EPICS.Mrs. Pamela Dexter, Purdue University, West Lafayette Pamela Dexter graduated from Purdue University with a bachelor’s of arts degree in education and worked as the Gifted & Talented Program Coordinator and teacher for a local school corporation. Dexter was also the Director of Marketing and Resource Development for Lafayette Neighborhood Housing Services, Inc., before joining Purdue University’s EPICS (Engineering Projects in Community Service) program. Dexter has been the EPICS High School Program Coordinator since inception of the program in 2006. Dexter is dedicated to the national dissemination of engineering service-learning design education in schools across the U.S. and abroad. These efforts blend the
as the Program Director of the Electronics and Telecommunications programs and as the Associate Department Head for Operations. He received his B.S. degree in electrical engineering (1975) from California State University, Sacramento, and his M.S. (1980) and D.E. (1983) de- grees in industrial engineering from Texas A&M University. His education and research interests include project management, innovation and entrepreneurship, and embedded product/system development. Page 25.841.1 c American Society for Engineering Education, 2012 Introducing Faculty Research to Undergraduate
. Page 25.247.1 c American Society for Engineering Education, 2012Automation Laboratory Development Focusing on Industrial Hands-on Experience, Simulation Software, and Application Research ProjectsAbstractThis paper describes the development of an Automation Control Lab in the Departmentof Engineering Technology at the University. The lab facility includes pneumaticactuators/sensors, electrical relays/switches, and Programmable Logic Controllers (PLC).The major goal of the development is to help students gain hands-on industrialexperience by conducting simple projects during the lecture hours and more advancedprojects during the lab hours. Simulation software is also applied to reduceimplementation time when
AC 2012-3292: DEVELOPING MODEL FOR CROSS-CULTURAL SER-VICE LEARNING IN DEVELOPING COUNTRIESDr. Kurt M. DeGoede, Elizabethtown College Kurt DeGoede Associate Professor of engineering and physics, Elizabethtown College. DeGoede is cur- rently working on developing a collaborative study abroad program in West Africa built around a design course based in service engineering. Many of these projects include work with renewable energy systems. His research interests are in the areas of biomechanics and the modeling of dynamic systems. Current projects include collaborative work with faculty and students in occupational therapy and an orthopedic hand surgeon, developing clinical instruments for conducting therapy and
agentprogramming. We teach pedagogic material for the first half of the semester; then in the secondhalf, students form inter-class teams for their main project. The PM class trains students inproject management and other soft skills and then puts them on the line managing the C3/C4teams. Many of the PM students have already taken the C3/C4 sequence, but we have graduatestudents who have not. The projects are sophisticated, requiring significant design, scheduling,and teamwork over an eight week period. In addition, because students in C4 have already takenC3, they are in a position to mentor the younger students even though the projects are differentfrom semester to semester.We have received validation that this approach is working. In class surveys
teaming exercises that involvedstudents from two universities. Students were assigned to groups containing membersfrom both universities to complete laboratory assignments. Activities were established formeaningful and entertaining introductions between the individual team members prior totechnical interactions. Assignments were developed to require sharing of data andcollaborations amongst all team members, with special focus on inter-universitycollaborations and communications. Detailed electronic communications of the teamswere evaluated for assessment of project success. In addition, surveys were conductedand focus group discussions (facilitated by an external assessment coordinator) wereundertaken after the experiences to provide depth to
Testbench and Simulation VHDL Testbench and Simulation Altium DesignerTesting FPGAs with Virtual Testing FPGAs with Virtual Altium DesignerInstruments Instruments NanoBoard 3000Using Soft Microprocessor Cores Embedded Programming with C Altium Designeron FPGAs Language NanoBoard 3000Final Project Altium Designer NanoBoard 3000
?AbstractService-learning (S-L) has been integrated into an average of 30 engineering courses every yearsince 2004 in five undergraduate departments. Forty-three faculty members have tried S-L, overhalf the engineering faculty. In 2010-2011, 1267 students (out of an enrollment of 1600) engagedin S-L projects in 33 courses contributing an estimated 49,500 hours to the community. Thisapproach to trying to develop better engineers and more engaged citizens was motivated by thegrowing body of research showing widespread benefits of S-L, the meeting of academicobjectives through addressing real community needs in credit-bearing courses. But what do thestudents who are part of this program think about S-L? In this study surveys of student viewswere collected
