AC 2009-2354: A PROJECT-ORIENTED APPROACH IN TEACHING ROBOTICSAPPLICATION ENGINEERINGYuqiu You, Morehead State University Page 14.92.1© American Society for Engineering Education, 2009 A Project-oriented Approach in Teaching Robotics Application EngineeringI. IntroductionAutomated robotic systems are critical components in implementing flexible manufacturingsystems (FMS) which is the current trend for improving productivity and flexibility. Usingrobots in actual manufacturing platforms is a decision to improve flexibility and to increase theagility of the manufacturing process. To prepare students in the manufacturing
experience in the minerals industry working in Africa and the UK, and teaching experience in the areas of rock mechanics, slope stability, environmental engineering and surveying. For a number of years he has been involved with coordinating and assessing the Part 4 research projects in the Department. His research interests are in the permeability of coal in relation to stress changes due to desorption, the spontaneous combustion of coal and related heating effects, stability issues related to mineral extraction sites mainly subsidence and slope stability. In the last 5 years he has published over 18 papers (5 in refereed journals) and 29 technical reports. He is also actively
Digital Health: A Sophomore Level Interdisciplinary Engineering Design Project CourseIntroductionThis paper describes a biomedical engineering project developed by sophomores as part of adesign class at the University of Hartford and also the pedagogical approach taken. Required forall of the engineering majors, the purpose of the course is to provide an in-depth study of thedesign process in the context of a real-world project. Students undertake design projectsspecifically chosen to meet the objectives of the course. In spring 2008, a new project sectionwas offered that was related to the university’s digital health initiative.The engineering
AC 2009-565: AN INTEGRATED PROJECT-BASED COURSE IN MATHEMATICSAND ENGINEERING TECHNOLOGYAsad Yousuf, Savannah State UniversityMohamad Mustafa, Savannah State UniversityLin Shinemin, Savannah State University Page 14.199.1© American Society for Engineering Education, 2009 An Integrated Project-based Course in Mathematics and Engineering TechnologyAbstractEngineering Technology faculty regularly encounter undergraduates takingcourses in their professional field of study who lack adequate preparation inmathematics. Research indicates that students face difficulties in the applicationof mathematical concepts in engineering and technology. There appears to
AC 2009-603: LABORATORY PROJECTS APPROPRIATE FOR NONENGINEERSAND INTRODUCTION TO ENGINEERINGJohn Krupczak, Hope College Professor of EngineeringKate Disney, Mission College Engineering InstructorScott VanderStoep, Hope College Professor of Psychology Page 14.832.1© American Society for Engineering Education, 2009 Laboratory Projects Appropriate for Non-Engineers and Introduction to EngineeringAbstractA group from engineering programs at both four and two year colleges has developed laboratorymodules with an emphasis on activities and perspectives shown to be successful in technologicalliteracy courses for non
AC 2009-639: FORMING AND MANAGING PROJECT TEAMS IN A LARGECAPSTONE DESIGN COURSEEdward Lumsdaine, Michigan Technological University Dr. Edward Lumsdaine is Professor of Mechanical Engineering at Michigan Technological University (MTU) and Special Professor of Business, Institute for Enterprise and Innovation, University of Nottingham (UK). For many years he was management consultant at Ford Motor Company in high-tech education and training. In 1994 he received the ASEE Chester F. Carlson Award for innovation in engineering education. He has co-authored books on creative problem solving, engineering design, entrepreneurship and innovation. He has work experience in industry, seven
AC 2009-646: AN APPROACH TO SELECTING EFFECTIVE PROJECTS FORENGINEERING COMPUTER GRAPHICSClaude Villiers, Florida Gulf Coast University CLAUDE VILLIERS is an Assistant Professor of Civil Engineering at Florida Gulf Coast University. He received his Ph.D. in Civil Engineering with a concentration in Materials and Construction from the University of Florida in 2004. Previously Dr. Villiers was an Assistant Professor at The City College of New York. Prior to this position, he was employed by the Florida Department of Transportation (FDOT) as a research engineer. Dr. Villiers also was employed by The University of Florida and worked on several projects sponsored by the FDOT and the
