AC 2010-239: ACHIEVING CIVIL ENGINEERING BOK2 OUTCOMES OFGLOBALIZATION, LEADERSHIP, PROFESSIONAL AND ETHICALRESPONSIBILITY AND TEAM WORK IN A GENERAL EDUCATION CLASSSteven Benzley, Brigham Young University Steven E. Benzley obtained BES and MS degrees in Civil Engineering from Brigham Young University and a PhD in Civil Engineering from the University of California, Davis. He was a member of the technical staff at Sandia National Laboratories. Since 1980 he has been on the faculty of Civil and Environmental Engineering at Brigham Young University. He has also served as Associate Dean of the BYU College of Engineering and Technology, Associate Dean of BYU Honors and General Education, and is
Gerhart, Ph.D. is a Professor of Mechanical Engineering at Lawrence Technological University. He is a Fellow of the Engineering Society of Detroit and is actively involved in ASEE and the American Society of Mechanical Engineers. He serves as Faculty Advisor for the American Institute of Aeronautics and Astronautics Student Chapter at LTU, director of IDEAS (Interdisciplinary Design and Entrepreneurial Applications Sequence), chair of the First Year Engineering Experience committee, supervisor of the LTU Thermo-Fluids Laboratory, coordinator of the Certificate/Minor in Aeronautical Engineering, and faculty advisor of the LTU SAE Aero Design Team. Dr. Gerhart conducts workshops on active, collaborative, and problem
teaching technical skills (n =19), while immersion (n = 6), soft skills (n = 6), and other topics(n = 5) have also seen deployments in the field. This technologyhas shown potential in knowledge acquisition (n = 8), self-efficacy(n = 9), engagement (n = 8), and satisfaction (n = 6) among users.Future work should look at how soft skills and immersion arebeing taught using virtual reality, and how smartphone-basedvirtual reality head-mounted displays can be used to provide alow-cost and portable means to access nursing simulationcontent. Fig. 1. Oculus Quest 2 VR HMD Keywords—Virtual Reality; Simulation; Nursing Education; ODigital Technology
faculty in the design and development of the teaching modules.Professional Development: Community college faculty participated in a research orientation,training in research protocol, laboratory safety, and scientific ethics, group meetings, andseminars on context-based pedagogical methods and online education. Proceedings of the 2015 American Society for Engineering Education Pacific Southwest Conference Copyright © 2015, American Society for Engineering Education 573Together, this breadth of summer experience made this a broad learning experience that took fulladvantage of the strengths of the university.Green and
Paper ID #48556Using industry standard tools to set up students for successDr. Bridget Ogwezi, ANSYS, Inc. For the last 5 years I have been part of the Academic Program at Ansys, supporting engineering education.Dr. Kaitlin Tyler, ANSYS, Inc. Kaitlin Tyler is currently a Senior Academic Program Engineer at Ansys. Her role focuses on supporting the usage of Ansys tools in academia, with an emphasis on materials teaching and pre-university engagement. She is also the lead for the Ansys Academic Content Development Program, which focuses on developing instructional content to support integration of Ansys tools in curriculum
withthe technologies that they teach [5].Additionally, Cheng et al. write that, “… employers hold a view that responsibility for graduateemployability needs to be shared between students, HEIs (higher education institutions) andemployers …” and “… for this to function effectively employers will need to increasecollaboration with HEIs to make their needs known, to increase student internship opportunitiesand to provide employees with professional on-the-job learning” [7]. One of the conclusionsfrom this study was the partnerships that must exist between industry, the colleges anduniversities, and the students to ensure a prepared and functional work force.One of the major challenges encountered by most companies implementing Industry 4.0 ishaving
order to provide PD that aligns to The Next Generation Science Standards (NGSS). Since 2008 she has provided teacher PD to science teachers in the tri-state area, including international visiting teachers and scholars. Dr. Borges’ research interests include: building STEM professional-teacher relationships, diversity and equity, and enhancing urban science teaching and learning.Dr. Vikram Kapila, New York University Vikram Kapila is a Professor of Mechanical Engineering at NYU Tandon School of Engineering (NYU Tandon), where he directs a Mechatronics, Controls, and Robotics Laboratory, a Research Experience for Teachers Site in Mechatronics and Entrepreneurship, a DR K-12 research project, and an ITEST re- search
AC 2012-3730: CREATING LOW-COST INTRINSIC MOTIVATION COURSECONVERSIONS IN A LARGE REQUIRED ENGINEERING COURSEDr. Geoffrey L. Herman, University of Illinois, Urbana-Champaign Geoffrey L. Herman earned his Ph.D. in electrical and computer engineering from the University of Illi- nois, Urbana-Champaign as a Mavis Future Faculty Fellow. He is currently a Postdoctoral rRsearcher for the Illinois Foundry for Engineering Education. His research interests include conceptual change and development in engineering students, promoting intrinsic motivation in the classroom, blended learning (integrating online teaching tools into the classroom), and intelligent tutoring systems. He is a recipient of the 2011 American Society for
