-director of Broadband, Mobile and Wireless Networking Laboratory at the Department of Electrical Engineering of Wright State University.Dr. Zhiqiang Wu, Wright State University Dr. Zhiqiang Wu received his BS from Beijing University of Posts and Telecommunications in 1993, MS from Peking University in 1996, and PhD from Colorado State University in 2002, all in electrical engineering. He has worked at West Virginia University Institute of Technology as assistant professor from 2003 to 2005. He joined Wright State University in 2005 and currently serves as full professor. Dr. Wu is the author of national CDMA network management standard of China. He also co-authored one of the first books on multi-carrier transmission
laboratories defined by the ABET/Sloan Foundation effort4,5. The coursebegins with labs designed to teach students skills in experimentation, measurements, anderror analysis, along with techniques in a spreadsheet program and MATLAB/FreeMatfor data visualization, analysis and interpretations. The course then progresses to exploretopics in Materials Science, and Civil and Mechanical Engineering. Midway through thesemester, a bridge competition is held and the students work on a Student EducationalPlan that projects their coursework all the way through graduating with the Bachelors ofScience degree. Finally, the course concludes with Electrical and Computer Engineeringtopics in electronics and test equipment, sensors and measuring physical phenomena
compare to traditional learning in effectiveness in the 21st Century”, Available online http://chiron.valdosta.edu (2002)[13] C. J. Brabec, S. Gowrisanker, J. J. M. Halls, D. Laird, S. Jia, and S. P. Williams, “Polymer–Fullerene Bulk- Heterojunction Solar Cells”, Advanced Materials, Vol. 22, pp 3839–3856 (2010)[14 ] B. L. Conover and M. J. Escuti, “Laboratory Teaching Modules on Organic Electronics and Liquid Crystal Displays for Undergraduate and Graduate Education”, Mater. Res. Soc. Symp. Proc. Vol. 1115, pp 1115-H08- 03 (2009)[15] L.A.A. Pettersson, L.S. Roman, O. Ingana, “Modeling photocurrent action spectra of photovoltaic devices based on organic thin films”, Journal of Applied Physics, Vol. 86, pp 487–496 (1999)[16
identification and enumeration of plant species for field and greenhouse production. Winter-time greenhouse strawberry and herb production are recent funded research activities. YUFENG GE, Assistant Professor of Biological Systems Engineering, University of Nebraska. Dr. Ge obtained his PhD in Biological and Agricultural Engineering at Texas A&M University. He started as a teaching assistant for the sensor and instrumentation class there in 2005, and gradually increased his teaching responsibility for the class to become a co-instructor (since 2010) and instructor (2013). He was the faculty advisor for the student robotics teams who competed for the ASABE robotics competitions in 2012 and 2013.Dr. Yufeng Ge, University of
learning of mathematics. c American Society for Engineering Education, 2016 Hands-on Learning of Wireless Communication Principles Using Software Defined Radio Experiments and LabVIEW With the rapid proliferation of millions of smartphones, the adoption of the latest 4G LTEtechnology worldwide, and the emergence 5G broadband wireless technologies, wirelesscommunications have become an integral part of every person’s daily life and will continue to beas such in the foreseeable future. Due to this remarkable surge in wireless technologies, a strongneed for developing a flexible, hands-on laboratory platform to teach a wide variety of wirelesstechniques has emerged. Indeed, current educational
curricula, surveying 950 employers to determine their educationand training needs in the photonics area, delivering outreach events to 8000+ K-12 studentsinvolving hands-on exploration of lasers and optics, providing professional development tofaculty, participating in training and subsequently developing a recruiting and retention plan forfemales and minorities into the photonics technology field, and giving presentations about bestpractices in photonics technician education at several conferences. Next steps include setting upa laser assisted manufacturing laboratory at Indian Hills Community College and developing theassociated curriculum to serve as a model for colleges in the Midwest interested in teaching thisadvanced manufacturing technology
Paper ID #14478Integration of Strategic Highway Research Program 2 Products within theEntire Civil Engineering CurriculumDr. Yusuf A Mehta, Rowan University Dr. Mehta is a Professor at the Department of Civil and Environmental Engineering at Rowan University and Director of Center for Research and Education in Advanced Transportation Engineering Systems (CREATEs). Dr. Mehta has extensive experience in teaching pavement materials and pavement systems. Dr. Mehta has published several technical and educational papers in leading professional organizations.Dr. Parth Bhavsar, Rowan UniversityDr. Ayman Ali, Rowan University
