- Conference Session
- Materials Division Technical Session 3
- Collection
- 2019 ASEE Annual Conference & Exposition
- Authors
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Breanne Przestrzelski, University of San Diego; Susan M. Lord, University of San Diego; Michelle M. Camacho, University of San Diego
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Materials
assessment to track their understanding of the impact that their futureengineering roles might play. From the compiled results, the student response to the moduleswas positive, leaving many students empowered, curious, and excited. The module seriesaccomplished the goal of helping students be more prepared in understanding their role indesigning materials with their end-use in mind, thus infusing technical and social engineeringskill sets.IntroductionTraditionally, the engineering canon focuses solely on technical skills; but there is growingindustry and academic demand for engineers who design solutions with “sociotechnical”perspectives [1-4]. The term “sociotechnical” blends the social impact of technical engineeringprinciples; it is a concept
- Conference Session
- Materials Division Technical Session 2
- Collection
- 2019 ASEE Annual Conference & Exposition
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Kaitlin Tyler, Granta Education Division; Hannah Melia
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Diversity
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Materials
the high degree of connectivity between materials and the processes that create andshape them into the products we used in every-day life. This grounding in real world applicationscan be used to show the value of materials science to those experiencing it for the first time,assisting educators in increasing the field’s interest. The records and associated properties werechosen with a high school audience in mind; all are common in everyday life so personalconnections can be readily made. This commonality could make this tool useful for a basicintroductory engineering course as well, particularly a broad discipline overview or freshmancornerstone course. Figures 3 and 4 showcase mockup material and product database images,while Table 1
- Conference Session
- Materials Division Technical Session 3
- Collection
- 2019 ASEE Annual Conference & Exposition
- Authors
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Sabrina Jedlicka, Lehigh University; Gregory Mark Skutches, Lehigh University; Siddha Pimputkar, Lehigh University
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Materials
Engineering: An Integrated Approach, 5th ed. John Wiley and Sons, 2015.[8] "How People Learn: Brain, Mind, Experience, and School: Expanded Edition," National Research Council, Washington, DC, 2000.[9] K. Wakabayashi, "Materials Selection and Product Design in an Upper Level Undergraduate Elective," Journal of Materials Education, vol. 37, no. 5-6, pp. 185-196, 2015.[10] M. T. Crimmins and B. Midkiff, "High Structure Active Learning Pedagogy for the Teaching of Organic Chemistry: Assessing the Impact on Academic Outcomes," Journal of Chemical Education, vol. 94, no. 4, pp. 429-438, Apr 2017.[11] K. N. Pelletreau et al., "A Faculty Professional Development Model That Improves Student Learning, Encourages
- Conference Session
- Materials Division Technical Session 2
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- 2019 ASEE Annual Conference & Exposition
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Lessa Grunenfelder, University of Southern California
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Materials
Paper ID #27789Active Learning in an Introductory Materials Science CourseDr. Lessa Grunenfelder, University of Southern California Lessa Grunenfelder has a BS in astronautical engineering and a MS and PhD in materials science, all from the University of Southern California. In 2015 she joined the USC Mork Family Department of Chemical Engineering and Materials Science as teaching faculty. She teaches both undergraduate and graduate courses on material properties, processing, selection, and design. She is passionate about sharing her love of materials science with students through curriculum that combines fundamental