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                    <title><![CDATA[Mohawk College Newsroom]]></title>
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                    <pubDate>Mon, 09 Dec 2024 19:49:18 +0100</pubDate>
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                        <title><![CDATA[Mohawk College Newsroom]]></title>
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                        <title>Fostering a culture of research</title>
                        <link>https://www.mohawknewsdesk.ca/fostering-a-culture-of-research/</link>
                        <guid>https://www.mohawknewsdesk.ca/fostering-a-culture-of-research/</guid><pp:caseid>680771</pp:caseid><pp:subtitle>Read time: 4 mins</pp:subtitle><description><![CDATA[<p>Mohawk College’s Applied Research Pathway, Centre for Emerging Research Initiatives and applied research training modules offer a suite of supports for applied researchers.</p>]]></description><content:encoded><![CDATA[<img src="https://content.presspage.com/uploads/2979/8e10b01d-c249-4b06-97a0-2737047014bc/1920_applied-research-pathway-banner-1920x1080.jpg?10000"><p><strong>Mohawk College’s Applied Research Pathway, Centre for Emerging Research Initiatives and applied research training modules offer a suite of supports for applied researchers.</strong></p><p>Fostering a culture of research is a key strategic priority of Mohawk College and that happens on a number of fronts: backing established researchers leading key campus centres of innovation; helping emerging&nbsp;researchers firmly get rooted in their field of inquiry; and growing the ranks of researchers by inviting new people into the fold.</p><p>The goals are to provide more opportunities for applied research to students, to collaborate with more industry partners and to improve the rigour and success of the research that is undertaken, says Cristina Gage, Dean of Applied Research.</p><p>Mohawk College is home to subject matter experts in a realm of fields, including remote sensors, internet of things, drones, artificial intelligence, cybersecurity, digital health, additive manufacturing and many others.</p><p>Converting that knowledge into an understanding of the demands, standards and rigours of research through Mohawk College’s Applied Research Pathway, a structured approach that builds the skills of new researchers – and the subsequent benefits to students and industry who can join that exploration – is a powerful model, says Andrea Johnson, who is general manager of the recently created Centre for Emerging Research Initiatives.&nbsp;</p><p>“We know we have untapped resources of expertise amongst our faculty experts and we wanted to create more access to research training to develop their research skills and knowledge that can solve real-life challenges.”</p><p>Mohawk College, through IDEAWORKS, its applied research and innovation division, provides resources, support, mentorship and services to faculty, staff and students across the spectrum of research experience.</p><p>“Mohawk College has developed a flexible toolbox that supports researchers. The majority of our researchers work within defined innovation centres that employ professional staff,” says Jeff McIsaac, Dean of Engineering Technology & Aviation.</p><p>The Applied Research Pathway, developed by Johnson and McIsaac, operates in five levels, beginning with novice researchers, then emerging researchers and working all the way up to established researchers who are leading large projects and building a career in the field.</p><p>Researchers complete training and research activities and hit key milestones to move through to the next stage.</p><p>“We have researchers across the spectrum of experience, from someone just starting out who needs training and skills development and assistance in finding partners and building relationships to undertake their first project to those who have completed dozens of projects and are managing 10 to 20 researchers and a multi-million dollar budget,” says McIsaac.</p><p>“Those two researchers have a completely different set of needs, so with the Applied Research Pathway, we can identify where in the research journey they are and align our supports with that of the needs of&nbsp;<br>the researcher.”</p><p>An element of the research pathway is a series of applied research training modules that are now open for enrollment to anyone, including individuals, industry and other institutions, and provide the resources for those who want to take on research activities but may be intimidated.</p><p>“How do you start? How do you pose a research question? How do you get funding? These are questions that someone new to research would have,” says Gage. “We know there are faculty and staff who&nbsp;<br>are interested in research but haven’t had dedicated training.”</p><p>The modules also cover research ethics, how to protect intellectual property, how to apply for grants and how to achieve research objectives that create value for the region, province and country.</p><p>“The idea is to give back to the entire applied research community with training and knowledge. More applied research knowledge is better for everyone and makes the sector stronger. We really believe in the value of applied research and what it brings to businesses, community organizations and start-ups.”</p><p>Babitha Thampinathan, who teaches cardiac sonography part-time at the Institute for Applied Health Sciences, took the applied research modules earlier this year. She is exploring the integration of AI technology, such as a simulation mannikins to evaluate the impact of simulation-based learning.</p><p>“I have always planned to do applied research at the school and coming out of the pandemic, I renewed my commitment. I have participated in some clinical research but that’s different from finding an industry partner and funding.”</p><p>She said the modules were accessible, sequential and systematic and included videos, hands-on “drag and drop” activities, readings and self-assessments.</p><p>“I now understand the terminology of applied research, along with budgets and working with deliverables to research partners. I have referred my colleagues who don’t have a research background and they found it really helpful, too.”</p><p>Thampinathan credits the modules with helping her secure two grants, one through the IDEAWORKS Catalyst Fund and the other through an external funder. “I think it’s great Mohawk College has opened this up to external researchers. That is forward thinking and it shows the strength and value of applied research at the college.”&nbsp;</p><p><strong>This story originally appeared in Momentum Magazine.</strong></p>]]></content:encoded><pp:quotes><pp:quote>
                    <pp:quotename><![CDATA[Jeff McIsaac]]></pp:quotename>
                    <pp:quotetext><![CDATA[We are shifting our focus to supporting emerging researchers and that continuum of support makes Mohawk College unique.]]></pp:quotetext>
