student survey and instructor-assessed elements. The tool is beingused in the capstone design course sequence, and the results from three semesters ofimplementation are reported and briefly discussed. Compared to the previous method of peer-evaluation alone, the new tool allows each sub-outcome to be measured and evaluated.IntroductionMechanical engineering seniors at Lawrence Technological University (LTU) complete acapstone design project: either an SAE collegiate design series (CDS) competition or anindustry-sponsored project (ISP). These capstone projects serve as a summative assessment,bringing together machine design, thermo-fluids, manufacturing, and mechatronics topics into areal-world design experience. Relative coverage of these topics
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
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
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
Paper ID #34915Longitudinal Study of a Project-based Learning Methods Replacement forLecture Based CoursesDr. Alan Jones, Indiana University - Purdue University Indianapolis Alan Jones is the Associate Chair and an Associate Professor of Mechanical Engineering at Indiana Uni- versity - Purdue University, Indianapolis where he has taught since 2005. He received his B.S. from Bradley University and his M.S. and Ph.D. from University of Michigan, Ann Arbor. His current inter- ests include multi-functional composites, material modeling, engineering education and virtual reality for engineering.Mr. Michael Golub, Indiana
Paper ID #33106Work in Progress: Project-Based Homework: An Ongoing Study onEngineering Analysis-DynamicsDr. Sudeshna Pal, University of Central Florida Dr. Sudeshna Pal received her Ph.D. degree in Biosystems and Agricultural Engineering from Michigan State University in 2009. She is a Lecturer in the Mechanical and Aerospace Engineering Department at the University of Central Florida (UCF), where she teaches courses in the areas of system dynamics, controls, and biomedical engineering. Her current research focus is engineering education and includes blended learning, project-based learning, digital education, and
Paper ID #13778A Roller Coaster Project as Part of an Undergraduate Dynamics Course inMechanical EngineeringDr. Andrew R. Sloboda, Bucknell University Andrew Sloboda is a Visiting Assistant Professor at Bucknell University where he teaches a variety of mechanics-based courses, including solid mechanics, fluid mechanics, dynamics, system dynamics, and vibration. His research interests lie primarily in the fields of nonlinear dynamics, vibration, and fluid- structure interaction. Page 26.104.1
multidisciplinary teamwork abilities. Despite heavyinvestment to improve mechanical engineering education in Japan, the effectiveness of theeducation has not been sufficiently discussed. Traditionally, students are assessed on their in-depthunderstanding of specialized knowledge. With the surge of project-based learning, evaluation islargely focused on students’ final product or research results. We take a different stance and jointhe emerging call to foster engineering students’ abilities of knowledge acquisition, communication,teamwork, and creativity. To evaluate these abilities, we have combined cultural perspectives witha student-centered approach to inquire what constitutes engineering and its practice in Japan. Wediscuss the challenges and propose
engineering and the program director for the Master of Science in Automotive Engineering. In addition, he is faculty co-advisor for the Collegiate Chapter of SAE and the Blue Devil Motorsports Organization. c American Society for Engineering Education, 2016 A Three Semester Mechanical Engineering Capstone Design Sequence Based on SAE Collegiate Design SeriesAbstractMechanical engineering students at Lawrence Technological University complete a five-credithour capstone project: either an SAE collegiate design series (CDS) vehicle or an industry-sponsored project (ISP). Students who select the SAE CDS option enroll in a three semester, threecourse sequence. Each team of seniors designs
of Puerto Rico at Mayaguez in the traditional role of teaching and administering a modest research program. At Trine University, a small private school in Angola, Indiana, Scott taught ten different courses from introductory freshman courses to senior design, while serving as advisor to many undergraduate research projects. For the last four years, Scott has been at York College of Pennsylvania where his concentration is on undergraduate education in mechanical engineering.Dr. Tristan M. Ericson, York College of Pennsylvania Dr. Tristan Ericson is an assistant professor at York College of Pennsylvania. Prior to this appointment, he was a visiting professor at Bucknell University and received his PhD from Ohio
rates and the likelihood ofcontinued research participation and higher education. A new initiative at the University of Texasat Austin (UT Austin), the Freshman Introduction to Research in Engineering (FIRE) program,offers a select group of first-year students with an opportunity to participate in semester-long,faculty-sponsored mechanical engineering research and development projects. In addition to theirresearch, students attend bi-monthly lectures that introduce them to various topics in mechanicalengineering and current research in the field, the successes (and roadblocks) in engineeringresearch and how to overcome them, and career opportunities in engineering. An end of semesterposter session allows students to showcase their research
culminating in the collaborative design and fabrication ofan autonomous vehicle. Students were provided a realistic design scenario early in the course,with subsequent lecture and laboratory activities tying directly to the proposed problem.Following the submission of student design work, and demonstration of their mechatronicdevices, student learning outcomes were assessed both indirectly and directly. Indirectassessment implied both the course content and collaborative design project contributed tostudent learning. Direct assessment of student designs showed improvement from previoussemesters.IntroductionLawrence Technological University (Lawrence Tech) is engaged in a seven-year process toincorporate active and collaborative learning (ACL) and