Paper ID #15694Enhancing Mechanics Education through Shared Assessment DesignProf. Roger G. Hadgraft, University of Technology Sydney Roger Hadgraft BE(Hons), MEngSc, DipCompSc, PhD, FIEAust is Professor of Engineering and IT Pro- fessional Practice in the Faculty of Engineering and IT at the University of Technology Sydney. He is a civil engineer with 25 years involvement in leading change in engineering education, with a particular focus on problem/project-based learning (PBL), at RMIT, Monash, Melbourne and Central Queensland Universities. Roger is an ALTC (Australian Learning and Teaching Council) Discipline Scholar in
-Muller (GM)pancake survey meters, are suitable for either detailed or spot surveys. Since handheldinstruments are portable, rugged, versatile, and easy to use, they are common in the radiationprotection community. Walk-through portal monitors can be best employed in communityreception centers (CRCs) or in entrances to critical structures, such as hospitals and publicbuildings.This project has purchased new radiation detection equipment for teaching laboratory. Theequipment includes Radiation Emergency Response Kit (Ludlum Model 2241-3RK2) [4],Portable Portal Monitor (Ludlum Model 52-1-1) [5], and Electronic Personal Dosimeter(Canberra’s UltraRadiac-Plus) [6]. Radiation Emergency Response Kit, Electronic PersonalDosimeter, and Portal Monitor are
Treuren is an Associate Professor in the Department of Engineering at Baylor University. He received his B. S. in Aeronautical Engineering from the USAF Academy in Colorado Springs, Colorado and his M. S. in Engineering from Princeton University in Princeton, New Jersey. After serving as USAF pilot in KC-135 and KC-10 aircraft, he completed his DPhil in Engineering Sciences at the University of Oxford, United Kingdom and returned to the USAF Academy to teach heat transfer and propulsion systems. At Baylor University, he teaches courses in laboratory techniques, fluid mechanics, energy systems, and propulsion systems, as well as freshman engineering. Research interests include renewable energy to include small wind
Support Hands-on Learning in the Teaching of Control and Systems Theory,” Engineering Education, vol. 9, no. 1, pp. 62–73, Jul. 2014.[5] P. S. Shiakolas and D. Piyabongkarn, “Development of a real-time digital control system with a hardware-in- the-loop magnetic levitation device for reinforcement of controls education,” IEEE Transactions on Education, vol. 46, no. 1, pp. 79–87, Feb. 2003.[6] R. M. Reck and R. S. Sreenivas, “Developing a new affordable DC motor laboratory kit for an existing undergraduate controls course,” in American Control Conference (ACC), 2015, 2015, pp. 2801–2806.[7] S. S. Nudehi, P. E. Johnson, and G. S. Duncan, “A control systems laboratory for undergraduate mechanical engineering
’ hands-on exploration of aconcept occurs prior to formal instruction. In the course, student exploration of fundamentalstructural engineering concepts was facilitated through the following activities: (i) full-classphysical demonstrations led by the instructor during lecture, (ii) small-group experimentation ina laboratory setting, and (iii) case studies highlighting both failures and exemplarynatural/engineered structures presented via instructor lectures and supplementary multi-mediamaterials. The objective of this paper is demonstrate how the “exploration before theory”approach can be implemented and what is required to accomplish the hands-on, inquiry,discussion, and formal teaching aspects that comprise this teaching style. Associated with
Hands on Education in Integrated Curriculum Lin Lin University of Southern Maine1. Introduction:It has been demonstrated by numerous studies that the combination of theory and hands-onexperience is a critical component of engineering education [1]. To teach engineering studentshow to design an experiment, preform a test, collect and analyze data, draw conclusions, etc. arecritical. Hands on laboratory experiences can be delivered in various ways. They are eitherintegrated into courses that contain both lectures and lab components or offered separately as labcourses.Traditionally, mechanical engineering programs offer 2 or 3 mechanical lab
laboratory experi- ments. He is currently doing a collaborative research funded by NSF on Smart Grid energy routers design. Dr. Osareh can be reached at osareh@ncat.eduDr. John Okyere Attia P.E., Prairie View A&M University Dr. John Okyere Attia is Professor of the Electrical and Computer Engineering at Prairie View A&M University. He teaches graduate and undergraduate courses in Electrical and Computer Engineering in the field of Electronics, Circuit Analysis, Instrumentation Systems, and VLSI Design. Dr. Attia earned his c American Society for Engineering Education, 2016 Paper ID #17045 Ph.D
Paper ID #15618Collaboration between Seniors and Freshmen on Senior Capstone ProjectsProf. Anthony Butterfield, University of Utah Anthony Butterfield is an Assistant Professor (Lecturing) in the Chemical Engineering Department of the University of Utah. He received his B. S. and Ph. D. from the University of Utah and a M. S. from the University of California, San Diego. His teaching responsibilities include the senior unit operations laboratory and freshman design laboratory. His research interests focus on undergraduate education, targeted drug delivery, photobioreactor design, and instrumentation.Kyle Joe Branch
