, Northwestern State University, and Franklin University. Dr. Bachnak received his B.S., M.S., and Ph.D. degrees in Electrical Engineering from Ohio University. His experience includes several fellowships with NASA and the US Navy Laboratories and employment with Koch Industries. Dr. Bachnak is a registered Professional Engineer in the State of Texas, a senior member of IEEE and ISA, and a member of ASEE.Dr. Rohitha Goonatilake, Texas A&M International University (TAMIU) Dr. Rohitha Goonatilake, professor of mathematics, received his Ph.D. in Applied Mathematics from Kent State University, in Kent, OH in Fall 1997, three masters in the areas of applied mathematics, mathemat- ics, and actuarial sciences, and a bachelor’s
: stephen straits@taylor.eduDr. Hank D. Voss, Taylor University Dr. Hank D. Voss received his Ph.D. in Electrical Engineering from University of Illinois in 1977.He then worked for Lockheed Palo Alto Research Laboratories prior to coming to Taylor University in 1994. He is currently a Professor of Engineering and Physics at Taylor University. Some of the courses that he reg- ularly has taught include Principles of Engineering, Intro to Electronics, Statics, Advanced Electronics, Jr. Engineering Projects, FE Review, Control Systems, Fundamentals of Space Flight Systems, Astronomy, and Sr. Capstone Sequence. He enjoys mentoring undergraduate students in aerospace, sensors, and energy-related research projects. Some of
Oak Ridge NationalLaboratory, was contracted to develop 5 two-week modules for Summer Bridge sites toincorporate the hands-on STEM project experience. Hands-on projects are based on research 3and work happening at partner national laboratories and include engineering graphics, 3Dprinting, introductory-level computer programming, and cybersecurity simulations. The projectsare also contextualized for students to help real world issues and are approachable for studentswho have no experience in the topic. Lastly, each module encourages facilitators to shareresources and career pathways available at the national labs in these areas. This approach
, Georgia Institute of Technology Yiming Guo is pursuing a Master of Science degree in Electrical Engineering at the Georgia Institute of Technology. He received his Bachelor of Science degree at University of California, Los Angeles. His primary interests involve machine learning and circuit design.Dr. Ying Zhang, Georgia Institute of Technology Dr. Ying Zhang is a Professor and Senior Associate Chair in the School of Electrical and Computer Engineering at Georgia Tech. She is the director of the Sensors and Intelligent Systems Laboratory at Georgia Tech. Her research interests are centered on systems-level interdisciplinary problems across multiple engineering disciplines, with AI-enabled personalized engineering
difficultieswith rigid body dynamics among science and engineering students and among teachers expectedto teach the topic of balancing to precollege students. In 1995, we began to examine student performance in solving the types of mechanicsproblems assigned in the introductory calculus-based physics course. We hoped to developtutorials that would help students learn how to solve such problems, especially those that requiremore than rote application of memorized algorithms. In 1996, the Physics Education Group wasconsulted by faculty in the College of Engineering about ways in which they could improveinstruction in the sophomore engineering mechanics courses.1 We volunteered to advise them onthe development of supplementary instructional materials
difficultieswith rigid body dynamics among science and engineering students and among teachers expectedto teach the topic of balancing to precollege students. In 1995, we began to examine student performance in solving the types of mechanicsproblems assigned in the introductory calculus-based physics course. We hoped to developtutorials that would help students learn how to solve such problems, especially those that requiremore than rote application of memorized algorithms. In 1996, the Physics Education Group wasconsulted by faculty in the College of Engineering about ways in which they could improveinstruction in the sophomore engineering mechanics courses.1 We volunteered to advise them onthe development of supplementary instructional materials
Paper ID #26331Pain and Gain: Barriers and Opportunities for Integrating SociotechnicalThinking into Diverse Engineering CoursesDr. Stephanie A. Claussen, Colorado School of Mines Stephanie Claussen’s experience spans both engineering and education research. She obtained her B.S. in Electrical Engineering from the Massachusetts Institute of Technology in 2005. Her Ph.D. work at Stan- ford University focused on optoelectronics, and she continues that work in her position at the Colorado School of Mines, primarily with the involvement of undergraduate researchers. In her role as an Associate Teaching Professor, she is
