the Joe. J. King Professorship and was a Distinguished Teaching Professor.Previously, Dr. Bishop was a practicing engineer on the technical staff at the MIT Charles StarkDraper Laboratory.Dr. Bishop is a specialist in the area of guidance, navigation and control. His research sponsorshave included the NASA Jet Propulsion Laboratory, NASA Goddard Space Flight Center,NASA Johnson Space Center, Oerlikon-Contraves of Switzerland, NEC Corporation of Japan,National Instruments, Air Force Research Laboratory, Emergent Space Technologies, LockheedMartin, and the Charles Stark Draper Laboratory. He is currently working with NASA ontechniques for achieving planetary precision landing to support human and robotic missions. Dr.Bishop also initiated
. Besterfield-Sacre’s current research focuses on three distinct but highly correlated areas pf innovative design, entrepreneurship, and modeling. She is an Associate Editor for the AEE Journal.Dr. Brian P. Self, California Polytechnic State University Brian P. Self obtained his B.S. and M.S. degrees in engineering mechanics from Virginia Tech and his Ph.D. in bioengineering from the University of Utah. He worked in the Air Force Research Laboratories before teaching at the U.S. Air Force Academy for seven years. Self has taught in the Mechanical En- gineering Department at Cal Poly, San Luis Obispo, since 2006. During the 2011-2012 academic year, he participated in a professor exchange, teaching at the Munich University
accreditation activities, taught at the undergraduate and graduate levels, and conducted faculty development workshops on teaching and assessment worldwide.Dr. Rochelle Letrice Williams, ABET Rochelle Williams recently joined the ABET headquarters staff as the Educational Research and As- sessment Manager in the Professional Services Department. In this role, Williams manages ABET’s educational offerings on a global scale and leads technical education research projects. Prior to joining ABET, Williams held two positions at Baton Rouge Community College: Science Laboratory Manager and Adjunct Faculty in the Mathematics Department. In addition, Williams has worked closely with the National Science Foundation’s Next
AC 2012-5101: PREPARING THE 21ST CENTURY GLOBAL WORKFORCEIN MICRO- AND NANOSCALE FABRICATION AND CHARACTERIZA-TION IN THE FIRST TWO YEARS OF ENGINEERING EDUCATIONDr. Wesley Crowell Sanders, Salt Lake Community College Wesley Crowell Sanders earned a B.S.Ed. in science education at Western Carolina University in Cul- lowhee, N.C., in 1999. After teaching high school science for four years in Charlotte, N.C., he pursued a M.S. in chemistry at the University of North Carolina, Charlotte. Upon receiving his M.S. in chemistry in 2005, he enrolled in a chemistry Ph.D. program at Virginia Polytechnic Institute and State University. Soon after the receipt of his doctorate in chemistry in 2008, he was awarded an ASEE
Ying Yu received the B.Eng. degree from Fudan University in Shanghai, China, in 2000. She received the M.Eng. degree and Ph.D. in electrical engineering from Brown University, RI., USA, in 2003 and 2007, respectively. Since 2008, she has been teaching as an Assistant Professor of the Department of Electrical and Computer Engineering at University of Hartford. Her current research interests includes digital signal processing, speech processing, and teaching with new educational methods, which includes peer instruction, clickers, video games, and state-of-the-art CAD tools. Page 25.1281.1
]. Torespond to the industry needs for FPGA design skills, universities are updating their curriculumwith courses in hardware description languages and programmable logic design. Although mosttraditional electrical and computer engineering programs have updated their curriculum toinclude topics in hardware description language and programmable logic design (FPGA/CPLD),only 19.5 % of 4-year and 16.5 % of 2-year electrical and computer engineering technologyprograms at US academic institutions currently have a curriculum component in hardwaredescription language and programmable logic design [3]. To effectively meet the nextgeneration’s workforce needs, the electrical and computer engineering technology curriculummust be current, relevant, and teach
programs across in the SoT aredeveloping and offering on-line courses in multiple disciplines. In this article we emphasize theonline Electrical Machinery (EM) course development and implementation for currently enrolledin Michigan Technological University students and industry representatives looking to improvetheir knowledge in the subject. The online EM course will be offered in Track A of summer 2012and will consist of online learning modulus, online quizzes, exams, and intense laboratories. Dueto the hands-on nature of educational strategy, the laboratory component is an integral part ofany course offered in the SoT, and the on-line EM course is no exception. The enrolled studentswill participate in intense laboratory sessions scheduled
