technology interventions in mechanics American c Society for Engineering Education, 2020 Paper ID #30752 classes. He was one of the co-leaders in 2013-2014 of the ASEE Virtual Community of Practice (VCP) for mechanics educators across the country. His current research focuses on student problem-solving pro- cesses and use of worked examples, change models and evidence-based teaching practices in engineering curricula, and the role of non-cognitive and affective factors in student academic outcomes and overall success.Prof. Jennifer DeBoer, Purdue University-Main Campus
to assist incoming freshmen cope with first year mathematics classes. She developed teaching modules to improve students’ learning in mathematics using technology.Dr. M. Javed Khan, Tuskegee University Dr. M. Javed Khan is Professor and Head of Aerospace Science Engineering Department at Tuskegee University. He received his Ph.D. in Aerospace Engineering from Texas A&M University, M.S. in Aero- nautical Engineering from the US Air Force Institute of Technology, and B.E. in Aerospace Engineer- ing from the PAF College of Aeronautical Engineering. He also has served as Professor and Head of Aerospace Engineering Department at the National University of Science and Technology,Pakistan. His research interests
Paper ID #29991Changing 3rd World Lives Through STEM Education in HondurasDr. Sanjeev Adhikari, Kennesaw State University Dr. Sanjeev Adhikari is faculty from Kennesaw State University. Previously he was faculty at Morehead State University from 2009 to 2016 and faculty at Purdue University – Indianapolis from 2016 to 2019. He has completed Ph.D. degree in civil engineering, focusing on construction management from Michigan Technological University in 2008. He has an extensive teaching background with a total of 18 years of the academic experience at five different universities. He has always been praised by students and
. c American Society for Engineering Education, 2020Parents’ Perceptions of STEM Education in Black ChurchesAbstractThe purpose of this research study is to explore the feasibility of an educational program focusedon science, technology, engineering, and mathematics (STEM) delivered in an innovativeinformal learning environment: Black churches. In this initial phase we will identify and examineattitudes, beliefs, perceptions and misconceptions of parents about STEM and STEM pathways.We will also seek to identify elements that parents would like to see in a STEM educationcurriculum. The overall goal of EPICC STEMulation is to equip church leaders and parents fromunderrepresented backgrounds with the tools to deliver STEM content that is
authorrecorded his lectures as videos and archived them on YouTube – a popular online repository formultimedia content. Based on this archive, created over several years, the author implemented aflipped classroom model for an experimental offering of a course in Aerospace Engineering. Thearticle discusses the need for a flipped classroom, the approach, and its impact on the students.KeywordsFlipped classroom, Archival education, Under prepared students, YouTube archives1. IntroductionIt’s been acknowledged by industry, government and academic institutions that science,technology, engineering and mathematics (STEM) workforce development is crucial forprogressing U.S. economy and standard of living (Landivar, 2013). One of the major thrust areasin
Paper ID #28742Composite Materials Courses in ColombiaIng. Esteban Maya, Universidad del Valle Esteban Maya Mu˜noz. Mechanical Engineer with a Masters degree in Aerospace Engineering from the Universidad del Valle, has focused his research work on propulsion systems, particularly in topics related to hybrid rocket engines combustion and numerical simulation. However, structural analysis has been also part of his professional development as an engineer and the application of composites to structures has open his mind to new frontiers showing his ability to adapt to different branches of applied engineering. Actually
Paper ID #30309Novel Simulation-Based Learning Modules for Teaching Database ConceptsDr. Sabahattin Gokhan Ozden, Penn State Abington Dr. Ozden is an assistant professor of Information Sciences and Technology at Penn State Abington. He has a PhD and MS from Auburn University in Industrial and Systems Engineering and a B.Sc. in Software Engineering and double major in Industrial Systems Engineering from Izmir University of Economics. His research interests are warehousing, optimization, and information systems. Dr. Ozden has published in various journals/conferences including Computers and Operations Research. His website
manufacturing education and has developed technician-training programs for industry and educational institutions. She serves on numerous committees and national boards, and worked in various industries prior to holding administrative positions in the community and technical college system.Mr. Thomas Singer, Sinclair Community College Tom is a Professor of Mechanical Engineering Technology at Sinclair Community College in the areas of design and manufacturing. Tom serves as a Co-PI for the NSF funded AM-WATCH project focusing on design and curriculum development on additive manufacturing at Sinclair. Tom also serves as the Prin- cipal Investigator on the NSF funded STEM Guitar Project and manages the guitar manufacturing lab