membersprovide an invaluable link between industry and the engineering school by mentoring our studentsone-on-one. Because of students’ intense schedules, we do not require mentoring; however,students who elect to work with a mentor consistently perform better than those who do not.Clearly, the relationship that develops between a dedicated experienced professional and a young“apprentice” has no substitute.Between 1987 and 1999, our program grew to reach about 65 percent of our upper-level studentsat some level of instruction—either via our “stand-alone” three-credit technical electives10 or viashort modules integrated into design project, internship, laboratory, and other engineeringcourses. Our TC faculty tailored the short modules (typically five or
Research Professor in the School of Materials at ASU and has been teaching and developing new content for materials science and engineering classes and laboratories. She has developed new content and contextual teaching methods from her experience as a researcher and General Manager at Honeywell Inc. She is currently working to develop new assessments to reveal and address student misconceptions in introductory materials engineering classes.Stephen Krause, Arizona State University Stephen Krause, Arizona State University Stephen Krause is Professor in the School of Materials in the Fulton School of Engineering at Arizona State University. He teaches in the areas of bridging engineering and
engineering, diversity issues in engineering, and distance delivered engineering education. She is member of ASEE, ASME and IEEE.Dr. Joshua Marquit, Utah State University Joshua Marquit is an Instructor in the Psychology Department at Utah State University. He has a doctoral degree in psychology, with an emphasis on applied and experimental methodology. He teaches under- graduate and graduate research methods and statistics courses on campus, online, and through distance broadcast learning formats. He has previous research experience with the U.S. National Parks Service, NASA, and Utah Department of Environmental Quality. His research interests include computer-mediated communication, Internet infidelity, online medical
influence both engineering education and en- trepreneurship, and the interactions between educational pedagogy and entrepreneurship.Dr. Ella Lee Ingram, Rose-Hulman Institute of Technology Ella L. Ingram is an Associate Professor of Applied Biology and Biomedical Engineering and Director of the Center for the Practice and Scholarship of Education at Rose-Hulman Institute of Technology. Her educational research interests include promoting successful change practice of STEM faculty, effective evolution and ecology instruction, and facilitating undergraduate research experiences. Her teaching port- folio includes courses on: nutrition, introductory biology, ecology and environmental studies, evolution, evolutionary medicine
Paper ID #9083Introducing an Instructional Model for ”Flipped Engineering Classrooms”-Part (II): How Do Group Discussions Foster Meaningful Learning?Dr. Jia-Ling Lin, University of Minnesota, Twin Cities Dr. Jia-Ling Lin is a research scientist in the STEM (Science, Technology, Engineering, and Mathemat- ics) Education Center at the University of Minnesota Twin Cities. Her research is centered in areas of teaching and learning in engineering and physics. In particular, she focuses on establishing and examin- ing instructional models that facilitate problem solving and deep learning in physics and engineering for
to work through all of the lessons themselves and began to devise implementationplans for their own classrooms. During the second week, they were invited to bring two studentsas part of a teaching laboratory. During this week, the teachers were responsible for teaching themodules to the students in a highly supported environment, surrounded by SENSE IT staff, whowere available to assist with any questions or concerns. This gave the teachers the opportunity toreview the materials, as well as to see how they work with students, thus enabling them to betterprepare for full classroom teaching.The SENSE IT teachers also participated in four full-day professional development workshopsduring the school year. The workshops gave the teachers an
pairings prescribed by the instructor. Each pairing lastedroughly five weeks, ensuring that students worked with at least three different peers during thesemester.The course was supported by one instructor and two dedicated teaching assistants (TAs), with allthree members of the instructional staff holding at least two office hours each week. One TA,Herman, also worked as a student staff member in one of the student-focused hands-on learningengineering laboratories on campus, while the other TA, Mary, also worked as a tutor for theengineering college and held additional office hours in one of the on-campus engineering studentdormitories. Both TAs were engineering majors simultaneously pursuing K-12 secondaryteaching licensure in mathematics, so
Paper ID #18458Technical Communication Instruction for Graduate Students: The Commu-nication Lab vs, A CourseAlex Jordan Hanson, Massachusetts Institute of Technology Alex Hanson is a PhD candidate in the Electrical Engineering and Computer Science department at MIT and a tutor in the Communication Lab. He earned the S.M. degree from MIT in 2016 and the B.E. degree from Dartmouth College in 2014.Dr. Peter Lindahl, Massachusetts Institute of Technology Dr. Peter Lindahl graduated with his Ph.D. in Engineering from Montana State University in 2013. He is currently a postdoctoral associate in the Research Laboratory of