AC 2009-30: SENIOR DESIGN PROJECTS FOR ENGINEERING TECHNOLOGY:ISSUES, BENEFITS, AND TRADE-OFFSIvana Milanovic, University of Hartford Ivana 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 Institute of NYU, NY and M.S. and B.S. from University of Belgrade, Serbia.Tom Eppes, University of Hartford Tom 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 Electrical
AC 2009-77: A LABORATORY- AND PROJECT-BASED COURSE IN LEAN SIXSIGMA NANOMANUFACTURINGVladimir Genis, Drexel University Dr. Vladimir Genis is an Associate Professor and Applied Engineering Technology Program Director in Goodwin College, Drexel University received Ph. D. in Physics and Mathematics. Dr. Genis taught and developed graduate and undergraduate courses in physics, electronics, biomedical engineering, and acoustics. His research interests include ultrasound wave propagation and scattering, ultrasound imaging, electronic instrumentation, piezoelectric transducers, and engineering education. Results of his research work were published in scientific journals and presented at the
, the hands-on manufacturingexperiments was an effective project to review concepts of lean manufacturing, applylean manufacturing tools to identify wastes or ‘non-value-added’ activities in factories,and suggest how to minimize or eliminate them.1. IntroductionLean thinking has been well known as an effective strategy to provide and increase thevalue delivered to the customer. Lean is based on the Toyota Production System (TPS),which is a more flexible manufacturing system than the traditional mass-productionsystem. Lean manufacturing, developed from TPS, utilizes fewer resources and results ina larger variety of products and at the same time high levels of product quality andservice [1,2]. Lean manufacturing has been widely applied in many US
have developed courses in this discipline.These courses include Biofluid Mechanics and Heat Transfer, Tissue Mechanics, andBiomechanical Design. Additionally, students involved in undergraduate research inBiomedical Engineering may take the department’s independent study course. Also,there are also several biomedical engineering courses offered by other departments thatmay be used. The requirements for the Biomechanical Engineering concentration for theBSME are shown in Figure 1.The second approach, the focus of this paper, which has been implemented, involves theutilization of biomedical engineering projects in a traditional thermal design course. Thispaper continues with a brief description of the ME 416 course. This is followed bydetailed
AC 2009-297: INCORPORATING A TEACHER’S RESEARCH PROJECT INTO ANUNDERGRADUATE LEVEL COURSEJiang Zhou, Lamar UniversityPaul Corder, Lamar UniversityHsing-wei Chu, Lamar UniversityKendrick Aung, Lamar University Page 14.715.1© American Society for Engineering Education, 2009 Incorporating a Teacher’s Research Project into an Undergraduate Level Course1. IntroductionThis paper describes the integrating of a research topic into an undergraduate “System Dynamicsand Vibration” course. The process helped the students to capture the essential aspects of theproblems in a mechanical model, make reasonable simplifying assumptions, and reduce thismodel
AC 2009-303: PROJECT MANAGERS, ARCHITECTS, AND ENGINEERS--OHMY! AN INTERDISCIPLINARY COLLABORATIONDavid Lambert, Arup David Lambert obtained both his masters and undergraduate degrees in Architectural Engineering from California Polytechnic State University. He is currently a structural engineer for Arup in Los AngelesAllen Estes, California Polytechnic State University Allen C. Estes is a Professor and Head for the Architectural Engineering Department at California Polytechnic State University in San Luis Obispo. Until January 2007, Dr. Estes was the Director of the Civil Engineering Program at the United States Military Academy (USMA). He is a registered Professional Engineer in
Projects into Manufacturing Education AbstractThis paper describes the integration of real-world medical device projects into manufacturingeducation to increase students’ interest and hands-on experiences in product design andmanufacturing while exposing them to real engineering challenges. Teams of undergraduatestudents in a Manufacturing Processes course worked with a medical doctor and practicingsurgeon on a project to design and create the prototype of a new medical device to improve aminimally-invasive surgical procedure. The medical device project provided students with realengineering and interdisciplinary learning experiences with clinical exposure and high societalimpact. The end goal is to prepare students with