                </pp:quote></pp:quotes><category><![CDATA[Fall 2023,health,Leadership,innovation,research,Momentum]]></category>
            <pubDate>Wed, 01 Nov 2023 00:29:00 -0400</pubDate>
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                <pp:imageOriginal>https://content.presspage.com/uploads/2979/3eb3e806-1f78-4777-9d69-d948fc8c7fc8/applied-research-pathway-main-1400x1000.jpg?10000</pp:imageOriginal><pp:imageTitle><![CDATA[Applied-Research-Pathway_main_1400x1000]]></pp:imageTitle><pp:imageDescription><![CDATA[Babitha Thampinathan, Professor, Diagnostic Cardiac Sonography and Andrea Johnson, General Manager, Centre for Emerging Research Initiatives, IDEAWORKS]]></pp:imageDescription></item><item>
                        <title>Knowledge comes from the challenge</title>
                        <link>https://www.mohawknewsdesk.ca/knowledge-comes-from-the-challenge/</link>
                        <guid>https://www.mohawknewsdesk.ca/knowledge-comes-from-the-challenge/</guid><pp:caseid>680751</pp:caseid><pp:subtitle>Read time: 2 mins</pp:subtitle><description><![CDATA[<p style="margin-left:0px;">Digital Health degree combines computer science, health care and business into one integrated discipline.</p>]]></description><content:encoded><![CDATA[<img src="https://content.presspage.com/uploads/2979/ebce988b-c464-4040-896a-8211d5455af3/1920_oluafemi-banner-1920x1080.jpg?10000"><p style="margin-left:0px;text-align:start;"><strong>Digital Health degree combines computer science, health care and business into one integrated discipline.</strong></p><p style="margin-left:0px;text-align:start;">Oluwafemi Agbeye is among the first cohort of students in Mohawk College’s multidisciplinary Digital Health degree program, the College’s first standalone degree.</p><p style="margin-left:0px;text-align:start;">That group is now about half-way through the four-year program, while another cohort is finishing its first year. It combines computer science, health care and business and integrates research, applied learning and placements.</p><p style="margin-left:0px;text-align:start;">All those threads interest Agbeye.</p><p style="margin-left:0px;text-align:start;">He works as a support worker for people with developmental delays, sometimes working full-time hours. But he also loves to program and code and has his eye on one day managing a health care business that develops software.</p><p style="margin-left:0px;text-align:start;">&nbsp;</p><p style="margin-left:0px;text-align:start;">Digital health is a broad field, encompassing everything from analyzing the data that helps clinicians make better treatment decisions to electronic health records to virtual patient visits to remote patient monitoring.</p><p style="margin-left:0px;text-align:start;">Right now, the concept of digital health and what those skills mean isn’t generally known but Agbeye is confident that his skillset will be in high demand.</p><p style="margin-left:0px;text-align:start;">Originally from Nigeria, Agbeye studied anatomical sciences and then computer science in Caracas for two years before deciding to move to Canada.</p><p style="margin-left:0px;text-align:start;">He started a personal support worker course in Toronto but then decided he should capitalize on his computer skills. He came to Mohawk College to study Software Development.</p><p style="margin-left:0px;text-align:start;">“When Digital Health was introduced, it really offered everything I was looking for, so I crossed over. I want a career that combines health care and IT.”</p><p style="margin-left:0px;text-align:start;">The program is challenging, says Agbeye, “but all of that comes with benefits. Knowledge comes from the challenge.”</p><p style="margin-left:0px;text-align:start;">Alongside courses in software development, mobile development and user interface design comes anatomy and physiology, patient safety and risk management, statistics, data analytics, telehealth, digital imaging, emerging technologies, entrepreneurship and project management.</p><p style="margin-left:0px;text-align:start;">“This is a demanding program with a robust workload,” says Varrasso. “It combines a higher-level theoretical understanding with the hands-on applied learning we’re known for at Mohawk College.”</p><p style="margin-left:0px;text-align:start;">“Student feedback is outstanding. They love the program.”&nbsp;</p><p><strong>This story originally appeared in Momentum Magazine.</strong></p>]]></content:encoded><pp:quotes><pp:quote>
                    <pp:quotename><![CDATA[Joe Varrasso, Program Coordinator]]></pp:quotename>
                    <pp:quotetext><![CDATA[“There are not many programs like this one out there. This is an exploding field, particularly in the wake of the pandemic.”]]></pp:quotetext>
                </pp:quote></pp:quotes><category><![CDATA[Around Campus,students,Programs,innovation,research,Momentum]]></category>
            <pubDate>Mon, 01 May 2023 00:13:00 -0400</pubDate>
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                        <title>Research pays off</title>
                        <link>https://www.mohawknewsdesk.ca/research-pays-off/</link>
                        <guid>https://www.mohawknewsdesk.ca/research-pays-off/</guid><pp:caseid>680730</pp:caseid><pp:subtitle>Read time: 5 min</pp:subtitle><description><![CDATA[<p style="margin-left:0px;">Mohawk students have plenty of job opportunities to work in college labs and innovation centres.</p>]]></description><content:encoded><![CDATA[<img src="https://content.presspage.com/uploads/2979/c9a714da-2fb9-4b2e-b253-4f3819c2e489/1920_researchpays-main-1400x1000.jpg?10000"><p><strong>Mohawk students have plenty of job opportunities to work in college labs and innovation centres.&nbsp;</strong><br><br><img class="image_resized image-style-align-left" style="width:500px;" src="https://content.presspage.com/uploads/2979/1e83e19c-df01-499f-8d0b-4b07d6f6ca45/1920_researchpays-deivy-1400x1000.jpg?x=1698693029710" alt="RESEARCH PAYS_Deivy_1400x1000">Deivy Munoz-AcostaDeivy Munoz-Acosta is among 40 students working on applied research projects at Mohawk College through the Campus Student Employment Program (CSEP), part-time contracts and co-op placements.&nbsp;<br><br>A second-year student in the Computer Systems Technician-Software Support program, Munoz-Acosta works in image processing analysis. He evaluates sensor data across a number of parameters to evaluate a blast furnace’s working performance.&nbsp;<br><br>He worked part-time as an international CSEP student in Sensor Systems and Internet of Things (IoT) Lab before being hired as a full-time research assistant last summer. Now, he’s doing a full-time co-op placement there.&nbsp;<br><br>Munoz-Acosta has been working on a project with a national steel manufacturer that uses vision systems employing specialized image processing to determine whether the steel company’s blast furnace is running optimally.