AC 2012-3452: TRAINING APPLES TO PERFORM LIKE ORANGES: ALOOK AT UNIVERSITY TEAMING EDUCATIONJill Nelson P.E., California Polytechnic State University Jill Nelson is an Assistant Professor for the Architectural Engineering Department at California Polytech- nic State University (Cal Poly), San Luis Obispo, Calif. Nelson came to Cal Poly with more than 25 years of structural design and project management experience. She is a registered Professional Engineer and Structural Engineer in the states of California and Washington. Nelson received a B.S. degree in civil engineering from the University of Nevada, Reno, and a M.S. degree in civil engineering from the University of Washington.Dr. Andrew J. Holtz P.E
designed to help studentsexcel in math, science, technology, and engineering courses and graduate with STEM-baseddegrees. The MESA Center is also home for several student organizations on our campus,including MAES, SACNAS, and SWE. Over the last two years we have partnered with a nearbyuniversity to direct a NASA sponsored undergraduate research program. The program (CIPAIR)provides opportunities for undergraduate students to participate in ongoing research projects off-campus, as well as to conduct new research projects on campus under the guidance andsupervision of a faculty member.The MESA Center served as a focal point for promoting these opportunities and fordissemination of project results. The on-campus research projects were developed by
, but in terms of his career, the almost simultaneous commencement of the Space Shuttle Program in Nov. 1972 was to have far more impact. As a result, Kanipe was able to begin his career working on what he says was the most interesting project he could possibly imagine: the Space Shuttle. Kanipe became the Deputy Branch Chief of the Aerodynamics Branch in May 1990, and in March 1996 was appointed as Chief of the GN&C Analysis and Design Branch. Subsequently, he became the Deputy Chief of the Aeroscience and Flight Mechanics Division in Dec. 1998 and was selected as Chief of the Aeroscience and Flight Me- chanics Division in the Engineering Directorate at the Johnson Space Center in Jan. 2001. Subsequently
AC 2012-5024: RATEMYTEAMMATE.ORG: A PROPOSAL FOR AN ON-LINE TOOL FOR TEAM BUILDING AND ASSESSMENTDr. Nathan Delson, University of California, San Diego Nathan Delson’s interests include mechatronics, biomedical devices, human-machine interfaces, and en- gineering education. He is Co-founder and Past President of Coactive Drive Corp., which develops novel actuators and control methods for use in force feedback human interfaces. Medical device projects in- clude an instrumented mannequin and laryngoscope for expert skill acquisition and airway intubation training. He received his undergraduate degree in mechanical engineering from University of California, San Diego, and then went on to get a doctorate in mechanical
students1, 2. Most of the online education or hybridcourse offering had been at the master’s and certificate level. Limited activity has been noted atthe Ph.D. and pre-engineering level 3, 4 this case study had been directed towards the freshmenengineering design course. In this paper authors would discuss how they used the hybridprogram to work on one of the sub goals set by the institution.The course that is chosen for the hybrid program is the freshmen engineering design course.Since many engineering educators have recognized project based learning, service learning, andfreshmen engineering projects have lasting impact on students learning compared to thetraditional classroom set up. In this paper authors would discuss about the project based
communicators, and have the skills towork globally and in multidisciplinary teams. For evaluation purposes, the Universityperiodically sends out surveys in which engineering alumni are asked about how well preparedthey perceive themselves to be for their post-graduation employment. Using the results from the2010 administration of this survey, this study seeks to answer the following questions: (1) Whatare alumni’s perceptions of their preparedness in these areas: ethics, innovation, communication,project management, global and international work, and multidisciplinary teamwork? (2) Canclusters be identified from the survey results? (3) What undergraduate engineering experienceshelped prepare them for these skills, and in what ways do they believe the
collaborative research, they largely did not do sobecause of a lack of time, support, and concerns regarding conflict with potential collaborators.Suggestions to promote collaborative research among graduate students include providingspecific venues online and at conferences to encourage inter-student interaction and facilitatecollaborative work.IntroductionResearchers participate in collaborative projects to promote innovation,1 share resources andknowledge,2,3 and develop new products.4 Collaborations also provide researchers with theopportunity to learn through cooperation.2,5 For a given project, the collaboration may becomposed of researchers within the same discipline at the same institution, researchers acrossdisciplines at the same institutions