received the Kerry Bruce Clark award for Excellence in Teaching, Florida Tech’s highest teaching award, for the 2013-2014 aca- demic year. c American Society for Engineering Education, 2016 A Fatigue Life Experiment for Aerospace Engineering UndergraduatesAbstractThe importance of fatigue in aerospace structural design suggests the need for this topic to beaddressed as part of aerospace engineering undergraduate curricula. This paper describes asequence of laboratory experiments for upper level aerospace engineering students thatemphasizes stress concentrations and their role in quasistatic and fatigue loading. The fatigueexperiment is conducted with a
- Romania, Faculty of Engineering, Department of Industrial Engineering and Management, Romania. His teaching subjects are Ergonomics, Management, Human Resources Management, Occupational Health and Safety Management, Production Systems Engineering. His research fields of interest are linked with the impact of the knowledge based society upon the social / human dynamics / evolution and the production systems. He regularly publishes and participates on international scientific conferences. Lucian Cioca is the Ad- ministrator of the LBUS Department of Consulting, Training and Lifelong Learning, Doctoral Advisor in Engineering and Management, Member of the National Council for Attestation of Academic Titles, Diplomas
students with a national labs, beneficial relationship building withand guidance from program managers, and cross-discipline collaborations.5.2.3 Tenure Track Mid-Career Faculty Research indicates that participating in a professional development programs, positivelyimpacts mid-career faculty’s life inside and outside of the academy10. In addition, facultyreported that their energy and enthusiasm was recharged from these experiences. Facultyobserved enhancement in their knowledge, teaching satisfaction, and confidence10. Recognizing needs unique to mid-career faculty, the COE Faculty Development Officeprovides programs tailored to promote productivity and career refreshment such as NSF fundingagency and national laboratory trips to renew
Paper ID #17401Engaging Minority Students in Sustainable Bioenergy and Water Qualitythrough an Education and Research NetworkDr. Krystel Castillo P.E., The University of Texas - San Antonio Dr. Krystel Castillo is currently the GreenStar Endowed Assistant Professor in Energy in the Department of Mechanical Engineering and co-Director of the Manufacturing Systems and Automation Laboratory at The University of Texas at San Antonio (UTSA). Dr. Castillo’s research expertise is in two primary areas. The first is mathematical programming and optimization techniques for analyzing large-scale, complex systems under uncertainty
University of Minnesota Duluth faculty, he spent four years at the Natural Resources Research Institute as a Research Fellow in the Center for Water and the Environment engaged in computational toxicology research. His current research interests include inquiry-based laboratory activities and the flipped classroom.Dr. Joshua W. Hamilton, University of Minnesota DuluthProf. Elizabeth M. Hill, University of Minnesota Duluth Dr. Hill is focused on active learning teaching methods and research for engineering education. After receiving her Ph.D. from the Georgia Institute of Technology, Dr. Hill spent several years working on polymer processing research and advanced materials manufacturing. She has an extensive background in
Paper ID #16477Implementing a Challenge-Inspired Undergraduate ExperienceDr. Marcia Pool, University of Illinois, Urbana-Champaign Dr. Marcia Pool is a Lecturer in bioengineering at the University of Illinois at Urbana-Champaign. In her career, Marcia has been active in improving undergraduate education through developing problem-based laboratories to enhance experimental design skills; developing a preliminary design course focused on problem identification and market space (based on an industry partner’s protocol); and mentoring and guiding student teams through the senior design capstone course and a translational
Paper ID #14909Improving the Impact of Experiential Learning Activities through the Assess-ment of Student Learning StylesDr. Michael Johnson, Texas A&M University Dr. Michael D. Johnson is an associate professor in the Department of Engineering Technology and In- dustrial Distribution at Texas A&M University. Prior to joining the faculty at Texas A&M, he was a senior product development engineer at the 3M Corporate Research Laboratory in St. Paul, Minnesota. He received his B.S. in mechanical engineering from Michigan State University and his S.M. and Ph.D. from the Massachusetts Institute of Technology. Dr
