Multidisciplinary Engineering Student ProjectsAbstractThe role of the engineer in today’s world is changing and expanding. Buildings and roads arebecoming “smart”, construction equipment communicates with satellites thousands of milesaway while moving soil, surveyors now use lasers instead of tape measures, and the list goes on.The line between engineering disciplines still exists, but is growing faint and less defined. TheCivil, Mechanical, and Electrical Engineering programs are attempting to find ways to bring thedisciplines together on student projects. Part of the challenge of cross disciplinary projects isovercoming the fear of the lack of understanding of what other engineers actually do. Bybringing students from multiple disciplines together on a
major with biomedical and applied mathematics minors. She is involved with American Society of Mechanical Engineers and Society of Women Engineers. She is also a member of the varsity swim team and a lifeguard on campus. She was the female freshman recipient of the 2010 DeBow Freed Award for Outstanding Leadership at ONU for excellence in academics, athletics, and leadership in various organizations and projects. Her career goals include obtaining a job in research and development or project management in the field of biomedical engineering to help bridge the gap between scientific discovery and public availability
Pedagogical research in computer science curriculum for undergraduate students.Mr. Nabil A Yousif, Fort Valley State University Mr. Yousif is an assistant professor in the Mathematic and Computer Science Depadtment, at Fort Valley State University. His interest includes System Business Application Software design and database design. Page 22.570.1 c American Society for Engineering Education, 2011 Engaging Computer Science Students in Electro-Mechanical Engineering ProjectsAbstractThis paper describes two engineering projects that were implemented in a capstone
years of active duty Air Force service, Dr. Colombi led command and control systems integration projects, systems engineering for the Air Force E-3 aircraft program office, researched biometric systems security at the National Security Agency and managed/ researched communications networking in the Air Force Research Laboratory.Richard G Cobb, Air Force Institute of Technology Page 22.7.1 c American Society for Engineering Education, 2011 Fostering Systems Engineering Education Through Interdisciplinary Programs and Graduate Capstone ProjectsAbstract The
AC 2011-2444: A MULTIDISCIPLINARY SENIOR DESIGN PROJECT -REDSIGNED TO INCREASE INTERDISCIPLINARY INTERACTIONSteven G Northrup, Western New England College Steven G. Northrup is an Associate Professor of Electrical and Computer Engineering at Western New England College in Springfield, MA. His research interests are: systems engineering and control systems in alternative energy power production, embedded control systems, humanoid and mobile robotics, and pedagogy of multidisciplinary teamwork. He has worked on alternative energy systems in Guatemala and the US and worked in automotive electronics design for several years
AC 2011-183: TEACHING ENGINEERING ANALYSIS THROUGH A STAND-ALONE JUNIOR PROJECT COURSE IN A MULTIDISCIPLINARY, PROJECT-BASED ENGINEERING PROGRAMPavlos George Mikellides, Arizona State UniversityChen-Yuan Kuo, Arizona State University, Polytechnic campus Page 22.1389.1 c American Society for Engineering Education, 2011 Teaching Engineering Analysis Through a Stand-Alone Junior Project Course in a Multidisciplinary, Project-Based Engineering Program Abstract Project-based learning (PBL) follows an inductive learning approach by which students are taughtto undertake a
StateUniversity found that minorities, in particular, increased their laboratory performance in a hybridenvironment. Perhaps the most compelling argument can be made by Landers7 in his doctoralthesis where a large number and variations of hybrid courses were analyzed. He states (p. 61):“it appears that online instruction is more effective than traditional instruction when seekingknowledge and problem solving gains”. In creating a hybrid Senior Design offering, facultymembers would have more opportunities to make connections with the on-line material and theteam project.Many of the present lecture topics apply directly to the design and construction of an object orstructure and dissemination of knowledge (lists and facts). The teams that work on projects
, Ph.D. is an Assistant Professor of Software Engineering in the School of Graduate and Professional Studies at The Pennsylvania State University. Prior to entering academia she worked in industry and government as a software and electronics engineer. Her research interests include problem solving in software and systems design, team learning, and project management. Page 22.838.1 c American Society for Engineering Education, 2011 Improving Team Learning in Systems DesignAbstractA detailed statistical experiment to study the effect of the cognitive collaborative model (CCM