the SEI Coordinator for a local high school and has also developed an inclusion program for Migrant and Immigrant students that utilized co-teaching and active learning as keystones of the program. She began her educational career as a high school teacher, teaching courses in English, math, and science.Dr. Lindy Hamilton Mayled, Arizona State University Lindy Hamilton Mayled is the Director of Instructional Effectiveness for the Fulton Schools of Engineer- ing at Arizona State University. She has a PhD in Psychology of Learning, Education, and Technology and her research and areas of interest are in improving educational outcomes for STEM students through the integration of active learning and technology-enabled
between informal and formallearning; changing our methods for teaching, evaluation, and assessment; developing diversity,accessibility, and inclusion; and leading to new technologies and innovations (American Societyfor Engineering Education [ASEE], 2016). These facilities are full of potential for variouspedagogical practices to be implemented, but thus far there is a gap in makerspace literatureexploring the pedagogy from a faculty perspective within the makerspace, specifically thedecisions instructors make when planning and implementing class projects in the makerspaces.The popularity of makerspaces is confounded by the lack of clarity in describing what constitutesthe actual act of making which has been intentionally left vague (Tomko
University, West Lafayette Jennifer DeBoer is currently Assistant Professor of Engineering Education at Purdue University. Her research focuses on international education systems, individual and social development, technology use and STEM learning, and educational environments for diverse learners. c American Society for Engineering Education, 2020 A Systematized Literature Review of The Factors that Influence the Retention of Racially Minoritized Students in STEM Graduate Degree ProgramsAbstractAccording to ASEE’s 2018 “Engineering by the Numbers” Report, racially minoritized studentsconstituted 19.1% of engineering baccalaureate degrees awarded, 17.4% of
Paper ID #30289Achieving Broader Impacts in STEM at 2-year Hispanic Serving InstitutionsCynthia Kay Pickering, Science Foundation Arizona Cynthia Pickering is a retired electrical engineer with 35 years industry experience and technical lead- ership in software development, artificial intelligence, information technology architecture/engineering, and collaboration systems research. In September 2015, she joined Science Foundation Arizona (SFAz) to lead the Girls in STEM initiative and translate her passion for STEM into opportunities that will attract, inspire and retain more girls in STEM to make it the new norm. She
holds a Ph.D. in Control and Dynamical Systems from the California Institute of Technology and a B.Sc. in Pure and Applied Mathematics from the University of Western Australia. His research is in the field of scientific computing and numerical analysis, where he works on computational algorithms for simulating complex stochastic systems such as atmospheric aerosols and feedback control. Prof. West is the recipient of the NSF CAREER award and is a University of Illinois Distinguished Teacher-Scholar and College of Engineering Education Innovation Fellow.Prof. Timothy Bretl Timothy Bretl is an Associate Professor of Aerospace Engineering at the University of Illinois at Urbana- Champaign. He received his B.S. in
modulation method, has property combining with diversity,space-time coding, inter channel interference suppression, and smart antenna 21. Therefore,comparing with other transmission technology, OFDM offers several advantages to improve theperformance of communication system, such as high spectral efficiency, robustness to fadingchannel, immunity to impulse interference, capability of handling very strong multi-path fadingand frequency selective fading without the need of powerful channel equalization 22. Recently, inthe low power wide area network (LPWAN) protocols for IoT released by the 3rd GenerationPartnership Project (3GPP) and Institute of Electrical and Electronics Engineers (IEEE), the NB-IoT 23 and 802.11ah (Wi-Fi HaLow) 24, OFDM-based
- tained her B.S. in Electrical Engineering from the Massachusetts Institute of Technology in 2005 and her M.S. and Ph.D. from Stanford University in 2008 and 2012, respectively. Her current engineering edu- cation research interests include engineering students’ understanding of ethics and social responsibility, sociotechnical education, and assessment of engineering pedagogies.Mr. Eric Lyne American c Society for Engineering Education, 2020 Systematic Review of Rigorous Research in Teaching Introductory CircuitsAbstractSystematic review is a meta-analytical framework for quantitatively searching, sorting, andsynthesizing scholarly research on a particular topic
