L2M – Additive Manufacturing of Advanced Ceramics for Patient-Specific Components in Dentistry

This project aims to develop next-generation dental implants using Yttria (Y2O3)–Zirconia (ZrO2) composites through advanced ceramic additive manufacturing. The work will begin with a pre-prototyping validation survey to assess market needs, clinical requirements, and user preferences. Based on the survey findings, material and process optimization will be carried out to produce clinically viable prototypes. The […]

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Protein-based nanoparticles with novel azole derivatives as antifungals

Increasingly, fungi are becoming resistant to the drugs, antifungals, that we use to treat fungal infections, necessitating research into alternative antifungal strategies. One way to increase the amount and delivery of antifungals to invading fungi within the body is using protein-based nanoparticles. The antifungals associate with the nanoparticles that are delivered and taken in by […]

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Developing a Data-Driven Supply Chain Dashboard for Kisaan Die Tech (KDT): Enhancing Visibility, Forecasting, and Operational Efficiency

The proposed project aims to develop a robust, data-driven supply chain dashboard for Kisaan Die Tech (KDT) to enhance visibility, improve decision-making, and align production schedules with customer demand. The dashboard will integrate data from multiple sources, optimize inventory levels, and enhance cash flow management, addressing challenges related to overseas supplier lead time, transit time, […]

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IMPROVEMENTS OF IN-SITU SVE REMEDIATION MANAGEMENT USING INTEGRATED SIMULATION AND RISK ASSESSMENT APPROACHES AT THE CANTUAR SITE

SaskEnergy developed an in-situ remediation program using a soil vapour extraction (SVE) system to facilitate recovery of petroleum hydrocarbons at the Cantuar Site. One of main problems associated with this program is the deficiency in the knowledge of process control based on the fate and transport of contaminants, and effective studies for assessing the environmental […]

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Smart Waste Management Use Case – Business Strategy Internship

This project, in partnership with SimplyCast, aims to create a smart waste management solution to help the City of Regina reduce landfill waste and support its sustainability goals. Despite having waste collection schedules and reminders in place, many residents still lack the tools and awareness needed to reduce waste effectively. By using SimplyCast’s no-code automation […]

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Summer student internships at the Royal Saskatchewan Museum: developing practical skills for students, and strengthening partnership with the University of Regina

The Friends of the Royal Saskatchewan Museum would like to offer a series of summer student internships that bring university students and recent graduates into a museum setting, to gain hands-on experience alongside research scientists and curatorial staff at the Royal Saskatchewan Museum. This experience will focus on developing collections across multiple units at the […]

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L2M – Development of Self-Powered Portable Devices for Simultaneous Water Disinfection and Pollutant Removal Through Piezophotocatalysis

This project aims to provide clean drinking water to low-income families in remote areas by developing a self-powered, portable ceramic water filter. While the filter has shown strong pollutant removal in lab tests, real-world testing is needed to confirm its effectiveness. This project will focus on pilot testing, refining the product based on user feedback, […]

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Polymath Global – Medical Home Project

Polymath Global is a federally registered Canadian technology company based in Saskatchewan. Our primary activities leverage our innovative cloud computing platform to develop, deploy, and scale SaaS solutions across various sectors. Currently, we are focusing on developing an AI-native electronic medical record (EMR) system, named the “Medical Home,” to address critical needs in healthcare. This […]

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Potential of Adapting the Novel Hydrothermal Carbonization Process as a Suitable Waste to Energy Technology

This Mitacs project focuses on evaluating the potential of adapting the novel Hydrothermal Carbonization technology as a suitable waste-to-energy (WtE) technology for various regions. A review of relevant literature has revealed that there is little to no research or comparative study conducted to identify the optimal conditions for energy recovery using the new Hydrothermal Carbonization […]

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Adsorption of Greenhouse Gases from Mining Industries Using Zeolite Membranes Technologies

The mining sector plays a significant role in GHG emissions, contributing to climate change and environmental degradation. This proposal aims to investigate specific emissions associated with mining activities and evaluate the potential of zeolite membrane direct capture technologies as a viable solution for emission reduction. By addressing gaps in the current literature regarding the application […]

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Comprehensive analysis of the production of green hydrogen from selected biomass (cocoa pod husk, rice husk, coconut husk, sawdust, etc.) resources for assessment of the economic viability of the process.

This study seeks to conduct a comprehensive analysis to investigate the optimum process parameters for generating green hydrogen from waste materials (cocoa pod husk, rice husk, coconut husk, sawdust, etc.) and to assess the economic viability of the process. The use of the selected biomass as feedstock would provide a clearer scientific understanding of green […]

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Evaluation of the Corrosion Tendency of a Novel of 2-amino 2-methyl propanol (AMP) and 1-(2-hydroxyethyl) pyrrolidine (1-(2-HE) PRLD) Blend used for CO2 Capture from Industrial Exhaust Gases in a Commercial CO2 Capture Plant

This projects aims to evaluate the corrosion rate of carbon steel in a 2:2 molar ratio (4M total molar concentration) of AMP: 1-(2-HE) PRLD environment as a function of absorber/desorber temperature, O2 concentration in the flue gas, and CO2 loading. This evaluation is to ensure that this novel amine blend can be used reliably with […]

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