&nbsp;<br><br>Other IoT projects have required him to use 3D modelling and coding skills. The lab, which includes seven research assistants, eight to 10 CSEP students and several full-time staff, takes on a great deal of industry work.&nbsp;<br><br>Munoz-Acosta was a research assistant and a professor in electronics and mechatronics in his native Colombia.&nbsp;<br><br>“I love research because you are changing projects and learning new things all the time.”&nbsp;<br><br>He chose to come to Canada to further his career, and after exploring his options, he felt Mohawk College offered the most complete program for him.&nbsp;<br><br>He learned about employment opportunities in applied research when he saw the on-campus applied research department in Mohawk College’s IDEAWORKS.&nbsp;<br><br>“This is a big project and it’s applied directly to industry. It will be an important part of my resumé. This has been a wonderful opportunity for me.”&nbsp;<br>&nbsp;</p><h5>Career path confirmed</h5><p><img class="image_resized image-style-align-left" style="width:500px;" src="https://content.presspage.com/uploads/2979/c9a714da-2fb9-4b2e-b253-4f3819c2e489/1920_researchpays-main-1400x1000.jpg?x=1698693063278" alt="RESEARCH PAYS_main_1400x1000">David Brack, who is in his final year of Computer Engineering and Mechatronic Systems, also works in the IoT lab. During the time he worked on the project with a global leading steel manufacturer, he developed a computer vision algorithm based on thermal images. It automates a manual raking process to remove slag from molten steel in the steel manufacturer’s ladle metallurgy facility.&nbsp;<br><br>The system gives the operators real-time feedback and suggestions, with the hope that will increase quality and consistency, says Brack.&nbsp;<br><br>“This project has been a great challenge for me since a lot of the concepts needed, such as computer vision, are taught later in my program. I was also unfamiliar with thermal imaging, which meant I needed to review a large amount of research papers before starting to get familiar with the concepts.”&nbsp;<br><br>His applied research work has demonstrated to Brack that he wants to pursue a career in computer vision and AI.&nbsp;<br><br>“The project was a great opportunity for me to build on the skills I learned at Mohawk while challenging me to be creative and learn concepts outside my education and comfort zone. It forced me to think about what I want to do after I graduate and enabled me to make a plan to achieve those goals.”&nbsp;&nbsp;</p><h5>Research in the sky</h5><p><img class="image_resized image-style-align-left" style="width:500px;" src="https://content.presspage.com/uploads/2979/3c2c41e2-18a0-4d10-a530-e473f96da609/1920_researchpays-mackenzie-1400x1000.jpg?x=1698693078693" alt="RESEARCH PAYS_Mackenzie_1400x1000">Mackenzie Van Vliet spent a week experiencing cold like she had never felt before while working in -50C weather in Churchill, Manitoba in January to conduct cold-weather testing of drones for Hamilton-based company Skygauge. She is a research assistant in the Unmanned & Remote Sensing Innovation Centre (URSIC).&nbsp;<br><br>Van Vliet, who is studying in the Digital Health degree program, had never considered working with drones, but when she happened upon a drone demonstration at a fair, she was immediately intrigued. Now she’s interested in how drones can be applied to health care.&nbsp;<br><br>Since landing a job in URSIC, she’s worked on a series of projects, including using drones to measure the volume of ponds and to support police operations, and has landed advanced drone pilot certificate in advanced operations, issued by Transport Canada.&nbsp;<br><br>“I am really excited to have it. I want to eventually become a flight reviewer after I get more flight time and knowledge.”&nbsp;<br><br>She will continue travelling for projects, including back to Manitoba and to Ottawa and St. John, and says her job has exposed her to advanced software and to being involved in project management.&nbsp;<br><br>“I’m part of weekly check-in meetings with clients. Everyone is so supportive in the lab and works really well together as a team,” she says.&nbsp;<br><br>“We are getting to do things that haven’t been done before. If you want to try something, you try it. If it doesn’t work, that’s OK. You try something else.”</p><p><strong>This story originally appeared in Momentum Magazine.</strong></p>]]></content:encoded><category><![CDATA[Spring 2023,students,research,innovation,Momentum]]></category>
            <pubDate>Mon, 01 May 2023 00:05:00 -0400</pubDate>
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                        <title>Nothing but good things to say</title>
                        <link>https://www.mohawknewsdesk.ca/nothing-but-good-things-to-say/</link>
                        <guid>https://www.mohawknewsdesk.ca/nothing-but-good-things-to-say/</guid><pp:caseid>680715</pp:caseid><pp:subtitle>Read time: 2 min</pp:subtitle><description><![CDATA[<p>AMIC is helping a sustainable tech start-up bring its product to life.</p>]]></description><content:encoded><![CDATA[<img src="https://content.presspage.com/uploads/2979/54c87888-5db7-40ae-a4dc-a94f6ef0432a/1920_3dprintlab-1920x1080.jpg?10000"><p>The team behind a technology start-up developing a plant monitor for home gardeners says Mohawk College’s Additive Manufacturing Innovation Centre (AMIC) helped them get to the next stage of their concept.&nbsp;</p><p>EarthOne, launched by a group of Mohawk College and McMaster University graduates, brings together sensors that measure light, humidity, soil moisture, temperature and soil acidity into a dashboard in a wireless monitor, along with software that identifies plants and determines what they need to thrive in each category.&nbsp;</p><p>“Our motto is science-based plant care,” says co-founder and CEO Sid Pereira. The idea is to make living sustainability more achievable.&nbsp;</p><p>“There are many passionate home growers and this is a new generation of tool for them,” says Daniel Hacikyan, EarthOne’s head of operations. Both graduated from the joint B. Tech program of Mohawk and McMaster in 2019.&nbsp;</p><p>The platform, which is set to optimize foliage, flowering and yield, can even forecast the harvest date of produce plants.&nbsp;</p><p>When the team was challenged by mentors and investors to develop a functional prototype, they explored their options.&nbsp;</p><p>After getting a quote for $200,000 for design services, a mentor at Innovation Factory suggested they look at AMIC at Mohawk College. A collaboration launched in January. EarthOne contributed $7,500 and in return got a design that was about 70 per cent complete, says Pereira.&nbsp;</p><p>“It was phenomenal for us. I have nothing but good things to say. We learned how to design a printed circuit board alongside them and we were able to take the design from 70 per cent to 100 per cent ourselves.”&nbsp;</p><p>AMIC also brought its expertise in advanced manufacturing to the design of sensors and a durable monitor case.&nbsp;</p><p>EarthOne is now validating its product and platform with about 60 gardening enthusiasts.&nbsp;</p><p>The project is supported in part by funding from the FedDev Ontario-supported Southern Ontario Network for Advanced Manufacturing Innovation (SONAMI), a consortium of innovative Ontario colleges and universities that includes Mohawk College. &nbsp;&nbsp;</p><p><strong>This story originally appeared in Momentum Magazine.</strong></p>]]></content:encoded><category><![CDATA[innovation,Fall2022,research,Partnerships,Momentum]]></category>