educators have come to value makerspaces as venues for innovativeteaching and learning [5]. As a result, more and more K-12 schools have opened makerspaces ontheir campuses in the past several years. Like others, K-12 educators generally aim to createmakerspaces that engage students in activities that foster opportunities for collaboration,inventiveness, and creativity. Additionally, some K-12 schools use makerspaces to supportstudents developing 21st century skills such as communication and critical thinking while alsolearning content related to science, technology, engineering, and math (STEM) [5].In our experience working with several schools and districts on maker education initiatives, wehave observed that K-12 educators tasked with using a
for Engineering Education, 2020 Spatial Visualization Skills Training at Texas State University to Enhance STEM Students Academic SuccessAbstractA diagnostic of thirty questions administered to incoming STEM students in Fall 2013 and Fall2015 - Fall 2018 reflects that their spatial visualization skills (SVS) need to be improved.Previous studies in the SVS subject [1], [2], [3] report that well-developed SVS skills lead tostudents’ success in Engineering and Technology, Computer Science, Chemistry, ComputerAided Design and Mathematics. Authors [4], [5] mention that aptitude in spatial skills isgradually becoming a standard assessment of an individual’s likelihood to succeed as anengineer.This research reports the
. c American Society for Engineering Education, 2020 RELLIS: The Transformational Initiative for Collaborative Education and Research RealizedAbstractIn May 2016, the Texas A&M University System announced an initiative to transform a 2,000-acre tract owned by the System into a premier, high-tech research, technology development andeducation center, which is called the RELLIS Campus. The collaborative nature of the RELLISCampus offers unparalleled opportunities for students. Through the RELLIS Academic Alliance,the cornerstone of the educational programs, the System’s 10 regional universities, its agencies,and Blinn College District are collaborating on the campus to provide relevant academic
deliver fully functional, sustainable systems. The way I achieve this is by taking an approach that is methodologically flexible and people- focused. Education innovation is as much about the solution as it is about managing change. So no matter how cutting-edge technology, my process incorporates strategic planning, instructional design best prac- tices, and stakeholder involvement. I’m deliberate about tapping into community know-how and creating collaborative optimal solutions that take into account the often-intangible but always-essential human el- ement. Got my bachelor’s degree in Computer Science Engineering at the Universidad Sim´on Bol´ıvar, Caracas- Venezuela, M.Sc. in Instructional Technologies and
Oklahoma State University regents distinguished research, Halliburton outstanding college of engineering faculty, and Fulbright-Tocqueville distinguished chair awards. c American Society for Engineering Education, 2020 Assessing Impact of an REU program on Student’s Intellectual Growth and Interest in Graduate School in Cybermanufacturing Pavan K. Moturu, Bimal Nepal, Prabhakar Pagilla, Satish Bukkapatnam Texas A&M University, College Station, TX.AbstractAdvancements in information technology and computational intelligence have transformed themanufacturing landscape, allowing firms to produce highly complex and customized product in arelatively short amount of time
Paper ID #30099Early Research Scholars Program at UICDr. Renata A Revelo, University of Illinois at Chicago Renata A. Revelo is a Clinical Assistant Professor in the department of Electrical and Computer Engi- neering at the University of Illinois at Chicago. She earned her B.S. and M.S. in Electrical and Computer Engineering and her Ph.D. in Education Organization and Leadership from the University of Illinois.Prof. Joseph HummelMohammad Taha Khan, University of Illinois at Chicago c American Society for Engineering Education, 2020 Early Research Scholars Program Adoption at UICIn this
doctorate in engineering education. She previously conducted research in Purdue University’s First- Year Engineering Program with the Network for Nanotechnology (NCN) Educational Research team, the Model-Eliciting Activities (MEAs) Educational Research team, and a few fellow STEM education graduates for an obtained Discovery, Engagement, and Learning (DEAL) grant. Prior to attending Purdue University, she graduated from Arizona State University with her B.S.E. in Engineering from the College of Technology and Innovation, where she worked on a team conducting research on how students learn LabVIEW through Disassemble, Analyze, Assemble (DAA) activities.Dr. Matthew A. Verleger, Embry-Riddle Aeronautical University - Daytona
Technology: Research and Development , vol 60, pp 341-359, 2012.18. B. Means, E. Salas, B. Crandall, * T. O. Jacobs, “Training decision makers for the real world,” in Decision making in action: Models and Methods, G. A. Klein, J. Orasanu, R. Calderwood & C. E. Zsambok, Eds. Ablex: Norwwod,NJ, 1993, pp 306-326.19. E. Burkholder, A. Price, M. Flynn, and C. Wieman, Assessing problem-solving in science and engineering programs, Phys. Educ. Res. Conf. Proceedings, Provo, UT, 2019.20. Stock, J. H., & Watson., M. W. (2015). Introduction to Econometrics (3rd ed.). Boston: Pearson.21. D. Hestenes, M. Wells, and G. Swackhamer, Force concept inventory, Phys. Teach. 30 (3), 141 (1992).22. S. Salehi and C. E. Wieman (2020), A Problem-solving
