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- Student Division Technical Session 5
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Jennifer Shaffer Brown, Clemson University
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. American c Society for Engineering Education, 2021 Examining the Changing Perceptions of Graduate Students’ Role as Teaching Assistant with Online and Hybrid Labs during COVID-19” (Instruction)Abstract The transition from traditionally face-to-face “in-person” courses to hybrid/onlinelaboratory courses as a result of the COVID-19 pandemic has fundamentally altered how theselabs are delivered in the mechanical engineering curriculum at Clemson University. This paperseeks to capture the graduates’ and undergraduates’ changing perceptions of the roles andresponsibilities that graduate laboratory assistants (GLAs) have in the delivery of course materialwithin the
- Conference Session
- Student Division Technical Session 2
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Bibhav Bhattarai, Auburn University; Edward W. Davis, Auburn University; Joni M. Lakin, University of Alabama; Virginia A. Davis, Auburn University; Daniela Marghitu, Auburn University
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management; all of these assignments were focused on enabling new polymer formulations to become useful consumer products.Dr. Daniela Marghitu, Auburn University Dr. Daniela Marghitu is a faculty member in the Computer Science and Software Engineering Department at Auburn University, where she has worked since 1996. She has published seven Information Technology textbooks, over 100 peer reviewed journal articles and conference papers, and she gave numerous presen- tations at national and international professional events in USA, Canada, England, France, Italy, Portugal, Spain, Germany and Romania. She is the founder director of the Auburn University Educational and Assistive Technology Laboratory (LEAT), Co-PI of NSF EEC
- Conference Session
- Student Division Technical Session 2
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Matilda Ho, University of Texas at Dallas; Maria Fernanda Valdez; Casey Hatfield; Jieun Kim; Taylor Carlile Beach
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connect the control systems tophysical visualizations. Learning MATLAB while simultaneously learning the content also providesyet another challenge for students new to control systems material. Notably MATLAB has aquadcopter simulation available, but the interface presents itself less than intuitive for anundergraduate engineering student being presented control systems content for the first time.Quanser, a company known for educational lab equipment, also developed an app that presents somecontrol systems topics in an educational format. The app also has interactive components to engagethe users. It ultimately lacked the direct correlation to undergraduate control systems curriculum andfelt more tailored to topics directly covered in laboratory
- Conference Session
- Student Division Technical Session 7
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Andrew H. Phillips, The Ohio State University; Krista M. Kecskemety, The Ohio State University
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literature reviews, instrument development and validation, and person- ality theory. As a Graduate Teaching Associate for the Fundamentals of Engineering for Honors program, he is heavily involved with developing and teaching laboratory content, leading the maintenance of the in-house robotics controller, and managing the development of the robotics project.Dr. Krista M. Kecskemety, The Ohio State University Krista Kecskemety is an Assistant Professor of Practice in the Department of Engineering Education at The Ohio State University. Krista received her B.S. in Aerospace Engineering at The Ohio State Uni- versity in 2006 and received her M.S. from Ohio State in 2007. In 2012, Krista completed her Ph.D. in Aerospace
- Conference Session
- Student Division Technical Session 1
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Mercy Folashade Fash, North Carolina Agricultural and Technical State University ; Andrea Nana Ofori-Boadu, North Carolina Agricultural and Technical State University; Rabiatu Bonku, North Carolina Agricultural and Technical State University ; Wanya Alford, North Carolina Agricultural and Technical State University ; Alesia Coralie Ferguson, North Carolina Agricultural and Technical State University ; Angela M. White, North Carolina Agricultural and Technical State University
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RPs indicated that these interactions were not the same as pre-COVID campuslearning environments, they appreciated the limited, but real-time interactions with professorsand peers. Nevertheless, they expressed that it was very challenging to even ask questions inthese virtual teaching platforms. An RP noted that ‘I think in the class, you can actually see eachother and have a conversation about what you’re asking and what you’re trying to say ... you’rekind of, like you ask a question, but its 30 to 40 other students who have questions.” RPs alsomissed the hands-on experiences of STEM learning. Considering that most STEM students arevisual and tactile learners, the lack of hands-on STEM laboratory projects in synchronouscourses negatively
- Conference Session
- Student Division Technical Session 5
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Nathalia De Souza, California Polytechnic State University, San Luis Obispo; Michaella Ochotorena, California Polytechnic State University, San Luis Obispo; Brian P. Self, California Polytechnic State University, San Luis Obispo; Lauren Anne Cooper, California Polytechnic State University, San Luis Obispo
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Brian Self obtained his B.S. and M.S. degrees in Engineering Mechanics from Virginia Tech, and his Ph.D. in Bioengineering from the University of Utah. He worked in the Air Force Research Laboratories before teaching at the U.S. Air Force Academy for seven years. Brian has taught in the Mechanical Engineering Department at Cal Poly, San Luis Obispo since 2006. During the 2011-2012 academic year he participated in a professor exchange, teaching at the Munich University of Applied Sciences. His engineering education interests include collaborating on the Dynamics Concept Inventory, developing model-eliciting activities in mechanical engineering courses, inquiry-based learning in mechanics, and design projects to help
- Conference Session
- Student Division Technical Session 3
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Jorge Jimenez, University of Pittsburgh; April A. Dukes, University of Pittsburgh; Morgan V. Fedorchak
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societies [18], and industry sectors [19]. Collaborations from thesestakeholders support the translation of novel DDS from laboratory or “benchtop” research through commercialization, clinical trials and regulatory bodies and onto the patient, or “bedside” [20]. As a multidisciplinary field, researchers have contributed to engineering curriculum by developing drug delivery courses to engage engineering students with varied interest in medicine and the desire to pursue biomedical careers in pharmaceutical industries, research intensive institutions, and medical schools [21]. Historically, students enter this course with prior knowledge of chemical engineering fundamentals, and are instructed by bioengineering and chemical engineering