, design processes and student teams. c American Society for Engineering Education, 2020 Evaluating ABET Student Outcome (5) in a Multidisciplinary Capstone Project SequenceAbstractABET has published a revised list of student outcomes detailed under ABET General Criterion 3,which replaces outcomes (a) through (k) with outcomes (1) through (7). The revised studentoutcomes place greater emphasis on measuring students’ ability to consider a wide range of factorsin engineering situations and to address problems in multidisciplinary teams. The wide scope ofoutcome (5) presents unique challenges. This paper describes an assessment method for ABETstudent outcome (5), which assesses
a way that, unlike other windmills, it rotates around a ring frame, leaving the central portion open for other uses. This enables VayuWind to extract wind power using existing structures such as commercial buildings and skywalks with minimal noise pollution. c American Society for Engineering Education, 2020 Project-based smart systems module for early-stage mechanical engineering studentsAbstractSystems thinking is a key ingredient for an engineering career. In this paper, we present details ofa project-based systems thinking module for an early-stage mechanical engineering course. In thismodule, students learn systems engineering concepts through a series of
othersupporting scientific articles. Students defined design requirements, generated evolutionarysolutions through multiple iterations, and demonstrated the utility of scientific literature byapplying knowledge to enhance their designs. This approach facilitated a deeper exploration ofbiomedical technology, involving critical analysis and improvement of materials, methods, andmanufacturing techniques.Seventeen students participated in the project, divided into six groups, each assigned specifictopics related to wearable and implanted technologies. Over 14 weeks, students followed astructured process, making presentations associated with three design iterations, showcasing theirprogress, and receiving feedback from a teaching team consisting of the
Paper ID #42589Evaluating Project Management Skill Development in Engineering and AgriculturalCurriculaPaul Davidson, University of Illinois at Urbana - Champaign Dr. Davidson is an Associate Professor of Agricultural and Biological Engineering at the University of Illinois Urbana-Champaign. He has been a faculty member since 2014, and is in a 50/50 teaching/research position. His teaching and research interests are related to project management and also soil and water resources engineering.Travis Johnson, University of Illinois at Urbana - Champaign Travis Johnson is an instructor and academic advisor in the department of
Construction Lab Project Using Procore®Abstract:Construction education benefits from establishing a strong relationship with real-world industry practices.One important practice is the knowledge of software used in the industry to simplify the complexconstruction workflow and tasks throughout project execution. Procore® is considered a leadingconstruction software providing a connection between technology and industry trades. The cloud-basedsoftware provides a central repository for the contract documents, e.g. bidding documents, prime contracts,change orders, drawings, and specifications, and enables sharing the project information with all projectparticipants. While it is still needed to provide evidence-based studies measuring the effectiveness
Paper ID #43589Empathic Design in Cross-cultural STEM Education: Playground Project(Resource exchange)Soo Won Shim, Illinois State UniversityAnthony Lorsbach ©American Society for Engineering Education, 2024 EMPATHIC DESIGN IN CROSS-CULTURAL STEM EDUCATIONPLAYGROUND PROJECTThe playground project adopts an empathicengineering design approach in the context of cross-cultural STEM education.Grade level: 3-5th EMPATHIC DESIGN PROCESSMeets NGSS 3-5th physical science; 3-5ETSstandardsStudents engage in empathic design techniques byexploring
through culture-inspired project activitiesAbstractSome studies have shown that social integration between international and domestic freshmanuniversity students can both enhance international students’ well-being while concurrentlybenefitting domestic students’ cultural awareness and respect for diversity. The three basicpsychological needs autonomy, competence, and relatedness suggested by self-determinationtheory can be fulfilled through socio-cultural inspired learning activities in classroomenvironment to facilitate students’ intrinsic motivation, sense-of-belonging and quality ofperformance. This paper presents various curriculum interventions and student interactionsthrough culture-inspired product design