            <pubDate>Tue, 01 Nov 2022 00:57:00 -0400</pubDate>
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                        <title>Steeling automation</title>
                        <link>https://www.mohawknewsdesk.ca/steeling-automation/</link>
                        <guid>https://www.mohawknewsdesk.ca/steeling-automation/</guid><pp:caseid>680711</pp:caseid><pp:subtitle>Read time: 3 min</pp:subtitle><description><![CDATA[<p>The Sensor Systems and Internet of Things (IOT) Lab has helped ArcelorMittal Dofasco bring digital transformation to its ladle metallurgy facility.</p>]]></description><content:encoded><![CDATA[<img src="https://content.presspage.com/uploads/2979/20b37da6-c326-4848-9ba2-7608b05b11d1/1920_hassan-tech-1920x1080.jpg?10000"><p>&nbsp;Three years ago, steel producer ArcelorMittal Dofasco approached Mohawk College with a desire to automate a manual raking process to remove slag from molten steel in its ladle metallurgy facility.&nbsp;</p><p>“They wanted to get into the area of the new Industrial Internet of Things and to optimize a process through innovation,” says Dr. Esteve Hassan, director of the IOT Lab and Industrial Applied Research Chair in Interoperability Sensor Systems for IIoT Applications.&nbsp;</p><p>That innovation involves machine visioning sensors that collect images and data and advanced image processing that drives a robotics platform.&nbsp;</p><p>“It’s a highly variable environment of high temperatures and debris and smoke that makes the deployment of this technology challenging.”&nbsp;</p><p>The project – believed to be the world’s first digitization at a ladle metallurgy facility – received a $300,000 Applied Research and Development Grant from the National Sciences and Research Council of Canada, as well as support from ArcelorMittal Dofasco and Next Generation Manufacturing Canada (NGEN), the advanced manufacturing supercluster.&nbsp;</p><p>The IOT Lab is a centre of expertise, working with industrial partners to develops, validates and tests hardware and software solutions that enable companies to adopt leading-edge technology to improve efficiency, safety and quality.&nbsp;</p><p>The IOT Lab works with industrial partners in a range of sectors, including transportation and automotive, energy and smart cities, advanced manufacturing, healthcare and wearable devices.&nbsp;</p><p>“The pace of work in the lab is strong, whether it’s product development, process improvement or training. Whatever the project, students take centre stage.”&nbsp;</p><p>After a delay due to the pandemic, the two-year ArcelorMittal Dofasco project, which involved five students and three staff leads, is now close to its finish.&nbsp;</p><p>“It has been an excellent project with great support from the industry supercluster NGEN and from ArcelorMittal Dofasco. Our students and faculty did excellent work,” says Hassan.&nbsp;</p><p>“Students were hired to complete challenging tasks. There has been a lot of very advanced self-learning involved. They met all expectations and beyond.”&nbsp;</p><p>A project with Hamilton’s other steel company Stelco is now underway.&nbsp;</p><p>Rob Glista, who is in his final year of Electrical Engineering Technology, worked on the automation side of the ArcelorMittal Dofasco project and says the experience has been extremely positive.&nbsp;</p><p>“Because it’s been based in an educational institution, we have been able to do more discovery than what we would be able to do in employment. We approached this with many different solutions and explored each of them. I’m motivated by that.”&nbsp;</p><p>Hanna Stewart, who graduated from Computer Engineering Technology in May, worked on machine visioning and imaging on the project.&nbsp;</p><p>“Our job was to develop a method of gathering information using specialized cameras. It’s a difficult environment in which to get accurate measurements. There is smoke and heat and fumes that can be corrosive, so typical instruments get worn out quickly in that type of environment. We had to find a way to mount infra-red cameras to get a good view but far enough away from those hazards.”&nbsp;</p><p>That involved talking to vendors, testing equipment and working with IT at the College and at ArcelorMittal Dofasco.&nbsp;</p><p>Stewart, who now works in Mohawk’s MEDIC digital health lab, says the experience of this project was a “really valuable part of my education at Mohawk College. I got exposure to things you just can’t replicate in a classroom. And I learned that machine visioning is an area of interest for me, especially in health care.”&nbsp;&nbsp;</p><p><strong>This story originally appeared in Momentum Magazine.</strong></p>]]></content:encoded><category><![CDATA[innovation,Fall2022,research,Partnerships,Momentum]]></category>
            <pubDate>Tue, 01 Nov 2022 00:56:00 -0400</pubDate>
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                        <title>Smart and Sustainable: Building a house for the future</title>
                        <link>https://www.mohawknewsdesk.ca/smart-and-sustainable-building-a-house-for-the-future/</link>
                        <guid>https://www.mohawknewsdesk.ca/smart-and-sustainable-building-a-house-for-the-future/</guid><pp:caseid>111204</pp:caseid><pp:boilerplate><![CDATA[<p><span>Mohawk College educates and serves more than 32,500 full-time, part-time, apprenticeship and international students at four main campuses in Hamilton, Ontario and learning hubs across Hamilton through City School by Mohawk, as well as at the Mohawk College Mississauga Campus in partnership with triOS College. Mohawk is committed to upholding an equitable, diverse and inclusive learning, working and engaging environment for students, employees and the community. The college is among the top colleges for applied research in Canada. It has been named one of Hamilton-Niagara’s top employers and one of Canada’s greenest employers, and holds a GOLD STARS rating from AASHE for sustainability achievements. More than 165,000 people have graduated from Mohawk since it was founded.</span></p>]]></pp:boilerplate><description><![CDATA[<p><em>At Mohawk&rsquo;s Stoney Creek campus, a multidisciplinary research and teaching lab showcases the sustainable and energy efficient future in an ingenious way.</em></p>