. Common Programmatic FeaturesAll of the Foundation Coalition institutions use a cohort or cluster system and blockschedule some of their freshmen students, and often some sophomore students as well,for two or more courses. [The terms “cohort” and “cluster” are used interchangeably; inthis report we primarily use “cohort.”] This structure is usually connected to an integratedcurriculum, which means that the faculty teaching those courses work together, to agreater or lesser degree, to provide coordinated instruction to these students. For thefreshman curriculum, that means that faculty work across disciplines. For example, somecombination of engineering, mathematics, physics, chemistry, and, at times, Englishcourses are scheduled for students as a
Indiana as a Clinical Assistant Professor of Engineering Technology. He holds three patents, has served as an IEEE section officer since 2004, and has been a Licensed Professional Engineer in the State of Indiana since 2005. © American Society for Engineering Education, 2022 Powered by www.slayte.com A Tool Suite for Automation LabsAbstractProgrammable Logic Controllers (PLCs) and Human Machine Interfaces (HMIs) are used toautomate industrial equipment and processes. They are frequently used in laboratory activities inan automation course that is part of an engineering or engineering technology curriculum.Sensors and actuators to simulate
engineering problem-solving. His group's current research interests include machine-learning enhanced numerical modeling of composite materials, reinforcement learning and linear temporal logics for robotics and control, AI-powered design of distributed reservoir systems to mitigate the flood, intelligent traffic light, and quantum computing.James Buchholz (Associate Professor) James Buchholz is an Associate Professor of Mechanical Engineering at the University of Iowa. He received the Bachelors and Masters degrees in Mechanical Engineering from the University of Alberta, and the Ph.D. degree in Mechanical and Aerospace Engineering from Princeton University. He teaches courses in fluid mechanics and conducts research in
Norwegian Centre for Autonomous Marine Operations and Systems (a Centre of Excellence for re- search in Norway) on locomotion control of ground and swimming snake robots. In 2011, he received the Masters degree from the University of Alberta, Canada where he was with the Telerobotic & Biorobotic Systems Laboratory. He joined the Locomotor Control Systems Laboratory at the University of Texas, Dallas, as a Postdoctoral Research Associate in November 2016, where he was using neuromechanical principles in the context of feedback control theory to design wearable robot control systems. His research interests include robotics, control systems, and cyber-physical systems.Prof. Destin Heilman
University of Arkansas. He has a strong industrial background in software, sensing and control applications for offshore oil technology. His interests include undergraduate teaching and curriculum development. Page 13.1375.1© American Society for Engineering Education, 2008 Utilizing Robotics to Facilitate Project-Based Learning: A Student PerspectiveAbstractThis paper describes a freshman engineering curriculum that utilizes a robotics kit to facilitatehands-on learning. Student participants are required to purchase the robotics kit in lieu oftextbooks. In the first of three
development positions in industry. From 1991 to 2002, he was a Staff Engineer with Tellabs, Naperville, IL. Additionally, in 1991, he was with AT&T Bell Telephone Laboratories, Naperville; from 1988 to 1991, he was with R. R. Donnelley & Sons, Lisle, IL; and from 1985 to 1986, he was with Zenith Electronics, Glenview, IL. His interests include adaptive filtering, speech enhancement, wireless and wireline communications, and engineering education. Dr. Dunne is a member of the IEEE, Eta Kappa Nu and ASEE. Chirag Parikh, Grand Valley State University Chirag Parikh is an Assistant Professor of Electrical and Computer Engineering at Grand Valley State University, Grand Rapids, Michigan. He
trendcontinues, the learning curve for tomorrows’ engineers grows steeper and the gap betweendesigning embedded systems in industry and teaching embedded systems development at auniversity widens. Educators are therefore challenged to adapt to advances in embedded systemswhile maintaining courseware that is broken into simple building blocks capable of maintainingcontinuity along the growth path. This requires a rich hands-on curriculum that encapsulatesmodular hardware, software, and courseware that can scale from fundamental concepts to moreadvanced topics.This paper introduces a modular demonstration, development and learning hardware platformand an example set of progressive laboratory exercises that help to meet this challenge. Theplatform includes