activities such as collection and analysis of data and publications as part of the National Science Foundation’s Science Partnerships Program as well as in the implementation of capstone projects at the Center for Innovation in Engineering and Science Educa- tion (CIESE). Prior to joining CIESE he was a practicing chemical engineer on water treatments, envi- ronmental management systems and quality assurance. Chris received a BE in in Chemical Engineering from University of Guayaquil, an Environmental Technology Certificate from the Swedish International Development Agency, and a ME in Engineering Management from Stevens Institute of Technology. He’s currently pursuing a PhD in Financial Engineering at Stevens.Alice F
response theory methodology.Mary Lynn Brannon, Pennsylvania State University, University Park Mary Lynn Brannon, Instructional Support Specialist at the Leonhard Center for the Enhancement of Engineering Education at the Pennsylvania State University, has a Master of Arts Degree in Education and Human Development specializing in Educational Technology Leadership. Her work focuses on projects that measure and assess student perceptions of learning related to their experiences with engineering course innovations. She is a faculty development consultant with previous experience in instructional design and instructor of the Graduate Assistant Seminar for engineering teaching assistants.Elizabeth C. Kisenwether, Pennsylvania
Engineering from the University of Stuttgart, Germany in 1995.Peter L. Russell, Stevens Institute of Technology Peter Russell is an Industry Assistant Professor of Engineering and Science at Stevens Institute of Tech- nology. He earned a BFA, BARCH from the Rhode Island School of Design. Mr. Russell has extensive experience in the architectural profession. As an Assistant Professor, Mr. Russell is managing interdisci- plinary projects for both The Department of Energy and The Department of Defense. Page 22.1278.1 c American Society for Engineering Education, 2011 SE CAPSTONE
AC 2011-1211: SE CAPSTONE: INTEGRATING SYSTEMS ENGINEER-ING FUNDAMENTALS TO ENGINEERING CAPSTONE PROJECTS: EX-PERIENTIAL AND ACTIVESteven Corns, Missouri University of Science and TechnolotyCihan H. Dagli, Missouri University of Science & Technology Cihan Dagli is a Professor of Engineering Management and Systems Engineering, and Affiliated Profes- sor of Electrical and Computer Engineering at the Missouri University of Science and Technology. He received BS and MS degrees in Industrial Engineering from the Middle East Technical University and a Ph.D. in Applied Operations Research in Large Scale Systems Design and Operation from the University of Birmingham, United Kingdom, where from 1976 to 1979 he was a British
- Introducing Multidisciplinary Capstone Design to the United States Coast Guard AcademyThe United States Coast Guard Academy (USCGA) is one of five Service Academies educatingand training generations of Military Officers. USCGA offers eight majors including fourengineering majors- Civil, Electrical and Computer, Mechanical and Naval Architectural andMarine Engineering. Each major has traditionally taught its own capstone design course, whichranged from a one-semester paper project to a two-semester project with a functional prototype.Multidisciplinary projects have been rare and collaboration on projects has usually been limitedto having cadets from other majors working as part of design teams, but usually being enrolled ina separate
Communications and IEEE Surveys and chaired sessions in many international conferences andworkshops. He has also served as a Guest Editor for several special issues of IEEE Network, IEEECommunications Magazine, and ACM MONET. He was nominated for 2006 GWEC’s Global WirelessEducator of the Year Award, as well as 2007 ASEE Midwest Section Dean’s Award for Outstanding Ser-vice. He has currently undertaken another book-writing project titled ”Mobile Multimedia Internet”, forpublication by Wiley Interscience.Dr. Mohan holds a Ph.D. degree in Electrical and Computer Engineering from McMaster University,Canada, a Master’s degree in Electrical Engineering and Computer Science from the India Institute ofTechnology in Kanpur, India, and a Bachelor’s degree in
of Electrical, Computer, Software and System Engineering at Embry-Riddle Aeronautical University. His teaching interests include artificial intelligence, autonomous systems, and software engineering with emphasis on software quality assurance and testing. He has been involved in research activities in the areas of software engineering, software quality assurance and testing, autonomous systems, and human factors.Jayson F Clifford Jayson Clifford is a Research Associate at Embry-Riddle Aeronautical University. He has worked on a number of projects involving the development of unmanned vehicle systems and software processes for small teams.Michael P Dop, Embry-Riddle Aeronautical University Michael Dop is a
AC 2011-975: ENGINEERING FOR AMERICAN COMMUNITIES: EN-GAGING ENGINEERING STUDENTS IN MULTIDISCIPLINARY ALTRU-ISTIC ENGINEERING DESIGN PROJECTSMalinda S Zarske, University of Colorado, Boulder MALINDA SCHAEFER ZARSKE is a doctoral candidate at the University of Colorado Boulder in engi- neering education. Her research interests include engineering student learning, diversity and recruitment. Her current research is centered on the impacts of project-based service-learning on student identity, recruitment, and retention in engineering. She is a Co-Director of the Engineering for American Commu- nities student organization, on the development team as well as a content editor for the TeachEngineer- ing.org digital
AC 2011-1983: EVOLUTION AND ASSESSMENT OF AN INDUSTRY/ACADEMICPARTNERSHIP TO ENABLE MULTIDISCIPLINARY, PROJECT-BASEDLEARNINGLily Hsu Laiho, California Polytechnic State UniversityKristen O’Halloran Cardinal, Cal Poly, SLO Page 22.656.1 c American Society for Engineering Education, 2011 EVOLUTION AND ASSESSMENT OF AN INDUSTRY/ACADEMIC PARTNERSHIP TO ENABLE MULTIDISCIPLINARY, PROJECT-BASED LEARNINGAbstract The MEDITEC program is a multidisciplinary industry and academic partnership at ouruniversity that provides the forum and mechanism to enhance biomedical research and designthrough
AC 2011-553: EXPERIENCE TEACHING A MULTIDISCIPLINARY PROJECT-BASED ROBOTICS COURSE BUILDING AUTONOMOUS MOBILE ROBOTSWayne W. Walter, PhD, P.E. , Rochester Institute of Technology (KGCOE) Wayne Walter is a Professor of Mechanical Engineering at the Rochester Institute of Technology (RIT). He received his BS in Marine Engineering from SUNY Maritime College, his MS in Mechanical En- gineering from Clarkson University, and his Ph.D. in Mechanics from Rensselaer Polytechnic Institute. Dr. Walter has worked for the U.S. Army, Rochester Products and Delco Products Divisions of General Motors, and Xerox, and is a registered professional engineer (P.E.) in New York State. He has thirty five years experience teaching design
AC 2011-783: IMPLEMENTATION OF AN INTEGRATED PROJECT-BASEDAPPROACH WITHIN AN ESTABLISHED AND EAC-OF -ABET ACCRED-ITED INTERDISCIPLINARY ELECTROMECHANICAL/BIOMEDICALENGINEERING PROGRAMSalah Badjou, Wentworth Institute of Technology Professor SALAH BADJOU, Ph.D. Wentworth Institute of Technology Electronics and Mechanical En- gineering Department Boston, MA 02115 USA Email: badjous@wit.edu Telephone: 617 989 4113. Salah Badjou received a B.S. in physics and mathematics and a M.S.in physics from Syracuse University, Syracuse, NY, and a Ph.D. in solid-state physics from Northeastern University, Boston, MA. He has a combined multidisciplinary experience of more than 25 years university teaching, research, and industry
populations to identify a pressing problem, designed a technology to solve thatcommunity-based problem, implemented a solution, and evaluated that solution. Studentsworked on projects with real-world impact and gained valuable experience withmultidisciplinary design and multidisciplinary team work. Both sides gained greater appreciationof the difficulties faced by their peers – that fieldwork and software development are both oftenunpredictable and challenging. Part of the course goal was to provide students with difficultenough collaborations that they would be introduced to the complexity of the workplace, anelement of instruction that is often difficult to achieve. In this paper we describe the class format,sample projects, and course outcomes
AC 2011-531: THE MONTANA MULE: A CASE STUDY IN INTERDISCI-PLINARY CAPSTONE DESIGNBrock J. LaMeres, Montana State University Dr. Brock J. LaMeres is an Assistant Professor in the electrical and computer engineering department at Montana State University (MSU). LaMeres teaches and conducts research in the area of digital systems and engineering education. LaMeres is currently studying the effectiveness of online delivery of engi- neering education including the impact of remote laboratory experiences. LaMeres is also studying the pedagogical impact of interdisciplinary capstone projects compared to traditional discipline-specific de- sign projects. LaMeres’ research group is also studying the effective hardware
Engineering Capstone CourseAbstract:This paper presents the opportunities provided by EcoCAR: The NeXt Challenge in supporting acapstone design course in computer and software engineering. Students participating in thecourse were responsible for implementing a sub-system of a plug-in hybrid electric vehicle.Being a sponsored competition organized by the Department of Energy, the project providedmany unique learning opportunities for students in the course and those that they interacted withfrom other disciplines. This paper will discuss both the benefits of utilizing such a competitionfor a senior capstone design course as well as some of the challenges faced. The paper concludeswith some recommendations for those considering such a project as a
. Page 22.1031.1 c American Society for Engineering Education, 2011Making a College-Level Multidisciplinary Design Program Effective and Understanding the Outcomes Page 22.1031.2abstractThe University of Michigan’s College of Engineering (CoE) has committed to a significantMultidisciplinary Design (MD) Program complementing the bachelor degree programs. Thisenables students from across degree programs and even outside of the CoE to collaborate onprojects. This is currently being done by flexibly addressing instructional and practicum needsthrough a series of short seminars, semester and multi-semester long project work, and a minor.Participation by
; hydropower; fuel cells;biofuels; geothermal; and ocean, wave, and tidal energy. In all of the topics, the class coversenough of the engineering fundamentals to allow for mini-design projects in each technology.The classroom periods use an active learning methodology. The classes are structured such thatthe students work together in multi-disciplinary teams where each student is able to bring theexpertise of their major to understanding the technology. For example, the background ofmechanical engineers combined with electrical engineers will allow a team to begin to grasp thebasic fundamentals of fluid flow and power generation needed to understand how a hydropowerplant operates.A significant assignment in the class is a community-based service
director of Architectural Engineering Program at Illinois Institute of Technology (IIT). He was re- sponsible for developing the current architectural engineering undergraduate and master’s programs at the Illinois Institute of Technology (IIT). During his stay at IIT, he taught fundamental engineering courses, such as thermodynamics and heat transfer, as well as design courses, such as HVAC, energy, plumbing, fire protection and lighting. Also, he supervise many courses in the frame of interprofessional projects program (IPRO). In few months, Dr. Megri will defend his ”Habilitation” (HDR) degree at Pierre and Marie Curie Univer- sity - Paris VI, Sorbonne Universities
AC 2011-1827: ASSESSING TEAMWORK AND BEST EDUCATIONALPRACTICES IN DIVERSE MULTIDISCIPLINARY PROGRAMSScott P. Schaffer, Purdue University Scott P. Schaffer is an associate professor in the Learning Design and Technology program at Purdue University where he teaches courses related to design, assessment & evaluation, and learning theory. His research focuses on team learning and the design of informal learning spaces.Margaret Huyck, Illinois Institute of Technology Professor Emeritus; Principle Investigator on NSF project involving four universities engaged in develop- ing measures for teamwork and ethical awareness, and identifying best educational practices for develop- ing those competencies among undergraduate
crucial to provide advanced trainingto America’s future workforce [1-3]. In keeping with industry demands and the Wentworthtradition, hands-on nanotechnology laboratory experience is a central component of Wentworth’semerging nanotechnology and engineering course offerings. The impact on undergraduatescience and technology education is significant, and the project is generating new researchopportunities for undergraduate students. The nanotechnology laboratory allows students todevelop nanotechnology-related knowledge and skills through their coursework that can later beapplied to further research, improve design projects, and create solutions to improve the overallquality of life. The laboratory is used not only by undergraduate students, but
Nanotechnology ProgramsAbstractA new Bachelor of Science Nanotechnology track within the School of Engineering andTechnology at Indiana University Purdue University Indianapolis (IUPUI) is being developedunder NSF NUE program*. This paper covers the educational elements from the first phase ofthe project. A sequence of two courses was offered in the fall and spring semesters within boththe School of Engineering & Technology and the School of Sciences. Students from electricalengineering, computer engineering, mechanical engineering, biomedical engineering, physics,and chemistry disciplines, were enrolled in these courses. A total of five faculty members fromboth engineering and sciences collaborated in developing and teaching these two
and applied mechanics from the University of South Carolina and the University of Illinois at Urbana-Champaign, respectively. His areas of research interest include engineering mechanics applications.Jon-Michael Hardin, Virginia Military Institute Page 22.73.1 c American Society for Engineering Education, 2011 A Multidisciplinary Investigation into Various Possible Geometries Of Imperial Roman Artillery: A Case StudyIntroductionMultidisciplinary projects provide unique opportunities to foster critical thinking inundergraduate engineering students and to help students develop an
seminar.Students awarded SEECS scholarships are required to attend a seminar where specificdevelopment and learning outcomes are realized in a team-based, project-based approach. Thechallenging and engaging aspect of the SEECS program is a zero-credit seminar. The SEECSseminar encompasses three components: engineering design, professional development, andpersonal development. Through workshops, university support services, lectures, and invitedspeakers, the facets of professional and personal development are addressed. Each academiclevel, that is seniors, juniors, sophomores and freshmen, has different professional and personaldevelopment objectives realized each semester.While the two development facets follow more typical seminar activities, the