gapbetween the professional skills of recent engineering graduates and the expectations ofemployers [8, 9]. These studies suggest that more traditional coursework and individualassignments do not adequately address some of the most important skills for practicingengineers. These project assignments are designed to offer additional opportunities for studentsto develop teamwork skills, positioning them for success both in their capstone design coursesand in their professional careers after graduation.Methods: Curriculum-Wide Chemical Process ProjectThe Haber-Bosch process for ammonia synthesis was implemented in the courses indicated inbold in Table 1. Table 1: The 14 required upper division chemical engineering courses (excluding electives
knowledge as filters guiding thealignment of teaching practices with their convictions. This work holds significant implicationsfor current and future first-year instructors in that this paper will showcase how the instructors inthis study use their understanding of the content and their students to teach, which is a criticalaspect of helping students successfully integrate into engineering.IntroductionImproving the percentage of undergraduate engineering students and enhancing undergraduategraduation rates has been identified as a priority for engineering education. To achieve this,many regional, national, and international assessments have been recommended to also enhancethe caliber of engineering graduates. Greater focus is being given to how
. Their current project is CourseNetworking (or CN), an academic social networking and learning platform, which has been used by the NSF Urban STEM Collaboratory project to connect student scholars from three urban universities and facilitate their STEM identity development through ePortfolio building and digital badges. Mengyuan has an EdD in Instructional Systems Technology with a research focus on social learning and innovative learning technology.Tony Chase, Indiana University-Purdue University Indianapolis ©American Society for Engineering Education, 2024 Urban STEM Collaboratory: 5 Years of Lessons LearnedAbstractThe Urban STEM Collaboratory is an NSF-funded S-STEM project
Electrical Engineering (EE) department. The program was designed as a50-50 split of coursework and faculty representation from the two sponsoringdepartments. Despite the maturation of the CPE field, this 50-50 structural balancehas persisted in our curriculum. This split necessitates a kind of code switching for CPEstudents between CS and EE coursework, creating challenges that lead many students toturn away from CPE. Despite a recent transition from program to department, inertia fromthe CS-EE binary persists in our curriculum and in the patchwork of policies andprocedures inherited by the former sponsoring departments. This legacy hampers CPEstudents as they strive to develop a sense of engineering identity, belongingness,and self-efficacy and
engineeringeducation [1], [10]. Yet, students struggle to satisfactorily develop these skills during their timeas undergraduates, as stated in recent feedback from over 500 employers who hired entry-levelengineers [2].Despite the implementation of project-based educational learning models, the skill gap betweenwork expectations of employers and the performance of engineering graduates persists in subsetsof professional skills, such as contextual application of engineering design solutions,communication, motivation, and self-management [2], [3], [5]. A focus on collaboration withindustry in the education of engineers has been shown to boost, not only design thinking withreal-world complexity [1], but also to increase contextual understanding of design
students to choose engineering and persist in engineering. She also studies how different experiences within the practice and culture of engineering foster or hinder belonging and identity development. Dr. Godwin graduated from Clemson University with a B.S. in Chemical Engineering and Ph.D. in Engineering and Science Education. Her research earned her a 2016 National Science Foundation CAREER Award focused on characterizing latent diversity, which includes diverse attitudes, mindsets, and approaches to learning to understand engineering students’ identity development. She has won several awards for her research including the 2021 Journal of Civil Engineering Education Best Technical Paper, the 2021 Chemical
, University at Buffalo, The State University of New York Jessica Swenson is an Assistant Professor at the University at Buffalo. She was awarded her doctorate and masters from Tufts University in mechanical engineering and STEM education respectively, and completed postdoctoral work at the University of Michigan. Her research work aims to improve the learning experience for undergraduate students by examining conceptual knowledge gains, affect, identity development, engineering judgment, and problem solving. ©American Society for Engineering Education, 2024 Using an Autoethnographic Approach to Examine the Student Experience Solving an Open-Ended Statics ProblemAbstractThis research paper
education, special education, student success in higher education, nursing, and environmental chemistry.Joyce Dinglasan-PanlilioSeung-Jin Lee, University of Washington, Tacoma Seung-Jin Lee, Ph.D., is an Assistant Professor of Mechanical Engineering at the University of Washington Tacoma. His research focus is on the life cycle sustainability of emerging technologies, such as transportation, biofuels, green buildings, and consumer products. His tools of research include life cycle assessment (LCA), industrial ecology, material flow analysis, energy efficiency, market diffusion models, reuse and recycling, and sustainable development. He has published in leading journals in sustainability and environmental engineering
. While the lecture contentsdiffer, the drill sections are the same for all courses. During the drills, we partner with otherCollege of Engineering units to focus on major selection, academic coaching, student successand professional development skills.On average, 40% of incoming first-year engineering students are a part of the Honors College.Over 95% of these honors students choose to take the Honors version of the Introduction toEngineering I course. Honors and regular students in the Introduction to Engineering courseshave been integrated into the same sections, attending identical lectures, completing identicalassignments, and undergoing the same assessments. Honors students, however, are tasked withadditional coursework to earn honors
Engineering: Systems from the University of Michigan.Anne M Fernando, University of VirginiaProf. Lindsay Wheeler, University of Virginia Dr. Lindsay Wheeler is Senior Associate director and Assistant Professor in the Center for Teaching Excellence at the University of Virginia. Dr. Wheeler develops, implements, and researches educational development programs and courses to support instructors in redesigning courses. ©American Society for Engineering Education, 2024 Integrating Precalculus into Calculus II and Its Outcomes IntroductionIn many calculus courses, a deficiency in precalculus skills frequently poses obstacles to studentachievement
doctoral students, respectively. He also has extensive experience in working collaboratively with several universities in Asia, the World Bank Institute, and USAID to design and conduct workshops promoting active-learning and life-long learning that is sustainable and scalable. Dr. Lawanto’s research interests include cognition, learning, and instruction, and online learning.Dr. Angela Minichiello, Utah State University Angela (Angie) Minichiello is a military veteran, licensed mechanical engineer, and associate professor in the Department of Engineering Education at Utah State University. Her research examines issues of access, equity, and identity in the formation of engineers and a diverse, transdisciplinary 21st
Paper ID #42154Near-Peer Mentors’ Discussions with a Student Avatar Experiencing LogisticalIssues on a First-Year Design TeamDr. Pamela S. Lottero-Perdue, Towson University Pamela S. Lottero-Perdue, Ph.D., is Professor of Science and Engineering Education in the Department of Physics, Astronomy & Geosciences at Towson University. She has integrated engineering into courses for PreK-8 teacher candidates, developed and directed a graduate STEM program for PreK-6 teachers, and partnered with teachers to implement PreK-8 science-integrated engineering learning experiences. She has authored numerous engineering-focused
: Graduating Class 2023," ACT, online, 2023.[4] D. D. J. Baker, "Race, racism and student loans," Department of Education, online, 2021.[5] J. Yue, "Improving Math Skills through Intensive Mentoring and Tutoring," ASEE Annual Conference & Exposition, pp. 22.835.1-22.835.12, 2011.[6] T. D. Ennis, J. F. Sullivan, B. Louie and D. Knight, "Unlocking the Gate to Calculus Success: Pre- Calculus for Engineers - An Assertive Approach to Readying Underprepared Students," in 120th ASEE Annual Conference & Exposition, Atlanta, GA, 2013.[7] J. Huff, K. J. Shryock, A. M. Ogilvie, D. Stern, S. Garcia and S. Fletcher, "Strengthening Math Skills of Incoming Engineering Freshmen through," in FYEE Conference, Penn State University, Pennsylvania