AC 2012-4249: E 4 E: ENGINEERING FOR EDUCATORSDr. Dan G. Dimitriu, San Antonio College Dan G. Dimitriu has been practicing engineering since 1970 and taught engineering courses concurrently for more than 20 years. He has been the coordinator of the Engineering Program at San Antonio College since 2001. His research interests are: alternative fuels, fuel cells, plastics, and engineering education.Simona Dana Dimitriu, Pat Neff Middle School - Northside Independent School District (NISD) Simona D. Dimitriu practiced engineering since 1981 for 20 years and following a graduate degree in education started teaching science since 2007 and math since 2002. She has been involved in numerous initiatives to integrate
Excellence in Laboratory Instruction. She has also implemented new pedagogical methods and teaching standards to broaden students’ problem solving skills, scientific and technological literacy through real-world prob- lems, problem- and project-based learning, and hands-on experiences. She also teaches Introduction to Engineering Design (ENGI 120) for the Rice Center for Engineering Leadership. In 2011, she won the George R. Brown Prize for Excellence in Teaching, the university’s highest teaching award. Page 25.307.1 c American Society for Engineering Education, 2012
, or any of the other toolsprovided to them. In order to mitigate those concerns, a few basic tutorials regarding labequipment were provided in 2011 and more robust tutorials are planned for the 2012 course. Itshould be noted that for many students, it is their first time using this equipment. The typical oncampus course has many teaching assistants to assist students, but we frequently found thatstudents would not contact online teaching staff for assistance for the laboratory portion.A point of concern that some faculty may have is the use of a virtual oscilloscope and functiongenerator. It could be claimed that this equipment is not an accurate representation of their "realworld" counterparts. The user interfaces presented are far simpler
dilutes both these components. Moreover, as the professionalengineering topics are required for graduation, students cannot replace the capstone designcourse with other opportunities closer to their professional interests, for example, completing aproject in the Student Space Programs Laboratory. Page 25.403.2Following a critical review and discussion of the design component of our curriculum, theundergraduate committee identified three areas for improvement: (1) coupling the undergraduateand graduate programs by engaging undergraduates in faculty research projects, (2) diversifyingthe spectrum and depth of capstone design projects, and (3
. Page 25.38.3ImplementationThe Dragon12-Plus MCU from EVBplus/Wytec is the trainer module that has been usedpreviously for the laboratory instruction in the ECE 383 Microcomputers course. This laboratoryinstructional system has been used to teach assembly language programming, peripheralinterfacing, and modular system design. The system itself is a 16-bit MCU designed and built foran academic environment.Several factors went into the choice of what microprocessor to include in the MCUPC laboratorysystem design. First, and, arguably, most importantly, the resultant addition to the cost of theentire system must be taken into account. With an instructional laboratory system such as this,reducing the cost of each component as much as possible is
AC 2012-4064: SYNCHRONOUS DISTANCE LEARNING FOR UNDER-GRADUATE THERMAL ENGINEERING COURSES: TRIALS AND IM-PROVEMENTSDr. Amanie N. Abdelmessih, Saint Martin’s University Amanie Abdelmessih is professor and Chair, Mechanical Engineering Department, and Director of the Thermal Engineering Laboratory, Saint Martin’s University. Abdelmessih has industrial, teaching, and research experience. Abdelmessih started her career in the paper industry, then she taught in several higher education institutions, with the last 15 years at Saint Martin’s University. Abdelmessih has per- formed research at NASA Dryden Flight Research Center, Marshall Space Flight Research Center, Ar- gonne National Laboratory, and Pacific Northwest
. Distribution Department at Texas A&M University. He received his B.S.E. and M.S..E from Purdue University, and his Ph.D. and J.D. from Indiana University. Buchanan is a P.E. in six states.Dr. Faramarz Mossayebi, Youngstown State University Faramarz Mossayebi is an Associate Professor in the Department of Electrical and Computer Engineering at Youngstown State University. He received his B.E. and M.S. degrees from Youngstown State University and his Ph.D. from the University of Akron. His teaching and research interests includes modeling and simulation of nonlinear dynamical systems, digital signal processing, embedded systems, and control
engineering from Princeton University in Princeton, N.J. After serving as USAF pilot in KC-135 and KC-10 aircraft, he completed his D.Phil. in engineering sci- ences at the University of Oxford, U.K., and returned to the USAF Academy to teach heat transfer and propulsion systems. At Baylor University since 1998, he teaches courses in laboratory techniques, fluid mechanics, energy systems, aeronautics, wind energy, and propulsion systems. Research interests include experimental gas turbine heat transfer and wind energy. Page 25.602.1 c American Society for Engineering Education, 2012
