base-current generator could be stabilized if long leads areused by adding an 0.01μF ceramic capacitor between the base and emitter of the BJT under test.This paper presents an inexpensive curve tracer module for determining the IV characteristics ofcommon electronic devices. It is intended for use with introductory courses in electronics and iscompatible with both standard laboratory equipment and with “lab-in-a-box” apparatus like theNational Instruments myDAQ. It is hoped that this device will prove itself useful to a wideaudience and be beneficial to students’ understanding of basic electronic device characteristics.References[1] M. Shwehdi, C. Jacobsen, and A. Al-Rawi. “A Senior Design Project Of A f Meter Device To Assess Teaching
in a First-Year Design Course," in 2020 ASEE Virtual Annual Conference Content Access, 2020.[4] A. Phillips, K. M. Kecskemety, and D. A. Delaine, "First-year Engineering Teaching Assistant Training: Examining Different Training Models and Teaching Assistant Empowerment," in 2018 ASEE Annual Conference & Exposition, 2018.[5] L. B. Wheeler, C. P. Clark, and C. M. Grisham, "Transforming a Traditional Laboratory to an Inquiry-Based Course: Importance of Training TAs when Redesigning a Curriculum," Journal of Chemical Education, vol. 94, no. 8, pp. 1019-1026, 2017/08/08 2017.[6] C. Robinson and J. Collofello, "Utilizing undergraduate teaching assistants in active learning environments," in 2012
graduate studentsenrolled in mathematics and computer science were international students [1]. Moreover, thenumber of international students, both at graduate and undergraduate levels, has been increasingannually since 1950 with few exceptions [2]. Besides contributing to the ongoing research and development work at the universities,adding to the cultural diversity on campuses, and contributing to university’s finances throughtuition and other fees, international graduate students play an important role in the undergraduateeducation at US universities by serving as teaching assistants (TAs), especially in STEMdisciplines [3]. These international teaching assistants (ITAs) serve as laboratory assistants,graders for assignments, and
full of lessons and engineering applications.Above all, every university has a power plant and workers who are full of experience and readyto share their experience with students with enthusiasm and dedication. The power plant is ademonstration laboratory that can be used to teach many engineering programs including heattransfer, thermodynamics, machinery, water treatment and water quality, materials, structure,combustion, and, more importantly, all these are undergone under dynamic conditions.Managing this mentorship was difficult, due to the time constraints and the corona pandemic.One of the advantages is the proximity of the early college to the engineering building. Research,education, and outreach are involved in this mentoring at
]. Simplylecturing about these steps is insufficient to give students the experience necessary to effectivelyiterate in teams. Failure is one of the main reasons for iteration, but is difficult to teach about.The ability to identify and assess failures or other reasons for iteration can only be properlylearned through hands-on experience. Previous studies have highlighted the ability to teach suchconcepts using hands-on activities such as model building and laboratory exercises. Lemons etal. showed that model building helped students generate ideas, make ties between concept andphysical object, and finally make the students more away of their process-based strategies [6].Mackenchnie and Buchanan have employed hands-on activities in a laboratory class using
Dr. Blake Everett Johnson received his doctorate in Theoretical and Applied Mechanics at the University of Illinois at Urbana-Champaign in 2012. Dr. Johnson now works as a lecturer and lab manager in the De- partment of Mechanical Science and Engineering at the University of Illinois. While remaining interested and active in the field of experimental fluid mechanics, he has chosen to spend most of his professional energy on improving the teaching of thermo/fluids laboratory courses through the development of en- gaging and intellectually-stimulating laboratory exercises, as well as improving introductory mechanics education and design courses in the MechSE department.Dr. Matthew D. Goodman, University of Illinois
Valley State University Amy Lenz is faculty in mechanical engineering at Grand Valley State University, teaching dynamic sys- tems and controls. c American Society for Engineering Education, 2017 Teaching Dynamic Systems and Control without DynamicsAbstractThis work-in-progress paper explores whether or not it is possible to teach dynamic systems andcontrol effectively to students who do not take dynamics. Grand Valley State University offerstwo different versions of a junior-level dynamic systems and control course. One version is formechanical engineering majors and requires dynamics as a prerequisite; the other version is forProduct Design and Manufacturing Engineering