teacher at Josiah High School. He has been teaching technology courses. He attended the CAPSULE professional development for teachers in summer 2010. He implemented a capstone project in his technology class by getting his students to design a low cost and portable USB power charger to charge cell phones.Ms. Kristina Buenafe, Josiah Quincy High School Kristina Buenafe is teacher at Josiah High School. She has been teaching mathematics courses. She at- tended the CAPSULE professional development for teachers in summer 2010. She implemented capstone projects in her geometry class by getting his students to design a three-legged chair.Ms. Jessica Chin, Northeastern University Jessica Chin is a Ph.D. candidate. She has
toconduct engineering design projects in middle and high school settings. Teachers, researchers orcurriculum developers can use tested and refined projects in the WISEngineering Library, or useauthoring tools to create their own projects. Anyone can take pre-existing projects and customizethem to suit a particular context or need. WISEngineering supports engineering design processeswith technologies such as a shared virtual “Design Wall” where students critique and commenton each other’s’ designs, or digital design journals and portfolios, where students save and sharetheir designs and design process. WISEngineering builds upon the open-source Web-based Inquiry Science Environment(WISE) from the University of California at Berkeley (http
assist with this goal, students were encouraged, early in the term, to discover reallife examples of mechanisms with an aim to promote curiosity and foster interest in learning.Throughout the term, a design project was introduced which required students not only to applyfundamentals of kinematics and dynamics, but also to exercise skills in teamwork, collaborativelearning and communication. A student survey was conducted at the end of the course and theefficacy of the approach was assessed.IntroductionThe University of British Columbia‟s Okanagan campus was established in 2005 in Kelowna,British Columbia. The School of Engineering offers three undergraduate programs: CivilEngineering, Electrical Engineering and Mechanical Engineering. In 2010
Architectural Engineering Department at California Polytech- nic State University (Cal Poly) at San Luis Obispo, Calif. Nelson came to Cal Poly with more than 25 years of structural design and project management experience. She is a registered Professional Engineer and Structural Engineer in the states of California and Washington. Nelson received a B.S. degree in civil engineering from the University of Nevada, Reno and a M.S. degree in civil engineering from the University of Washington.Prof. Brent Nuttall P.E., California Polytechnic State University Brent Nuttall is an Associate Professor for the Architectural Engineering Department at California Poly- technic State University in San Luis Obispo. Until 2003
integrates elements of entrepreneurship withengineering education and instills entrepreneurial mindset among engineering students; fostersinnovation and creativity in engineering disciplines; helps the students to develop business plansfor the entrepreneurial design projects and compete in the annual business plan competition, andpromotes new ventures creation. The program outcome is measured based on the percentage ofstudents impacted, faculty involvement, students’ participation in conferences, patents applied,commercial products developed, companies formed, and the feedback from graduating students.The students learning outcomes and their professional competencies are assessed using KEEN-TTI assessment tools.The expansion of this program through
, the University of Texas at El Paso, NewMexico State University, Texas A&M University-Kingsville and Texas State University-SanMarcos united efforts to create a regional network of researchers to advance knowledge inrenewable energy research and education. This paper introduces the BGREEN (BuildinG aRegional Energy and Educational Network) project and shows how industrial engineers at thedifferent participating institutions will benefit. BGREEN is a multi-disciplinary project whichpromotes collaboration among different universities, colleges, departments and a federal agency,the United States Department of Agriculture. This type of collaboration is fundamental since thescale and nature of energy challenges requires expertise from a wide
in which capstone design courses differ between engineering programsis the type of design project students complete. There has been a recent trend for engineeringprograms to partner with industry to provide capstone design projects direct from the “realworld.” In 1994, industry projects accounted for approximately 59% of capstone design projectsin surveyed engineering programs, compared to 71% in 2005.4,8 Not only do these projectsenrich students’ appreciation of educational relevance, but they are also beneficial in establishingindustry ties to programs and encouraging faculty professional development.3 Industrysponsored projects present a number of drawbacks, however, including difficulty in findingprojects, determining an appropriate