years, she has collaboratively developed a number of new and revised courses, including a new System Dynamics Lab. She has also worked with a number of SUNY students to investigate different aspects of 3D printed multi-material structures.Anne C Balant, State University of New York at New Paltz ©American Society for Engineering Education, 2024 Implementation of short-term undergraduate psychoacoustics research involving human subjects.IntroductionThis work discusses the development and implementation of a five -week undergraduatepsychoacoustics research project involving human subjects. It describes the required preparationand scaffolding necessary for undergraduate students with
Paper ID #41526Capstone Projects for Self-Efficacy, Skills, and Successful CareersDr. Kimberly LeChasseur, Worcester Polytechnic Institute Dr. Kimberly LeChasseur is a researcher and evaluator with the Worcester Polytechnic Institute. She holds a dual appointment with the Center for Project-Based Learning and the Morgan Teaching and Learning Center. She holds a PhD in Educational LeadershipDr. Fiona Levey, Worcester Polytechnic Institute Dr. Fiona Levey is an Associate Professor of Teaching in the Department of Mechanical and Materials Engineering at Worcester Polytechnic Institute. She teaches materials science and thermal
Electrical Engineering, Computer Engineering,Computer Science, Computational Data Science, and Software Engineering. This paperpresents the progress report of this scholarship program and its impact on the institution, itsComputer Science and Engineering Programs, and the community. Also, it presents the effect ofthe high-impact practices in this program in retention of computer science and engineeringstudents. High-impact practices reported include Capstone Courses, Collaborative Projects,First-Year Experiences, Internships, Undergraduate Research, and Writing Intensive Courses.IntroductionThe National Science Foundation (NSF) established the Scholarships in STEM (S-STEM)program in accordance with the American Competitiveness and Workforce
Paper ID #42195Multiyear Vertically Integrated Engineering Design Project: A Story of StudentSuccessDr. Nebojsa I. Jaksic, Colorado State University, Pueblo NEBOJSA I. JAKSIC earned the Dipl. Ing. (M.S.) degree in electrical engineering from Belgrade University (1984), the M.S. in electrical engineering (1988), the M.S. in industrial engineering (1992), and the Ph.D. in industrial engineering from The Ohio State University (2000). Currently, he is a Professor at Colorado State University Pueblo. Dr. Jaksic has over 100 publications and holds two patents. His interests include robotics, automation, and nanotechnology. He
Paper ID #41622Work in Progress: Project Teams’ Structure Impacting Students’ ProfessionalSkill DevelopmentEmily Buten, University of Michigan Emily (she/her) is a Ph.D. student in the Engineering Education Research program at the University of Michigan and received her B.S. in Mechanical Engineering from University of Dayton. Her research focuses on individuals’ development from students to professional engineers. She is particularly interested in studying co-op/internship programs, professional skills development, and diverse student experiences in experiential learning settings.Jack Boomer Perry, University of Michigan
Paper ID #36739BYOP: ”Bring Your Own Project”: How student-driven programming projectsin an introductory programming course can drive engagement andcontinuous learningDr. Udayan Das, Saint Mary’s College of California Udayan Das is a computer science professor with over a decade of experience teaching computer science. ©American Society for Engineering Education, 2023 BYOP: "Bring Your Own Project" How student-driven programming projects in an introductory programming course can drive engagement and continuous learningAbstractEngaging students who are unsure about
Paper ID #37814How Does Working on an Interdisciplinary Service-Learning Project vs. aDisciplinary Design Project Affect Peer Evaluators’ Teamwork Skills?Isaac Koduah Kumi, Old Dominion University Isaac K. Kumi is a Mechanical Engineering Ph.D. student at Old Dominion University. He has a B.Sc in Biomedical Engineering from the Kwame Nkrumah University of Science and Technology, Ghana, and an M.E. from Old Dominion University in Mechanical Engineering. His research interests are in biomechanics and biomechanical modeling and simulation.Dr. Stacie I Ringleb, Old Dominion University Stacie Ringleb is a professor in the
Paper ID #40092Mechatronics Engineering Integrate Project: An Approach in Project-BasedLearning with the Subjects of Instrumentation, Control Systems, andMicrocontrollersProf. Fernando Silveira Madani, Centro Universit´ario Instituto Mau´a de Tecnologia Fernando Silveira Madani received the B.S (1998) in Mechatronics Engineering from the Univ. Paulista – Brazil, the M.S. (2002) and Ph.D. (2010) from the Aeronautical Institute of Technology (ITA) - Brazil. In 2002, he joined the faculty of the Dept. of Mechanical Engineering, Mau´a Institute of Technology – Brazil, where he is currently as a full professor and Head of the
