classroom and laboratory curricula including online course platforms, and integrated technologies. She has been involved in both private and government grants as author and project director, and is currently PI of an NSF ATE grant, ”Increasing the Number of Engineering Technicians in Southeastern Pennsylvania.” A major goal of this collaborative effort with Drexel University is to connect for-credit, occupational technician education to workforce development certification programs. She was the faculty advisor to two student teams that made the final round of the NSF AACC Community College Innovation Challenge (CCIC) in 2016 and 2017. She and her students have been involved in STEM related outreach to local community
proposal reviewer for SAGE, Emerald, IGI Global, Palgrave Macmillan, and CyberTech Publishing. She is currently involved in a National Science Foundation Research in Formation of Engineers project as a Co-PI. She has served in manufacturing leadership roles for Coca-Cola Bot- tling Company Consolidated, Abbott Laboratories, and Burlington Industries. She is a national member of ATD and has twice presented at the ATD International Conference and Exposition. Dr. Hughes is a Langevin Certified Master Trainer, Harvard Management Development Fellow, and a Darden School of Business Minority Executive Education Scholar. She has a PhD in Career and Technical Education from Virginia Tech, Master of Textiles in Textile Technology
students’ digital literacies and assessment. Recently, Dr. Hsu has received a seed grant at UML to investigate how undergradu- ate engineering students’ digital inequalities and self-directed learning characteristics (e.g., self-efficacy) affect their learning outcomes in a virtual laboratory environment during the COVID-19 pandemic. Dr. Hsu’s research interests include advanced quantitative design and analysis and their applications in STEM education, large-scale assessment data (e.g., PISA), and engineering students’ perception of faculty en- couragement and mentoring.Dr. Yanfen Li, University of Massachusetts Lowell Yanfen Li is an Assistant Teaching Professor at the University of Massachusetts Lowell. She received
her teaching approaches, whether in lecture, work- shop, and laboratory settings. She has been actively involved in ethics, equity and leadership education in engineering since 2011.Jeffrey Harris, York University Dr. Jeffrey Harris is an assistant professor (teaching stream) in mechanical engineering at York University in Toronto, Canada. He currently serves at the Director of Common Engineering and Science within the Lassonde School of Engineering. He has a PhD in mechanical engineering from the University of Toronto and is completing a M.Ed. from York University.Aleksander Czekanski , CEEA-ACEG Dr. Aleksander Czekanski is an Associate Professor and NSERC Chair in Design Engineering in Las- sonde School of
assumed endpoint:within a healthy watershed, all members of the ecosystem grow, develop, and flourish. Ratherthan merely being “retained” as an individual within a (neutral) pipeline, a member of anecosystem is part of a group that thrives as an interdependent collective. Metrics for the health ofan ecosystem will naturally incorporate intersectionality and complexity beyond traditionalrecruitment & retention data [12].However, despite these positive shifts from the limits of the lockstep “pipeline” to the morecapacious and humane “ecosystem,” metaphors about fostering persistence and thriving are, as arule, largely confined to the realms of STEM. They invoke STEM classrooms and laboratories,STEM communities and STEM processes (the pipelines
propulsion systems. At Baylor University, he teaches courses in laboratory techniques, fluid mechanics, energy systems, and propulsion systems, as well as freshman engineering. Research interests include renewable energy to include small wind turbine aerodynamics, experimental convective heat transfer as applied to HVAC and gas turbine systems, and engineering education.Dr. William M. Jordan, Baylor University William Jordan is Professor of Mechanical Engineering at Baylor University. He has B.S. and M.S. degrees in metallurgical engineering from the Colorado School of Mines, an M.A. degree in theology from Denver Seminary, and a Ph.D. in mechanics and materials from Texas A & M University. He teaches materials
Proceedings of the ASEE Annual Conference, Salt Lake City, 2018.[13] D. B. Stringer and M. McFarland, "Veterans' Contributions to Enhancing the Capstone Learning Experience of Engineering Cohorts," in Proceedings of the ASEE Annual Conference, New Orleans, 2016.[14] Blinded for peer review.[15] Blinded for peer review.[16] N. Salzman, T. B. Welch, H. Subbaraman and C. H. G. Wright, "Using Veterans' Technical Skills in an Engineering Laboratory," in Proceedings of the ASEE Annual Conference, Salt Lake City, 2018.[17] Blinded for peer review.[18] STACK Basic Training, "Army Reserve vs. National Guard: Which suits you better?," 14 November 2011. [Online]. Available: https://www.stack.com/a/national-guard-vs-army- reserve-which
Paper ID #30807 Laboratory where his research applies approaches from mechanical testing, image analysis, mathematical and computational modeling, and device design to solve problems related to female pelvic health. He has secured funding from the NIH, DOD, NSF, and other sources to support these efforts. He is also co-director of 2 NSF sponsored programs focused on the success of underrepresented minorities and a national award winner (BMES 2019) for his work in diversity and inclusion.Dr. SYLVANUS N. WOSU, University of Pittsburgh Sylvanus Wosu is the Associate Dean for Diversity Affairs and Associate Professor of mechanical engi- neering and materials science at the University of Pittsburgh. Wosu’s research
of SPEE was gradually superseded by the competing interests of the ECPD’s federatedgovernance structure [21]. By 1980, when ECPD changed its name to the Accreditation Boardfor Engineering and Technology (subsequently to be changed to ABET, Inc.), engineeringaccreditation had become “more rigid and rule-bound,” while “the accreditation criteria grewfrom a few paragraphs … to thirty-plus pages of fine print containing detailed prescriptions forrequired courses, credit hour distributions, numbers of faculty, and laboratory improvement plans[23].” This growth was largely ad hoc and sporadic; it did not follow a systematic process or aregular cycle.In 1992, the ABET leadership established an Accreditation Process Review Committee, whichheld a
researched accurately. For this problem, I Realistically, I feel like we need to general ideas that help, but I plan to learn how to obtain gather and really sit down, discuss, don’t really know where to accurately by watching the and make our own deadlines to start in getting into specifics. tutorial video. accomplish tasks/goals. …had been working on the I had the opportunity to hear about laboratory reports for sieve homelessness directly from [social There seems to be a recurring analysis, liquid limit, and
encouraged to use theirown computers to begin filling in elements of the rubric (Appendix A). The instructor uses not onlydetails of the case under investigation in the discussion, but introduces related examples that come fromacademic literature, other popular media and authentic examples provided by faculty in the computerscience department.The second class period of each week is an open-ended laboratory in which student teams continueworking together to produce a completed Social Contract Building Blocks rubric (Appendix A,Appendix B). During this session, the instructor moves from team to team, reviewing their draftmaterials, offering suggestions and coaching. At present, students use shared access to a GoogleDocsword processing document to
are over 100 full-time and part-time faculty and more than 1,100undergraduate and graduate students. In addition to rigorous technical educations where theory isbalanced with hands-on, laboratory-based work, our students experience emphasis on leadership,teamwork, and oral and written communication.All engineering and computer science students participate in a year-long senior design project which issponsored by local industry. Teams of students mentored by a faculty member and a liaison engineersolve real-world engineering problems. Students design, build and test their own solution, writeproposals and reports, and present the result to their sponsors. By bridging the gap between academiaand industry, the senior design project prepares
industry sponsored capstone from at his school and is the advisor of OU’s FSAE team.Prof. Farrokh Mistree, University of Oklahoma Farrokh’s passion is to have fun in providing an opportunity for highly motivated and talented people to learn how to define and achieve their dreams. Farrokh Mistree holds the L. A. Comp Chair in the School of Aerospace and Mechanical Engineering at the University of Oklahoma in Norman, Oklahoma. Prior to this position, he was the Associate Chair of the Woodruff School of Mechanical Engineering at Georgia Tech – Savannah. He was also the Founding Director of the Systems Realization Laboratory at Georgia Tech. Farrokh’s current research focus is model-based realization of complex systems
Paper ID #15499Generating Start-up Relevance in Capstone ProjectsDr. Farid Farahmand, Sonoma State University Farid Farahmand is an Associate Professor in the Department of Engineering Science at Sonoma State University, CA, where he teaches Advanced Networking and Digital Systems. He is also the director of Advanced Internet Technology in the Interests of Society Laboratory. Farid’s research interests are optical networks, applications of wireless sensor network technology to medical fields, delay tolerant networks. He is also interested in educational technologies and authored many papers focusing on eLearning and
(SLED) Part- nership which focuses on improving science achievement among students in grades 3 through 6 in four partnering Indiana school corporations. Prior to joining the project, he was the Instructional Laboratory Coordinator for the First-Year Engineering Program at Purdue University. He was responsible for the co- ordination and administration of two introductory engineering courses involving 1800 students. Nyquist earned his MS in engineering from Purdue University and received BS degrees in Physiology and Bio- engineering from the University of Illinois at Urbana-Champaign. c American Society for Engineering Education, 2016 Impact of elementary school teachers’ enacted
composed of four sub-systems: AC adapter (AC-to-DCconverter), wireless power transmitter module, wireless power receiver module, and earphoneheadset with battery sealed inside. Each sub-system is carefully tested in the laboratory beforeassembling. Wireless power transmitter circuit is soldered with AC adapter, and wireless powerreceiver circuit is soldered with battery load of earphone headset. Online 3D design software isused to design the 3D layout of charging station. 3D designed charging station was successfullyprinted out using 3D printer at school. Transmitter module is placed inside the charging station,and top and bottom parts of charging station is fixed together with glue. After completing thedesign and hardware implementation, the
systems. At Baylor University, he teaches courses in laboratory techniques, fluid mechanics, energy systems, and propulsion systems, as well as freshman engineering. Research interests include renewable energy to include small wind turbine aerodynamics and experimental convective heat transfer as applied to HVAC and gas turbine systems.Dr. William M. Jordan P.E., Baylor University William Jordan is Professor of Mechanical Engineering at Baylor University. He has B.S. and M.S. degrees in metallurgical engineering from the Colorado School of Mines, an M.A. degree in theology from Denver Seminary, and a Ph.D. in mechanics and materials from Texas A & M University. He teaches materials-related courses and does research
the professional engineer. Whenconfronted with the views of other disciplines on the field of engineering in his reflectionpaper, he was “taken aback by the picture they seemed to be painting of engineers anddesigners throughout the paper. An uneducated reader would imagine the engineer as ahermit locked inside a laboratory, receiving “problems” in the form of papers slid under Page 26.1724.6his door, and zealously working out solutions by distilling the information in theproblems into a set of constraints to be followed like a mathematical formula.” Hefurther evaluates the importance of “ the working with approach” as he articulates therole of
leadership laboratory where cadets take onleadership positions within their own body, the Corps of Cadets, and in so doing develop eachother. Our sixth domain is directly relevant to cadets, rounding out our time comparison linkages.Establishing Worksheets for Study Period. We selected a mid-semester period of five weeks tocollect data over, which would ensure cadets were not still adapting to their schedules or preparingfor the end of their semester during the study but simply in the middle of a semester’s rhythm. 7Call for Participants. We queried over 100 cadets and faculty with our updated spreadsheet(faculty version and cadet version). These cadets and faculty represent a diverse set of majors
calculate the optimal size of each system for a given budget and campus location,and minimize the payback time on the investment. The tool was created using HTML, CSS, andJavaScript/jQuery web languages and runs within all major web browsers. This tool wasdeveloped within a local directory and can only be used if the root folder of the project isprovided to the user. However, provided that the files can be hosted on a server, the tool can beeasily configured to be viewed online. Weather data was queried from the National RenewableEnergy Laboratory (NREL) using a public API [1]. The following sections go into detail on whatequations were used to generate fiscal models for each source of energy.Web-based Decision ToolNREL APIThe weather data required
Associate Dean of Research at Temple University and a K-12 school-teacher. In the past 20 years she has been the Principal Investigator on over 35 research grants totaling over 30 million dollars. Dr. Hammrich has published more than 150 articles, 5 science laboratory manuals for college level biology courses, 26 science curriculum manuals, 6 chapters in books, edited 14 articles, written 75 government and technical reports, cited in the media over 100 times, and made over 500 national and international presentations. Dr. Hammrich’s research has been nationally recognized over the years by such organizations as the American Association of University Women, Association of Science Teacher Education, National Science
at least”. In the interview, she first described the technical components ofher ideal career, to do research that would include field work and laboratory analysis. I: how about an ideal engineering career, what does that look like for you? T: Right now, it would be more like research and development. So it would be basically in a lab and doing research in going on to the field and collecting samples and getting data….Then, the interviewer phrased the question a little differently, which seemed to access anotherimportant component: I: What else about that an ideal job, what else is there from the day to day or more broad understanding of the values of the job? T: I would like a job that is flexible
preliminary study on supporting writing transfer in an introductory engineering laboratory course,” in 2016 Proc. ASEE.21. D. Brent, “Crossing boundaries: Co-op students relearning to write,” CCC, vol. 63, no. 4, pp. 558-592, June 2012.22. M.N. Cleary, “Flowing and freestyling: Learning from adult students about process knowledge transfer,” CCC, vol. 64, no. 4, June 2013.23. S. Conrad, et al., “Students writing for professional practice: A model for collaboration among faculty, practitioners and writing specialists,” in 2015 Proc. ASEE.24. J. A. Donnell, et al., “Why industry says that engineering graduates have poor communication skills: What the literature says,” in 2011 Proc. ASEE.25. A. Devitt, “Teaching critical genre awareness
. Student recruitment c. The modification, construction, or furnishing of laboratories or other buildings d. Curriculum revisions14. What guidance does NSF-ATE provide for including references in a proposal? a. References should be explained in the project description and are also required to be listed separately. b. References may be embedded and explained in the project description but do not need to be listed separately. c. References are optional for NSF-ATE proposals. d. References are not to be included in the project description, but should be listed separately.15. In preparing the required Budget and a Budget Justification for a proposal, NSF-ATE provides direction on all but which
datagathering process; Tiffany Sealy for her assistance in sourcing much needed components tocomplete the model and Marsha Gaye Wright for providing feedback on the quality of thedrawings, renderings and assistance with relearning the skills needed to operate AdobePhotoshop. Special thanks to The Caribbean School of Architecture and the Water RecourseAgency of Jamaica for their expertise and special contributions. Finally, we would like to thankthe cohort of the Construction Laboratory for Automation and System Simulation (CLASS),Shilun Hao, Melissa Hrivnak, Adrian Tan, Fei Yang, Jin Yang and others unnamed who haveprovided valuable feedback to the paper. Q c American Society for Engineering
theMassachusetts Institute of Technology (MIT) Radiation Laboratory, and many other researchinstitutions. In the mid-1940s, the library was also designated as a depository for the Army MapServices. In 1950, the Georgia Tech Library was made a Depository for the Atomic EnergyCommission (AEC), together with fifty or so other research libraries. Reports from AEC weremade available to engineers, scientists, industrialist and others to help foster scientific researchand industrial development in Georgia and the southeast region. Under Crosland’s direction, theLibrary also added reports from the National Aeronautics and Space Administration (NASA), theOffice of Scientific Research and Development (OSRD), which was superseded by the NationalDefense Research
oversaw research projects for INDOT in the areas of highway structures, materials, and construction. He then served two years as the Director of Site Operations for the Network for Earthquake Engineering Simulation (NEES) at Purdue University; a network of 14 university-based earthquake and tsunami research laboratories sponsored by the National Science Foundation. Dr. Newbolds began teaching at Benedictine College in 2012. He is a registered Professional Engineer in the State of Indiana.Dr. Patrick F. O’Malley, Benedictine College Patrick O’Malley teaches in the Mechanical Engineering program at Benedictine College in Atchison, KS.Meredith Stoops, Benedictine College Meredith Stoops is the Coordinator of Service
Institute. His research, which is supported by the National Institutes of Health and the National Science Foundation, aims to develop a treatment for the millions of Americans suffering from myocardial infarction and other cardiovascular diseases. In May of 2012, he co-founded a company based on some of the pioneering technology developed in his laboratory. Prof. Gaudette also teaches biomedical engineering design and innovation, biomechanics and physiology. He promotes the development of the entrepreneurial mindset in his students through support provided by the Kern Family Foundation. c American Society for Engineering Education, 2017