government to effect change in education and foster economic development.Luis F. Font, Ana G. Mendez University System Luis F. Font has a B.S. in Biological Sciences from University of Puerto Rico; and a M.B.A. in Marketing from Universidad Metropolitana of Puerto Rico. Luis has been working with students for his entire pro- fessional career. In 2005 he started as an Auxiliary Librarian helping and orientating students with their academic work. Later, he became AHORA Program Coordinator at Metropolitan University where he administrated the entire academic organization and execution programs in education, business and com- puter sciences. Luis has worked as Business Administration Professor where he teaches Marketing and
AC 2011-2457: AN INTERESTING APPLICATION OF OPTICAL MEA-SUREMENT TECHNIQUESBijan Sepahpour, The College of New Jersey Bijan Sepahpour is a registered Professional Engineer and Professor of Mechanical Engineering at TCNJ. He is currently serving as the chairman of the ME department. He is actively involved in the generation of design-oriented exercises and development of laboratory apparatus and experiments in the areas of mechanics of materials and dynamics of machinery for undergraduate engineering programs. Professor Sepahpour did his undergraduate studies at TCNJ and has degrees from New Jersey Institute of Technol- ogy (NJIT). He has served as the Chair of ASEE Divisions of Experimentation and Laboratory
teachers for the week to participatein a teaching laboratory. During the week, the teachers are responsible for teaching the modulesto the students in a highly supported environment, surrounded by SENSE IT staff, available toassist with any questions or concerns. The opportunity for teachers to implement the materialswith students enables the teachers to review the materials again, better understand how theymight teach the materials to students in their classes and offer more time for the mentalpreparation required for implementing new classroom activities.As mentioned, the SENSE IT teachers also participate in four school-year professionaldevelopment workshops. The workshop materials involve the development of sensors, evaluationneeds, and STEM
AC 2011-2148: LESSONS LEARNED FROM A DISTANCE LEARNINGRESEARCH METHODS COURSE CO-TAUGHT BY CLEMSON, UNIVER-SITY OF PITTSBURGH, AND VIRGINIA TECHAmy E. Landis, University of PittsburghMelissa M. Bilec, University of Pittsburgh Melissa M. Bilec, an assistant professor in the Swanson School of Engineering’s Department of Civil and Environmental Engineering, studies and teaches engineering issues related to sustainability, green design, and construction. She focuses largely on the practical aspects of sustainable building, from the life-cycle and cost benefit of ”green” materials to lending civic initiatives a greener touch and conducting metrics research to understand and evaluate high-performance green buildings. She
AC 2011-669: SIMPLE ANALYSIS METHOD FOR ASSESSMENT OF PEOSRichard W. Kelnhofer, Milwaukee School of Engineering Dr. Kelnhofer is Program Director of Electrical Engineering Technology and Assistant Professor at Mil- waukee School of Engineering (MSOE). Formerly, he held engineering and managerial positions in the telecommunications industry. He received his Ph.D. in Electrical Engineering from Marquette University in 1997 and is a Professional Engineer registered in the State of Wisconsin. Dr. Kelnhofer teaches courses in communication systems, signal processing, and information and coding theory.Stephen M. Williams, Milwaukee School of Engineering Dr. Stephen Williams is Program Director of Electrical Engineering
AC 2011-776: SUSTAINABLE STORMWATER MANAGEMENT AS ANOPPORTUNITY FOR CAMPUS AND COMMUNITY-BASED ENGINEER-ING EDUCATIONDavid Brandes, Dept of Civil & Environmental Engineering, Lafayette College David Brandes is Associate Professor of Civil & Environmental Engineering at Lafayette College where he teaches courses on fluid mechanics, water resources engineering, hydrology, environmental engineer- ing, and sustainability. His research areas include impacts of suburbanization on streamflow, hydraulics of stormwater outflow structures, water quality assessment, and simulating eagle migration patterns based on fluid flow principles. His work has been funded by grants from the National Science Foundation, the
AC 2011-814: ASSESSING ENGINEERING STUDENT ATTITUDES ABOUTCOGNITION DUE TO PROJECT-BASED CURRICULUMDonald Plumlee, 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 for several aerospace vehicles. He developed and
being mastery, on each of the leadership capabilities as a starting point and identify specificareas to develop (Figure 2). This diagnostic is repeated at the end of the course in the form of a360-degree feedback survey to measure growth overall and in the targeted capabilities. Figure 2, Engineering Leadership CapabilitiesEach capability is introduced in theory and historical context in an Engineering Leadership classenhanced by stories culled from the collective experience of the teaching cadre.Leadership LaboratoriesA Leadership Laboratory supplements each Engineering Leadership class enhancing thecandidates’ experience and mastery of topics introduced in lectures. By engaging in continuedself-assessment, interactive
