AC 2008-267: DOES CLASS SIZE MATTER? REFLECTIONS ON TEACHINGENGINEERING ECONOMY TO SMALL AND LARGE CLASSESJoseph Hartman, University of Florida Joseph Hartman received his PhD in Industrial and Systems Engineering from Georgia Tech in 1996. He has served as Director of the Engineering Economy Division of ASEE and is currently Editor of The Engineering Economist. Page 13.449.1© American Society for Engineering Education, 2008 Does Class Size Matter? Reflections on Teaching Engineering Economy to Small and Large ClassesAbstractHaving recently transitioned from a small, private university
AC 2008-2182: DECISION-MAKING IN THE DESIGN-BUILD PROCESS AMONGFIRST-YEAR ENGINEERING STUDENTSPhil Schlosser, Ohio State University Dr. Schlosser currently teaches courses in the First-Year Engineering Program at The Ohio State University. He earned the B.Sc. degree in Engineering Physics with a minor in Electrical Engineering and M.Sc. and Ph.D. degrees in Nuclear Engineering, all from Ohio State University. Prior to joining the faculty of the First-Year Engineering Program, Dr. Schlosser was a professor of Nuclear and Mechanical Engineering at The Ohio State University. Dr. Schlosser has received a number of U.S. and foreign patents for various electronic devices and systems. In
AC 2008-114: COOPERATIVE METHODOLOGY FOR SUCCESSFULINTEGRATION OF UNDERGRADUATE AND GRADUATE RESEARCHPROJECTSJames Klein, University of Idaho James M. Klein received the B.S. degree in electrical engineering from Oklahoma Christian University in 2005. He is currently working towards his M.S. degree in electrical engineering at the University of Idaho. His research interests include power electronics, energy storage, and electric drives.Herbert Hess, University of Idaho Herbert L. Hess (S'89-M'92-SM'02) received the Ph.D. degree in electrical engineering from the University of Wisconsin, Madison, in 1993. He is currently a Professor in the Department of Electrical and Computer Engineering
AC 2008-1800: BUILDING ENGINEERING LITERATE NON-ENGINEERSDeborah Mechtel, U.S. Naval AcademyAndrew McCue, U.S. Naval AcademyKeith Kintzley, U.S. Naval AcademyRobert Voigt, U.S. Naval Academy Page 13.266.1© American Society for Engineering Education, 2008 Building Engineering Literate Non-EngineersAbstractAll students at the United States Naval Academy, regardless of major, must take twoelectrical engineering courses. The course topics include circuit theory, motors,generators, three-phase power distribution systems, communication systems, digital logic,and computer networks. These courses are taught to more than 600 non-engineeringstudents each year. A different
navigateunmarked, paved pathways on a suburban college campus and reach GPS waypoints.Robots must avoid obstacles and robots are also awarded points for interacting andentertaining spectators. A successful robot platform constructed for less than $300 andcontrolled by a laptop running MATLAB software was developed by undergraduatestudents. The contest, offered annually, was first offered in 2005 and is open to studentsat all levels of education (K-12 and college) and beyond. This contest can be used tosuccessfully introduce computer vision and other robot technologies into theundergraduate curriculum.1. IntroductionAn outdoor robot design contest, called the Mini Grand Challenge, was developed at thePenn State Abington campus to promote advances in robot
AC 2008-765: INTRODUCING ETHICS IN BIOENGINEERINGGeorge Catalano, State University of New York-Binghamton Page 13.799.1© American Society for Engineering Education, 2008INTRODUCING ETHICS IN BIOENGINEERING Page 13.799.2IntroductionEngineering applies technical knowledge to solve human problems. More completely,engineering is a technological activity that uses professional imagination, judgment,integrity, and intellectual discipline in the application of science, technology,mathematics, and practical experience to design, produce, and operate useful objects orprocesses that meet the needs and desires of a client. Today engineering is seen as
AC 2008-1483: DAMAGE CONTROL: WHAT TO DO WHEN THINGS DON'TWORKEdward Gehringer, North Carolina State University Page 13.349.1© American Society for Engineering Education, 2008 Damage Control: What to Do When Things Don’t Work Edward F. Gehringer North Carolina State University efg@ncsu.eduAbstractWhat should you do when your software breaks, when your labs don't work out, when your testsare bombed, when your homework has errors? These are questions every instructor has faced.This paper brings together a set of tips from dozens of experienced
AC 2008-1159: ETHICAL THEORY FOR ENGINEERS: AVOIDING CARICATUREAND INFORMING INTUITIONSTravis Rieder, University of South Carolina Page 13.569.1© American Society for Engineering Education, 2008 Ethical Theory for Engineers: Avoiding Caricature and Informing Intuition1A professor of engineering ethics recently commented that she finds it difficult to teachethical theory to engineers, as many students are strongly attracted to an intuitionistmodel of ethics – intuitionist here meaning that the students tend to make ethicaljudgments based largely on how a situation strikes their ‘moral sensibilities.’ One reasonfor this may be that