teach students from diverse disciplines someessential concepts on computer technology in the context of applying cyberinfrastructure. Thesecourses developed for K13 & K14 levels will be offered in an innovative classroom setting forhands-on experimental learning with a focus on solving scientific problems as a team. Thesecourses will also be deployed for online learning in a virtual classroom. The effectiveness of suchan approach, introducing concepts from engineering education to the non-engineering students,will be assessed through formative and summative methods for further development anddissemination._____________________________________________________________________________*CIBRED is funded by NSF award OCI-0753375 to O
-service teacher program. The MSP is apartnership between The University of Texas at Austin's School of Engineering, Collegeof Education, and UTeach Natural Sciences program and the Austin Independent SchoolDistrict. These partners are collaborating to develop and deliver an innovative design-based curriculum for preparing secondary teachers of engineering.The participants in this study were high school teachers in the first cohort of the UTeachEngineering Summer Institutes for Teachers (ESIT) program. The 23 participants had anaverage of six years classroom experience teaching mathematics or science. While someof the teachers were also teaching engineering or engineering-related courses, most werepreparing for their first experience in an
Skills Laboratory Teaching andDetermine Potential Benefits, Challenges, and Possibilities. Londgren MF, Baillie S, Roberts JN, Sonea IM. 2020,Journal of Veterinary Medical Education .7. Using Evaluative Data to Assess Virtual Learning Experiences. K. Vielma, E.M. Brey. Teaching Tips - SpecialIssue (COVID), 2020, Biomedical Engineerign Education, Vols. https://doi.org/10.1007/s43683-020-00027-8.8. Enhancement of Stay-at-Home Learning for the Biomechanics Laboratory Course During COVID-19 Pandemic.C.-H. Lee, Y. Liu, M. Moore, X. Ge, Z. Siddique. Teaching Tips - Special Issue (COVID), 2020, Journal ofBiomedical Engineering Education.9. Virtual Flipped Class and Laboratories for Medical Electronics Course. Maarek, JM.I. 2021, Biomed EngEducation
determined that it was important for all of the new facultymembers to have a support team. Mentor responsibilities included visiting classes and givingfeedback on teaching, ensuring new faculty members became familiar with equipment and com-fortable in laboratory facilities, and helping them to understand and navigate departmental anduniversity policies. It certainly was not a perfect system, and not all of the new members of thefaculty wanted close guidance and feedback, but for the majority that did it worked out well. Oneother thing that helped new members of the faculty integrate into the department and universitywas participation in an active-learning workshop just before new faculty orientation. The work-shop was offered for the first time the
Paper ID #47586Exploring the Capability of Generative AI as an Engineering Lab ReportAssessment Assisting ToolDr. Dave Kim, Washington State University-Vancouver Dr. Dave Kim is Professor and Mechanical Engineering Program Coordinator in the School of Engineering and Computer Science at Washington State University Vancouver. His teaching and research have been in the areas of engineering materials, fracture mechanics, and manufacturing processes. In particular, he has been very active in pedagogical research in the area of writing pedagogy in engineering laboratory courses. Dr. Kim and his collaborators attracted close to
Paper ID #7506The Influence of Feedback on Teamwork and Professional Skills in an Au-thentic Process Development ProjectMs. Debra Gilbuena, Oregon State University Debra Gilbuena is a PhD Candidate in the School of Chemical, Biological, and Environmental Engi- neering at Oregon State University. She currently has research focused on student learning in virtual laboratories. Debra has an MBA, an MS, and 4 years of industrial experience including a position in sensor development, an area in which she holds a patent. Her dissertation is focused on the characteriza- tion and analysis of feedback in engineering education
focuses on contemporary, cul- turally relevant, inclusive pedagogical practices, industry-driven competency development in engineering, and understanding the experiences of Latinx and Native Americans in engineering from an asset-based perspective. Homero has been recognized as a Diggs Teaching Scholar, a Graduate Academy for Teach- ing Excellence Fellow, a Diversity Scholar, a Fulbright Scholar, and was inducted in the Bouchet Honor Society. American c Society for Engineering Education, 2021 Engineering Ethics in Engineering Design Courses: A Preliminary InvestigationAbstractEngineering design entails countless
