Paper ID #26423Board 33: Persistence of First Year Engineering Majors with a Design-BasedChemistry Laboratory Curriculum In- and Out-of-SequenceMr. Corey Payne, University of FloridaDr. Kent J. Crippen, University of Florida Kent Crippen is a Professor of STEM education in the School of Teaching and Learning at the University of Florida and a Fellow of the American Association for the Advancement of Science. His research in- volves the design, development, and evaluation of STEM cyberlearning environments as well as scientist- teacher forms of professional development. Operating from a design-based research perspective
Paper ID #26832Board 59: Coevolutionary-Aided Teaching: Leveraging the Links BetweenCoevolutionary and Educational DynamicsDr. Alessio Gaspar, University of South Florida Dr. Alessio Gaspar is an Associate Professor with the University of South Florida’s Department of Com- puter Science & Engineering and director of the USF Computing Education Research & Evolutionary Algorithm Laboratory. He received his Ph.D. in computer science in 2000 from the University of Nice Sophia-Antipolis (France). Before joining USF, he worked as visiting professor at the ESSI polytechnic and EIVL engineering schools (France) then as
Network of K-5 Educators and Engineering Researchers in a RET Gayle Evans , Kent Crippen , Chelsey Simmons , Renee Simmons 1 1 2 1 1 School of Teaching and Learning, University of Florida, 2Department of Mechanical & Aerospace Engineering, University of FloridaIntroductionResearch Experience for Teachers programs (RET) are an established form of professional developmentfor K-12 teachers in which they are invited to work as members of a laboratory research team in order toincrease their enthusiasm, knowledge and experience in STEM fields. Historically, bringing teachers
development program in which middle school teachers participate in an intensive summer research experience in computer science and engineering labs, build curriculum based on the laboratory research content that they learn, participate in lesson study, and implement new curriculum in their middle classrooms. The second program (5 years) is a high school teacher RET program with similar components. This paper contains a combined report of results of both of the RET programs. The two programs had the combined intent of bringing innovative computer science and engineering research to middle and high school teachers and their students and improving teacher performance, while simultaneously improving student achievement through scientific inquiry
general satisfaction with the training sessionand several specifically mentioned that the videos and role-playing were useful. Fivespecifically indicated that the opportunity to observe an EBT method in practice was valuable.Most, but not all, thought that the feedback they received from their group members was helpfuland that the feedback they provided was appreciated. All interviewees indicated that theyexpected to make changes to their teaching based on the experience and several had already doneso.Surveys of 45 participants in the training program for graduate laboratory assistants indicategeneral satisfaction with the training, with 90% moderate to strong agreement that the facilitatorsdiscussed and modelled effective teaching strategies
Learning Through Real-World Hands-On LabsMohamed Rahouti1, 4, * and Kaiqi Xiong2, 3, 4, +1 Department of Electrical Engineering, University of South Florida, Tampa, 33620, USA2 Cyber Florida, University of South Florida, Tampa, 33620, USA3 Department of Mathematics and Statistics, University of South Florida, Tampa, 33620, USA4Intelligent Computer Networking and Security Lab, University of South Florida, Tampa, 33620,USA*mrahouti@mail.usf.edu+ xiongk@usf.eduFor the past several years, information technology advances have led to a significantimprovement in computer science curriculums. Substantial efforts are indeed required to designvarious innovative teaching modules and lab experiments to facilitate learning processes in
. Applying software-defined networking to minimize the end-to-end delay of network services. ACM SIGAPP Applied Computing Review 18, 30–40 (2018). 3. Topham, L., Kifayat, K., Younis, Y. A., Shi, Q. & Askwith, B. Cyber security teaching and learning laboratories: A survey. Information & Security 35, 51 (2016). 4. Sharma, S. K. & Sefchek, J. Teaching information systems security courses: A hands-on approach. Computers & Security 26, 290–299 (2007). 5. Willems, C. & Meinel, C. Online assessment for hands-on cyber security training in a virtual lab. In Global Engineering Education Conference (EDUCON), 2012 IEEE, 1–10 (IEEE, 2012). 6. Xiong, K. & Pan, Y. Understanding protogeni in networking courses for research and
Paper ID #24669Effective Faculty Development – More than Time in the SeatDr. Louis J Everett P.E., University of Texas, El Paso Dr. Everett is the MacGuire Distinguished Professor of Mechanical Engineering at the University of Texas El Paso. Dr. Everett’s current research is in the areas of Mechatronics, Freshman Programs and Student Engagement. Having multiple years of experience in several National Laboratories and Industries large and small, his teaching brings real world experiences to students. As a former NSF Program Director he works regularly helping faculty develop strong education proposals
