primary purposes of an engineering or construction management curriculum is toprepare students to enter the workforce upon graduation, ready to engage in a variety ofresponsibilities as a part of a multidisciplinary team. The transition from student to professionalmust occur quickly – often in as little as four-to-five years. Central to this transformation is thestudent’s ability to translate the theories and principles introduced in the classroom into tangibleskills appropriate to their particular discipline and work effectively with a variety of people frommultiple disciplines. While there are many pedagogical approaches that seek to accomplish thisgoal, project-based learning explicitly presents students with the opportunity to put theory
Paper ID #17831Initial Survey of Engineering Technology Capstone Courses and TeamworkBuilding Using CATMEDr. Anne M. Lucietto, Purdue University, West Lafayette (College of Engineering) Dr. Lucietto has focused her research in engineering technology education and the understanding of engineering technology students. She teaches in an active learning style which engages and develops practical skills in the students. Currently she is exploring the performance and attributes of engineering technology students and using that knowledge to engage them in their studies.Dr. Andrew Simon Scott, Western Carolina University I am an
. Duringinstruction, shear force diagrams are introduced as exercises via in-class examples and then assketching activities on homework and exams. Sketching in general is an integral part ofengineering instruction as well as engineering practice. Literature on sketching behavior hascovered a wide range of concepts from digital logic [7] to the broader cognitive processes behindsketching in various fields[8]. There is also work that covers the quality of students’ sketches ofconcepts common in statics courses, however these studies focus on developing sketchrecognition and analysis for assessment [9]–[11].Statics education literature has focused on classroom intervention strategies [12]–[16] andimplementing assessments such as the concept assessment tool for
Paper ID #18765Introducing the Internet-of-Things to the Next Generation of EngineersDr. Samuel J. Dickerson, University of Pittsburgh Dr. Samuel Dickerson is an assistant professor at the University of Pittsburgh Swanson School of Engi- neering. His general research interests lie in the area of electronics, circuits and embedded systems and in particular, technologies in those areas that have biomedical applications. He has expertise in the design and simulation of mixed-signal integrated circuits and systems that incorporate the use of both digital and analog electronics, as well as optics, microfluidics and devices
additionalengineering schools to broaden the student demographic and is one of the few such STEMstudies we are aware of. An NSF grant enabled us to compare blended and flipped instruction ina numerical methods course for engineers at three universities – University of South Florida(USF), Arizona State University (ASU), and Alabama A&M University (AAMU) - between2014 and 2016 (Kaw et.al., 2013). These universities differ in their characteristics, therebyadding to the generalizability of our findings. At each school, the course covers basic numericalmethods for differentiation, nonlinear equations, simultaneous linear equations, interpolation,regression, integration, and ordinary differential equations. The course is taken primarily bymechanical engineers at
. This includes mathematical symbols and formulae. Rruns on a wide variety of UNIX platforms and similar systems including FreeBSD, Linux,Windows and MacOS. R is available as a free software under the terms and conditions of GNUlicense in its source code form. R is an integrated suite of software facilities for data manipulation, calculation andgraphical display. Its applications include: • (1)Effective data handling, (2) Storage facility, (3) Graphical facilities for data analysis and display (hardcopy or on screen-display),(4) A suite of operators for calculations on arrays, (5) Coherent, integrated collection of tools for data analysis, (6) Simple and effective programming language
the problems, a solution could bedeveloped using these approaches. Finally, an article written about using six sigma practices tosolve problems in the classroom gave some valuable insights. Every teacher in a high school inColorado received a copy of the book The Six Sigma Way as a holiday present. The objectivewas to apply this approach to the entire school district. The article details how they started withthe simplest applications to build enthusiasm and confidence in the methodology andimmediately improved the heating/ventilation of the buildings, ordering materials, and lawn andbuilding maintenance. More challenging areas, such as curriculum, required much more inputand involvement from teachers and staff. The final results were
