Paper ID #14938Effectiveness of Virtual Open Laboratory Teaching Assistant for CircuitsLaboratoriesMr. Firdous Saleheen, Temple University Firdous Saleheen received the B.Sc. degree in electrical and electronic engineering from Bangladesh University of Engineering and Technology (BUET), Dhaka, Bangladesh, in 2008, and the M.S. degree in electrical engineering from Temple University, Philadelphia, PA, USA in 2013. From 2008 to 2010, he was with Mango Teleservices Ltd., Dhaka, an international IP bandwidth provider of Bangladesh, as a Senior Engineer in the Research and Development Department. He is currently pursuing the
Paper ID #14801Teaching Practices Inventory for Engineering EducationDr. Sheng-Jen ”Tony” Hsieh, Texas A&M University Dr. Sheng-Jen (”Tony”) Hsieh is a Professor in the Dwight Look College of Engineering at Texas A&M University. He holds a joint appointment with the Department of Engineering Technology and the De- partment of Mechanical Engineering. His research interests include engineering education, cognitive task analysis, automation, robotics and control, intelligent manufacturing system design, and micro/nano manufacturing. He is also the Director of the Rockwell Automation laboratory at Texas A&M
essential elementof a student’s learning process, however for courses on electric power and machines, it is oftendifficult to give students a hands-on learning opportunity due to safety issues, expense, and lackof qualified teaching assistants. It has been reported that out of 118 schools and colleges thatparticipated in a recent survey1, 26 schools that offered power-related courses had no laboratorysupport. With the development of Machine Learning technology and Artificial Intelligence, computerprograms for virtual lab environment have become more adaptive and friendly to users.Graphical User Interface based virtual laboratories have made it possible for the user to learn theconcept more naturally. Recent advances in computer technology and
work is aimed at strengthening the security of Operating Systems and the Internet via auditing the existing code with the aid of mathematical verification tools, and redesigning with security as the primary goal. I regularly teach, among others, a course on Security that was developed with funding from NSF. c American Society for Engineering Education, 2016 CUTE Labs: Low-Cost Open-Source Instructional Laboratories for Cloud Computing Education Abstract Compared to the fast development of cloud-based applications and technology, higher education on cloud computing is seriously lagging behind. Built upon our ex
Paper ID #15668A Multidisciplinary Undergraduate Nanotechnology Education Program withIntegrated Laboratory Experience and Outreach ActivitiesDr. Priscilla J Hill, Mississippi State University Priscilla Hill is currently an Associate Professor in the Dave C. Swalm School of Chemical Engineering at Mississippi State University. She has research interests in crystallization, particle technology, population balance modeling, and process synthesis. Her teaching interests include particle technology, nanotechnol- ogy, and separations.Prof. Brenda Lee Kirkland, Department of Geosciences, Mississippi State University
Paper ID #15065A Preliminary Study on Supporting Writing Transfer in an Introductory En-gineering Laboratory CourseDr. Dave Kim, Washington State University, Vancouver Dr. Dave (Dae-Wook) Kim is an Associate Professor and Coordinator of Mechanical Engineering in the School of Engineering and Computer Science at Washington State University Vancouver. He has 18 years of experience in engineering materials and manufacturing. His research area includes materials processing, structural integrity improvement, and hybrid composite manufacturing. He has been very active in pedagogical research and undergraduate research projects, and
Paper ID #15188Teaching First-Year Engineering Design Using a Flipped Classroom ModelDr. Ann Saterbak, Rice University Ann Saterbak is Professor in the Practice in the Bioengineering Department and Associate Dean for Un- dergraduate Education in the School of Engineering at Rice University. Saterbak was responsible for developing the laboratory program in Bioengineering. Saterbak introduced problem-based learning in the School of Engineering and more recently launched a successful first-year engineering design course taught in the Oshman Engineering Design Kitchen. Saterbak is the lead author of the textbook, Bio