-level, stand-alone course or in a cleanroom, which maynot be practical in an undergraduate BME curriculum. Furthermore, without these hands-on labsthat take place in a cleanroom, microfluidics classes are often taught as theory-based, conflictingwith literature on the benefits of hands-on learning. Broadly speaking, teaching microfabricationmethods is often limited to the graduate level and/or selectively to advanced undergraduates,making this instruction inaccessible to a large population of students.Educators are beginning to successfully incorporate microfluidics hands-on activities. Forexample, one paper describes the development of a mass conservation laboratory module using amicrofluidic device for undergraduate fluid mechanics education
Creativity and Personality Involvement in the Undergraduate Science Laboratory. Journal of College Science Teaching, 21(4), 226-229.16. Kremmer, J. F., & Bringle, R. G., 2000. The Effects of an Intensive Research Experience on the Careers of Talented Undergraduates. Journal of Research and Development in Education, 24(1), 1–5.17. Kardash, C. M., 2000. Evaluation of an Undergraduate Research Experience: Perceptions of Undergraduate Interns and their Faculty Mentors. Journal of Educational Psychology, 92(1), 191-201.18. Boyer, Paul (Ed), 2010. Ancient Wisdom, Modern Science: The Integration of Native Knowledge in Math and Science at Tribally Controlled Colleges and Universities, Published by Salish Kootenai College Press, Pablo
computer lab forstudents and providing computers to the teaching staff. The acquisition of at least twentycomputers will be enough to establish a computer lab. Students will use them for computation,drafting, and writing laboratory reports. One of the young teachers could be trained to teachcomputer-aided design (CAD) to the students.5.3 TextbooksThe Faculty is severely suffering from the shortage of textbooks. Existing edition of textbooksare old and outdated. One text is shared by several students which severely hamper their abilityto prepare for their classes. Several alternatives could be followed to alleviate the problem.As a first alternative, it is necessary to contact American publishers for their South Asian prints. Ihave identified three
flexibility. This includes numerous tools, such as graphics, animation, video, audio, or somecombination. It also includes the manner in which the media is delivered. Computer modules mayalso help students move into a higher level of thinking. These higher levels, according to Bloom’sTaxonomy4, include analysis, synthesis, and evaluation. Rhoads, Zimmer, Lewis, and Hubele13have attempted to move students in their statistics classes into these higher levels. They usedcomputers in a laboratory setting for in-class exercises. Online multimedia has a significantadvantage because students can view the content in a self-paced and asynchronous fashion17. Self-pacing has potential for significantly enhancing student’s learning and retention of
ones such as “what are the functional requirements of education?” -the first question in a systems engineering design task. In fact, there are projects and institutesthinking in exactly this way (ASCD Systems Thinking Newsletter, 1996). Engineering and Educational Philosophy If John Dewey were opening up his famous Laboratory School today instead of 100 yearsago, the occupational theme that teachers would use to teach children "how society has grown tobe what it is" (Tanner, 1997) would not be sewing, cooking, and carpentry, but engineering.With an enormous interest in the social nature of learning and educating children that can liveand work together, Dewey certainly would have been a fan of systems
, University of California, Davis Harry H. Cheng is a Professor in the Department of Mechanical and Aerospace Engineering, Graduate Group in Computer Science, and Graduate Group in Education at the University of California, Davis, where he is also the Director of the UC Davis Center for Integrated Computing and STEM Education (http://c-stem.ucdavis.edu) and Director of the Integration Engineering Laboratory. His current research includes developing computing and robotics technologies and integrate them into STEM education in both formal and informal settings for integrated learning. From 1989 to 1992, he was a Senior Engineer for robotic automation systems with the Research and Development Division, United Parcel Service
Paper ID #7064Using Knowledge Building to Support Deep Learning and the Developmentof 21st Century SkillsDr. Glenn W Ellis, Smith College Dr. Glenn Ellis is a professor of Engineering at Smith College who teaches courses in engineering science and methods for teaching science and engineering. He received his Ph.D. in Civil Engineering and Oper- ations Research from Princeton University. The winner of numerous teaching awards, Dr. Ellis received the 2007 U.S. Professor of the Year Award for Baccalaureate Colleges from the Carnegie Foundation for the Advancement of Teaching and the Council for Advancement and Support of
