discussions among international engineeringdirectors, peer institutions expressed interest in a network of Global Engineering Fellows. Aninternational network of Fellows could establish a replicable program framework, standards, anddesirable outcomes at universities across the globe. Such a network could lead the way inleveraging globally minded engineering students throughout the world towards a commonpurpose, uniting students who are equipped with the capabilities to lead and inspire the world.An international network would oversee: • Standards for organization, such as an ethos, course curriculum, participant prerequisites, program requirements, assessment, and partner responsibilities. • Coordination of an annual project to promote
).Campbell and Wilson [27]– agreeing with Lucena et al.’s [28] concept of humanitarianengineering as “an important dimension of engineering practice that deserves clearer ethicalarticulation and curriculum development” ([27, p.4], citing [28]) – discuss how humanitarianengineering is accentuated by particularly exercising engineering ethics, and how “care”maps onto humanitarian engineering. They even call it “Humanitarian Engineering as aMatrix of Care and Ethics” [27, p.5].We think that Human-Centred Designing is indeed a form of Prosocial Behaviour and that itis directly linked to exercising engineering ethics, and so, would therefore like to explicitlyaddress the link(s) between personal values and ethical practice and judgement in thefollowing
and through master’s programs may impact theextent to which those graduating with civil engineering master’s degrees meet the CEBOK3outcomes. For example, are students without BS degrees in civil engineering required tocomplete undergraduate level pre-requisite coursework that will fulfill CEBOK3 outcomes? Orare both undergraduate and graduate level CEBOK3 outcomes integrated into required graduatelevel courses and/or the thesis research experience? This paper explored these questions bycollecting curriculum information for 80 institutions from civil engineering program websitesand conducting a survey. The types of civil engineering degree programs (MS and MEng),pathways (e.g., thesis vs. coursework only), and specialty areas found at the 80
. She earned a Bach- elor of Science in Biology from the University of North Carolina at Chapel Hill, a Master of Science in Biology from North Carolina Agricultural and Technical State University, and a Doctor of Philosophy in Curriculum and Instruction with a concentration in Educational Psychology from North Carolina State University. Dr. White has served as an educator for 15 years at various levels and currently serves as the Assistant Dean of Student Success for the College of Science and Technology at North Carolina Agri- cultural and Technical State University. In this role she strategically develops and implements initiatives that promote the academic achievement and success of students within the College
affect the type of team test to develop.In a team test, the students complete an individual test paper as well as a group test paper. Theindividual component enforces individual accountability and allows the instructor to askquestions in formats that do not naturally benefit from a group discussion. The group componentasks the stude e a a e he dea a d he e a ha c a e he beideas generated by the members of the group. Due to the need to compare and defend ideas,questions on the group test naturally elicit and evaluate higher-level cognitive functions likeanalysis, evaluation and transfer [1]. By doing so, team testing converts the evaluationenvironment into a learning environment. Depending on instructor
theme, “Plight of the Bumblebees: Engineering Solutions to Pollinator Extinctions”,integrated engineering strategies from multiple disciplines to help overcome environmental andother changes that lead to pollinator extinction. The 2019 in-person camp targeted rising6th through 9th grade females, while the 2020 virtual version targeted rising 4th through7th graders. The in-person version targeted female participants based upon grant funding from theWomen’s Giving Circle.The second theme, entitled “Engineering Entertainment: Amusement Park Challenge”, allowedstudents to design an amusement park. Students in this camp incorporated concepts from variousengineering fields and worked on projects, such as site selection and ride design. The 2019 in
the Department of Integrative STEM Educa- tion at The College of New Jersey. In his role, he prepares pre-service teachers to become K-12 technology and engineering educators. His research involves engaging college students in human centered design and improving creativity. He also develops biotechnology and nanotechnology inspired lessons that naturally integrate the STEM disciplines. He received his PhD in biomedical engineering from Drexel University and was an NSF Graduate STEM Fellow in K-12 Education (GK-12).Dr. Jamie Mikeska, Jamie Mikeska is a Research Scientist in the Student and Teacher Research Center at Educational Testing Service (ETS). Jamie completed her Ph.D. in the Curriculum, Teaching, and