<p><img alt="" src="//content.presspage.com/uploads/1499/500_-dsc9885.jpg" style="width: 450px; height: 300px; margin: 5px; float: left;" />It&rsquo;s a small two-story house that wouldn&rsquo;t look out of place on any residential street. But its modest exterior hides a secret: the house is built with the most advanced materials, connected to renewable generation, outfitted with energy efficient heating and cooling technology, utilizing energy storage and wired top to bottom with sensors that monitor insulation efficiency.</p>

<p>The house is a living lab, facilitating opportunities for research, innovation and teaching that will benefit industry, academics and teachers. It&rsquo;s a modern home that allows visitors to visualize every aspect of energy and power research that is taking place in the space.</p>

<p>You can&rsquo;t find it using Google Maps- the almost-completed eco-friendly house is located at Mohawk&rsquo;s Stoney Creek Campus, housed within a soaring three story lab space that is dedicated to everything sustainable. The house is part of the Sustainable Resource Centre, a centre dedicated to helping us reduce our environmental impact and focused on the pillars of clean energy, reuse of resources and waste minimization.</p>

<p><strong>Efficient Energy</strong></p>

<p>As more homes adopt energy storage, renewable energy and start selling back to the grid, Researchers with the Mohawk College iDeaWORKS Energy Research Centre - which has labs located at both Mohawk&rsquo;s Fennell and Stoney Creek campuses- wanted to learn more about how it wouldimpact the grid, especially on the power distribution equipment and transformers. Their research interests found a home in the new eco-house.</p>

<p>New energy efficient appliances, like our dishwashers and washing machines, are generating more harmonic frequencies than their previous iterations. These harmonic frequencies are undesirable, as they impact power quality and can shorten the lives of transformers.</p>

<p>Energy researchers based at Mohawk College recently presented a paper at the 2015 IEEE conference on the topic, showing how harmonics generated by solar, energy-saving home appliances and electric vehicle chargers pose a potential threat to the distribution network systems. If they are allowed to continue unabated it could cause fuse failures and premature failure of pole-mount transformers.</p><p>Mike Dang, a researcher with the Energy Centre, and a retired employee of Hydro One, calls the transformer failures that are coming from the energy efficient appliances &ldquo;a costly and dangerous failure&rdquo;.</p>

<p>&ldquo;Let&rsquo;s say the utility company bought a transformer to hopefully last 50 years- now it might only last five years,&rdquo; says Dang. &ldquo;The cost could keep adding up to the point where in five to ten years&rsquo; time, the problem would be unmanageable. Plus, you can&rsquo;t afford to lose power in the winter- to replace a transformer, homes would be without power for two to five hours.&rdquo;</p>

<p>Peter Sztur, the Bachelor of Technology in Energy Engineering student who works with the iDeaWORKS Energy team sums up the issue with harmonics and the push on using energy efficient appliances.</p>

<p>&ldquo;When you are looking at the consumer perspective, it is great to save money, be sustainable and use energy, but at what cost to our utilities companies?&rdquo;</p>

<p><strong>Hands-On House</strong></p>

<p>&ldquo;It will be a very good research and development house.&rdquo; says Ivan Sverko.</p>

<p>Sverko is a Conventional and Renewable Energies Professor at Mohawk&rsquo;s Stoney Creek campus.Like the researchers in energy and power, Sverko is also using the house to solve problems and test new technologies in the area of renewable energy. He is just one of the many Mohawk faculty that helped in the planning and implementation of the lab and he&rsquo;ll continue to use the lab to conduct renewable energy projects and integrate the lab into his teaching on renewable and sustainable energy systems.</p>

<p>Sverko, his colleagues and students are using heat testing to see how effective the house is on the whole. The house itself was built using energy efficient materials and has been outfitted with the latest in heating and cooling technology, including geothermal and radiant floor heating.</p>

<p>It&rsquo;s also linked to solar panels and wind turbines located on the roof of the Stoney Creek campus.</p>

<p>&ldquo;Once we outfit the house with the temperature sensors, we will determine out the amount of heating needed to heat the house, and figure out how efficient the house is at keeping things warm without needing to have a heat source that needs to be used as often,&rdquo; explains Sverko.</p>

<p>&ldquo;If that is the case, then the house will be a success.&rdquo;</p>

<p>The sustainable house, although still not quite finished, is already a home for knowledge, innovation and teaching:</p>

<p>&ldquo;We are solving problems, we are reinventing the wheel,&rdquo; says Sverko.</p>

<p>&ldquo;Students can see it instead of studying it. The house is hands-on and something they can discover for themselves.&rdquo;</p><p><em>This article was originally published in the 2015 volume of</em>&nbsp;<a href="http://www.mohawkcollege.ca/ideaworks/quanta.html"><em>Quanta</em></a><em>, Mohawk College&rsquo;s annual celebration of research and innovation.</em></p>