Engineering at the Universit´e de Sherbrooke. She studied in Electrical Engineering (2002-2006), worked in industrial robotics at AV&R, then worked actively at the creation of the Robotics Engineering Program until 2023. She is now involved in Major Capstone Design Projects, which involve 4 Engineering programs.Prof. Jean-S´ebastien Plante, Universit´e de Sherbrooke Jean-S´ebastien Plante, Ph.D., is an engineer and full professor in the Department of Mechanical Engineering at the Universit´e de Sherbrooke, in Qu´ebec, Canada. He developed the ”makers” culture at Universit´e de Sherbrooke in both teaching and research. Since 2023, he is the Director of the Studio de Cr´eation, the fablab fostering the design
Engineering Education, 2019, Accessed: Oct. 21, 2023. [Online]. Available: https://eric.ed.gov/?id=EJ1220296[24] M. Koretsky, C. Kelly, and E. Gummer, “Student perceptions of learning in the laboratory: Comparison of industrially situated virtual laboratories to capstone physical laboratories,” Journal of Engineering Education, vol. 100, no. 3, pp. 540–573, 2011, doi: 10.1002/j.2168-9830.2011.tb00026.x.[25] A. P. Fagen, C. H. Crouch, and E. Mazur, “Peer Instruction: Results from a range of classrooms,” Phys. Teach., vol. 40, no. 4, pp. 206–209, Apr. 2002, doi: 10.1119/1.1474140.[26] T. Gok and O. Gok, “Peer Instruction in chemistry education: Assessment of students’ learning strategies,” Learn. Strateg
Stanford (d.school), an initiative lead by Professor David Kelley (co-Founder of IDEO Product Development). He has published in the areas of diagnostic electro-physiology, functional assessment of voluntary movement, human operator information processing, rehabilitation© American Society for Engineering Education, 2006 robotics, design team protocol analysis, design knowledge management, and concurrent engineering. A member of the Stanford faculty since 1976, he taught product design, created the smart product design (mechatronics) curriculum at Stanford, and most recently teaches a graduate course in "Team-Based Design Innovation with Corporate Partners"; a Design Theory and
theSummer Science Institute, is for high school juniors and seniors. The other program, calledSummer Odyssey, is for middle school students. Both programs explain what engineers are,explain what engineers do, and promote problem solving skills. The students also experiencevarious disciplines (or sub-disciplines) of engineering through a combination of presentations,laboratory experiences, and design work. In other words, much of the same material andactivities are used for both programs. Although neither of these programs are specifically forminorities or women, a large portion of the students are female and approximately half areminorities. A review of the material/activities for the summer of 2004 is presented. In addition,in the summer of 2004
Paper ID #33690Impact of Flipped Classroom Model on High-workload and Low-incomeStudents in Upper-division Computer ScienceDr. Alberto Cureg Cruz, California State University, Bakersfield Dr. Cruz is an Assistant Professor of Computer Science, Principal Investigator of the Computer Percep- tion Laboratory (COMPLAB), and board member of the Center for Environmental Studies (CES) at the California State University, Bakersfield (CSUB). He received the B.S in Electrical Engineering from the University of California, Riverside (UCR) in 2008 and the Ph.D. in Electrical Engineering from UCR in 2014 as a Fellow of the NSF
Paper ID #16261A Civil Infrastructure System Perspective - Not Just the Built EnvironmentDr. Douglas Schmucker P.E., University of Utah Dr. Schmucker has 20 years experience in teaching and consulting. Focused on high quality teaching following the T4E, ExCEEd, and NETI teaching models, he currently is a full-time teaching professional with a focus on practice, project, and problem-based teaching methodologies.Dr. Joshua Lenart, University of Utah Dr. Joshua Lenart is an Associate Instructor with the Communication, Leadership, Ethics, and Research (CLEAR) Program at the University of Utah where he teaches technical
bridge construction project en- gineer for a construction contractor and as a research engineer for the Naval Civil Engineering Laboratory in Port Hueneme, Calif. His teaching interests include construction equipment, cost estimating and con- struction process design. His research interests include highway and heavy construction methods, road maintenance methods and innovations in construction process administration. Page 23.415.1 c American Society for Engineering Education, 2013Development of a Framework for the Online Portion of a Hybrid Engineering
AC 2010-1079: FIRST-YEAR ENGINEERING FROM THE PERSPECTIVE OF AHIGH-SCHOOL TEACHER.Rod Paton, University of Auckland Rod Paton holds BSc and MSc degrees in physics from the University of Auckland, New Zealand. He has been teaching high-school science and physics since the start of 1994. For the past 12 years he has been Head of Physics at Westlake Boys’ High School, Auckland, New Zealand. Rod has integrated ICT into the school’s physics programs and developed problem-solving books and practical manuals to enhance the skills and abilities of all students. His main research interests are centred on implementing steps to improve the problem-solving and academic-writing abilities of high-school