instructor,whether the students believed she was female or male), no difference in the student ratings of theinstructors was found. However, when SET results were grouped by perceived instructor gender(i.e. both the female and male instructors, when the students believed each was female), studentsrated the perceived male instructor as significantly better than the perceived female instructor.These findings support the idea that there is a real bias that exists among students in evaluatinginstructors, not simply a difference in the teaching styles or teaching effectiveness betweenfemale and male instructors.Another study performed a laboratory experiment where students were shown an identicallecture delivered by a stick figure with a gender-neutral
. Socialmanufacturing is an emerging form of making and marketing customized products by 3Dprinters and crowdsourcing in cyberspace. A CDIO-based Social Manufacturing Laboratory(CDIO-SML) that integrates 3D printing techniques for additive manufacturing ande-commerce for marketing has been developed and described in this paper. The lab consistsof five platforms for 1) teaching integration, 2) requirement acquisition, 3) interactive designand innovation, 4) manufacturing and production processes, 5) cyberspace-based marketingand operations. These five platforms facilitate product development from the requirement,design, manufacturing, marketing, to services. Each student participates in the whole processof the product life cycle and plays the roles of 1
. His recent projects concentrate on course building efforts with substantial pedagogical and technological innovations. Prior to this, Chad led a laptop-required program for pre-service teachers in the UT Austin College of Education. c American Society for Engineering Education, 2016 Teaching Embedded Systems in a MOOC FormatAbstractWe have designed and implemented a Massive Open Online Class (MOOC) with a substantiallab component within the edX platform. We deployed this MOOC three times with a totalenrollment of over 100,000 students. If MOOCs are truly going to transform engineeringeducation, then they must be able to deliver classes with laboratory components. Our offeringgoes a long
Paper ID #39116Increasing Student Motivation and Learning by Adopting theExperiment-Centric Pedagogy: A Case of Undergraduates in BiologyMs. Blessing Isoyiza ADEIKA, Morgan State University Blessing ADEIKA is a graduate student at Morgan State University currently studying Advanced Com- puting. She has interest in teaching student basic concepts by adopting an Experiment-centric approach to it. She also is currently working towards being a Data Scientist - AI/ML Expert and hope to use her skills to prefer solutions in the Medical, Financial, Technology and any other Sector she sees a need to be filled/catered for.Dr
. Page 26.1462.1 c American Society for Engineering Education, 2015 “Teaching a first course in Human-Robot Interaction”AbstractThis paper will present the details of the design and implementation of an introductory course inhuman-robot interaction (HRI) for graduate and undergraduate students from various disciplines.Human-Robot Interaction is a multidisciplinary field that focuses on identifying methods forrobots to successfully interact with humans. This field of study involves the understanding,design, and evaluation of robotics systems to be used by or with humans1.The author will summarize the key elements of a first course in Human-Robot Interaction with asurvey of the most relevant areas in the
, instructional laboratories, and equity-focused teaching. She teaches biomedical instrumentation, signal processing, and control systems. She earned a Ph.D. in Systems Engineering from the University of Illinois Urbana-Champaign, an M.S. in Electrical Engineering from Iowa State University, and a B.S. in Electrical Engineering from Rose-Hulman Institute of Technology. ©American Society for Engineering Education, 2024 Designing a Bioinstrumentation Lab for All LearnersIntroductionCombining the experiences of the instructor, teaching assistant, and students, we utilizedparticipatory action research and the application of entrepreneurial mindset to improve theexperience for all students in a
leveraging technology to enhance learning experiences and broaden access to engineering education. He has experience as a practicing engineer and has taught at the university and community-college levels. ©American Society for Engineering Education, 2024 Work-in Progress: Aligning an Engineering Hands-On Learning Program to College Strategy: Reducing Implementation Barriers to Support Faculty, Students, and Their SuccessAbstractThis Work in Progress addresses two of ELOS’ requested foci: pedagogy and best practices oflaboratory courses and hands-on laboratory instruction. We describe a redesign plan in theIntegrated Teaching and Learning Program (ITLP) at University of Colorado Boulder
thesystem. Other extensions we studied included adding laboratories and test locations which oftenprolonged the wait times in the system. Care should be taken for the average service times whenadded lab-works or other facilities. Finally, certain percentages of emergency room patients oftenend up having an overnight stay in the hospital. If a complete study is necessary, such extensionscan be added to the system.6. Concluding RemarksWe presented a simple yet powerful simulation model to teach our future engineers. The simulationcase study exhibits a drop-in healthcare clinic with staff, nurses, doctors, and patients. Due to thefamiliarity of a healthcare system, most students immediately recognize themselves in thisscenario. Further, the simplicity
Paper ID #20267Teaching Electromagnetic Compatibility and Component Parameter Toler-ancesMr. Andrew Rusek, Oakland UniversityDr. Subramaniam Ganesan, Oakland University Dr. Subramaniam Ganesan, is a Professor in the department of Electrical and Computer Engineering, Oakland University, Rochester, MI 48309, USA. He has over 30 years of teaching and research experi- ence in Digital Computer systems. He was the chair of the CSE department from1991 to 98. He has published over 100 journal papers, more than 200 papers in conference proceedings, and 3 books. He published a book on Java in 2003. He developed a custom DSP board
Paper ID #23848The Benefit of Training Undergraduate Teaching AssistantsDr. Gianluca Guadagni, University of Virginia PhD in Mathematics University of Virginia Assistant Professor, Applied Mathematics, Department of Engineering and Society, School of Engineer- ing and Applied Sciences, University of Virginia.Dr. Hui Ma, University of Virginia Hui Ma received her Ph.D. in applied mathematics from the University of Alabama at Birmingham in 2012. Her current research focuses on the Errors-In-Variables (EIV) model and fitting geometric curves and surfaces to observed data points. Before joining the University of Virginia
technology,however, only the three finalist projects are discussed here. Two of the contributions primarilyfocused on experimenting with the flipped classroom practice due to availability of the state ofthe art video and recording equipment purchased and provided by the University. However, oneimplementation targeted introductory math courses while the other focused on a core mechanicalengineering course. Developing a visual support tool to aid learning and training activities for achemical engineering laboratory was the theme of the third project. Table 1 lists the projects andtheir status.Table 1. Three finalist projects from the 2014 Teaching Innovation with Technology Competition. Project Title
experience as a bridge construction project engineer for a construction contractor and as a research engineer for the Naval Civil Engineering Laboratory in Port Hueneme California. His teaching interests include construction equipment, cost estimating and construction process design. His research interests include highway and heavy construction methods, road maintenance methods, innovations in construction process administration, engineering education, hybrid learning and online learning. c American Society for Engineering Education, 2016 A Flipped Classroom Approach to Teaching Transportation EngineeringAbstract: The flipped classroom approach has gained increasing popularity in higher
Paper ID #40551Innovations in Remote Teaching of Engineering Design TeamsProf. Soyoung Kang, University of Washington Soyoung Kang (she/her) is an assistant teaching professor and Clary Family Foundation early career pro- fessor in the mechanical engineering department at the University of Washington (UW). She is also the executive director of the Engineering Innovation in Health (EIH) program that partners teams of multidis- ciplinary undergraduate and graduate students with health professionals to develop technical solutions to pressing health challenges. Dr. Kang works closely with faculty from across the UW to foster
produce high-quality results. These aspects are critical to ensure that the experiments arenot only effective but also practical and safe for students to conduct. Our research exploresinnovative methods to streamline experimental setups, enhance equipment functionality, andreinforce safety measures. The second question investigates the most effective learning objectivesand pedagogical approaches for integrating these desk-scale experiments into a blended learningenvironment within chemical engineering laboratories. Blended learning combines traditionalface-to-face instruction with online resources and activities. We aim to identify optimal learningobjectives and teaching methodologies that harness the potential of desk-scale experiments
Paper ID #25855Simulation Software for Online Teaching of ECE CoursesDr. Alireza Kavianpour, DeVry University, Pomona Dr. Alireza Kavianpour received his PH.D. Degree from University of Southern California (USC). He is currently Senior Professor at DeVry University, Pomona, CA. Dr. Kavianpour is the author and co-author of over forty technical papers all published in IEEE Journals or referred conferences. Before joining DeVry University he was a researcher at the University of California, Irvine and consultant at Qualcom Inc. His main interests are in the areas of embedded systems and computer architecture
interaction. According to Schunk35, students feel greater efficacy whenthey are given short-term, very specific objectives. These practices are all key elementsof the ETW, more because they are universal principles of how all students best learn,rather than being unique to a culturally diverse demographic. The Teaching and Learningseminar promotes these same principles while citing other sources3,26. The ExCEEdmodel was built on these principles. The concept of lesson objectives is so important thatan entire seminar is devoted to them introducing Bloom’s taxonomy5 to attain theappropriate cognitive level of the objective and providing a comprehensive list of actionverbs to help attain it. An entire laboratory is devoted to creating good lesson
c Society for Engineering Education, 2020 TEACHING THERMODYNAMICS ONLINE: INSTRUCTOR AND STUDENT PERSPECTIVES Farshid Zabihian California State University, Sacramento Sacramento, California, U.S.A.AbstractThe diverse modes of delivery, including online courses and programs, have been continuouslygaining popularity in the past couple of decades. Many students are taking online courses duringthe course of their study. The number of students who are taking these courses and the number ofonline courses these students are taking vary significantly and depend on the discipline andinstitution. Ironically, while the
Paper ID #26050Hypermodeling: A Profile for Teaching SysML ModelingMr. Michael J. Vinarcik P.E., University of Detroit Mercy Michael J. Vinarcik is a Chief Solutions Architect at SAIC and an adjunct professor at the University of Detroit Mercy. He has nearly thirty years of automotive and defense engineering experience. He received a BS (Metallurgical Engineering) from the Ohio State University, an MBA from the University of Michigan, and an MS (Product Development) from the University of Detroit Mercy. Michael has presented at National Defense Industrial Association, International Council on Systems Engineering, and
military career he spent over 10 years on the faculty at the US Military Academy at West Point teaching civil engineering. He has also served as the Director, Graduate Professional Development at Northeastern University’s College of Engineering.Dr. David S. Hurwitz, Oregon State University Dr. David Hurwitz is an Associate Professor of Transportation Engineering, Director of the OSU Driv- ing and Bicycling Simulator Laboratory, and Associate Director of the Pacific Northwest Transportation Consortium in the School of Civil and Construction Engineering at Oregon State University. Dr. Hurwitz conducts research in transportation engineering, in the areas of transportation safety, human factors, traffic control devices, and
Paper ID #37880Experimental methods in tissue engineering: An integrated approach totheory, design, and analysisDr. David L Simpson, Wentworth Institute of Technology Dr. Simpson is the Provost Initiatives Coordinator for Inclusive Excellence and an Assistant Professor in the Biological Engineering Program. He joined Wentworth in 2018 from the University of California, Davis where he served as the Associate Director for the Veterinary Institute for Regenerative Cures and Director of the Regenerative Medicine Laboratory. At Wentworth, Dr. Simpson is working to promote inclusive excellence within the academic programs
Paper ID #17278Teaching Project Survival Skills: Lessons from ’The Martian’Prof. Wayne Paul Pferdehirt, University of Wisconsin, Madison Wayne P. Pferdehirt is the director of distance degree programs for the College of Engineering and director of the Master of Engineering Management program at the University of Wisconsin-Madison. Wayne also co-teaches the Master of Engineering Management program’s Technical Project Management and Foundations of Engineering Leadership courses. Prior to joining UW-Madison, Pferdehirt directed the Midwest solid waste consulting services of an international environmental consulting firm and
technology, biomedic engineering and remote laboratories (WebLabs).Rog´erio Cassares PiresAlessandra Dutra CoelhoFernando de Almeida MartinsMarcello Nitz ©American Society for Engineering Education, 2023 A Web Platform for Learning Control Systems Based On IoT Application Abstract—This work presents the development of an IoTapplication aimed for teaching process control, which allows II. REMOTE LAB DEVELOPMENTremote access by web. It is a level control system with a friendly,responsive and interactive interface that allows theimplementation of SISO type control systems (Single Input and The concept applied to
atMiddle Tennessee State University. