provide nice mealsand accommodations so the teachers look forward to attending each summer. The college doesnot pay high school teachers to deliver ENGR 102 HS since it is a dual credit offering in theirhigh school, however, a modest stipend is paid for workshop attendance and travel expenses arecovered. Faculty who teach the ENGR 102 course on campus spend time training the high schoolteachers. The high school and university ENGR 102 teaching teams bond in the retreat-likeatmosphere of the workshop and natural mentoring relationships form.The first two days of the workshop are for teachers new to the program and day one begins oncampus with tours of the UA College of Engineering laboratories and competition of paperwork.Teachers review the
-lish laboratories and curricula that are not only in sync with current industry requirements butare also adaptive enough to accommodate future advancements.Adoption and implementation of the presented tools will ensure that the next generation ofSTEM workers displays a blend of technical skills, soft skills, and digital capabilities neededdue to rapid technological advancements and constantly changing work environments of thesemiconductor industry.INTRODUCTIONThe teaching-learning landscape has undergone swift changes, spurred by the pandemic, lead-ing to the rise of virtual learning, new semiconductor global initiatives, and the advent of Indus-try 5.0. As Stuchlikova [13] predicts, knowledge gained during a degree may become outdatedby the
laboratory setting and reflected supplemental or substitutional usefor prior lab experiments usually resulted in standard reports. In these new pilot settings, theinstructor for the lab might not be the content course instruction and varied on degree ofexperience with the AD Board and with experimental centric instruction.At sites where use reflected re-use, instructors had more familiarity with the device and werenoted to be either refining previous curriculum or were expanding use to new modules and/ornew courses. The experience level of the Teaching Assistants (TA), if present, varied across thesites; in some new-use settings, the TA had the primary responsibility of helping students whileinstructors had limited contact. At other sites, the
nonviral gene therapy systems. At Rice University she has developed and taught courses in The Department of Bioengineering includ- ing Numerical Methods, Pharmaceutical Engineering, Systems Physiology, Biomaterials and Advances in BioNanotechnology. c American Society for Engineering Education, 2019 Grad Student STEM Share: From Pilot Program to Beyond STEMAbstract Our country has been struggling to improve teaching in K-12 classrooms and disparitiesin our school systems for the past three decades. There are growing challenges in K-16 Science,Technology, Engineering and Mathematics (STEM) education including the lack of studentinterest and role models, particularly for underrepresented
., & Rosa, A. J. (2005). The role of the laboratory in undergraduate engineering education. Journal of Engineering Education 94(1): 121–130. 5. National Research Council, Center for Science, Mathematics, and Engineering Education, “Inquiry and the National Science Education Standards: A Guide for Teaching and Learning”, http://www.nap.edu/openbook.php?record_id=9596&page=R1. 6. Bransford, J. D., Brown, A. L., & Cocking, R. R. (Eds.) (2002). How people learn: Brain, mind, experience and school. Com- mission on Behavioral and Social Science and Education, National Research Council. Washington: National Academy Press. 7. Lyon, G. H., Jafri, J., & St. Louis, K. (2012). Beyond the pipeline: STEM pathways for
, and senior colleges2-7. But most of these studies areSpring 2017 Mid-Atlantic ASEE Conference, April 7-8, 2017 MSUonly based on a single topic or area. These studies have yielded positive results on group basedteaching. This success has been attributed mostly to the increased peer interaction and activeparticipation during the lessons. On the other hand, there is considerable evidence collected byresearchers in physics teaching and learning that traditional instructional methods - largelylecture and problem solving - are not effective in promoting conceptual learning in physics.There is also widespread evidence that active learning methods enhance the conceptualknowledge of students8-10. In this paper we investigate the impact of cooperative
Center reaches national and international audiences with the support of federal, state, corporate, foundation, and private funds. Dr. Burgstahler is an affiliate professor in the College of Education at the University of Washington in Seattle. Her teaching and research focus on the successful transition of students with dis- abilities to college and careers and on the application of universal design to technology, learning activities, physical spaces, and student services. Her current projects include the Alliance for Students with Disabil- ities in Science, Technology, Engineering, and Mathematics (AccessSTEM), the Alliance for Access to Computing Careers (AccessComputing), the RDE Collaborative Dissemination project