Paper ID #40546Work in Progress: Impact of individualized personal development projectsin a Multidisciplinary Capstone course on project success and studentoutcomesProf. Sean Knecht, Penn State University Sean Knecht is an Associate Research Professor in the School of Engineering Design and Innovation (SEDI) at Penn State. He is the director of the Cross-disciplinary Laboratory for Integrated Plasma Sci- ence and Engineering (CLIPSE) which investigates physical-plasma for a wide variety of applications including medicine, sustainability, agriculture, and nuclear fusion. ©American Society for
Paper ID #19544Developing a Vertically Integrated Project Course to Connect Undergradu-ates to Graduate Research Projects on Smart Cities Transportation Technol-ogyDr. Jack Bringardner, NYU Tandon School of Engineering Jack Bringardner is an Assistant Professor in the First-Year Engineering Program at NYU Tandon School of Engineering. He studied civil engineering and received his B.S. from the Ohio State University and his M.S and Ph.D. at the University of Texas at Austin. His primary focus is developing curriculum and pedagogical techniques for engineering education, particularly in the Introduction to Engineering and
Paper ID #19418Examining Software Design Projects in a First-Year Engineering Course:How Assigning an Open-Ended Game Project Impacts Student ExperienceDr. Krista M Kecskemety, Ohio State University Krista Kecskemety is a Senior Lecturer in the Department of Engineering Education at The Ohio State University. Krista received her B.S. in Aerospace Engineering at The Ohio State University in 2006 and received her M.S. from Ohio State in 2007. In 2012, Krista completed her Ph.D. in Aerospace Engineering at Ohio State. Her engineering education research interests include investigating first-year engineering student experiences
Paper ID #28989An Interdisciplinary Project-Based Service Learning and Action ResearchProject with Mechanical Engineering and Speech-Language PathologyStudentsDr. James D Carrico, University of Mary James Carrico is an Assistant Professor at the University of Mary. He received his PhD in Mechanical Engineering from the University of Utah in 2018. The focus of his doctoral studies was the design, 3D printing, and control of ionic polymer-metal composite (IPMC) actuators, for use in soft robotics. His interests include engineering education, design, active polymers, additive manufacturing, and assistive technology.Dr
Paper ID #27601Examining the Differences in Student Motivation for Industry Projects andNon-Industry Projects in Senior Capstone DesignDevanshi Shah, Florida Institute of Technology I am a graduate student pursuing M.S. in Mechanical Engineering at Florida Institute of Technology with specialization in Structures, Solid Mechanics and Materials. I graduated with B.E. in Mechanical Engineering in India in May 2016. My research is focused on Student’s Motivation in Engineering under the advisement of Dr. Beshoy Morkos.Elisabeth Kames, Florida Institute of Technology Elisabeth Kames is a graduate student working on her Ph.D. in
Paper ID #38823Integrating Entrepreneurially Minded and Project-Based Learning into aManufacturing Supply Chain CourseDr. Yalcin Ertekin, Drexel University Yalcin Ertekin, Ph.D., CMfgE, CQE Yalcin Ertekin is a clinical professor in the College of Engineering, Department of Engineering Leadership and Society at Drexel University, Philadelphia, and serves as the Associate Department Head for Undergraduate Studies for the Engineering Technology program. He re- ceived his BS degree from Istanbul Technical University in Turkey, an MSc in Production Management from the University of Istanbul, an MS in Engineering Management, and
lost sight of the pressures on junior faculty;when a student is allowed to fail a project because the scaffolding of intermediate deadlines isnot done for them, they hold the faculty responsible and not themselves. The negativerepercussions on faculty evaluations if students are allowed to fail is disproportionately large forjunior faculty members, and the very tasks that Weimer resists become essential tools to supportstudent perceptions of success. Attendance is required (or graded) because the assumption is thatit positively affects learning and motivation; larger assignments are submitted in installmentsbecause students procrastinate and do not reserve enough time at the end of the project toadequately complete it. Faculty rely on the