tutoring and peer-assisted learning (PAL) programs and provided pedagogical and academic success support to the General Engineering Learning Community. She is also co-developer of a framework of rigorously-documented, self-directed collabo- rative learning called Entangled Learning. Whisler has an M.A. in Music from The Pennsylvania State University and an M.L.S. from Indiana University.Dr. Elizabeth Anne Stephan, Clemson University Dr. Elizabeth Stephan is the Director of Academics for the General Engineering Program at Clemson University. She holds a B.S. and a Ph.D. in Chemical Engineering from the University of Akron. Since 2002, she has taught, developed, and now coordinates the first-year curriculum. She is the
STEM classroom indicated that students foundthe video-based instructional modules helpful, and student quiz scores increased after reviewingthe video demonstrations [10]. Another study also showed that student quiz and exam scoresincreased following the implementation of animations and videos into a geotechnical engineeringcourse in the Civil Engineering curriculum [3]. Several other studies have also found that studentscores increased following implementation of an enhanced visual explanation of course contentin both science and engineering classrooms through the use of video and animation learningmodules [1, 7, 10].Overall, research has shown that incremental learning, scaffolding, visual aids, and repetitionenforces subject matter [4, 7
%. This team project study demonstrated student’scritical thinking, product design skills, machining knowledge, layout skills, processing skills, andsimulation modeling skills. This group project not only encouraged the students to work as ateam but also encouraged their individual talents to shine. This group project gave students theconfidence to handle product from “drawing to production”. It was very satisfying to see howthese senior students are transforming themselves to competent engineers.IntroductionThe engineering students are required to take various courses in general education and technicaleducation to meet the graduation requirements. Please refer a typical manufacturing engineeringprogram curriculum flow chart in the reference
University of Technology Hanna Niemel¨a received the M.A. and PhD degrees in translation studies from University of Helsinki in 1993 and 2003, respectively. She is currently working as an associate professor with the Department of Electrical Engineering at Lappeenranta-Lahti University of Technology LUT, Lappeenranta, Finland. Her professional experience ranges from translating to teaching and language consulting. Her interests include electrical engineering, scientific writing, and special languages.Dr. Heikki J¨arvisalo, Lappeenranta-Lahti University of Technology Heikki J¨arvisalo received the M.Sc. degree in electrical engineering and the D.Sc. degree in electronics from the Lappeenranta University of Technology
engineering programs as a strength of their curriculum but is often not assessed for itsefficacy in teaching transferable skills. More work is needed to determine the connection between high-impact practices in the design classroom with direct evidence of students’ demonstrated learning [6]. Thisresearch aims to evaluate engineering self-efficacy in students who conducted rapid prototyping in designclassrooms. The assessment of engineering self-efficacy can help elucidate concepts of confidence intechnical skills, motivation, and mindset towards building activities.There are several different ways to introduce rapid prototyping into an engineering design classroom.Depending on the type of engineering being taught (e.g. electrical, mechanical or
. Total Environ. 2019, 660, 1245–1255. https://doi.org/10.1016/j.scitotenv.2019.01.001.(7) Pathak, T.; Maskey, M.; Dahlberg, J.; Kearns, F.; Bali, K.; Zaccaria, D. Climate Change Trends and Impacts on California Agriculture: A Detailed Review. Agronomy 2018, 8 (3), 25. https://doi.org/10.3390/agronomy8030025.(8) Johnson, E. O.; Charchanti, A. V.; Troupis, T. G. Modernization of an Anatomy Class: From Conceptualization to Implementation. A Case for Integrated Multimodal-Multidisciplinary Teaching. Anat. Sci. Educ. 2012, 5 (6), 354–366. https://doi.org/10.1002/ase.1296.(9) Sharma, B.; Steward, B.; Ong, S. K.; Miguez, F. E. Evaluation of Teaching Approach and Student Learning in a
Paper ID #35200Instructing Lab Courses VirtuallyDr. Zhen Yu, California State Polytechnic University, Pomona Dr. Jenny Zhen Yu is an Associate Professor of Electrical & Computer Engineering, California State Polytechnic University, Pomona. She has expertise in the areas of Nanotechnology with application in nanomaterial synthesis, electronics devices fabrication and characterization, low cost and robust manufac- turing processes, 3D printing of energy storage device for UAVs and water contamination treatment. Her research has resulted in several patent applications, peer-reviewed journal papers and book chapters, and
Maryland. He also holds an MA in Experimental Psychology from S.U.N.Y at Geneseo, and a B.S. from S.U.N.Y.at Brockport where he majored in psychology and business administration.Dr. Susan Pruet, STEMWorks, LLC Dr. Susan Pruet has been actively involved in STEM education for over 30 years – as a teacher, teacher educator and director of reform initiatives. Since 1998 she has directed two STEM reform initiatives for the Mobile Area Education Foundation (MAEF): the Maysville/Mobile Mathematics Initiative and, most recently, Engaging Youth through Engineering (EYE), a K-12 workforce development and STEM initiative in Mobile, Alabama. Both initiatives, funded largely through NSF grants, involve valuable partnerships with the