online, with laboratories being offered in a ‘low-residency’format. This low-residency format will require students to complete a group oflaboratory assignments on two or three Saturdays during the semester. Weanticipate future efforts to offer both the lectures and laboratories completelyonline.SPSU’s approach, in collaboration with the TCSG, to the development of thesecourses was to require consistency in the format of each of our courses byimplementing a standard template. This will facilitate courses to have the samelook, feel, tools, and structure. Faculty developing these courses must havecompleted our Teaching Academy for Distance Learning (TADL) training courseprior to writing courses. To ensure quality course development and structure
a teaching and learningstyle that is the result of neuroscience research on how the human brain processes and retainsnew information”. 1Introduction“Acknowledging that students learn at different speeds and that they differ in their ability tothink abstractly or understand complex ideas is like acknowledging that students at any givenage aren’t all the same height: It is not a statement of worth, but of reality”.2 In adifferentiated classroom and laboratory, the teacher proactively plans and carries out variedapproaches to content, process, and product in anticipation and response to student differencesin readiness, interest, and learning needs. According to Tomlinson, our teaching style “caninfluence a students’ IQ by 20 points in either
involved in the learning process taking place inthe classroom, as opposed to the teacher centric traditional lectures. Engineering faculty havelong been using such approaches in many of our courses, for example in courses which includeexperimental laboratories and projects. This initiative has prompted us to focus more consciouslyon the effect of teaching on, and the assessment of student learning. This paper will discuss avariety of design projects we are using throughout the curriculum in the Mechanical Engineeringprogram before the Senior Design Project, how they fit with the Learner Centered Instructioninitiative, as well as how they support the Program Outcomes and Program EducationalObjectives of our ABET accredited program.Projects from
). Aghara earned a master’s in environmental engineering from Vander- bilt University in 1999. He then went on to get his master’s and Ph.D. in nuclear engineering from the University of Texas at Austin (UT) in 2001 and 2003, respectively. Upon completion of his Ph.D., Aghara was appointed as research associate at Nuclear Engineering Teaching Laboratory in Austin, Texas and a Lecturer in the Department of Mechanical Engineering at UT prior to taking his current position at PV. He serves on the board of the Nuclear Power Institute (NPI), a multi-agency (university/industry/utilities) consortium focused on the development of the nuclear workforce of the future. Aghara has more than 10 years of teaching experience and has
AC 2012-4579: REGULATORY COMPLIANCE TRAINING IN BIO/CHEMICALENGINEERING COURSESDr. Arthur Felse, Northwestern University P. Arthur Felse is a lecturer in the master’s of biotechnology program and the Department of Chemical & Biological Engineering at Northwestern University. His responsibilities include teaching, student advis- ing, coordinating master’s research training, and managing the biotechnology teaching laboratory. Before joining Northwestern University, Felse completed his postdoctoral training at the Polytechnic Institute of New York University, where he was awarded a NSF fellowship. He and his colleagues at Polytechnic Institute received the EPA’s Presidential Green Chemistry Challenge Award in 2003
education research and engineering outreach camps. Yilmaz is a member of the Eta Kappa Nu Electrical Engineering Honor Society, as well as IEEE and ASEE.Dr. Selahattin Ozcelik, Texas A&M University, KingsvilleProf. Nuri Yilmazer, Texas A&M University, Kingsville Nuri Yilmazer received a B.S. degree in electrical and electronics engineering from Cukurova University, Adana, Turkey in 1996, and M.S. and PhD degrees in electrical and computer engineering from the Uni- versity of Florida and Syracuse University in 2000 and 2006, respectively. He worked as a Post Doctoral Research Associate in Computational Electromagnetics Laboratory at Syracuse University from 2006 to 2007. He is currently working as an Assistant
successful in recruiting faculty to sponsorsenior design projects in their laboratory. Realizing the potential for increasing the facultyworkload by adding a new course to curriculum would be of central concern, we identifiedfaculty who volunteered to teach the new junior and sophomore level courses. We alsoredistributed the teaching assistant allocation so that no new teaching assistant slots would berequired to implement the new design sequence. Furthermore, we identified several faculty whoenthusiastically championed the idea of having senior students participate in the researchprojects. As a result of these efforts, the vote for adopting the new design sequence was nearlyunanimous.ImplementationFollowing a vote to adopt the new design sequence
