will address AI logic to legal implications through a structured approach, beginning with identifying critical literature for theoretical foundations of AI concepts, determining instructional strategies for effective delivery and assessment of content, and progressing to case studies and practical learning, ultimately culminating in real-world project development. With the development of the program curriculum and instructional guides as a part of this research, Appleby can offer a high-calibre educational experience for students in this AI program.

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Faculty Supervisor:

Garima Bajwa

Student:

Partner:

Appleby College

Discipline:

Computer science

Sector:

Education

University:

Lakehead University

Program:

Accelerate

Recycling of thermoplastic composite tape edges trims through the thermoforming process

High performance carbon fibre thermoplastic composites are experiencing a strong growth in demand. These materials often come in the form pre-impregnated carbon fibre rolls. The impregnating resin being a thermoplastic polymer, the rolls can be stored at room temperature for an indeterminate time. The fabrication of the pre-impregnated thermoplastic composite generates wastes in the form of tape edge trims (TET). In effect, the edges of the pre-impregnated rolls need to be trimmed as they do not meet the quality requirements of the manufacturers due to the process not being properly controlled at the edges which can lead to variable tape thickness and fibre volume fraction. As the demand for these materials grows, so does the produced volume of TET. The goal of this project is to make use of these TET in the stamp forming process to manufacture parts of complex geometries. More specifically, we propose to manufacture parts from hybrid materials, using virgin continuous carbon fibre/thermoplastic plies and TET. Hybrid preforms (blanks) will be produced and stamp-formed. Our objectives include the characterization of the material, including the flowing ability of the TET, and the development of the process for this particular hybrid/recycled material.

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Faculty Supervisor:

Martine Dubé

Student:

Partner:

Teijin Carbon America, Inc

Discipline:

Engineering

Sector:

Manufacturing

University:

École de technologie supérieure

Program:

Accelerate