Paper ID #29274A Project-Based Printed Circuit Board (PCB) Electronics CourseDr. Karl Brakora, Grand Valley State University Karl Brakora is an assistant professor at Grand Valley State University and an engineer for BT Engineer- ing. He has worked on conformal vapor-phase deposited EMI/HPM shields for circuit board, lightweight composite aircraft enclosures for HEMP/HPM, and non-GPS positioning systems and techniques. Pre- viously, he was lead RF engineer for EMAG Technologies Inc. in Ann Arbor, Michigan from 2007 to 2014. There he worked to develop innovative technologies in the area of compact, low-cost phase arrays
current research interests include student resistance to active learning, faculty adoption of evidence-based teaching practices, and the use of technology and innovative pedagogies on student learn- ing and success. She also led a project to develop a taxonomy for the field of engineering education research, and she was part of a team that studied ethical decision-making in engineering students.Dr. Harry Courtney Powell, University of Virginia Harry Powell is a Professor of Electrical and Computer Engineering in the Charles L. Brown Department of Electrical and Computer Engineering at the University of Virginia. After receiving a Bachelor’s Degree in Electrical Engineering in1978 he was an active research and design
serves as an Extension Services Consultant for the National Center for Women and Information Technology (NCWIT). His past experiences include having been a middle school science teacher, Director of Academic and Instructional Support for the Arizona Department of Education, a research scientist for the Center for Research on Education in Science, Mathematics, Engineering and Technology (CRESMET), and an evaluator for several NSF projects. His first research strand concentrates on the relationship between educational policy and STEM education. His second research strand focuses on studying STEM classroom interactions and subsequent effects on student understanding. He is a co- developer of the Reformed Teaching
and evaluation. He earned his Master of Aeronautical Science degree with distinction in 2010 and started his doctoral studies in Education in May 2016 with a focus on human learning, training, and behavioral development in technology-mediated environments.Dr. Brian Sanders, Embry-Riddle Aeronautical University, Worldwide Dr. Brian Sanders is an Associate Professor at Embry-Riddle Aeronautical University-Worldwide. His experience includes basic and applied research in high temperature composite materials for gas turbine engines and hypersonic flight vehicles, multifunctional structures for energy harvesting, and unmanned aircraft system concepts, such as morphing aircraft. His current research focus is on the design and
Objectives DefinedThe five students soon asked: If samples could be taken more often than the utility’s mandatedfifteen minute intervals, would the demand numbers routinely be less that the utility claimed? Ifso, could the university then negotiate the demand piece of its electric power bill to be less?Concurrently, the Facilities Director asked the five students to find out 1) how accurate is thepublic electrical utility’s demand and energy data? and 2) How can gateway metering bestsupport his long-term plan to set up an emergency microgrid for the university? Answering allthese questions required advanced technology that he lacked and had been unable to afford.Schweitzer Engineering Laboratories (SEL), the world’s leader in electric power
understand and reflect upon its valueto each component of STEM. A significant emphasis was placed on the teaching methods andapproaches used in math to prepare participants for sessions 2 and 3. Math was implemented, notas rote memory and use/re-use of given formulas, but as a form of project-based learning; as thelanguage of science, technology, and engineering; and, as a place of critical thinking anddiscovery [8].Because the theme of the camp was sustainability, the authors titled the first math activity “TrashMath.” To begin the activity, seven participants and six instructors formed three groups of fourto five individuals and collected roadside trash at three sites near the TMCC campus. The goal ofthis activity was to have participants
Paper ID #30689Lessons learned in professional and identity development as part ofteaching assistant training programMs. Erica Jean Hagen, University of Wisconsin, Madison Erica J Hagen is an Instructional Technology Consultant in CEETE, serving the College of Engineering at the University of Wisconsin-Madison. Passionate about student success and inclusive teaching, she works to improve the student experience one faculty consultation at a time.Ms. Elizabeth C Harris, University of Wisconsin-Madison Elizabeth Harris has been part of the University of Wisconsin Madison’s College of Engineering since 2012. She approaches