Antonio College Klaus Bartels is an Adjunct Faculty member at San Antonio College (SAC) in both the Mathematics De- partment and the Physics/Engineering/Architecture Dept. He was born near Buenos Aires, Argentina and immigrated to the U.S. in 1956. He grew up and went to college in the Boston, MA area. He has a B.S.E.E. from Tufts University (1972) and an M.S.E.E. from M.I.T. (1975). He served as a Communications- Electronics Engineer/Officer in the USAF from 1975 to 1999, retiring as a colonel. He worked part time as a Flight Director at the Challenger Learning Center of San Antonio from 2000 to 2009, and has been teaching remedial math and engineering classes at SAC since 2000. He has been involved in various
whatever he learns. He is currently doing his research in packaging technology under Professor Akram Hossain in Purdue University, Calumet. After seeing his insight, the Professor offered him a Teaching Assistant position in the laboratory for guiding the students in the subject of Mechatronics.Dr. Akram Hossain, Purdue University Northwest Akram Hossain, Purdue University Calumet Akram Hossain is a professor in the department of Engi- neering Technology and Director of the Center for Packaging Machinery Industry at Purdue University Calumet, Hammond, IN. He worked eight years in industry at various capacities. He is working with Purdue University Calumet for the past 27 years. He consults for industry on process
assistant professor in the Mechanical Engineering-Engineering Mechanics Department at Michigan Technological University since 2011. She is the founding director of the Nonlin- ear and Autonomous Systems Laboratory (NASLab). Her research interests include robotics, dynamics and control of autonomous systems, and energy autonomy. She is a recipient of 2015 National Science Foundation CAREER award and 2015 Office of Naval Research YIP award.Ms. Saeedeh Ziaeefard, Michigan Technological University Saeedeh Ziaeefard is a PhD student and research assistant with Nonlinear and Autonomous Systems Laboratory (NASLab) in the Department of Mechanical Engineering-Engineering Mechanics at Michigan Technological University. Her
to excellence in undergraduate engineering education. Focus areas include contemporary teaching and learning technologies, capstone, VIP, special degree programs with partnering academic institutions, and K-12 outreach. Dr. Filippas is especially proud of her collaboration with NSBE at VCU, an organization that embodies excellence in academics as well as community service, leadership and diversity. In addition, Dr. Filippas was instru- mental in establishing oSTEM on the campus as well as reaching out to other underrepresented minority groups to further the university’s commitment to student success and inclusive excellence.Dr. Lorraine M. Parker, Virginia Commonwealth Universtiy Dr. Parker received her Ph.D. from
Paper ID #18366Industry Funded Research Impacts on Engineering Faculty’s Research Ex-periences: A Review and Synthesis of the LiteratureMr. Eric Holloway, Purdue University, West Lafayette (College of Engineering) Eric Holloway currently serves as the Senior Director of Industry Research in the College of Engineering at Purdue University, where he focuses on industry research in the College of Engineering. From 2007-2013, Eric served as the Managing Director and the Director of Instructional Laboratories in the School of Engineering Education at Purdue University. As Director, he was in charge of the building and
Paper ID #29306An Advanced Technological Education Project for High ValueManufacturing: Lessons LearnedDr. Michael Johnson, Texas A&M University Dr. Michael D. Johnson is a professor in the Department of Engineering Technology and Industrial 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. Johnson’s research focuses on
component of conducting undergraduate research [2], [3], since information finding,data collection, and scholarly communication are all key aspects of the research process.Providing information literacy instruction to undergraduate researchers is a natural extension ofthe work librarians are already doing within classroom settings in introducing students to theresources provided by libraries and teaching them how to access and use these informationsources. Research shows that library intervention with undergraduate research can improveretention [1], help students develop more profound research questions, and increase thecomplexity of their information searches [4]. For engineering students in particular, librarianintervention through IL instruction
-understand educationmodules have the potential to enhance undergraduate students’ understanding of materials,mechanics, and even thermal concepts.It has been well-recognized that solid mechanics is one of the most critical and fundamentalengineering topics in multiple engineering education programs, such as aerospace, civil, industrial,mechanical, and petroleum engineering disciplines. Current solid mechanics education, however,mainly focuses on theoretical analysis with limited experimental demonstration. In mostengineering programs, the theoretical analysis is delivered to students via a series of courses, suchas Statics, Dynamics, Materials of Mechanics. The experimental demonstrations are only includedin one laboratory course related Materials