Paper ID #17321Supporting STEM Transfer StudentsDr. Jennifer Marie Duis, Northern Arizona University Augsburg College, Chemistry, B.S., 1999 University of Colorado—Boulder, Organic Chemistry, M.S., 2002 University of Northern Colorado, Chemical Education, Ph.D., 2008 University of British Columbia, Chemistry Teaching Laboratory Optimization with CWSEI, Postdoctoral Fellow, 2008—2011 Assistant Professor, Department of Chemistry & Biochemistry, University of Northern Arizona, Flagstaff, AZ, August 2011—PresentDr. Nena E. Bloom, Center for Science Teaching and Learning, Northern Arizona University University of Michigan
. Cognitive research and the design of science instruction. Educational Psychologist, 17, 31-53.5. Mayer, R.E. 2003. The Promise of Multimedia Learning: Using the Same Instructional Design Methods across Different Media. Learning and Instruction, 13, 125-139.6. Scalise, K., M. Timms, A. Moorjani, L. Clark, K. Holtermann, and P.S. Irvin. 2011. Student Learning in Science Simulations: Design Features That Promote Learning Gains. Journal of Research in Science Teaching, 48(9), 1050-1078.7. Mayer, R.E. and R. Moreno. 2002. Aids to Computer-Based Multimedia Learning. Learning and Instruction, 12, 107-119.8. Gunstone, R.F. and A.B. Champagne. 1990. Promoting Conceptual Change in the Laboratory. In The Student
Paper ID #14477Diffusion of Mobile, Hands-on Teaching and Learning in Puerto Rico: FirstYear ResultsDr. Juan C Morales, Universidad del Turabo Dr. Juan C. Morales, P.E., joined the Mechanical Engineering Department at Universidad del Turabo (UT), Gurabo, Puerto Rico, in 1995 and currently holds the rank of professor. Dr. Morales was the ABET Coordinator of the School of Engineering for the initial ABET-EAC accreditation of all four accredited programs at UT. He has been Department Head of Mechanical Engineering since 2003. His efforts to diffuse innovative teaching and learning practices derive directly from the outcomes
Oregon State University. He serves as the Coordinator of Collegiate Mathematics Education, as Faculty Director of the OSU Math Learning Center, and as the OSU Math Excel (Treisman Emerging Scholars) program. His main mathematics education research interests are in the use of technology to enhance teaching and learning of mathematics. He was recognized in 2009 with the Pacific Northwest Section of the Mathematical Association of America Distinguished Teaching Award. He most recently served on an Equity Task Force for the Association of Mathematics Teacher Educators.Dr. Susie J Brubaker-Cole, Oregon State University Dr. Susie Brubaker-Cole is vice provost for student affairs at Oregon State University. Prior to this
Electrical Engineering, Computer Science, and Computer Engineeringcurricula. Due to costly hardware needed for communication and networking teachinglaboratories, many of these courses are taught without a laboratory. Additionally, such hardwarebased teaching labs lack the flexibility to evolve over time and adapt to different environments.Supported by an NSF TUES type II grant, we have developed a software defined radio (SDR)based general modulation/demodulation platform for enhancing undergraduate communicationand networking curricula. In our previous NSF funded CCLI project “Evolvable wirelesslaboratory design and implementation for enhancing undergraduate wireless engineeringeducation”, we have developed and demonstrated the first nationwide
Conference for ASEE, San Antonio,” Texas, June 10-13, 2012. 2. Spencer Kim, “Transforming Curriculum for Workforce Development in Green Plastics Manufacturing Technology (GPMT),” 2013 CCLI/TUES Conference, Renaissance Hotel, Washington DC, Washington, District of Columbia, Jan. 21-22, 2013. 3. Spencer Kim and Betsy Dell, “Transforming Materials Education in Mechanical Engineering Technology,” 2012 Faculty Institute on Teaching and Learning, RIT, May 30-31, 2012. 4. Spencer Kim, “Green Plastics Laboratory by Process Oriented Guided Inquiry Learning (POGIL),” 2014 ASEE Annual Conference, Indianapolis, Indiana, June 15 - 18, 2014. 5. Spencer Kim, “Materials Laboratory Designed by Process Oriented
experience in which teachers fullyparticipate in a computer science or engineering laboratory research and engage in an inquiryfocused content-to-pedagogy teacher professional development workshop, buildingcurriculum from their lab research experience with foci on scientific experimentation andimproving students’ science achievement and literacy. The programs are aligned withCommon Core Math Standards and Next Generation Science Standards and addresses theresearch question: • What is the impact of an intensive research-based teacher professional development program on teacher and student performance?Fifty-three teachers and their 7,420 students have participated in the ACCESS 4 Teachers RETand our previous Societally Relevant Engineering
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
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