<p><em>Author Andrea Johnson is Promotions and Industry Liaison Officer for</em>&nbsp;<a href="http://www.mohawkcollege.ca/ideaworks"><em>iDeaWORKS</em></a>&nbsp;<em>and the editor of Quanta.</em></p>]]></description><pp:quotes><pp:quote>
                    <pp:quotename><![CDATA[Mike Dang]]></pp:quotename>
                    <pp:quotetext><![CDATA[<strong>&ldquo;When you are looking at the consumer perspective, it is great to save money, be sustainable and use energy, but at what cost to our utilities companies?&rdquo;</strong>]]></pp:quotetext>
                </pp:quote></pp:quotes><category><![CDATA[Mohawk College,sustainability,research,Stoney Creek]]></category>
            <pubDate>Tue, 26 Jan 2016 10:13:00 -0500</pubDate>
            <enclosure url="https://content.presspage.com/uploads/1499/500_-dsc9885.jpg?10000" length="0" type="image/jpg" />
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                <pp:imageOriginal>https://content.presspage.com/uploads/1499/-dsc9885.jpg?10000</pp:imageOriginal><pp:imageTitle><![CDATA[2015_StoneyCreek_EcoHouse]]></pp:imageTitle><pp:imageDescription><![CDATA[This 2-storey home that sits in a lab at Mohawk&amp;#039;s Stoney Creek Campus gives students a glimpse into the future of building construction.]]></pp:imageDescription></item><item>
                        <title>Data is the new immunity</title>
                        <link>https://www.mohawknewsdesk.ca/data-is-the-new-immunity/</link>
                        <guid>https://www.mohawknewsdesk.ca/data-is-the-new-immunity/</guid><pp:caseid>111109</pp:caseid><pp:subtitle>MEDIC builds vaccine health architecture for Africa</pp:subtitle><pp:boilerplate><![CDATA[<p><span>Mohawk College educates and serves more than 32,500 full-time, part-time, apprenticeship and international students at four main campuses in Hamilton, Ontario and learning hubs across Hamilton through City School by Mohawk, as well as at the Mohawk College Mississauga Campus in partnership with triOS College. Mohawk is committed to upholding an equitable, diverse and inclusive learning, working and engaging environment for students, employees and the community. The college is among the top colleges for applied research in Canada. It has been named one of Hamilton-Niagara’s top employers and one of Canada’s greenest employers, and holds a GOLD STARS rating from AASHE for sustainability achievements. More than 165,000 people have graduated from Mohawk since it was founded.</span></p>]]></pp:boilerplate><description><![CDATA[<p><strong><em>&ldquo;It is a bittersweet irony,&rdquo; says Ted Scott, Chief Innovation Officer at Mohawk College, &ldquo;That while technologies like mobile phones have an almost universal reach, millions of people cannot get essential health care.&rdquo;</em></strong></p>

<p>It was to take something of the bitter sting out of this equation that the mHealth & eHealth Development and Innovation Centre (MEDIC) at the college partnered in an intricately connected international project to build better health data in Tanzania.</p>

<p><img alt="" src="//content.presspage.com/uploads/1499/500_wp-20150108-010.jpg" style="width: 500px; height: 375px; float: right; margin: 5px;" />The East African country was taken on as a lead project of the &lsquo;Better Immunization Data Initiative,&rsquo; one of the high-profile &lsquo;pathbreaking solutions&rsquo; for global health funded by the Bill and Melinda Gates Foundation, designed to give affordable and reliable health technology a greater reach.</p>

<p>MEDIC joined an international team gathered for the BID Initiative in Tanzania: IntraHealth International (USA), AIRIS Solutions (Albania), ecGroup (Canada), and the Tanzanian Ministry of Health and Social Welfare (MoHSW). At the centre was PATH, a widely respected international nonprofit organization tasked to develop and deliver health innovations in vaccines, drugs, diagnostics, devices, and systems.</p>

<p>Routine immunizations and new vaccine introductions have proven to be two of the best investments to improve health around the world. And as the BID Initiative notes, even though current immunization ratesin Africa have climbed to near 75 percent, it will require much more &ldquo;awareness, accessibility, and availability&rdquo; to reach and protect the last 25 percent.</p>

<p>But how do health providers know which of the three A&rsquo;s matter most, and in which areas? Data. Or, more precisely, better data that will inform better health decisions, and so produce better health. Once that better data is on hand, there must also be better ways found to share and manage it. This is the portion of the mHealth equation in Tanzania that MEDIC researchers at Mohawk set themselves to solve.</p>

<p><strong>INTEROPERABILITY: ALL TOGETHER NOW</strong></p>

<p>Tanzania is perhaps the paradigm case for eHealth in Africa, says Justin Fyfe, the Software Architect at Mohawk College who was lead on the Tanzania project. &ldquo;Although network readiness lags in Tanzania, the eHealth project will look ahead, to take some advantage of the rapid convergence of information and communications technology.&rdquo;</p>

<p>&ldquo;Our work was to create an electronic immunization registry in Tanzania. The registry had to operate within the OpenHIE framework [Open Health Information Exchange, a set of freely agreed-upon specifications within the international eHealth community on how to share and collaborate with data]. That meant we had to use global standards and open-source solutions, and be prepared to interoperate with many other health programs and systems,&rdquo; said Fyfe, as he listed the requirements and challenges set out for MEDIC. &ldquo;The framework we create for the immunization program must be designed to work reliably with other programs ... for Malaria, HIV, TB, family planning.&rdquo;</p><p>The interoperability requirements in Tanzania are very broad, Fyfe goes on to explain. The registry has to work with paper records that move by motorbike courier between remote villages, millions of vaccination cards that remain with the parents of children, migrations and emergencies, and also manage stocks of medical supplies.</p>