179 Laboratory Projects Appropriate for Non-Engineers and Freshman Engineering Students Kate Disney, Mission College Engineering Faculty John Krupczak, Hope College Professor of EngineeringIntroductionThe engineering departments at Hope College and Mission College both offer technologicalliteracy courses targeted to non-science majoring students. These lab-based general educationcourses are designed with mechanical dissection and “make
AC 2009-907: ORGANIZATIONAL LEADERSHIP AND EFFECTIVE TEAMPROBLEM-SOLVING STRATEGIES IN ENGINEERING DESIGN PROJECTS: ANANALYSIS OF STUDENT PERCEPTIONSTony Jones, United States ArmyDaisie Boettner, United States Military AcademyJoel Dillon, United States Military AcademyStephanie Ivey,Anna Lambert, University of MemphisBrian Novoselich, United States Military AcademyStephen Suhr, United States Military Academy Page 14.937.1© American Society for Engineering Education, 2009 Organizational Leadership and Effective Team Problem Solving Strategies in Engineering Design Projects: Analysis of Student PerceptionsAbstractAs
AC 2009-928: ORGANIZATIONAL LEADERSHIP AND EFFECTIVE TEAMPROBLEM-SOLVING STRATEGIES IN ENGINEERING DESIGN PROJECTS: ACASE STUDYTony Jones, United States ArmyAnna Lambert, University of MemphisDaisie Boettner, United States Military AcademyBrian Novoselich, United States Military AcademyStephanie Ivey, Page 14.936.1© American Society for Engineering Education, 2009 Organizational Leadership and Effective Team Problem Solving Strategies in Engineering Design Projects: A Case StudyAbstractThis project presents a case study examination of the problem solving strategies and discoursepatterns used by members of an Engineering Capstone Design Team. In our study, a
) signalswith the ADC's and DAC's. The USRP is an open source platform, so the schematic and designfiles are freely available.In addition, the USRP is compatible with the open source project GNU Radio that hasimplemented a vast array of algorithms needed to construct analog and digital communicationsystems (modulation, source coding, error correction, interleaving, filtering, etc.). The low-levelalgorithms are written in C++ and are controlled by high-level Python programs. The sourcecode for GNU Radio is also freely available.Together the USRP and GNU Radio form a powerful and flexible platform that allows the userto implement various real-time communication systems simply by writing software. Receiversthat operate in real-time can be constructed for
AC 2009-1027: THE DEVELOPMENT AND IMPLEMENTATION OF ANANOTECHNOLOGY MODULE INTO A LARGE, FRESHMAN ENGINEERINGCOURSEVinod Lohani, Virginia Tech Vinod K Lohani is an associate professor in the Engineering Education Department and an adjunct faculty in the Civil and Environmental Engineering at Virginia Tech. He received a PhD in civil engineering from Virginia Tech in 1995. His research interests are in the areas of knowledge modeling, water and energy sustainability, engineering learning modules for freshmen, and international collaboration. He leads a major curriculum reform project, funded under the department-level reform program of the NSF, at Virginia Tech. A spiral curriculum approach
positions in industry working for such companies as Battelle's Columbus Laboratories, Rockwell International, and Claspan Corporation. He joined the University of Cincinnati in 1985. Page 14.638.1© American Society for Engineering Education, 2009 Frequency Response of RF Transceiver Filters Using Low-Cost Vector Network AnalyzersAbstractThis paper focuses on the construction and testing of a 7 MHz Radio Frequency (RF) transceiverto provide a "Project Based Learning" RF capstone experience for students in Electrical andComputer Engineering Technology. The Transceiver Project is structured to
AC 2009-1092: DEVELOPMENT OF AN INTERDISCIPLINARYSERVICE-LEARNING PILOT PROJECT INCORPORATING UNIVERSALDESIGN CONCEPTS FOR ADA COMPLIANCEDonald Richter, Eastern Washington University DONALD C. RICHTER obtained his B. Sc. in Aeronautical and Astronautical Engineering from The Ohio State University, M.S. and Ph.D. in Engineering from the University of Arkansas. He holds a Professional Engineer license and worked as an Engineer and Engineering Manger in industry for 20 years before teaching. His interests include project management, robotics /automation, parametric modeling and rapid prototyping.William Loendorf, Eastern Washington University William R. Loendorf is currently an Associate Professor of