- dergraduate students in funded research projects who have gone on to present at local, state and national conferences.Dr. Craig M. Schluttenhofer, Central State University Dr. Craig Schluttenhofer received his doctorate in Plant Physiology from the University of Kentucky in 2016. In 2011, he obtained a master’s degree in Plant Pathology from Purdue University. He received bachelor’s degrees in Horticulture Science as well as Plant Genetics and Breeding from Purdue University. In 2019, he joined Central State University as a research assistant professor of natural products. Dr. Schluttenhofer specializes in the genetics and biochemistry of Cannabis used for agricultural and medical purposes. He started working with hemp in
Paper ID #11560WORK IN PROGRESS: THE STEAM POWERED PUMPKIN PATCH –HOW AN EXTRACURRICULAR PROJECT IS SHEDDING LIGHT ONPROFESSIONAL SKILLS DEVELOPMENTMichael Thomas Pitcher, The University of Texas at El Paso Mike Pitcher is the Director of Academic Technologies at The University of Texas at El Paso. He has had experience in learning in both a traditional university program as well as the new online learning model, which he utilizes in his current position consulting with faculty about the design of new learning experiences. His experience in technology and teaching started in 1993 as a student lab technician and has
method and concluded thatVPA could collect data accurately without affecting the performance of the subjects observed.They also indicated that thinking aloud might slow down the working process but that thesubjects’ thinking was not interfered with by thinking aloud unless they were asked to providemore information.The basic methodology of the protocol analysis method consists of the following sequence oftasks that were followed for this project. project.Design problem. All dyads completed the same open-ended engineering design challenge. Thedesign challenge used was a double-hung window opener that assisted the elderly with raisingand lowering windows. This challenge had been used by other researchers to study engineeringdesign (Williams et al
five rankings was presented for thestudents’ reference. The next component was a series of questions on “Team Conflict,” whichwere answered using a Likert scale (none, little or rarely, some, much or often, very much orvery often). Examples of questions included, “How frequently do you have disagreements withinyour work group about the task of the project you are working on?” and “How much emotionalconflict is there in your work group?” Next, three questions on “Team Satisfaction” wereanswered on a Likert scale (strongly agree, agree, neither agree nor disagree, disagree, stronglydisagree). Questions included, “I am satisfied with my teammates”, “I am pleased with the waymy teammates and I work together,” and “I am very satisfied with working
thetransactional nature of IL: how to evaluate instead of the integration and synthesis of research[3,4]. Those that do examine first-year students do not tie IL to a research paper in the field-most are tied to a design project or no assignment at all. Moreover, studies do not explore ILwith a diverse pool of learners, both in major and in cultural, socioeconomic and academicpreparation. The study analyzes the application and perception of IL of 411 first-year students inthe college of engineering at a public university. The students are from each of the ABETaccredited engineering and engineering technology majors offered in the college and all weredeemed academically ready for college-level English. The study used direct and indirectevidence to assess
of an audio podcast titled, “The Engineering StudentExperience,” whose purpose is to help current and future engineering students thrive in collegeand beyond through long-form conversations with practicing engineers, engineering faculty, andengineering students.In the United States, the demand for engineers is projected to grow at a rate three times greaterthan other fields, but degree production will not keep pace [1]. One possible factor is lack ofknowledge about the field of engineering. Although the Next Generation Science Standardsincorporate some fundamental engineering concepts in K-12 education [2], many teachers werenot exposed to the field of engineering during college, limiting their students’ exposure andaccess to this field [3
, 2013 [3]) sums up the status of K-12education in the US. Several programs have been launched aimed at remedying this situation.Project-based active learning opportunities have been empirically determined to be effective in studentengagement and learning (Prince 2004 [4]; Thomas, 2000 [5]). Project-based learning environmentscan be designed to enhance teamwork, communication skills, understanding of application of STEM inreal life, and self-efficacy. Unfortunately, schools that primarily serve under-represented groups oftendo not have the resources to provide such learning environments. Simply stated, there is a longer-termneed to have more students target STEM related careers, and the best way to do this is via engaginghands-on project-based