Technological University (LTU) forsenior level undergraduate and graduate students. The course entitled “ Bio-inspired robotics” andwas offered as a tech-elective course for our undergraduate students in mechanical engineeringdepartment and robotics engineering. The course focused on legged locomotion in nature and itsdevelopment to robotics engineering. The theme of the course was project-based and we had twogroups of six students. For each team, the project was to design, build and control a bio-inspiredlegged robot (a legged robot that is inspired from nature). One group chose hexapod cockroachinspired robot (also known as Rhex) and another group chose Kangaroo-inspired robot. The classactivities and the homework assignments were centered towards
Conference and has served as symposium and session chairs for many ASME International Design Engineering Technical Conferences. He is the general Conference Co-Chair for the 2016 ASME International Design Engineering Technical Conferences (IDETC/CIE). Dr. Purwar is also the department’s representative to the NY state-funded Strategic Partnership for In- dustrial Resurgence (SPIR) program. As the SPIR representative, he identifies and coordinates projects between the department and Long Island based industries. SPIR projects include joint proposals for fed- eral funding, manufacturing and quality assurance improvements, research and development, and testing and evaluation. He won a SUNY Research Foundation Technology
sustainability b. Evaluate a product/ engineering system’s environmental impacts using Life Cycle Assessment c. Design/ redesign a product/ engineering system to using the engineering principles to improve environmental impactsThe achievement of these goals was assessed through students’ self-evaluations and analysis ofstudents’ coursework. In addition, the objectives are also planned to be assessed throughstudents’ capstone senior projects. But at the time of creation of this work-in-progress paper, thestudents who took this course have not worked on their senior project yet, as a result, this part ofthe assessment is planned to be conducted once the students worked on their senior projects. Toextend and complete this work-in-progress, it
decade will require STEM skills. Yet only a quarter of womenare currently represented in these fields.While at the 2015 Frontiers of Engineering Education Symposium (FEES) at the NationalBeckman Center in Irvine, CA, the authors came to understand the differences in thinking anddoing things for middle and high school age students, where males tend to dominate femaleswhen working collaboratively on projects and how this reinforces preconceived negativestereotypes. The authors have combined the USDC employment predictions in science,technology and engineering with the FEES calls by integrating research-based high-impactpractices into a novel two-week long Increasing Diversity in Engineering and Labor-force(IDEAL) summer outreach workshop designed
groups and providing learning opportunities to those whomay otherwise be overlooked.Although we have been working toward these goals for some time, our department has beenparticularly active in these endeavors over the last year. We are currently participating in aNational Science Foundation funded program titled Transforming Engineering Culture toAdvance Inclusion and Diversity (TECAID), to implement and investigate culturaltransformation projects in mechanical engineering departments. We believe our faculty, staff,and students can benefit from increased awareness of and empathy for others, and we believethat participating in this program will help us achieve our desired atmosphere of inclusion. In thispaper, we will present our efforts in
Page 26.518.1 c American Society for Engineering Education, 2015 Development of a Ball-and-Plate SystemAbstractThis paper presents the development of a dynamic ball-and-plate system successfully completedfor a one-semester Senior Capstone Design project. A group of five undergraduate studentsdeveloped the project concept and constructed a prototype within a semester, integrating majormechatronics engineering concepts learned in classes. The three-degree-of-freedom systemconsists of sensors, actuators, and controls to keep a free rolling ball in a desired position on aflat plate, accounting for any possible external disturbances. Due to its complexity, multiple stepswere taken to solve the
Dynamics Research on Undergraduate EducationAbstract The obtaining of an undergraduate degree concludes a successful student universitycareer. For many pursuing an undergraduate degree in Mechanical Engineering, the process canbe tedious and difficult. Much like an engineering design, an engineering education requiresspecific tools to see the problem from design to production. For many, the desired solution toproducing the degree is supplemented only by an introductory design class, a few hands onlaboratories that provide an introduction to a few key basic concepts, and a capstone course thatrequires the implementation of the acquired knowledge in a final design project intending tomimic the design process
and the best senior project supervisor in 2003-2004 academic year. He has served as a consultant in three companies in the field of air conditioning and hydraulic power plants.Karla C. Lewis Ph.D., SERVE Center at UNCG Dr. Karla C. Lewis has been with SERVE Center for over fourteen years and served as a Project Director with SERVE’s Regional Educational Laboratory Southeast (2006 – 2011). In this role, she supervised the work of the SERVE Center State Liaisons (senior staff assigned to each southeast state) and worked collaboratively with them to understand and respond to state educational agency (SEA) needs. Currently, her work focuses on evaluations of Early College High School projects, student support services, and