<p>The national goal is to register all children from birth -- and there are more than two million births every year in Tanzania -- and follow each child so that all required vaccines are given on schedule. &ldquo;Vaccination is not immunization,&rdquo; Fyfe points out. &ldquo;Vaccines are a medicine. They have to be timed right, given in a proper sequence, and follow a schedule to be effective.&rdquo;</p>

<p>Where there is electricity and large numbers of patients -- in the cities, or district health centres --vaccinations can be registered with a computer or tablet. In remote areas, with no or only erratic electrical supply, registration can be done with &lsquo;bubble paper.&rsquo; Vaccination and other health information is recorded as filled-in circles on standard forms, and the data captured via scans with mobile phones or simple devices -- the data simply and efficiently made acceptable by the larger electronic system. Each child is assigned a record with a barcode on the paper registry.</p>

<p>All the data must converge, says Fyfe, in a way that children can be included and followed accurately in the national immunization registry, and critical data can flow back to front-line workers and facilities to keep vaccines on schedule and coverage complete.</p>

<p>MEDIC worked quickly: only a few months after the kickoff meeting in mid-January 2015, the registry prototype began trials at selected locations in June in the Arusha Region in northern Tanzania. With tweaks from trial users incorporated, the registry will be rolled out to all 253 health facilities in the region throughout this year and into early 2016.</p>

<p><strong>STANDARDS ARE NOT FUN</strong></p>

<p>As MEDIC Director Duane Bender points out, &ldquo;there were 124 requirements set out by PATH when it asked for software development services to create the Tanzanian immunization registry. It had to be easy to use in a &lsquo;low-resource&rsquo; environment where data entry might be done via paper forms or mobile phones, yet also be accurate enough and robust enough to safely and efficiently manage the routine immunization of the approximately two million children born every year.&rdquo;</p>

<p>It was the kind of challenge that software architects call &lsquo;fun.&rsquo; Less fun, says Bender, is that the work had to be &ldquo;disciplined&rdquo; to use standards and open-source software already in operation. Where resources are scarce, system and software investments previously made have to be preserved.</p>

<p>But there is also a need to avoid &lsquo;lock-in&rsquo; dependency on a particular product or vendor, Bender says, which might frustrate development of the &lsquo;best&rsquo; software architecture or system solution. He adds, that it is in these environments that MEDIC excels, with its &ldquo;teaming, tooling, testing and training&rdquo; approach.</p>

<p>MEDIC works not just on the machine-readable instructions that direct computers, but on all the challenges -- technical, regulatory, or institutional -- that might constrain development of digital products or services. As Bender puts it: &ldquo;We add team strength to projects with expertise in architecture and design. We test and detect problems to reduce time, cost, and risk -- the Tanzanian registry was test run with five million records and 80 simultaneous points of access. We form specialized knowledge into practical, tangible, and scalable tools. And we train. We are, after all, an educational institution. Our product is our capability, and our students.&rdquo;</p>

<p><strong>ROOM E103</strong></p>

<p>Paul Brown is Research Project Manager (Software) of iDeaWORKS, the research and innovation department of Mohawk College, but he introduces himself to a visitor as &ldquo;chief cat herder&rdquo; of Room E103, the MEDIC collaboration workspace- reflecting the common belief that &ldquo;Managing programmers is like herding cats.&rdquo;</p><p><em>This article was originally published in the 2015 volume of</em>&nbsp;<a href="http://www.mohawkcollege.ca/ideaworks/quanta.html"><em>Quanta</em></a><em>, Mohawk College&rsquo;s annual celebration of research and innovation.</em></p>

<p><em>Author Andrea Johnson is Promotions and Industry Liaison Officer for</em>&nbsp;<a href="http://www.mohawkcollege.ca/ideaworks"><em>iDeaWORKS</em></a>&nbsp;<em>and the editor of Quanta.</em></p>]]></description><pp:quotes><pp:quote>
                    <pp:quotename><![CDATA[Justin Fyfe]]></pp:quotename>
                    <pp:quotetext><![CDATA[<strong>&ldquo;Vaccines are a medicine. They have to be timed right, given in a proper sequence, and follow a schedule to be effective.&rdquo;</strong>]]></pp:quotetext>
                </pp:quote></pp:quotes><category><![CDATA[Mohawk College,MEDIC,research]]></category>
            <pubDate>Sat, 23 Jan 2016 09:14:00 -0500</pubDate>
            <enclosure url="https://content.presspage.com/uploads/1499/500_mohawkbuilding-h_5430.jpg?25276" length="0" type="image/jpg" />
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                <pp:imageOriginal>https://content.presspage.com/uploads/1499/mohawkbuilding-h_5430.jpg?25276</pp:imageOriginal><pp:imageTitle><![CDATA[mohawkbuilding-h_5430.jpg]]></pp:imageTitle></item><item>
                        <title>Discover the 3D printers of E-Wing: An insider look at Mohawk’s AMRC</title>
                        <link>https://www.mohawknewsdesk.ca/discover-the-3d-printers-of-e-wing-an-insider-look-at-mohawks-amrc/</link>
                        <guid>https://www.mohawknewsdesk.ca/discover-the-3d-printers-of-e-wing-an-insider-look-at-mohawks-amrc/</guid><pp:caseid>111203</pp:caseid><pp:boilerplate><![CDATA[<p><span>Mohawk College educates and serves more than 32,500 full-time, part-time, apprenticeship and international students at four main campuses in Hamilton, Ontario and learning hubs across Hamilton through City School by Mohawk, as well as at the Mohawk College Mississauga Campus in partnership with triOS College. Mohawk is committed to upholding an equitable, diverse and inclusive learning, working and engaging environment for students, employees and the community. The college is among the top colleges for applied research in Canada. It has been named one of Hamilton-Niagara’s top employers and one of Canada’s greenest employers, and holds a GOLD STARS rating from AASHE for sustainability achievements. More than 165,000 people have graduated from Mohawk since it was founded.</span></p>]]></pp:boilerplate><description><![CDATA[<p>Visible behind large panels of glass in a hallway in the E-Wing are some very unique printers. 3D printers to be exact.</p>