highlight student skills development in ways that engage and attract individuals towards STEAM and STEM fields by showcasing how those skills impact the current project in real-world ways that people can understand and be involved in. As part of a university that is focused on supporting the 21st century student demographic he continues to innovate and research on how we can design new methods of learning to educate both our students and communities on how STEM and STEAM make up a large part of that vision and our future.Mr. Hugo Gomez, University of Texas, El Paso Mr. Hugo Gomez works as an Instructional Technologist at the University of Texas at El Paso, he is focused on expanding the professional and technical skill
construction in an efficient manner.The team put significant effort into providing a high quality facility that can be used for teachingand research purposes. While the design project worked well as a capstone project, theconstructed water channel will be used as a valuable facility in both Mechanical Engineering andElectro-Mechanical Engineering Technology programs.1. IntroductionFluid Dynamics is an inseparable part of the Mechanical Engineering world and manyuniversities include lab activities in the area of Fluid Dynamics in their curriculum. However,commonwealth campuses have very limited access to laboratory facilities where real liferesearch experiences can take place. Previous studies such as Kubesh and Allie’s have stated thatthe design and
curriculum for the new Minor in Global Engineering offered by the CU Boulder College of Engineering and Applied Science starting in fall 2016. Ms. Sandekian earned B.S. and M.S. degrees in Aerospace Engineering Sciences at CU Boulder, a Spe- cialist in Education (Ed. S.) degree in Educational Leadership and Policy Studies from the University of Northern Colorado, and expects to earn her Ph.D. in the Higher Education Student Affairs Leadership program from the University of Northern Colorado in December 2017. c American Society for Engineering Education, 2017 Global Engineering: What it Means at University of Colorado Boulder, and How We are Preparing our Students for
Paper ID #18170Assisstive Technology for Freshman Design and K-12 OutreachDr. Devin R. Berg, University of Wisconsin, Stout Devin Berg is an Associate Professor and Program Director of the B.S. Mechanical Engineering program in the Engineering and Technology Department at the University of Wisconsin - Stout.Mr. Matthew Wigdahl, Oaklawn Elementary School Matthew Wigdahl is a National Board Certified 5th grade teacher using Design Thinking to empower his students to solve problems. He has taught elementary grades for 17 years.Ms. Charis Dawn Collins, Oaklawn Elementary School Charis Collins is a writer and teacher, specializing
workingprofessionals who represent all the disciplines represented in our endeavor. This was our firsttime offering a course with this combination of disciplines (and hence has no feedback from agroup of external stakeholders). As an update, we have, since the submission of the abstract,offered this course twice. However, it was offered to only engineering students, and with aplatform-independent app development methodology. Feedback from all students convinced usto seek a simpler and better integrated app development process. We now feel comfortable inoffering full-fledged transdisciplinary courses in spring 2018, at which time formativeevaluation will be undertaken (see the discussion section). We document our efforts at formativeevaluation in another paper
) enay Purzer is an Associate Professor in the School of Engineering Education. She is the recipient of a 2012 NSF CAREER award, which examines how engineering students approach innovation. She serves on the editorial boards of Science Education and the Journal of Pre-College Engineering Educa- tion (JPEER). She received a B.S.E with distinction in Engineering in 2009 and a B.S. degree in Physics Education in 1999. Her M.A. and Ph.D. degrees are in Science Education from Arizona State University earned in 2002 and 2008, respectively. c American Society for Engineering Education, 2017 Exploring Connections between Engineering Projects, Student Characteristics, and the Ways Engineering Students
years the company performed many private and government projects. Dr. Fathizadeh has published numerous journal, conference and technical articles. He has been instrumental figure in establishing mechatronic engineering technology at Purdue University Calumet. His areas of interests are, control systems, power systems, power electronics, energy, and system integration. Dr. Fathizadeh is a registered professional engineer in the State of Illinois. c American Society for Engineering Education, 2017 Experiential Learning through Industry PartnershipAbstractExperiential learning gives students the abilities they need for actual-global achievement.Students as well as their parents are
Literature on Teaching Engineering Design Through Project Oriented Capstone Courses,” Journal of Engineering Education (January 1997): 17 - 28. 4. Milo Koretsky, Christine Kelly, and Edith Gummer, “Student Perceptions of Learning in the Laboratory: Comparison of Industrially Situated Virtual Laboratories to Capstone Physical Laboratories,” Journal of Engineering Education (July 2011): 540 - 573. 5. Heshmat A. Aglan and S. Firasat Ali, “Hands-On Experiences: An Integral Part of Engineering Curriculum Reform,” Journal of Engineering Education (October 1996): 327 – 330. 6. Stupak P.R., S. Rumrill, B. S. Carlsen, T. George, and J. Suriano, “Authentic Engineering Experience: Electromagnetic-Induction Keychain for a