AC 2009-732: A SOLAR-POWERED ART PROJECT PROVIDES A REMOTEGREEN ENERGY LABORATORY FOR ENGINEERING TECHNOLOGYSTUDENTSDale Litwhiler, Pennsylvania State University, Berks Dale H. Litwhiler is an Associate Professor at Penn State, Berks Campus in Reading, PA. He received his B.S. from Penn State University (1984), his M.S. from Syracuse University (1989) and his Ph.D. from Lehigh University (2000) all in electrical engineering. Prior to beginning his academic career in 2002, he worked with IBM Federal Sys-tems and Lockheed Martin Commercial Space Systems as a hardware and software design engineer.Frances Jallu, Pennsylvania State University, Berks Frances Jallu is an Electromechanical
AC 2009-1762: WATER ANALYSIS, TRAINING, EDUCATION, AND RESEARCHSERVICES: A "FARMER’S COOPERATIVE" MODEL FOR CAPACITYDEVELOPMENTJana Fattic, Western Kentucky University Jana Fattic is the Associate Director of the Center for Water Resource Studies and Operations Director of the WATERS Laboratory at Western Kentucky University. Ms. Fattic’s role as Associate Director of the Center includes budget development and project coordination of state and federal grants totaling over one million dollars annually. Ms. Fattic’s responsibilities include day-to day administration, budget and personnel management, quality assurance and quality control, and maintenance of certifications. She holds a Bachelor
prime example of a modified and extremely successful PL-TL program. MTSUengineering and engineering technology students voluntarily participate in the EVP as anexciting and challenging academic supplement, and some seniors within the program also useelements of the projects for their capstone research course6. This program is currently comprisedof five different student projects: Moonbuggy, Solar Vehicle, SAE Formula One, SAE MiniBaja, and Solar Boat. Instead of the original, established PL-TL model which has beenimplemented to improve classroom progression, the EVP includes real-world simulation andimplements its own unique style which is designed to encourage upper level college students
interest in multidisciplinary projects that encourage sustainable development and provide affordable and efficient technology to developing areas, especially with respect to improving water quality and reducing the incidence of water borne diseases and water related diseases and other health complications. She believes in holistic approaches to providing engineering solutions which incorporate women's perspectives and needs and which build local capacity. In Guyana, she works on projects with NGOs like WWF-Guianas, Conservation International Guyana and the Guyana’s Citizen’s Initiative. She is the faculty advisor for USF’s Chapter of Engineers for a Sustainable World, a 2008 Kiran C. Patel Faculty
AC 2009-1431: TUTORIALS AND IN-CLASS ACTIVITY FOR IMPROVINGSTUDENT PERFORMANCE IN A FIRST-YEAR ENGINEERING COURSELisa Benson, Clemson University Lisa Benson is an Assistant Professor in the Department of Engineering and Science Education at Clemson University, with a joint appointment in the Department of Bioengineering. Dr. Benson teaches first year engineering, research methods, and graduate engineering education courses. Her research interests include student-centered active learning in undergraduate engineering, assessment of motivation, and how motivation affects student learning. She is also involved in projects that utilize Tablet PCs to enhance student learning. Her education includes
AC 2009-1454: ENGINEERS WITHOUT BORDERS: EXPERIENTIAL EDUCATIONJess Everett, Rowan UniversityYusuf Mehta, Rowan UniversityJoshua R. Wyrick, Rowan UniversityMaria Perez-Colon, Rowan University Page 14.562.1© American Society for Engineering Education, 2009 Engineers Without Borders: Experiential EducationAbstractAn Engineers Without Borders (EWB) Club has operated at our University for approximately 6years, conducting projects in Asia, Africa, Central America, and North America. EWB projectsare completed cooperatively between club members and students enrolled in an experientiallearning course required by the engineering curriculum. EWB projects provide real
Page 14.165.1© American Society for Engineering Education, 2009 AFRICOM and the Corps of Engineers Helmets .vs. HardhatsAbstractService learning projects in developing communities, offer an opportunity for students togain a full appreciation for the cultural and political limitations that engineers face whenproviding technical support to developing nations. To satisfy the project requirement forthe Civil and Infrastructure Engineering MS program at George Mason University, onestudent took on the daunting task of developing a framework for the US Army Corps ofEngineers to provide civil works expertise to desperately needy areas of rural Africa.Africa is a vast continent with over 900 million people