course and curriculum development. He is a Fellow of the ASME.Dr. Bonnie H. Ferri, Georgia Institute of Technology Dr. Bonnie Ferri is a Professor in the School of Electrical and Computer Engineering and a Vice Provost at Georgia Tech. She performs research in the areas of active learning, embedded controls and computing, and hands-on education. She received the IEEE Undergraduate Education Award and the Regents Award for the Scholarship of Teaching and Learning. She received her BS in EE from Notre Dame, her MS in ME/AE from Princeton, and her PhD in EE from Georgia Tech.Dr. Robert S. Kadel, Georgia Institute of Technology Dr. Rob Kadel is Assistant Director for Research in Education Innovation with the Center for
patents and has over twenty-five years of experience in industry and academia. Research Interests Sylvia Wilson Thomas, Ph.D. leads the Advanced Membrane/Materials Bio and Integration Research (AMBIR) laboratory at USF. Dr. Thomas’ research and teaching endeavors are focused on advanced mem- branes/materials for alternative energy sources, sustainable environments, electronics, and bio-applications from the micro to the nano scale. Her research investigates the fabrication of inorganic and organic thin films and nanofibers for device integration. Thomas’ research group specializes in characterizing, mod- eling, and integrating membranes that demonstrate high levels of biocompatibility, thermal reflectivity
School of Engineering Educa- tion at Purdue University. His research interests include creating systems for sustainable improvement in engineering education, conceptual change and development in engineering students, and change in fac- ulty beliefs about teaching and learning. He serves as the Publications Chair for the ASEE Educational Research and Methods Division.Dr. Marcia Pool, University of Illinois, Urbana-Champaign Dr. Marcia Pool is a Teaching Associate Professor and Director of Undergraduate Programs in the Depart- ment of Bioengineering at the University of Illinois at Urbana-Champaign (UIUC). She has been active in improving undergraduate education including developing laboratories to enhance experimental
1978; and the Ph.D. degree from the University of Colorado, Boulder in 1991. Dr. DeLyser, a member of the U.S. Air Force between 1965 and 1986, held a teaching position at the United States Air Force Academy, served as a development engineer at the Air Force Weapons Laboratory at Kirtland AFB in New Mexico and was the Requirements Officer for the Nellis AFB Ranges in Nevada. Prior to 2000, his research areas included pedagogy, outcomes based assessment, the study of periodic gratings used as antennas and in antenna systems, high power microwave interactions with large complex cavities, anechoic chambers, and anechoic chamber absorbing materials. Since 2000, he has been concentrating on engineering education pedagogy
change, particularly in higher education; learning in the workplace; curricular and pedagogical development; and the preparation of professionals for social justice goals.Michelle Kay Bothwell, Oregon State University Michelle Bothwell is an Associate Professor of Bioengineering at Oregon State University. Her teaching and research bridge ethics, social justice and engineering with the aim of cultivating an inclusive and socially just engineering profession.Dr. Devlin Montfort, Oregon State University Dr. Montfort is an Assistant Professor in the School of Chemical, Biological and Environmental Engi- neering at Oregon State UniversityDr. Ed LeRoy Michor, Oregon State University Ed is currently a postdoctoral scholar
Virtual Worlds to Teach Electronic and Electrical Engineering. Ieee Transactions on Industrial Informatics, 2013. 9(1): p. 575-584.18. Chang, Y.Z., et al., Evaluation of a video game adaptation for mechanical engineering educational laboratories, in 2016 Ieee Frontiers in Education Conference. 2016.19. Joiner, R., et al., Digital Games, Gender and Learning in Engineering: Do Females Benefit as Much as Males? Journal of Science Education and Technology, 2011. 20(2): p. page 182.20. Pejic, P., et al., 3D VIRTUAL MODELLING OF EXISTING OBJECTS BY TERRESTRIAL PHOTOGRAMMETRIC METHODS - CASE STUDY OF BARUTANA. Tehnicki Vjesnik-Technical Gazette, 2017. 24: p. 233-239.21. Choudhury, A.A. and J. Rodriguez, A New
Materials Science and Engineering at North Carolina State University where she spent more than seven years as a teaching professor and Director of Undergraduate Programs. c American Society for Engineering Education, 2019Exploring Hypotheses Regarding Engineering Graduate Students’ Identities, Motivations,and Experiences: The GRADs ProjectProject Goals & OverviewThis project, funded by U.S. National Science Foundation (EHR-1535254 & EHR- 1535453),was developed with a goal of exploring engineering graduate students’ (EGSs’) identities,motivations, and experiences. A growing literature base and increasing awareness regardingthe importance of identity and motivation for engineering students has focused on