the U.S. Presidential Early Career Award for Scientists and Engineers (PECASE). http://engineering.tufts.edu/me/people/wendell/Chelsea Joy Andrews, Tufts Center for Engineering Education and Outreach Chelsea Andrews is a Ph.D. candidate at Tufts University in STEM education. She received a B.S. from Texas A&M University in ocean engineering and an S.M. from MIT in civil and environmental engi- neering. Her current research includes investigating children’s engagement in engineering design through in-depth case study analysis. c American Society for Engineering Education, 2017 Elementary student engagement with digital engineering notebook cards
Assistant Dean for Inclusive Excellence, she leads the Broadening Opportunity through Leadership and Diversity (BOLD) Center, overseeing efforts to attract and prepare students for the rigors of engineering study and careers, and to improve student performance and graduation rates. Appointed in January 2014, Miller comes to CU-Boulder from the National Science Foundation, where she worked in STEM education as a American Association for the Advancement of Science Fellow. Sarah believes that every child deserves an excellent education. She has worked in inner-city public schools, both as a teacher and as an administrator, and in the admissions office of Amherst College, where she earned a B.A. in Chemistry. She holds a PhD
College. Her research interest revolves around software estimation, software design and curriculum design of software engineering course(s).Dr. Muhsin Menekse, Purdue University, West Lafayette (College of Engineering) Muhsin Menekse is an assistant professor at Purdue University with a joint appointment in the School of Engineering Education and the Department of Curriculum & Instruction. Dr. Menekse’s primary research investigates how learning activities affect students’ conceptual understanding of engineering and science concepts. His second research focus is on verbal interactions that can enhance productive discussions in collaborative learning settings. And his third research focus is on metacognition and its
necessary for understanding how people learn Mental processes such as thinking, memory, knowing, and problem-solving need to be explored Knowledge can be seen as schema or symbolic mental constructions. Learning is defined as,., change in a learner’s schemata. 5 6 Constructivism…learning is an active, contextualized process of constructingknowledge rather than acquiring itKnowledge is constructed based on personal experiences andhypotheses of the environmentLearners continuously test these hypotheses through socialnegotiationEach person has a
eligible for an EngineeringPathways Fellowship.To retain the Fellowship from year to year, students had to have high academic standards,actively participate in program, and make clear progress towards a degree in engineering.Students were required to maintain a college average GPA of ≥2.7, and complete courses fortheir major consistent with the standard curriculum. Students who failed to meet these criteriawould be given an additional semester of aid on a provisional basis. In these cases, intensivecounseling would be provided. Active participation in program events was critical to generalsuccess of the program. In cases where students did not actively participate in at least 75% ofscheduled activities, they were counseled that they were
. Figure 16: Relationship between the interior and the exterior In addition, the digital model presents the architectural information about the structure in acomprehensible manner, which is important in engineering education as well as architecture. Theflexibility of this model can also be applicable to other fields of study aside from civilengineering along with other structures and construction methods aside from the Devon House.Digital modeling in this way can thus be used in a variety of educational circumstances in thearchitectural field, and may be a critical process for helping architecture curriculums moveforward. Indeed, this practice is an important part of professional education in architecture andcivil engineering, and bringing
Science is a required course for freshmen inMechanical Engineering and an elective for other engineering majors. The course is the firstengineering course for most engineering students in the college and therefore it is challenging toexplain some concepts and discuss the application of course materials in their future study andcareer. It is well known that project based learning activities motivates the students to learn newconcepts faster. To help students engage in the class, a comprehensive term-long project wasdeveloped, which combines material testing, simple design for engineering applications, materialselection for the design, and testing of the failure of the designed structure. In this project,students were required to select materials