the colleges of engineering and technology. Several factors were paramount. The first of these was (as always) financial. The two colleges were among the smallest in terms of enrollment and faculty in the University, and merging them offered an opportunity to reduce administrative costs. Secondly, the laboratory facilities in many cases represented duplicates that were underutilized. It did not help that the two schools were situated at opposite ends of the campus. Nevertheless, the prime motivation was to develop a college that would be “…locally prominent and nationally recognized…” in the pedagogy of the technological disciplines, an achievement that was not possible when the faculty and resources in those
preparation programs at our institution. We believe thelevel of mathematical content is high compared to similar programs elsewhere. We are of theopinion that the multidisciplinary nature of our programs (all four elements of STEM) arebeneficial. Preliminary course surveys and measurements of math anxiety and teaching self-efficacy indicate that the integrated STEM teacher candidates do experience substantialimprovements over the course of their curriculum.IntroductionOur institution supports two Science, Technology, Engineering and Mathematics (STEM)teacher preparation programs. One program, referred to as the Math/Science/Technology(MST) program, is an elementary [preK-5] program and was started in 1998. The secondprogram is a secondary 6-12
AC 2011-1781: WRITING EFFECTIVE EVALUATION AND DISSEMINA-TION/DIFFUSION PLANSThomas A. Litzinger, Pennsylvania State University, University Park Dr. Thomas A. Litzinger is Director of the Leonhard Center for the Enhancement of Engineering Edu- cation and a Professor of Mechanical Engineering at Penn State, where he has been on the faculty since 1985. His work in engineering education involves curricular reform, teaching and learning innovations, faculty development, and assessment. He teaches and conducts research in the areas of combustion and thermal sciences. He is an Associate Editor of Advances in Engineering Education and a Fellow of ASEE.Sarah E Zappe, Pennsylvania State University, University Park Dr. Sarah
AC 2011-1903: ASSESSING FIRST-YEAR PROGRAMS: OUTCOMES, METH-ODS, AND FINDINGSMarie C Paretti, Virginia Tech Marie C. Paretti is an associate professor of Engineering Education at Virginia Tech, where she co-directs the Virginia Tech Engineering Communications Center. Her research focuses on communication in en- gineering design, interdisciplinary communication and collaboration, and design education. She was awarded a CAREER grant from NSF to study expert teaching practices in capstone design courses na- tionwide, and is co-PI on several NSF grants to explore gender in engineering, design education, and interdisciplinary collaboration in engineering design.Kelly J Cross, Virginia Tech University
AC 2011-1268: MOTIVATING DESIGN AND ANALYSIS SKILLS ACQUI-SITION WITH THE INFUSION OF ADAPTED PHYSICAL ACTIVITYPROJECTS THROUGHOUT A MECHANICAL ENGINEERING CURRICU-LUMJames M Widmann, California Polytechnic State University Jim Widmann is a Professor of Mechanical Engineering at California Polytechnic State University, San Luis Obispo and currently the Chair and the ASEE-DEED Division. He received his Ph.D. in 1994 from Stanford University. He teaches mechanics and design courses and conducts research in the areas of design optimization, machine design, fluid power control and engineering education.Brian P. Self, California Polytechnic State University Brian Self is a Professor in the Mechanical Engineering
Department Head of the Department of Engi- neering Education at Virginia Tech. He is the Director of the Multi-University NSF I/UCRC Center for e-Design, the Director of the Frith Freshman Design Laboratory and the Co-Director of the Engineering First-year Program. His research areas are design and design education. Dr. Goff has won numerous University teaching awards for his innovative and interactive teaching. He is passionately committed to bringing research and industry projects into the class room as well as spreading fun and creating engage- ment in all levels of Engineering Education. Page 22.904.1
-Resistant Anti-Corrosion Coatings for Steels. Dr. Beuth’s initiatives in education have included the integration of computer-aided engineering projects throughout the CMU ME undergraduate curriculum. His latest research is in collaboration with the CMU Human-Computer Inter- action Institute, developing software agent-monitored collaborative projects for undergraduate courses. Dr. Beuth was a recipient of the 1998 Ralph R. Teetor Educational Award. In 2000, he was awarded George Tallman and Florence Barrett Ladd Development Professorship in Mechanical Engineering. In 2005 Dr. Beuth was co-recipient of the ASME Curriculum Innovation Award. In 2009 Dr. Beuth received the Benjamin Richard Teare Teaching Award from the