Paper ID #35087Analysis of undergraduate students’ learning experience regarding handson laboratory courses using new innovated techniques of hybrid deliveryDr. MD Shahriar Jahan Hossain, Northwestern State University Dr. Hossain is currently serving as an endowed Assistant Professor in the Department of Engineering Technology at Northwestern State University, LA. He earned his PhD degree in the industrial engineer- ing area, from Louisiana State University, under a fellowship funded by EDA Program. He has 11 years of teaching, research and consultation experience in industrial and production engineering. His current
Paper ID #33849Building Social Capital for First Generation Students throughIntentional Multilayered MentoringProf. Tiffiny Antionette Butler , Worcester Polytechnic Institute Dr. Butler joined the faculty at WPI after completing a postdoctoral fellowship in biomedical engineering at Worcester Polytechnic Institute in 2016. Dr. Butler received her masters and doctoral degrees in Kinesiology (Athletic Training, Integrative Exercise Physiology) with her research interests focused on skeletal and bone biomechanics. She combines her love for education, exercise science, and her passion for diversity, and inclusion in her
University - Purdue University Indianapolis Andrew McNeely was a lecturer in the Electrical Engineering Technology department of the Purdue School of Engineering and Technology at IUPUI. He teaches courses in circuit analysis and instrumen- tation + controls. His research interest lies in the areas of methods to better incorporate technology into curriculum and improving first year programs. He has a B.S. in Technology with an emphasis in Electrical Engineering Technology and a M.S. in Technology with an emphasis in technical communications , both from IUPUI. American c Society for Engineering Education, 2021 Assessing Level of Laboratory
. Rentsch has been with AIA for 15 years and has over 10-years of experience in both commercial and defense aerospace sectors. He held Technical Support Engineering and Commercial Support positions with Tex- tron Lycoming, Messier-Services Inc., and Messier-Dowty. Additionally, Rentsch has several years of experience in product development and management in the telecommunications and logistics industries. Rentsch is a member of the American National Standards Institutes (ANSI) Board of Directors and has chaired the ANSI ISO Forum and the International Organization for Standardization (ISO) Technical Committee 20 for Aircraft and Space Vehicles. Currently, Rentsch is leading AIA’s efforts to establish an A & D
. curriculum. M.S. Indiana State University, B.S. University of Wisconsin-Milwaukee. American c Society for Engineering Education, 2021 Undergraduate Engineering Laboratories During COVID-19 Pandemic Maria Javaid, David Malooley, Edith Wittenmyer, William Clyburn, Oscar Henriquez, Larry Pritchett, Robert English, and Xiaolong Li Indiana State UniversityAbstractLaboratories have always been considered an integral part of undergraduate engineeringeducation.The recent COVID-19 pandemic has globally affected higher education and educators aredevising innovative ways to minimize the impact
classroom and office scenarios, The Citadeldecided in late June to purchase a Swivl for each classroom and selected labs, as well as an iPadfor each faculty member. The Citadel also transitioned to a new LMS and integrated Zoom intothe LMS for easy of scheduling and cloud recording.Transitioning to Hyflex and Online LearningThe rapid pivot to online learning created some growing pains for both faculty and students, butmore importantly, neither group was prepared for remote learning. As early as June 2020, it wasclear that training was needed prior to the Fall 2020 semester for both faculty and studentsregarding what constitutes quality online learning, in the event that no face-to-face instructionwere possible. The Citadel’s CEITL&DE initially
. Lattuca, P. Terenzini and J. Volkwein, “Engineering Change: A Study of the Impact of EC2000,” 2006. [Online]. Available: http:∥www .abet.org.[3] J. Cui and X. Wang, “Research on social demands for curriculum reform of Higher Engineering Education: Based on the survey of employers in industrial enterprises,” Research on higher engineering education, no.2, pp.88-95,2013.[4] C. E. Hmelo-Silver, “Problem-based learning: What and how do students learn,” Educational psychology review, vol.16, no.3, pp.235-266, 2004.[5] J. L. He, B.C. Yang, T. T. Zeng and C. J. Ye, “Quality evaluation of school enterprise cooperative education and construction of high-quality cooperative education mode: An empirical analysis based on 1538 surveys
