. Leal, A. Schleife, D. R. Trinkle, M. West, and G. L. Herman. Reforming an undergraduate materials science curriculum with computational modules. ” J Mater Educ, 38(3-4):161 – 174, 2016.[10] Xiao Zhang et al. Computational curriculum for matse undergraduates and the influence on senior classes. In 2018 ASEE Annual Conference & Exposition, 2018.[11] Cheng-Wei Lee et al. Impact of computational curricular reform on non-participating undergraduate courses: Student and faculty perspective. In 2019 ASEE Annual Conference & Exposition, 2019.[12] A. Stukowski. Visualization and analysis of atomistic simulation data with ovito-the open visualization tool. Modelling and Simulation in Materials Science and Engineering, 18(1
/papslcen19/. 2019.[8] D. Gibson, and P. Brackin, “Capstone design projects: Helping the disabled” in Proceedings of the 2002 Annual Conference, Montreal, Canada. June, 2012. Available: https://peer.asee.org/10407[9] S. B. Niku, and R. J. Miller, “Designing Devices to Help the Disabled” in Proceedings of the 2011 ASEE Annual Conference & Exposition, Vancouver, BC. June, 2011. Available: https://peer.asee.org/17724[10] M. Pilotte and D. Bairaktarova, “Autism spectrum disorder and engineering education- needs and considerations,” Proceedings of the 2016 Frontiers in Education Conference, Erie, PA, October 2016.[11] C. J. Groen, M. C. Paretti, L. D. McNair, D. R. Simmons, and A. Shew
- sity in West Lafayette, Indiana. Afshin’s research is in the areas of fatigue, material life prediction, and structural condition assessment and health monitoring. He served as the President for Chi-Epsilon civil engineering honor society (IIT Chapter) and is an associate member of ASCE, ASME, and ASEE. Afshin has 7 years of teaching experience as a visiting faculty, an adjunct faculty, and as a Teaching assistant. He has taught a wide variety of classes including Statics, Dynamics, Strength of Materials, Hydraulics, Soils and Foundations, Structural Analysis I and II, and Reinforced Concrete Design. He has won IIT’s ASCE Teaching Assistant of the Year Award in 2015-16 and 2016-17. Afshin also had experience in
. Krause K., J. C. Decker, J. Niska, and T. Alford, "Identifying Student Misconceptions in Introductory Materials Engineering Classes," in American Society for Engineering Education Annual Conference & Exposition, 2003.[6] A. F. Heckler and R. Rosenblatt, "Student difficulties with basic concepts in introductory materials science engineering," presented at the 41st ASEE/IEEE Frontiers in Education Conference, Rapid City, SD, 2011.[7] E. Campos, G. Zavala, K. Zuza, and J. Guisasola, "Electric field lines: The implications of students' interpretation on their understanding of the concept of electric field and of the superposition principle," Am. J. Phys., vol. 87, no. 8, pp. 660-667, 2019, doi
company has since evolved to cover MaterialsIntelligence through software at all levels: from academia to industry. In 2019, it was acquiredby an engineering simulation company, which has expanded the focus to include materialsinformation for simulations of all kinds.In this paper, strategies on how to enable active learning usage in materials science courses viasoftware and connected resources will be discussed. First, a brief overview of knowledgetransfer, teaching methods, and active learning will be provided for motivation of the work.Then, a description of the software and the resources provided to support the community ofmaterials educators will be given. Use cases, when applicable, will be referenced. Finally, goalsand the next steps for
. L. McDonald, "Writing in engineering courses," Journal of Engineering Education, vol. 89, no. 4, pp. 481-486, 2000.[15] K. Wright and P. E. Slaboch, "Board 100: Enhancement of a Thermo-Fluid Laboratory Course: Focus on Technical Writing," in 2019 ASEE Annual Conference & Exposition, 2019.[16] K. H. Schulz and D. K. Ludlow, "Incorporating group writing instruction in engineering courses," Journal of Engineering Education, vol. 85, no. 3, pp. 227-232, 1996.[17] S. Nelson, "Teaching collaborative writing and peer review techniques to engineering and technology undergraduates," in 30th Annual Frontiers in Education Conference. Building on A Century of Progress in Engineering Education. Conference
journals and conference proceedings and a few books to his credit. Jayanta is a member of ASEE, ASME and VDI (Germany). American c Society for Engineering Education, 2020WIP PAPER: Integration of Mechanical Properties of Materials in an Undergraduate Course onManufacturing Processes for Both Mechanical and Industrial Engineering StudentsBy: Jayanta Banerjee (ASEE Life Member)Mechanical Engineering DepartmentUniversity of Puerto Rico at Mayagüez (UPRM)Draft Paper: (For ASEE Materials & Manufacturing Joint Session)Abstract: At the University of Puerto Rico’s Mayagüez campus in the Department of Mechanical Engineering, acourse on Manufacturing Processes (INME 4055) is offered
and PhD im Materials Science and Engineering from Texas A&M in 2009. Working on metallurgy, severe plasric deformation, mechanical behaviors of metallic materials and corrrosion engineering.Mr. Josiah Cherian Chekotu, Dublin City University M.Sc. graduate in Applied Materials, Mechanics and Design from Sultan Qaboos University in Oman. Currently, PhD researcher in Advanced Metallic Systems Centre for Doctoral Training (I-Form research centre) at Dublin City University in Ireland. c American Society for Engineering Education, 2020 ASEE 2020 Annual Conference & Exposition, 21-24 June 2020, Montreal, Canada A Significant Learning Approach for Materials
California Polytech- nic State University where he teaches courses in materials selection and polymers. He has presented his research on engineering ethics to several universities and to the American Bar Association. He serves as Associate Editor of the journals Advances in Engineering Education and International Journal of Service Learning in Engineering. He has served as program chair and division chair for several divisions within ASEE. c American Society for Engineering Education, 2020 Self-Efficacy and Mental Wellness Goals in Materials Engineering and Mechanical Engineering StudentsAbstractThe mental well-being of undergraduate students is a growing concern among
and possible sources of the IBS during the progression of anintroductory materials course. In addition to the most recent results from spring term 2019,information from previous work and resources over the past decade will be incorporated into thediscussion of the various IBS. The most recent data for this paper was drawn from a spring 2019class. That and prior classes usually had enrollments between 35 and 70 students. This course hastypically had students from engineering disciplines that were 65% mechanical, 15% materials, 10%chemical, and 10% industrial. Some of the details of the nature of the class, along with activities,assessment, and student resources are described below. The class levels of enrollment are typically15% freshman, 30