AC 2011-503: BRINGING A TECHNOLOGY ENTREPRENEURSHIP CUR-RICULUM ONLINE AT THE UNIVERSITY OF MARYLANDJames V. Green, University of Maryland, College Park Dr. James V. Green leads the education activities of Mtech at the University of Maryland as the Di- rector of Entrepreneurship Education with responsibilities for the Hinman CEOs Program, the Hillman Entrepreneurs Program, and the Entrepreneurship and Innovation Program. As a Senior Lecturer and Associate Director with Mtech, Dr. Green designs and teaches undergraduate and graduate courses in entrepreneurship and technology commercialization. He leads Mtech’s international entrepreneurship education initiatives to include establishing and managing partnerships. Dr
understanding.3. FE Learning Module DesignThe four FE learning modules presented in this paper were designed and developed using apedagogical basis. The modules are based on an experimental learning approach. We will firstprovide an overview on experimental learning and then discussed various experimental learningmodels. Finally, the Kolb cycle, which is used to design each FE learning module, will bediscussed.3.1 Experiential Learning OverviewIn the early ages of teaching, psychologists and educators noticed the importance of experientiallearning in the learning process. Aristotle stated that in the prehistoric ages the use of the„language of knowledge‟ was not an indication that early humans possess that knowledge. Laterin modern time, John Dewey
their analysis, and although engineering students generally havecourses on experimentation, such courses are rarely combined with any significant theoreticalmodeling activities.1.2 A Low-Cost Joint Design Project1.2.1 Course StructureIn order to address the disconnect between theory and real systems that often occurs inengineering education, we developed a low-cost design project, administered jointly between atheory-focused course on heat transfer (ME450) and an experimental laboratory course inthermo-fluid systems (ME495). Note that the heat transfer course has been renumbered since theprevious implementation of the design project, when the number was ME350. The ME450course is focused on the physics of heat transfer, calculating and
AC 2011-2522: INTEGRATING ADAPTED PHYSICAL ACTIVITY PROJECTSINTO A COMPUTER ENGINEERING CAPSTONE CLASSLynne A Slivovsky, California Polytechnic State University Lynne A. Slivovsky, Associate Professor of Electrical and Computer Engineering (Ph.D., Purdue Uni- versity, 2001), has led service-learning initiatives both within the College of Engineering and across the university at California Polytechnic State University, San Luis Obispo. In 2003 she received the Frontiers In Education New Faculty Fellow Award. Her work in service-learning led to her selection in 2007 as a California Campus Compact-Carnegie Foundation for the Advancement of Teaching Faculty Fellow for Service-Learning for Political Engagement. She
AC 2011-1725: THE OUTCOMES OF AN INTERDISCIPLINARY UNDER-GRADUATE COURSE INVOLVING ENGINEERING, SCIENCE AND ARTSYunfeng Wang, The College of New Jersey Associate Professor of Mechanical Engineering at The College of New JerseyChristopher Ault, The College of New JerseyTeresa Marrin Nakra, The College of New Jersey Teresa Marrin Nakra is Associate Professor of Music at The College of New Jersey, where she teaches courses in Music Technology, Music Theory, and Interactive Multimedia. She runs Immersion Music Inc., a non-profit organization that provides technical solutions for performing arts organizations, museums, and schools. Her interactive conducting experiences have been showcased in public venues across the
AC 2011-836: SMARTER TEAMWORK: SYSTEM FOR MANAGEMENT,ASSESSMENT, RESEARCH, TRAINING, EDUCATION, AND REMEDIA-TION FOR TEAMWORKMatthew W. Ohland, Purdue University, West Lafayette Matthew W. Ohland is Associate Professor of Engineering Education at Purdue University. He has de- grees from Swarthmore College, Rensselaer Polytechnic Institute, and the University of Florida. His research on the longitudinal study of engineering students, team assignment, peer evaluation, and active and collaborative teaching methods has been supported by over $11.4 million from the National Science Foundation and the Sloan Foundation and his team received the William Elgin Wickenden Award for the Best Paper in the Journal of Engineering
the way people think and learn, and his most recent book is How Computer Games Help Children Learn.Golnaz Arastoopour, University of Wisconsin-Madison Golnaz is a graduate student at the University of Wisconsin-Madison. Before becoming interested in education, she studied Mechanical Engineering and Spanish. Golnaz has also worked as a computer sci- ence instructor, high school mathematics teacher, and STEM curriculum designer. Her research interests are how technology can be used as an effective and engaging teaching tool, specifically in engineering education. Page 22.1567.1
AC 2011-1270: INTEGRATION OF SYSTEMS ENGINEERING TRAIN-ING MODULES INTO CAPSTONE COURSES ACROSS COLLEGE OFENGINEERING DEPARTMENTSDean Walton Pichette, Wayne State University DEAN PICHETTE Senior Lecturer Department of Industrial & Systems Engineering TEACHING INTERESTS Systems Engineering, Project/Program Management, Engineering Economics & Lifecycle Costing, Introduction to Design PROFESSIONAL PREPARATION 1995 MS Electronics and Computer Control Systems. Wayne State University, Detroit, MI 1990 MBA Business Administration, Michigan State University, East Lansing, MI 1972 BS Electrical Engineering, Michigan State University, East Lansing, MI PROFESSIONAL EXPERIENCE 2007 Present Wayne State University