Engineering Group in the Summer Bridge 2011Program designed and built an underwater ROV (remotely-operated vehicle) to performunderwater exploration of, for example, local ponds and lakes. The duration for the project wasfour weeks in July and the first part of the Fall semester. The students were given instruction in thebasic electrical and mechanical principles associated with the project, and introduced to a set ofcomponents that would be available in the completion of the project, through a sequence learningactivities that included lectures and laboratory exercises. Students were also given instruction onthe engineering design process paradigm. The separate elements of the course were integrated asthe students designed, constructed, tested, and
AC 2012-5422: VIRTUAL CONSTRUCTION + COLLABORATION LAB:SETTING A NEW PARADIGM FOR BIM EDUCATIONMiss Arundhati Ghosh, Arizona State University Arundhati Ghosh has a master’s in architecture and construction management and is a Teaching Assistant for the Project Management/BIM lab at ASU. Ghosh’s research interests include understanding the man- agement aspect of BIM and how it can be integrated with the workflow of a company. Ghosh like to run and bike. Page 25.1459.1 c American Society for Engineering Education, 2012 Virtual Construction + Collaboration Lab
AC 2012-4088: INTEGRATING INNOVATIVE PEDAGOGIES INTO EN-GINEERING ECONOMICS COURSESDr. Naveen Seth, New Community College at CUNY Naveen Seth is a founding faculty member in business at the City University of New York’s New Commu- nity College. He has also taught at Pratt Institute in the Construction Management Program. At Vaughn College of Aeronautics and Technology, he headed the Aviation Management programs and also taught engineering economics in the B.S. program in engineering.Prof. Donald P. O’Keefe, Farmingdale State College Donald P. O’Keefe has 15 years experience teaching at the college level. He taught courses in engineering graphics, quality control, and project management
) coupled with several engineering design projects/competitions (bottlerockets, solar cars, bridge building, catapults, hovercrafts, and robotics) help students see therelevance of their summer STEM courses. The percentage of students who participate in theprogram, attend college, and graduate in STEM fields has been tracked throughout the programshistory. The success of the program in attracting above average numbers of young men andwomen to pursue engineering and other STEM fields is presented and related to the programmethods. Several key factors influencing the success of the program, which has grown to serveover 350 students per year locally, are identified presented as a model that can be duplicated inan effort to increase the number of
) Goldbuilding in the State of Florida; the M.E. Rinker Sr., School of Building Construction was thefirst such LEED project on campus. In 2001, the university adopted LEED certified criteria fordesign and construction for all major new construction and renovation projects to deliver highperformance and sustainable buildings. In 2006, Silver certification became the design andconstruction goal. This bar was raised in 2009 with Gold now being the certification attemptedon each project. By the end of 2009, the USGBC ranked the University Florida as the number 1campus for LEED project registrations. Table 1 summarizes the projects by certification orregistration level iv.Table 1: LEED Certifications since 2001Certification Level Number
Require ME Courses to Program Outcomes 3 = Strong Emphasis, 2 = Some Emphasis, 1 = Little or No Emphasis ME 481 Mechanical Engineering Design Projects
to Alignment Nashville. The project seeks to impact the number of middle school girls enrolling in STEM-focused Career Academies in high school. Sandra was formerly the Technical Director and Community Access Coordinator for The Renaissance Center.Dr. Ismail Fidan, Tennessee Technological University Ismail Fidan is a tenured Full Professor at the College of Engineering of Tennessee Tech University. His research and teaching interests are in additive manufacturing, electronics manufacturing, distance learn- ing, and STEM education. Fidan is a member and active participant of SME, ASME, IEEE, and ASEE. He is also the Associate Editor of IEEE Transactions on Components, Packaging, and Manufacturing Technology.David
Accreditation Board for Engineering and Technology (ABET) including theability to conduct laboratory experiments and the ability to critically analyze and interpret data inmore than one major environmental engineering focus area. This paper discusses threeenvironmental engineering undergraduate research projects that were funded through internalgrants and completed between 2009 and 2011 by individual students under the mentorship ofenvironmental engineering faculty. At the completion of their research projects, studentspresented their research work through a variety of poster presentations at symposiums andconferences and through publication in peer reviewed technical journals. The researchexperience, research methodology, problem formulation