-chair for the 2008 IEEE Industrial Electronics Conference (IECON-2008) and the 2010 IEEE International Symposium on Industrial Electronics (ISIE-2010). His teaching and research interests are in control systems applications.Prof. Victor P. Nelson, Auburn University Victor P. Nelson is a professor and Assistant Chair of Electrical and Computer Engineering at Auburn University. His primary research interests include embedded systems and computer-aided design and testing of digital systems and application-specific integrated circuits (ASICs). He is co-author of the textbook Digital Logic Circuit Analysis and Design and a tutorial book on fault-tolerant computing. He has been Chair of the ECE Curriculum Committee
course.After much thought on the part of the faculty and administration it was decidedthat repeating the course would not teach the crucial lesson. Repeating the one-credit laboratory would confirm that they understood the material but this was ofsecondary importance to the real lesson that needed to be learned, ethics. It isimportant to note that ethics and the student code of conduct are tied to theacademics while in college: whereas, ethics and professional codes are what weexpect in industry. The tie is ethics in general and, if we can assist students inthinking and behaving ethically, there is a chance that they will develop thecharacter necessary to be successful in industry. There is one more caution, goodethical behavior in college does not
predictive microbial growth/death mod- els for food safety risk assessment. Every fall, he teaches a large sophomore-level class on engineering properties of biological materials, which consists of both lectures and laboratory sessions with an enroll- ment of more than 70 students. Every spring, he teaches a junior-level course on principles of bioprocess engineering which has an enrollment of about 25 students. Page 25.511.1 c American Society for Engineering Education, 2012 Electronic Student Homework Management Systems for Continuous Improvement and Program
students install the VPN client and has limited editing feature when using the free software. Screen capture of MS PowerPoint presentations using MS Expression or CamStudio produced good results, but produces a single voice track that is difficult to edit. Encoding video capture files can take a long time for some file formats. Adding narration and animation to PowerPoint and converting them to Adobe Flash format requires the least amount of development time. Editing the slide stack is easier than editing the audio and video files produced by other means. Pre-lab presentations review key laboratory concepts and present procedures before students execute course experiments. Graduate teaching assistants (TA’s) covered this content at the beginning
these “mini” research papers. To achieve these goalswhile not significantly adding to the instructor or the students’ work load is the significantoutcome. While certain classes might have laboratory classes associated with them at certainuniversities, they may not at others. The students can still get a taste of this learning opportunitywith this method of active learning. Page 25.15.11References1 Sarah E. Bonner (1999) Choosing Teaching Methods Based on Learning Objectives: An Integrative Framework.Issues in Accounting Education: February 1999, Vol. 14, No. 1, pp. 11-15.2 Diane F. Wood (2003) ABC of Learning and Teaching in Medicine: Problem
distributed and renewable energy technology research. Weaver is a registered Professional Engineer in the state of Illinois. He is currently an Assistant Professor in the Department of Electrical Engineering at Michigan Technological University.Jeremy John Worm P.E., Michigan Technological University Jeremy John Worm is the Director of the Mobile Sustainable Transportation Laboratory at Michigan Tech and a Research Engineer in the Advanced Power Systems Research Center. Worm teaches several courses pertaining to hybrid vehicles, and IC engines. In addition to teaching, his research interests include internal combustion engines, alternative fuels, and vehicle hybridization. Prior to coming to Michigan Tech, Worm was a Lead
panels was distributed to the local extension services for further dissemination with the opportunity to secure further input in the design. (3) the operation and implementation of a prototype system at a local extension farm and (4) the communication of the process to government and industry stake holders through annual participation of the team at the P3 competition meeting.In order to determine optimum process operating conditions, three laboratory scale reactors wereoperated throughout the first year of Phase 2 project. Three hydraulic residence times (HRT)were tested, 10 days, 15 days, and 20 days all using 5 liters of liquid volume mixed reactorsoperated at 37 ºC. As expected the 20 day HRT digester had the highest volatile solids
Antonio (UTSA). He joined UTSA in 2003 where he founded Software Communication and Navigation Systems Laboratory. He re- ceived the M.Sc. degree in radio-electronics from the Moscow Institute of Physics and Technology in 1987 and Ph.D. degree in electrical engineering from the Tampere University of Technology (TUT), Fin- land, EU, in 1997. From 1999 to 2003, he was a Senior Engineer and Specialist with Nokia Corporation. Prior to joining Nokia in 1999, he was a member of teaching and research staff of TUT. His current re- search interests include digital signal processing algorithms for communication and navigation receivers, positioning methods and mobile applications, and remote labs