AC 2008-2364: HARVESTING OF LUNAR IRON: COMPETITIVE HANDS-ONLEARNINGPeter Schubert, Packer Engineering Dr. Schubert conducts research into alternate energy, space-based manufacturing, and engineering education at Packer Engineering in Naperville, IL. He is Senior Director, and has served as PI on projects from DOE, NASA and the GSA. He has published 47 technical papers, has 25 US patents, and is an instructor with the Society of Automotive Engineers. Prior experience includes 21 years in automotive electronics with Delphi Corporation, where he was a Technical Fellow. His doctorate in EE from Purdue was sponsored by a GM Fellowship. His MSEE is from U. of Cincinnati on a Whirlpool
AC 2008-865: UNDERSTANDING STUDENTS’ USE OF INNOVATIVE LEARNINGSTRATEGIESMica Hutchison, Northwestern University Mica A. Hutchison is a CASEE postdoctoral fellow at Northwestern University. She received a B.S. in Chemical Engineering from the University of Idaho in 2002, a Masters in Chemistry from Purdue University in 2006, and a Ph.D. in Engineering Education from Purdue in 2007. Her research interests include engineering and design education and the retention of engineering students. She investigates these areas using self-efficacy theory and the adaptive expertise framework.Ann McKenna, Northwestern University Ann McKenna is the Director of Education Improvement in the Robert R. McCormick
AC 2008-440: MODULAR, ADAPTABLE AND REUSABLE APPROACH TOTHERMAL-FLUIDS: OUTWITTING THE NORMS (MARATHON)Ivana Milanovic, University of Hartford Ivana M. Milanovic is an Associate Professor of Mechanical Engineering in the College of Engineering, Technology, and Architecture at the University of Hartford. She received her Ph.D. in Mechanical Engineering from Polytechnic University, NY and M.S. and B.S. from University of Belgrade in Yugoslavia.Tom Eppes, University of Hartford Tom A. Eppes is an Associate Professor of Electrical and Computer Engineering in the College of Engineering, Technology, and Architecture at the University of Hartford. He holds Bachelor and Master of Science degrees in
AC 2008-951: USING THE EXERGY CONCEPT IN AN INTUITIVE APPROACHTO THE SECOND LAWMichael Swedish, Milwaukee School of Engineering Page 13.1363.1© American Society for Engineering Education, 2008 Using the Exergy Concept in an Intuitive Approach to the Second LawTraditional Approaches to the Second Law In the Mechanical Engineering Program at the Milwaukee School of Engineering allstudents take one full year of engineering thermodynamics. It is clear that most of the students inthe classroom will not pursue a career focused on thermodynamic design specifically. Themotivation for the alternative approach presented in this paper
School of Engineering (MSOE). He received the Ph.D. degree from the University of Missouri in 1990 and has 20 years of experience across the corporate, government, and university sectors. He is a registered Professional Engineer in Wisconsin. He teaches courses in control systems, electronic design, and electromechanics.Steven Reyer, Milwaukee School of Engineering Dr. Reyer is Professor of Electrical Engineering and Computer Science at the Milwaukee School of Engineering (MSOE). He received his Ph.D. degree from Marquette University in 1978. He has done consulting in digital signal processing for the broadcast industry (digital FM radio and HDTV) and power industry. He is a Senior
AC 2008-983: FUNDAMENTALS OF ENGINEERING EXAM GRADUATIONREQUIREMENTKirstie Plantenberg, University of Detroit Mercy Kirstie Plantenberg University of Detroit Mercy plantenk@udmercy.edu Page 13.634.1© American Society for Engineering Education, 2008 Fundamentals of Engineering Exam Graduation RequirementAbstract For many years, the University of Detroit Mercy (UDM) has required all engineeringstudents to take a one credit Fundamentals of Engineering exam (FE exam) review class.Starting in 2005, Civil, Manufacturing and Mechanical engineering students were required totake the actual FE exam. By requiring the students to take the actual
AC 2008-1852: OBJECT CLASSIFICATION USING ROBOTIC MANIPULATORINSTRUMENTED WITH SENSORSNicholas Dadds, USNASvetlana Avramov-Zamurovic, U.S. Department of Defense Page 13.938.1© American Society for Engineering Education, 2008 Object Classification through Tactile Sensing Nicholas A. Dadds and Dr. Svetlana Avramov-Zamurovic United States Naval Academy Department of Weapons & Systems Engineering The goal of this project is to classify objects based on their individual characteristics.This project will span over two semesters in