Engineering Graphics course, severalimprovements were implemented. The enhancements to the existing Engineering Graphicscourse are discussed.1. IntroductionFor the past 75 years, Kettering University has provided its students with top quality classroominstruction, state-of-the-art laboratory facilities and career-oriented work experience in industry.Kettering offers Bachelors Degree programs in engineering, science, mathematics, andmanagement. Kettering students begin a unique five year cooperative education program in theirfreshmen year by alternating 12-week period of classroom studies with related work experiencein over 600 corporate affiliates. The corporate sponsors of Kettering University students includeover 600 other companies as well as the
. Page 22.361.1 c American Society for Engineering Education, 2011 Computer Applications to Problem Solving in Some Engineering Technology CoursesAbstractUse of computers and the Internet in our teaching and learning has proved to be very effectivefor both students and instructors. The author is currently using Desire2Learn (D2L) to teachvarious Engineering Technology (ET) courses including Statics, Design of Machine Elementsand Vibration. Typically, he solves numerical problems related to the equilibrium of particlesand rigid bodies, design of shafts, pulleys and gears, and free and forced vibration of mechanicalsystems. Recently the author developed some Excel programs to solve
AC 2011-1294: CURRICULAR EXCHANGE BETWEEN A STEM UNI-VERSITY AND A RURAL ELEMENTARY SCHOOL: THE ESTABLISH-MENT OF AN INTERACTIVE VIDEO LINKVan Stephen Blackwood, GK-12 Colorado School Of Mines GK-12 NSF Fellow I am a mechanical engineering graduate student at Colorado School of Mines. I am funded by National Science Foundation GK-12 teaching fellowship. I research chemically reacting flow with respect to hy- drogen/nitrous oxide combustion chemistry.Barbara M. Moskal, Colorado School of Mines Barbara Moskal received her Ed.D. in Mathematics Education from the University of Pittsburgh. She is a Professor of Mathematical and Computer Sciences, the Interim Director of the Trefny Institute for Educational Innovation
the advance features of this language. Companies like Xilinx, Altera, and Cadence havedesigned proper hardware interface for the use of this language. Recently, most chipmanufacturers start on VHDL (or Verilog) before the company goes to actual production of adesign. There are two aspects to modeling hardware that any hardware description languagefacilitates: true abstract behavior and hardware structure. VHDL has three parts: Library, Entity,and Architecture.Despite reviewing many undergraduate digital books, there is no reference on how to teachdifferent processes and cycles in a computer architecture/organization course by VHDL. In thispaper, the author explains how VHDL could be used to teach different topics such as: fetchcycle, decode
, etc.In our electrical engineering and computer engineering undergraduate programs, studentscomplete a two-course senior design sequence using project-based learning, where, in addition tosolving challenging design problems, they develop several of the generic skills. They also workin teams in the laboratory components of several earlier courses, but there is little formalinstruction therein on how to behave in a group or how to conduct good team work. If some ofthose ideas were learned early in the program, they could be used all throughout the program,and thus the students would enter the senior design sequence with strong team skills and be ableto focus on the technical aspects of the design projects. Also, they would graduate with theability
strategies that address challengesand barriers to recruitment, retention and success of minority students. Among the strategiesdeveloped for this project are two summer programs that were implemented for the first time insummer 2009. The Summer Math Jam is a two-week intensive mathematics program designedto improve student preparation for college-level math courses. The Summer EngineeringInstitute is a two-week residential summer camp that offers participating students the opportunityto gain insight into the engineering academic program through a combination of lectures, hands-on laboratory activities, workshops and projects with engineering professionals. Preliminaryresults indicate success of both programs. Math Jam participants show improvement
instructional materials, activities, and as- sessments by using a cognitive framework of differentiated overt learning activities for designing effective classroom instruction in materials science and engineering.Glenda Stump, Arizona State University Glenda Stump is a Post-doctoral Scholar in the School of Social and Family Dynamics at Arizona State University in Tempe, Arizona. Dr. Stump earned a Ph.D. in Educational Psychology and a certificate in Educational Technology from Arizona State University in May of 2010.Stephen J Krause, Arizona State University Stephen J. Krause is Professor in the School of Materials in the Fulton School of Engineering at Arizona State University. He teaches in the areas of bridging