from Xi’an Jiaotong University, China and Ph.D. degree from University of Strathclyde, UK. Prior to joining UBC in 2008, she worked as a research scientist at Ryerson University on various projects in the area of CFD and heat and mass transfer. Dr. Yan has taught a variety of courses including fluid mechanics, fluid machines, mechanics of materials, calculus, and kinematics and dynamic. She has also developed undergraduate fluids laboratories and supervised many capstone projects. Her interest in SoTL is evidence-based teaching strategies, student engagement, faculty development, and teaching and learning communities. Dr. Yan is a registered P.Eng. with APEGBC and has served as reviewer for various international
writing. She has taught clients across gov- ernment, industry and higher education, including Texas Instruments, Brookhaven National Laboratory, European Southern Observatory (Chile), Simula Research Laboratory (Norway) and the University of Illinois-Urbana Champaign. Christine works closely with Penn State University faculty Michael Alley (The Craft of Scientific Presentations and The Craft of Scientific Writing) and Melissa Marshall (TED, ”Talk Nerdy to Me”) on these courses. Christine is also the director of the Engineering Ambassadors Network, a start-up organization at 25 plus universities worldwide that teaches presentation skills to undergraduate engineering students, particularly women and underrepresented
. • Week 14 (12/7/15): End of Semester Student Expo: Students display work performed during the semester and present that work in small groups to the teaching team and to their peers.4.1.2 Laboratory Deployment SummaryFor the weekly laboratory, the class population is divided into 9-sections with approximately 17-19 students per section. The Fall 2015 laboratory sessions were held in the newly constructedUMass Lowell Makerspace. Similar to the lecture portion of the class, the laboratory had a mod-ular structure: • Week 1 (9/7
; 3) setting up lightning conditions required for the successful vision error proofingand camera calibration; 4) teaching tool, application, and calibration frames; 5) performing 2Dcalibration and 2D single and multiview robotic processes; 6) performing 3D calibration and 3Dsingle view robotic vision processes. Hands-on training is an integral part of any coursedeveloped in the School of Technology at Michigan Tech, and this course is no exception. It willinclude 12 laboratory exercises, totaling 36 hours, with the goal of providing students theopportunity to configure and execute real-life, industry comparable, robotic vision scenarios. Thecourse will be similar to the existing Real-Time Robotics Systems' rigorous assessment strategyand will
an Associate Professor of Electrical and Computer Engineering at Rose-Hulman Institute of Technology. She teaches courses in circuits, electromagnetics, and medical imaging. Before joining academia in 2006, she was at the Computed Tomography Laboratory at GE’s Global Research Center for 8 years. She worked on several technology development projects in the area of X-ray CT for medical and industrial imaging. She is a named inventor on 9 patents. She has been active in the recruitment and retention of women and minorities in engineering and currently PI for an NSF-STEM grant to improve diversity at Rose-Hulman.Dr. Kathleen Meehan, Virginia Tech Kathleen Meehan earned her B.S. in electrical engineering from Manhattan
Paper ID #14778Planning and Assessment of a Workshop on Undergraduate Education in Bio-metric SystemsDr. Ravi P. Ramachandran, Rowan University Ravi P. Ramachandran received the B. Eng degree (with great distinction) from Concordia University in 1984, the M. Eng degree from McGill University in 1986 and the Ph.D. degree from McGill University in 1990. From October 1990 to December 1992, he worked at the Speech Research Department at AT&T Bell Laboratories. From January 1993 to August 1997, he was a Research Assistant Professor at Rutgers University. He was also a Senior Speech Scientist at T-Netix from July 1996 to
Society of Engineering Education with several teaching awards such as the 2004 National Outstanding Teaching Medal and the 2005 Quinn Award for experiential learning. Stephanie has conducted workshops on a variety of topics including effective teaching, inductive teaching strategies and the use of experiments and demonstrations to enhance learning.Dr. Taryn Melkus Bayles, University of Maryland, Baltimore County Taryn Bayles, Ph.D., is a Professor of the Practice of chemical engineering in the Chemical, Biochemi- cal, and Environmental Engineering Department at UMBC, where she incorporates her industrial expe- rience by bringing practical examples and interactive learning to help students understand fundamental