other long-term funding to continue long term development is nowunderway.References 1. S. Tegen, Growing a Wind Workforce: The National Wind Energy Skills Assessment Report (Poster). No. NREL/PO-5000-61251. National Renewable Energy Laboratory (NREL), Golden, CO., 2014. 2. “Wind Vision: A New Era for Wind Power in the United States,” https://energy.gov/eere/wind/maps/wind-vision, 2015 (accessed January 2017). 3. “AWEA U.S. 2017 Market Reports” https://www.awea.org/resources/publications-and- reports/market-reports/2017-u-s-wind-industry-market-reports, 2017 (accessed December 2018) 4. D. Billing, "Teaching for Transfer of Core/Key Skills in Higher Education: Cognitive Skills," Higher education 53.4 (2007
Science, Associate Professor of Education, and Director and Graduate Chair for Engineering Education Research Programs at University of Michigan (U-M). Dr. Finelli is a fellow in the American Society of Engineering Education, a Deputy Editor of the Journal for Engineering Education, an Associate Editor of the IEEE Transactions on Education, and past chair of the Educational Research and Methods Division of ASEE. She founded the Center for Research on Learning and Teaching in Engineering at U-M in 2003 and served as its Director for 12 years. Prior to joining U-M, Dr. Finelli was the Richard L. Terrell Professor of Excellence in Teaching, founding director of the Center for Excellence in Teaching and Learning, and
opportunities education majors have to practicediscourse development prior to their student teaching practicum. Discourse simulation activitiesat universities prior to student teaching and internships are often insufficient to prepare teachersfor engaging in discourse with students throughout an entire school day.Traditional Methods of Discourse DevelopmentTraditionally, discourse development begins with pre-service teachers’ own understanding ofmath and science based upon how they were taught when they were first learning the material.Most education programs require pre-service teachers to take at least one laboratory-basedscience course and to complete mathematics courses. Once the students have a foundation inmath and science, they then take courses
Paper ID #27162Board 137: Critical Thinking Skills in Non-calculus Ready First-yearEngineering StudentsDr. Lizzie Santiago, West Virginia University Lizzie Y. Santiago, Ph.D., is a Teaching Associate Professor in the Benjamin M. Statler College of Engi- neering and Mineral Resources. She holds a Ph.D. in Chemical Engineering and has postdoctoral training in neural tissue engineering and molecular neurosciences. She teaches freshman engineering courses and supports the outreach and recruiting activities of the college. Her research interests include neural tissue engineering, stem cell research, attrition and university
Paper ID #25992Board 57: Identifying and Disseminating Transformative Professional Devel-opment of STEM Undergraduates Who Perform Outreach: Progress in Year1Mr. Michael Alley, Pennsylvania State University, University Park Michael Alley is an associate professor of teaching in the College of Engineering at Pennsylvania State University. He is the author of The Craft of Scientific Writing (Springer, 2018) and The Craft of Scientific Presentations (Springer-Verlag, 2013). He is also founder of the popular websites Writing Guidelines for Engineering and Science (www.craftofscientificwriting.com) and the Assertion-Evidence
. Self, California Polytechnic State University, San Luis Obispo Brian Self obtained his B.S. and M.S. degrees in Engineering Mechanics from Virginia Tech, and his Ph.D. in Bioengineering from the University of Utah. He worked in the Air Force Research Laboratories before teaching at the U.S. Air Force Academy for seven years. Brian has taught in the Mechanical Engineering Department at Cal Poly, San Luis Obispo since 2006. During the 2011-2012 academic year he participated in a professor exchange, teaching at the Munich University of Applied Sciences. His engineering education interests include collaborating on the Dynamics Concept Inventory, developing c American Society for Engineering
Paper ID #27005Board 35: An Integrated Program for Recruitment, Retention, and Gradua-tion of Academically Talented Low-Income Engineering StudentsProf. Houshang Darabi, University of Illinois, Chicago Dr. Houshang Darabi is an Associate Professor of Industrial and Systems Engineering in the Depart- ment of Mechanical and Industrial Engineering (MIE) at the University of Illinois at Chicago (UIC). Dr. Darabi is the recipient of multiple teaching and advising awards including the UIC Award for Excellence in Teaching (2017), COE Excellence in Teaching Award (2008, 2014), UIC Teaching Recognitions Award (2011), and the