. It makessense then that a polymer processing should not only teach this method, but provide a hands-ondemonstration of its use in a laboratory exercise.The experiment of interest in this work required students to operate a Morgan-Press injectionmolding machine priced around $25,000. In this experiment students produced molded circulardiscs with fiber filled and unfilled polypropylene produced by RTP materials. The RTPpolypropylene pellets prices vary on fiber filler content and is available by contacting themanufacturer. The Morgan-Press and molded discs are shown in Figure 1. Figure 1. Experimental equipment and molded parts in composites lab: A) Morgan-Pressinjection molding machine B) Fiber-free polypropylene disc C) Fiber-filled
Writing Program Administration in STEM. c American Society for Engineering Education, 2016 Extending WID to train mechanical engineering GTAs to evaluate student writingAbstractBeyond first-year composition, the undergraduate mechanical engineering curriculum providesfew opportunities for students to develop technical writing skills. One underutilized path forstudents to strengthen those skills is the required sequence of laboratory courses, where studentswrite reports that are evaluated by graduate teaching assistants (GTAs), many of whom speakEnglish as a second language. Historically, engineering GTAs have not been trained informative assessment techniques to help
have same teaching staffthat coordinates the unit delivery and assessment. The comparison of partial DBL and fullDBL is shown below in Table 1. Table 1: Comparison of partial DBL and Full DBL Partial DBL Full DBL Assessment - One Design project (30%) - Design project 1 (50%) + One laboratory project – Concrete Lab (15%) - Design project 2 (50%) - Final examination (55%) Contact - 3x1 hour Class per week - 1 x 2 hour Class per week - 1x1 hour Seminar per week - 1 x 2
2016 ASEE Rocky Mountain Section ConferenceIntegrating Research into Undergraduate Courses: Experiences from a Multi- Disciplinary Faculty Learning Community Dina Battaglia, Krishna Sampigethaya, Akhan Almagambetov, Mehran Andalibi, Tyrone Groh, Kaela Martin, Matt Pavlina, Sam Siewert, and Anne Boettcher Embry-Riddle Aeronautical University, Prescott, AZAbstractA Faculty Learning Community (FLC) in any university provides an excellent way for faculty toboth innovate and improve teaching methods and styles. When our FLC, consisting of sevenfaculty members and two staff members, convened, it became apparent across academicdisciplines that undergraduate research
acquired for the labs and studentswere introduced to them at the end of the semester. The platforms used for the lab experimentsare Nexys™3, based on XILINX Spartan-6 FPGA chip and manufactured by DigilentInc17. TheNexys™3 board is presented in figure 1. Figure 1 Nexys™3 Spartan-6 FPGA boardsIn the academic year 2013-2014, a new lab manual was created, teaching students design entry,and prototyping using Xilinx ISE® tools and Digilent ADEPT software. The laboratory tutorialswere based on materials provided at workshops sponsored by the NSF ATE grant “DUE-1003736 – Developing the Digital Technologist for the New Millennium” and posted on-line at18.The first author of this paper attended the NSF workshops, finding them
University in 2006. Prior to joining MSOE in 2009, he was a Technical Staff mem- ber at MIT Lincoln Laboratory. He teaches courses in the signal processing, communication systems, and embedded systems areas.Dr. Richard W. Kelnhofer, Milwaukee School of Engineering Dr. Kelnhofer is the Program Director of Electrical Engineering and an Associate Professor at Milwaukee School of Engineering (MSOE). Formerly, he held engineering and managerial positions in the telecom- munications industry. He received his Ph.D. in Electrical Engineering from Marquette University in 1997. Dr. Kelnhofer teaches courses in design, circuits, communication systems, signal processing, and infor- mation and coding theory.Dr. Jay Wierer, Milwaukee
awareness.) Touch, in particular, may be underappreciated as a component in studentlearning, since it can increase students’ long-term memory and recall of the phenomena.One of the drivers of the debate is the increasing complexity and expense of laboratory equipment.In order to give students a taste of the current state-of-the-art in industry and in graduate researchlabs, university faculty have sought to acquire highly accurate and sophisticated tools, which mustbe housed in dedicated laboratory spaces and maintained by teaching assistants who candemonstrate their use to undergraduate students. In contrast, the laboratory experiences proposedin this research are purposely designed to be portable, affordable, and when possible, studentowned, and
or for real world studies of human power generation during exercise.Makerspaces and living laboratories are examples of how universities are actively investing inmore hands-on educational missions outside of the classroom, but these spaces may be used forcore research activities as well.Living laboratories seek to build on the extensive research support for team-based, active,project-based, and design-based learning to create spaces that support hands-on, open-endedlearning throughout the curriculum. The Integrated Teaching Learning Laboratory (ITLL) at theUniversity of Colorado Boulder is a pioneering example of such a space. Opened in 1997, theITLL supports a computer simulation lab, integrated networks of experimental equipment, twolarge