<p>These 3D printers are based at Mohawk College&rsquo;s Additive Manufacturing Resource Center (AMRC), an <a href="http://www.mohawkcollege.ca/ideaworks/">iDeaWORKS lab</a> that works on applied research projects with industry.</p>

<p>When you hear of 3D printing, says Robert Gerritsen, Professor of Mechanical Engineering at Mohawk College and coordinator of the AMRC, you&rsquo;re likely going to hear about two concepts: 3D printing and additive manufacturing.</p>

<p><img alt="" src="//content.presspage.com/uploads/1499/500_2015-dec-amrc-gerritsen-robert2.jpg" style="width: 450px; height: 303px; float: right; margin: 5px;" />When people talk about 3D printing, explains Gerritsen, they are talking about a particular process, a particular group of materials and a particular application. Calling it 3D printing is the simplest way of understanding the work undertaken at the AMRC. &ldquo;In a nutshell, what we do in this lab is bring the digital into the physical. We reproduce 3D physical replicas of particular objects.&rdquo;</p>

<p>In regards to the more complex concept of additive manufacturing, the focus shifts, with an emphasis on producing shapes, previously deemed impossible, for specific industrial purposes. &ldquo;The biggest difference - or advantage - of additive manufacturing equipment is getting to produce impossible geometry,&rdquo; says Gerritsen. &ldquo;One way to describe this is that &lsquo;You can&rsquo;t drill a curved hole, but we can create it.&rsquo;&rdquo;</p>

<p>The two large machines that stand immediately behind the AMRC&rsquo;s wall of glass are focused on additive manufacturing. One machine focuses on Selective Laser Sintering (SLS); the other on Direct Metal Laser Sintering (DMLS). They share features in common with some major differences.</p>

<p><img alt="" src="//content.presspage.com/uploads/1499/500_3dprintedchess.jpg" style="width: 400px; height: 242px; margin: 5px; float: left;" />The DMLS machine uses the application of a laser upon fine metal powder to convert that powder into a solid metal object. There are roughly a dozen of available materials that can be used, including titanium, aluminum and steel. However, Gerritsen does offer a word of caution about the technology which prints metal: &ldquo;When we look at the DMLS process, it&rsquo;s not a Swiss army knife. It&rsquo;s not the right process for every application out there, but it&rsquo;s absolutely the right process for very specific applications.&rdquo;</p>

<p>The SLS works in much the same way as the DMLS says Gerritsen, using a &ldquo;powder bed fusion system&rdquo;. Unlike the DMLS process, there is &ldquo;a bed of plastic powder with a powerful laser sitting on top that fires into the plastic powder,&rdquo; turning the fine plastic powder into a solid, chunk of plastic.</p>

<p>However, as Gerritsen explains, the large machine does more than your typical plastic 3D printer that can be purchased for home use. &ldquo;Stepping up to the SLS means dealing with polymers and polystyrenes, very much more robust plastics all-together; it&rsquo;s also much stronger and much tougher.&rdquo;</p>

<p>Additive manufacturing technology allows for the manufacturing of parts in hours and days instead of weeks and months. This, Gerritsen says, is where its true prowess is shown. One key example is in the area of orthopedic and prosthetics. &ldquo;Typically, with the process today, patient wait times are in the 10-12 week range- with additive manufacturing we can now bring it down to 10-12 days.&rdquo;</p>

<p>&ldquo;There is so much more detail, and it&rsquo;s much more precise.&rdquo;</p>

<p>Beyond the benefits to industry, the new technology has created opportunities for incoming and current students to learn the machinery and technology. Mechanical Engineering student Jason Podger is one of them. As a co-op student at the AMRC, he sees firsthand that access to the technology is the key for industry- and for giving Mohawk graduates a competitive edge.</p>

<p>&ldquo;I believe it&rsquo;s going to be a very important part of the industry as far as manufacturing. So having access to new equipment and new technologies that are just starting to creep their way into industry is a really good asset because we are learning skills that people are going to be looking for that nobody else has.&rdquo;</p>

<p>Podger detailed the opportunities that fellow Mohawk students will have to get themselves involved with the machines behind the glass.</p>

<p>&ldquo;There&rsquo;s going to be an additive manufacturing course as an elective in the fifth semester of mechanical engineering. If people would like to get involved earlier, they can volunteer, or come talk to us at the lab.&rdquo;</p>

<p>&nbsp;</p><p><em>About the author:</em></p>

<p><em>Nick Birnie is a student in Mohawk College&rsquo;s Journalism program. He is completing his internship with</em>&nbsp;<a href="http://www.mohawkcollege.ca/ideaworks/"><em>iDeaWORKS, Mohawk&rsquo;s department of applied research and innovation</em></a><em>.</em>&nbsp;</p>]]></description><category><![CDATA[Mohawk College.,3D printing,research]]></category>
            <pubDate>Fri, 22 Jan 2016 11:13:00 -0500</pubDate>
            <enclosure url="https://content.presspage.com/uploads/1499/500_3dprintedchess.jpg?10000" length="0" type="image/jpg" />
                <pp:image>https://content.presspage.com/uploads/1499/500_3dprintedchess.jpg?10000</pp:image>
                <pp:imageOriginal>https://content.presspage.com/uploads/1499/3dprintedchess.jpg?10000</pp:imageOriginal><pp:imageTitle><![CDATA[2015_3dprintedchess.jpg]]></pp:imageTitle><pp:imageDescription><![CDATA[The Additive Manufacturing Resource Centre is located in E Wing at Mohawk&amp;#039;s Fennell Campus.]]></pp:imageDescription></item></channel>
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