components.Mechatronics is a newer branch of mechanical engineering that is a synergistic combination ofmechanical, electrical, electronics, computer science, control techniques, and informationsystems. Integrating mechatronics content in mechanical engineering curriculum has been achallenge since it has been viewed as a significant deviation from traditional courses. In the past,pedagogical approaches like semester-long, project-based classes, or linking mechatronics toother engineering disciplines, have been used to integrate mechatronics into the mechanicalengineering curriculum, with varying results. Furthermore, teaching an interdisciplinary class ofthis nature within a semester is a difficult pedagogical endeavor. To overcome these issues, thetopics and
Paper ID #13681Instructional Setting on Student Learning Effectiveness Using Flipped Class-room in an Engineering LaboratoryProf. Tzu-Liang Bill Tseng, University of Texas, El Paso Dr. Tseng is a Professor and Chair of Industrial, Manufacturing and Systems Engineering at UTEP. His research focuses on the computational intelligence, data mining, bio- informatics and advanced manu- facturing. Dr. Tseng published in many refereed journals such as IEEE Transactions, IIE Transaction, Journal of Manufacturing Systems and others. He has been serving as a principle investigator of many research projects, funded by NSF, NASA, DoEd
variety ofaesthetic issues in the form of practical and creative assignments. The course consists oflectures on photography skills, fluid physics, visualization techniques, critique sessions, and aguest lecture. Assignments consist of images paired with written technical reports, and self-reflection sessions to learn "effective communication" skills. Other course objectives evaluatedthrough students’ assignments and projects are "creative thinking" and "integrative thinking".Some samples of student works are presented. This course proved to be very successful inattracting all students (male and female) in both engineering and non-engineering majors.IntroductionThere has been a great interest in bridging the science and art in recent. Three
interests in- clude innovative teaching and learning strategies, use of emerging technologies, and mobile teaching and learning strategies.Dr. Donald Plumlee P.E., Boise State University Dr. Plumlee is certified as a Professional Engineer in the state of Idaho. He has spent the last ten years es- tablishing the Ceramic MEMS laboratory at Boise State University. Dr. Plumlee is involved in numerous projects developing micro-electro-mechanical devices in LTCC including an Ion Mobility Spectrometer and microfluidic/chemical micro-propulsion devices funded by NASA. Prior to arriving at Boise State University, Dr. Plumlee worked for Lockheed Martin Astronautics as a Mechanical Designer on struc- tural airframe components
environments: Individual differences in learning while mobile. Journal of Educational Multimedia and Hypermedia, 17(4), 511-530. Page 26.1641.11 10. McNair, L., Paretti, M., Knott, M., & Wolfe, M.L. (2006, October 28-31). Work in progress: Using e- portfolio to define, teach, and assess ABET professional skills. Paper presented at the 36th ASEE/IEEE Frontiers in Education Conference, San Diego, CA. 11. Eynon, B., Gambino, L.M., & Torok, J. (2014). What difference can ePortfolio make? A field report from the connect to learning project. International Journal of ePortfolio, 4(1), 95-114. 12. McNair, L
be made more truthful and productive. He is the leader of the NSF funded project KredibleNet, whose goal is to set the agenda for computational social science analysis of authorship, leadership, trust and credibility in knowledge markets. He has published papers and developed software that aim to make this into a reality. Among the tools he has created are: KredibleNet: kredible.net Visible Effort: veffort.us Alterpode: alterpode.net Visible Past: visiblepast.net Ubimark: ubimark.com/inDr. Esteban Garcia Page 26.127.1 c American Society for Engineering Education, 2015
has studied the effects of occupational exposures such as vibration on the lumbar spine and low back disorders. She is involved in the development of medical devices used in physical therapy, obstetrics, and internal medicine.Dr. Lorin P Maletsky, The University of Kansas Dr. Lorin Maletsky joined the Mechanical Engineering faculty at the University of Kansas in 2000. He has created and taught a project, team-based freshmen course in Mechanical Engineering as well as helped to develop different academic support programs across the school including Undergraduate Teaching Fellows to support active learning in the classroom, small-group tutoring in courses, and the Practice Exams.Dr. Lin Liu, University of Kansas
chapter and research papers on machining of composites. He has a diverse industrial experience for 27 years, in design, research and manufacturing of electro me- chanical systems, such as design of various types of gear and gear boxes, antennas and light and heavy fabricated structures, for communication, TV telecast, natural disasters management and Telemedicine application. Dr PS, designed and manufactured various types of antenna’s weighing from 200 pounds to 100,000 pounds. He was also actively involved in configuring the antenna controls and selection of motor and motor controllers. Dr PS, has advised more than 40 senior/capstone projects. One of his project won the national award from Airforce Research Laboratory
Vladimir Arutyunov2 1 Mechanical Engineering Department, San Diego State University 2 Mechancial Engineering Department, California State University NorthridgeAbstractSenior design projects are essential capstone experiences to Mechanical Engineering studentsthat allow them to integrate and apply the knowledge they attained in all of their prerequisitecourses. Generally, senior students are required to engineer a system that can be purelymechanical or interdisciplinary such as a biomedical, automotive, or aerospace system.Traditionally, Mechanical Engineering curricula focus on the specifics of each component orsubsystem with no regard, or at best little regard, to the overall system