strong commitment to educational equity, she served in Teach For America as a high school math and physics teacher in Washington, D.C., and she was co-founder of the American Society for Engineering Education’s Stanford chapter. Dr. LeBlanc joined GWU from Alphabet Energy, a San Francisco Bay Area startup company, where she created re- search, development, and manufacturing characterization solutions for thermoelectric technologies and evaluated the potential of new power generation materials. Dr. LeBlanc’s research goals are to utilize nano- and micro-structuring techniques to improve energy systems. She uses scalable manufacturing techniques to create nanostructured materials for energy and thermal management
Paper ID #15987Assessment of a Collaborative NSF RET Program Focused on Advanced Man-ufacturing and MaterialsDr. Margaret Pinnell, University of Dayton Dr. Margaret Pinnell is the Associate Dean for Faculty and Staff Development in the school of engineering and associate professor in the Department of Mechanical and Aerospace Engineering at the University of Dayton. She teaches undergraduate and graduate materials related courses including Introduction to Ma- terials, Materials Laboratory, Engineering Innovation, Biomaterials and Engineering Design and Appro- priate Technology (ETHOS). She was director of the (Engineers in
studentsfrom outreach activities that enter two-year technical programs and the number of graduatesfrom two-year technical programs who have a working knowledge of microcontrollertechnology.Workshop attendees gain “immediate value” by participating in workshop activities. Thisimmediate value is gained through the information presented and the activities, e.g. presentationsand laboratory exercises. Immediate value is assessed through pre-workshop and post-workshopsurveys. The post-workshop surveys will also point to “potential value,” i.e. the intent tointegrate workshop material into the classes that they teach or in other professional activities ifthey don’t teach. The “Applied Value” surveys have been conducted during fall semester 2014and spring
Gwen each carved one activity from their lesson plans to apply in their classrooms.Cristina engaged her students (about half female and 40% minority) in a laboratory activityrequiring the capture and detection of bacteria at low concentrations. She reports most studentswere highly engaged in the activity, with one student extending it for a science fair project andplacing at the state-level STEM fair. Students in Gwen’s archaeology course manufactured theirown adobe bricks and then participated in a guided inquiry lab for their preservation. She reportsthat many of her 21 students (57% female, 80% minority) have inquired about careers in researchas a result of the activity.Art, who teaches Physics at his school, is developing a pre-engineering
Materials Engineering Program.Dr. Joni M Lakin, Auburn University Joni M. Lakin, Ph.D. from The University of Iowa, is Assistant Professor of Educational Foundations, Leadership, and Technology at Auburn University. Her research interests include educational assessment, educational evaluation methods, and increasing diversity in STEM fields.Dr. P.K. Raju, Auburn University Dr. P. K. Raju is the Thomas Walter Distinguished professor of Mechanical Engineering at Auburn Uni- versity. He is the co-founder and director of the NSF-funded Laboratory for Innovative Technology and Engineering Education (LITEE). LITEE has been recently recognized by the National Academy of Engi- neering as one of the model programs in the country
Paper ID #17403A Pilot Study of Project-Based Learning in General Chemistry for EngineersDr. Kent J. Crippen, University of Florida Kent Crippen is an Associate Professor of STEM education in the School of Teaching and Learning at the University of Florida and a Fellow of the American Association for the Advancement of Science. His research involves the design, development, and evaluation of STEM cyberlearning environments as well as K-12 teacher professional development. In addition to NSF and NIH-funded research involving the translation of science into materials for K12 schools, Crippen has served as PI on multiple
Paper ID #14723Design For Impact: Inquiry-based Activities for Important Concepts in HeatTransfer that Faculty Will Actually UseDr. Margot A Vigeant, Bucknell University Margot Vigeant is a professor of chemical engineering and an associate dean of engineering at Bucknell University. She earned her B.S. in chemical engineering from Cornell University, and her M.S. and Ph.D., also in chemical engineering, from the University of Virginia. Her primary research focus is on engineering pedagogy at the undergraduate level. She is particularly interested in the teaching and learning of concepts related to thermodynamics. She is