Paper ID #22034Assessing High School Science Teachers’ Nature of Engineering (NOE) Per-ceptions with an Open-ended NOE Instrument (Fundamental)Dr. Erica J. Marti, University of Nevada, Las Vegas Dr. Erica Marti is an Assistant Professor in Civil & Environmental Engineering at the University of Nevada, Las Vegas (UNLV). She holds a PhD and Master of Science in Engineering and Master of Ed- ucation from UNLV and a Bachelor of Science in chemistry from the University of Illinois at Urbana- Champaign. Prior to graduate studies, Erica joined Teach for America and taught high school chemistry in Las Vegas. While her primary
Paper ID #32829Introducing Communications to High School Students by Leveraging Zoomasa Communications PlatformProf. Curt Schurgers, University of California, San Diego Curt Schurgers is an Associate Teaching Professor in the UCSD Electrical and Computer Engineering Department. His research and teaching are focused on course redesign, active learning, and project- based learning. He also co-directs an undergraduate research program, Engineers for Explorations, in which undergraduates spearhead real-world engineering challenges that impact the world of exploration and resource conservation. Curt Schurgers received his B.S
. Sampson, J. Grooms and J. Walker, “Argument-Driven Inquiry as a Way to Help Students Learn How to Participate in Scientific Argumentation and Craft Written Arguments: An Exploratory Study,” Science Education, vol. 95, no. 2, pp. 217-257, Mar., 2011. doi: 10.1002/sce.20421[25] J. P. Walker and V. Sampson, “Learning to Argue and Arguing to Learn: Argument‐ Driven Inquiry as a Way to Help Undergraduate Chemistry Students Learn How to Construct Arguments and Engage in Argumentation During a Laboratory Course,” Journal of Research in Science Teaching, vol. 50, pp. 561-596, May, 2013. doi: 10.1002/tea.21082[26] Bill and Melinda Gates Foundation, “Vaccine Delivery,” gatesfoundation.org, 1999-2018. [Online]. Available: https
Paper ID #19273Embedding YouTube Videos and Interactions in PowerPoint Using Office Mixfor Adaptive Learning in Support of a Flipped Classroom InstructionProf. John M. Santiago Jr, Colorado Technical University Professor John Santiago has been a technical engineer, manager, and executive with more than 26 years of leadership positions in technical program management, acquisition development and operation research support while in the United States Air Force. He currently has over 16 years of teaching experience at the university level and taught over 40 different graduate and undergraduate courses in electrical engineer
Colombia, working with undergraduate and graduate students. My doctoral research focused on electronic devices for recording and stimulation of Obstructive Sleep Apnea, obtaining a Cum Laude distinction and experience in neuromodulation. I am currently a postdoctoral fellow at the University of Texas at Austin working on the development of portable focused ultrasound neurostimulation technologies in the laboratory of Dr. Huiliang Wang, an expert in optogenetics and sonogenetics.Prof. Huiliang Wang, University of Texas at Austin Huiliang (Evan) Wang is an Assistant professor at the Biomedical Engineering department at the University of Texas at Austin (UT Austin). His research is on neuro-engineering technologies
degrees in History and in Construction Engineering and Management are from North Carolina State University. Dr. Talley teaches courses in the Construction Science and Management Program, and her research focus is in student en- gagement and retention in engineering and engineering technology education. Contact: kgt5@txstate.edu c American Society for Engineering Education, 2016 Multi-Disciplinary Summer Orientation Sessions for First-Year Students in Engineering, Engineering Technology, Physics, and Computer ScienceAbstractThis work in progress is motivated by a self-study conducted at Texas State University. Thestudy revealed that the average second year
. He also holds the position of Senior Lecturer in the Department of Computer Science at HKU. His research interests include database and data mining, as well as pedagogical research in computing education. Dr. Chui has received several education awards, including the University Outstanding Teaching Award (Individual Award) at the University of Hong Kong for the 2015-16 academic year and the Faculty Outstanding Teaching Award (Individual Award) in the Faculty of Engineering for the 2012-13 academic ©American Society for Engineering Education, 2024 Paper ID #41767 year. Additionally, he has been honored
engineering. Janice is an ASEE Engineering Postdoctoral Fellow (eFellow) researching engineering career concept development alongside FIU’s Partnership for Research Education Consortium in Ceramics and Polymers (PRE-CCAP) program. She completed her Ph.D. in Engineering Education from Virginia Tech. Janice received her B.S. in Biological Engineering and M.S. in Biomedical Engineering from Mississippi State University.Dr. Alexandra Coso Strong, Florida International University As an assistant professor of engineering education at Florida International University, Dr. Alexandra Coso Strong works and teaches at the intersection of engineering education, faculty development, and complex systems design. Alexandra completed her
. Many high-risk active learning techniqueshave been documented in recent literature, including field trips,5 peer teaching,6 class discussionson open-ended questions,7-8 hands-on manufacturing, laboratory testing,9-10 project-basedlearning,11 and cross grading and debate.12 The flipped classroom technique is also a new andeffective method of teaching13 where traditional lectures are converted to readings assigned tostudents outside of class and the class time is used for homework assignments and otheractivities. This technique was used successfully to teach sustainability in the past.14Low-risk active learning techniques have been introduced to engage students even in a lecture-based delivery, such as lecture worksheets,6 reading quizzes,7 and
materials and teaching methods.1 While thesematerials and methods are evidence-based and shown to positively affect student learningand educational outcomes, they have been slow to be adopted or disseminated.In an effort to improve curriculum sharing, there is currently a two-part study underway forthe development and dissemination of a web based repository containing curriculummaterials and best practices. These two efforts are in place to understand, facilitate, andencourage sharing of materials and best practices between educators. The first is thedevelopment and refinement of the web-based repository for curriculum materials; thesecond is a study on the curricular decision-making processes of transportation engineeringeducators.The overarching
Director of the Rockwell Automation laboratory at Texas A&M University, a state-of-the-art facility for education and research in the areas of automation, control, and automated system integration. Page 26.1331.1 c American Society for Engineering Education, 2015 Research Experiences for Teachers in Mechatronics, Robotics, and Industrial AutomationAbstractU.S. manufacturers are seeking highly skilled workers to hire in industrial automation andcontrol jobs. Encouraging active participation of secondary school teachers and two-year collegefaculty in university
committee for several years. He has invested over twenty-five years in the development and maintenance of a multimillion dollar manufacturing laboratory facility complete with a full scale, fully integrated manufacturing sys- tem. Professor Harriger has been a Co-PI on two NSF funded grants focused on aerospace manufacturing education and is currently a Co-PI on the NSF funded TECHFIT project, a middle school afterschool pro- gram that teaches students how to use programmable controllers and other technologies to design exercise games. Additionally, he co-organizes multiple regional automation competitions for an international con- trols company.Dr. Michael Gerald Flynn, College of CharlestonSusan Marie Flynn, College of
designing AI-proof assignments. Her educational background includes a Ph.D. in Bioengineering from the University of California, Los Angeles. Reem has also engaged in post-doctoral research at the University of California, Santa Cruz, and the University of California, Irvine.Dr. Alyssa Catherine Taylor, University of California, San Diego Alyssa C. Taylor is an Associate Teaching Professor in the Shu Chien-Gene Lay Department of Bioengineering at the University of California San Diego. She was a faculty member at the University of Washington from 2010 – 2022 before joining University of California San Diego. Dr. Taylor has over thirteen years of experience teaching across bioengineering laboratory, introductory, and
source, and on-board storage of data (often done using amemory card.) Channel count and sample rates are some important characteristics of dataloggers.The teaching of data acquisition principles in undergraduate engineering is important becausecomputer-based data acquisition and control is ubiquitous in industrial and laboratory contexts.Data measurements are taken to characterize and analyze performance of a device or system;validate analytical models; further understanding of physical phenomena; monitor and controlperformance of manufacturing, automation, or processes; and monitor equipment. Data-acquisition education can be tied to principles of signal processing and electrical engineering,and reinforce graphing skills and presentation.Ray1,2
2017 Pacific Southwest SectionMeeting: Tempe, Arizona Apr 20 Paper ID #20693Introduction to Engineering Using Interactive Video in Support of a FullyOnline Flipped Classroom ApproachProf. John M Santiago Jr, Colorado Technical University Professor John Santiago has been a technical engineer, manager, and executive with more than 26 years of leadership positions in technical program management, acquisition development and operation research support while in the United States Air Force. He currently has over 16 years of teaching experience at the university level and taught over 40
Paper ID #25374The Impact of Course Transformation on Student Learning and Success inFundamental Electrical Engineering/Computer Science CoursesDr. David O. Johnson, University of Kansas David O. Johnson is a Lecturer in the Electrical Engineering and Computer Science department at the Uni- versity of Kansas in Lawrence, KS, USA. He received his BSEE and MSEE from Kansas State University and his PhD in Computer Science from the University of Kansas. Prior to two post-doctoral research appointments at the Eindhoven University of Technology in the Netherlands and in the Applied Linguis- tics Speech Laboratory at Northern
produce computer-based models at theexpense of physical models. This fact is behind a general trend of teaching applied engineeringsubjects with minimal students’ involvement with physical set-ups including: laboratoryexperiments. Carrying out laboratory experiments and generating experimental data, visiting aproject site, and using pencil and paper to produce a schematic, are gradually fading away. Thesetraditional tools were instrumental in developing an engineering common sense. It is argued herethat generating data from physical models is potentially a great learning tool, particularly whenthe model is built by the students. Building a model, testing a model, generating physical datafrom the model, and analyzing said data, help students
Page 26.951.2support research activity at an internationally competitive level for a top 100 university.Coordinating two courses for 300 or more students is normal, with support from teachingassistants for tutorials and laboratory classes. (In Australian universities, each course isnormally 25% of a full-time student’s study load for a semester.) In view of its importance,the capstone design course has a slightly higher level of teaching resources than most othercourses.The second challenge is students’ lack of practical knowledge. Practical knowledge amongstudents entering our engineering courses is usually limited to basic domestic repairs andassembling flat-packed furniture. Almost all the prior courses completed by students focuson
Paper ID #22577Impact of a STEM-focused Research Program on Minority High School Stu-dents’ Self-Efficacy and Interest in STEM Research and Careers (Work inProgress)Dr. Tameshia Ballard Baldwin, North Carolina State University Dr. Tameshia Ballard Baldwin is a Teaching Assistant Professor working jointly in the College of En- gineering and in the Department of STEM Education within the College of Education at North Carolina State University. She earned a B.S. in Biological Engineering from North Carolina State University and an M.S. and Ph.D. in Biological Systems Engineering from Virginia Polytechnic Institute and State Uni
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
Paper ID #17403A Pilot Study of Project-Based Learning in General Chemistry for EngineersDr. Kent J. Crippen, University of Florida Kent Crippen is an Associate 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 involves the design, development, and evaluation of STEM cyberlearning environments as well as K-12 teacher professional development. In addition to NSF and NIH-funded research involving the translation of science into materials for K12 schools, Crippen has served as PI on multiple
-on experience that include operations of those complex systems. However, theinsurmountable costs and lengthy regulating processes render the aforementioned type of projectsunfeasible.In this paper, we discuss the potential to engineering education of re-purposing of a $40M IntegratedSystem Test (IST) facility with a 1.7 MWt capacity, which was originally developed for the m-PowerSMR design by BWXT Technologies, Inc. (a.k.a. BWXT), and it is currently located at LibertyUniversity's Center for Engineering Research and Education, in Forest, Virginia. The aforementionedthermal-hydraulic loop could be used for complementing teaching on areas such as: controls, thermal-hydraulics, modularity in energy systems, cyber-physical systems, and many
Industry Academia ModelAbstractThis paper describes a collaborative industry-academia model for teaching medical devicedesign, which combines active learning with input from industry experts. The course coversinterdisciplinary topics such as biological testing, human factors, usability engineering, riskmanagement, and regulations, areas that go beyond the expertise of a single instructor. Industryprofessionals contribute through guest lectures, mentorship, and real-world case studies, ensuringthat students gain practical, industry-relevant knowledge. Students work on hands-on projectsthat simulate real-world scenarios, helping them develop critical thinking, teamwork, andproblem-solving skills. Active learning activities like sensor-based labs and