printing techniques and are highly visual and interactive, allowingstudents to see trends in pressure, flowrate, and fluid paths, as well as manipulate and measureflow rates and temperatures while collaborating with their peers. Due to their compact size, lessthan 10 by 10 inches for most modules, LC-DLMs have been employed in a variety of classroomorientations including traditional classrooms containing tablet arm chair desks and largerlaboratory spaces. Compared to traditional laboratory teaching equipment, LC-DLMs are simpleto transport, construct, and deconstruct. Examples of current vacuum formed LC-DLM cartridgesformed over 3D printed molds are shown below in Figure 1. A B C Figure
award (1997). Dr. Spiegel’s current efforts focus on educational reform and in the innovation of teaching and learning resources and practices.Dr. Tian Tian Tian, University of Central Florida Tian Tian is an Associate Lecturer of Mechanical and Aerospace Engineering at the UCF, which she joined in 2013. She has been frequently teaching undergraduate lecture and laboratory components of Heat Transfer, Thermodynamics and Fluid Mechanics. Her educational research interests focus on project- based learning, online learning, and the digitization of STEM assessments. She received the Teaching Ini- tiative Program (TIP) Award, Excellence in Undergraduate Teaching Award, the Dean’s Advisory Board Faculty Fellow
Paper ID #25612Board 109: Retention-Focused, S-STEM Supported ProgramDr. Melissa Lynn Morris, West Virginia University Melissa Morris is currently a Teaching Associate Professor for the Freshman Engineering Program, in the Benjamin M. Statler College of Engineering and Mineral Resources at West Virginia University (WVU). She graduated Summa cum Laude with a BSME in 2006, earned a MSME in 2008, and completed her doctorate in mechanical engineering in 2011, all from WVU. At WVU, she has previously served as the Undergraduate and Outreach Advisor for the Mechanical and Aerospace Engineering department and the Assistant
Engineering from the University of Florida and his Ph.D. in Chemical Engineering from the University of Minnesota. Since 1998, he has been a member of the faculty in the College of Engineering at the University of Tennessee, where he is currently professor and associate head in the Materials Science & Engineering Department. Prof. Keffer is a multiscale materials modeler, using computational simulations to develop structure-property relationships in nanostructured materials. He was awarded a Fulbright Distinguished Lectureship to teach at Yonsei University in Seoul, Korea in 2010-2011.Dr. Jennifer Retherford P.E., University of Tennessee, Knoxville Dr. Retherford is an alumna of the University of Nebraska, Omaha, and
Nancy. At Rice, was awarded six campus-wide teach- ing awards, served as College Master for 10 years, served as founding Director of the Rice Center for Teaching Excellence, as founding Director of BrainSTEM (a weekly outreach program that pairs Uni- versity Neuroscience student mentors with High School Apprentices) and as founding Director of the Gulf Coast Consortium for Theoretical and Computational Neuroscience. Has published over 50 papers in peer-reviewed journals in Mathematics, Engineering and Science. Coauthored the text, Mathematics for Neuroscientists, with Fabrizio Gabbiani. Joined the Engineering Faculty at Northern New Mexico College in 2016, intent on recruiting, mentoring, teaching, challenging and
Paper ID #26111Optimizing Student Team Skill Development using Evidence-Based Strate-gies: Year 4 NSF Award 1431694Dr. Matthew W. Ohland, Purdue University-Main Campus, West Lafayette (College of Engineering) Matthew W. Ohland is Professor of Engineering Education at Purdue University. He has degrees from Swarthmore College, Rensselaer Polytechnic Institute, and the University of Florida. His research on the longitudinal study of engineering students, team assignment, peer evaluation, and active and collaborative teaching methods has been supported by the National Science Foundation and the Sloan Foundation and his team
and high-rise projects. His current research interests mainly focus on Smart Structures Technology, Structural Control and Health Monitoring and Innovative Engineering Education.Dr. Juan M Caicedo, University of South Carolina Dr. Caicedo is an associate professor at the Department of Civil and Environmental Engineering at the University of South Carolina. His research interests are in structural dynamics, model updating and engi- neering education. He received his B.S. in Civil Engineering from the Universidad del Valle in Colombia, South America, and his M.Sc. and D.Sc. from Washington University in St. Louis. Dr. Caicedo’s teach- ing interests include the development of critical thinking in undergraduate and
engagement with those ideas. c American Society for Engineering Education, 2019 Engineering Design In Scientific InquiryAbstractThe Engineering Design in Scientific Inquiry (EDISIn) Project addresses the engineeringpreparation of secondary science teachers by embedding engineering design into a science coursefor single-subject STEM education majors (future secondary teachers), and developing asequence of lesson plans and annotated video for faculty who seek to embed engineering designin their science courses. While undergraduate laboratories are rich with designed experimentalapparatus, it is rare that students themselves play a role in designing and producing artifacts inthe service of