AC 2008-1487: ENGINEERING AN ELEMENTARY SCHOOL ENVIRONMENT TOENHANCE LEARNINGMarilyn Barger, University of South Florida MARILYN BARGER is the Principle Investigator and Executive Director of FLATE, the Florida Regional Center for Manufacturing Education funded by NSF and housed at Hillsborough Community College in Tampa Florida. She earned a B.A. in Chemistry at Agnes Scott College, and both a B.S. in Engineering Science and a Ph.D. in Civil Engineering (Environmental) from the University of South Florida, where her research focused on membrane separations. She has over 20 years of experience in developing curriculum for engineering and engineering technology for elementary, middle
AC 2008-1339: TEACHING REAL OPERATING SYSTEMS WITH THE LTTNGKERNEL TRACERMathieu Desnoyers, Ecole Polytechnique de Montreal Mathieu Desnoyers is the maintainer of the Linux Trace Toolkit (LTT) project since November 2005, taking over the development with the new LTTNG. He is the author of Linux Trace Toolkit Next Generation (LTTNG) and the main developer of Linux Trace Toolkit Viewer (LTTV) since the project started in 2003. He did an internship at the IBM Research T.J. Watson Research Center in 2006 where he applied tracing in commercial scale-out systems. In 2007, he did an internship at Google, where he integrated ideas from Google ktrace into LTTng to merge themin a single project. He
searchingfor qualified employees. The skills needed by workers in manufacturing have changed as havethe skills needed by its leadership. Indeed, graduate-level education must provide a pool oftechnical professionals with effective management skills and leadership abilities. Recognizingthis, one university NAIT-accredited technology department developed an innovative graduateprogram designed to provide students with a broad base of knowledge and skills needed toeffectively manage and control production in manufacturing environments. The resulting degreeis a Master of Science program with a major in Manufacturing Systems Technology. Thisprogram’s purpose is to produce industrial leaders who 1) make decisions to integrate appropriatetechnologies, 2
the course attracts students from all disciplines within theCollege of Engineering, it is challenging to teach given the variety of backgrounds, specific skillsand knowledge, and perspectives. Analysis of course assessment data and revision to the coursecontent and teaching methods are part of an on-going effort to improve this course. The Green Engineering course has lectures which present background material on the keyenvironmental and energy issues facing society. To differentiate this course from one inenvironmental science, an engineering analysis component is included with the assignment offour mini-projects which are completed by teams of not more than four students. The projectsare: 1) biomass logistics, a project to document
AC 2008-191: THE 21ST CENTURY ENGINEERPatricia Galloway, The Nielsen-Wurster Group, Inc Dr. Patricia D. Galloway is the chief executive officer of The Nielsen-Wurster Group, Inc. and Director of Pegasus Global Holdings, Inc. Dr. Galloway was the first woman to serve as president of the American Society of Civil Engineers (ASCE) in the organization’s 154-year history, her proudest accomplishment by being able to serve as a role model to young women engineers. She was appointed by President Bush in 2006 to the National Science Board for a six-year term. She is a licensed professional engineer in fourteen U.S. states, Canada and Australia, a certified project management
AC 2008-2622: CREATING CLASSROOM LINKS BETWEEN PUBLICADMINISTRATION AND CIVIL ENGINEERING DISCIPLINESPhilip Dunn, University of MaineKenneth Nichols, University of Maine Kenneth Nichols holds a doctorate from Georgetown University. He retired from a career with IRS before changing careers into teaching. He teaches courses in Public Administration at the University of Maine in Orono Page 13.342.1© American Society for Engineering Education, 2008 Creating Classroom Links between Public Administration and Civil Engineering DisciplinesAbstract Professionals from the public
AC 2008-612: MEASURING STUDENT PERCEPTIONS OF CASE-BASEDINSTRUCTION IN AN ENGINEERING COURSEMegan Arnold, Purdue University, West Lafayette Megan Arnold is a graduate student pursuing a Ph.D. in Special Education at Purdue University. She has a bachelor’s degree in psychology and has a background in quantitative research with a specific interest in improving instruction for students with Attention Deficit Hyperactivity Disorder (ADHD) with difficulties in math, as well as in improving undergraduate education for students in the engineering field.Aman Yadav, Purdue University, West Lafayette Aman Yadav, PhD, Assistant Professor. Aman Yadav is a faculty member within the Educational Psychology
AC 2008-2393: THE IMPACT ON ENGINEERING GRADUATE STUDENTS OFTEACHING IN K-12 ENGINEERING PROGRAMSMalinda Zarske, University of Colorado at Boulder MALINDA SCHAEFER ZARSKE is a K-12 engineering coordinator for the Integrated Teaching and Learning Program at the University of Colorado at Boulder. She is the curricula coordinator for the TEAMS Program, on the development team as well as a content editor for the TeachEngineering digital library, and has co-created and co-taught engineering elective courses for both high school and undergraduate students. A former middle and high school math and science teacher, she received her MAT in secondary science from the Johns Hopkins University and her