manufactur- ing, non-destructive inspection and evaluation, and vehicle autonomy. Dr. Gray came to the Engineering Education department as an instructor in 2018, and was promoted to Associate Professor of Practice in August 2019. Dr. Gray is primarily focused on pedagogy of first-year engineering students, but maintains an undergraduate research group with interests in automotive systems, communications, computing, and non-destructive inspection.Desen Sevi Ozkan, Tufts University Desen is a postdoctoral researcher in the Tufts Center for Engineering Education Outreach and the Insti- tute for Research on Learning and Instruction. She holds a Ph.D. in engineering education from Virginia Tech and a B.S. in Chemical
, 2008, doi: 10.1002/cc.[62] G. M. Mooney and D. J. Foley, “Community College: Playing an Important Role in the Education of Science, Engineering, and Health Graduates,” 2011.[63] S. Olson and J. B. Labov, Community colleges in the evolving STEM education landscape: Summary of a summit. 2012.[64] S. R. Jones and M. K. Mcewen, “A Conceptual Model of Multiple Dimensions of Identity,” J. Coll. Stud. Dev., vol. 41, no. 4, pp. 405–414, 2000, doi: 10.1353/csd.2007.0000.[65] M. L. Miville, P. Darlington, B. Whitlock, and T. Mulligan, “Integrating Identities: The Relationships of Racial, Gender, and Ego Identities Among White College Students,” J. Coll. Stud. Dev., vol. 46, no. 2, pp. 157–175, 2005, doi
), and HBCUs (Gasmanand Nguyen, 2014, Toldson 2018, and Toldson, 2019) represent a unique venue through which toreach a large population of such students. This research focused on increasing retention rates andimproving academic and career success in the STEM disciplines at an open-enrollment HBCUthrough a hands-on and mentorship-focused research program. We have utilized the “ScientificVillage” model, where students interacted as peers assisting, encouraging, holding each otheraccountable, and interacted with faculty mentors. Incorporating hands-on research furtherstimulated and engaged students to enhance interest in STEM curriculum and careers. This was avoluntary, three-year, mixed-method, hands-on research program that tracked a cohort of
expand the number of students who can benefit from conducting research as the designprojects are embedded directly into the curriculum and are taken by all students in the program.Undergraduate research has been shown to help students take ownership of their own learningand helps them to see the real-world relevance of research as they learn problem-solving skills[1 – 3]. Inquiry-based projects are beneficial because they require a significant investment ofstudent time and effort over an extended period with frequent constructive feedback from facultyand regular opportunities for reflection [4, 5]. This paper addresses the process of developmentof performance indicators and presents the results of assessment and evaluation of both ETACABET and
experience “it did not go aswell as expected”.Makerbot certificationIn the spring 2020 semester, twenty-nine students registered for the MakerBot CertificationWorkshop and an additional 28 students registered on the waitlist for a total of 57 registrations from26 schools. The 5-day curriculum consisted of five courses preparing participants for twocertifications (Operator and Innovator Certificates). On average, participants completed 2.48 coursesand earned one certification. Eighteen participants earned at least one certificate. Ten participantsearned Operator certificates and 17 earned innovator certificates. Nine participants earned bothcertificates and nine earned one certificate. Nine students participated in the follow-up onlinesurvey. When
Paper ID #33801Innovative Pedagogy for Teaching and Learning Data VisualizationDr. Vetria L. Byrd PhD, Purdue University at West Lafayette (COE) Dr. Vetria Byrd is an assistant professor in the Department of Computer Graphics Technology in the Polytechnic Institute at Purdue University in West Lafayette, Indiana. Dr. Byrd is the founder and or- ganizer of BPViz: Broadening Participation in Visualization (BPViz) Workshops. Dr. Byrd has given numerous invited talks on visualization, and given numerous workshops nationally and internationally on visualizaiton. Dr. Byrd received her graduate and undergraduate degrees at the
. She is also an instructor of technical writing. In 2013, she was inducted into the Academy of Distinguished Teachers for the Bagley College of Engineering. She is a member of the Southeastern Section of ASEE. Her research focuses on incorporating writing to learn strategies into courses across the curriculum. American c Society for Engineering Education, 2021 Teaching Ethical Theory and Practice to Engineering Students: Pre-Pandemic and Post-Pandemic ApproachesIntroductionSince the early 1900s, engineering codes of ethics have shifted from a focus on the engineer’sduty to employers and colleagues to a broader recognition of the engineer’s
Paper ID #32918A Sojourn of Engineering Identity Conflict: Exploring IdentityInterference Through a Performative LensDr. Cole Hatfield Joslyn, University of Texas at El Paso Cole Joslyn is an Assistant Professor of Practice in the Department of Engineering Education and Lead- ership at The University of Texas at El Paso. His research emphasizes humanizing engineering education, particularly 1) increasing Latinx students’ sense of belonging in engineering by a) integrating holistic, socio-culturally responsive practices and Latinx cultural assets and values into educational success strate- gies, and b) understanding how