AC 2008-93: "THINKING OUTSIDE THE BOOK" OR "WHY MY STUDENTSWANT TO BE CALLED BIG DRIPS"Amy Miller, University of Pittsburgh -Johnstown Amy Miller is an Assistant Professor of Mechanical Engineering Technology at the University of Pittsburgh at Johnstown. She earned a M.S. degree from University of Pittsburgh, and a BS in Mechanical Engineering Technology from the University of Pittsburgh at Johnstown. She joined the faculty at UPJ in 1992 after 10 years with a leading manufacturer of railroad freight cars. During her time in industry, she served as a Design Engineer, Manager of Design Engineering, and Manager of Engineering
AC 2008-1611: ACTIVE LEARNING ACROSS THE COMPUTER SCIENCECURRICULUMWilliam Birmingham, Grove City CollegeVincent DiStasi, Grove City College Page 13.144.1© American Society for Engineering Education, 2008 Active Learning Across the CS Curriculum1. IntroductionThe general idea of active learning is to engage students during lecture with a variety of thingsthat actively involve them in the material being presented. Through active engagement, studentsare highly encouraged to focus attention on the lecture. While active learning holds greatpromise, it also raises several important issues: designing materials for lecture that incorporateactive learning while keeping
AC 2008-1691: FRESHMAN PROGRAM TO GERMANY: AN INTRODUCTION TOGERMAN ENGINEERINGIlka Balk, University of Kentucky Ilka Balk, a native of Germany, joined the University of Kentucky, College of Engineering, in 2006 in order to start and establish a German Engineering Program. In the fall of 2007, Ilka took on the added responsibility of Director of Cooperative Education. Ilka has lived and worked in Germany and the United States, and has a Masters in Political Science with minors in History and Communications from the University of Goettingen, Germany.G. Lineberry, University of Kentucky G.T. Lineberry is Associate Dean for Commonwealth and International Programs and Professor of
well as engineering education, with an emphasis on student learning and educational methods.Denise Wilson, University of Washington Denise Michelle Wilson (M’89) was born in Chicago, IL, in 1966. She received the B.S. degree in mechanical engineering from Stanford University,Stanford, CA, in 1988 and the M.S. and Ph.D. degrees in electrical engineering from the Georgia Institute of Technology, Atlanta, in 1989 and 1995, respectively. She is currently an Associate Professor with the Electrical Engineering Department, University of Washington, Seattle, and she was previously with the University of Kentucky, Lexington, in a similar position from 1996 to 1999. She was also with Applied
AC 2008-357: INTERNATIONAL DESIGN COURSE EXPERIENCESPatrick Ferro, Rose-Hulman Institute of Technology Patrick Ferro is an Assistant Professor of Mechanical Engineering at Rose-Hulman Institute of Technology. He has been on the faculty of Rose-Hulman since 2005. He is licensed as a PE in Michigan and Ohio.Naoki Osawa, Kanazawa Institute of Technology Naoki Osawa is an Assistant Professor of Engineering at Kanazawa Institute of Technology. His doctorate degree is in Electrical and Electronics Engineering from KIT. He has been on the faculty of KIT since 2007, following three years of industrial experience at Hitachi, Ltd.Masakatsu Matsuishi, Kanazawa Institute of Technology Masakatsu
AC 2008-132: TEACHING COGAS DESIGN WITH MATHCADEdwin Wiggins, Webb Institute Edwin G. Wiggins holds BS, MS, and Ph.D. degrees in chemical, nuclear, and mechanical engineering respectively from Purdue University. He is the Mandell and Lester Rosenblatt Professor of Marine Engineering at Webb Institute in Glen Cove, NY. Ed is a past chairman of the New York Metropolitan Section of the Society of Naval Architects and Marine Engineers (SNAME) and a past regional vice president of SNAME. A Centennial Medallion and a Distinguished Service Award recognize his service to SNAME. As a representative of SNAME, Ed Wiggins serves on the Board of Directors of the Accreditation Board for Engineering and
a mathematics review class combined with an introduction to spreadsheet analysis.There is nothing much in the first two semesters of the MET program to create excitement infirst-year students, and this presents something of a retention challenge for the program.In order to provide a real-world experience and an enjoyable competition to motivate students,the MET department at Purdue University in Columbus, Indiana partnered with a local company,MotoTron (www.mototron.com), to present the Mechatronics Career Discovery Challenge.Mechatronics combines mechanical, electrical, and software design to produce complexmachines. This particular challenge involves writing the software to program a vehicle tonavigate a course using a global positioning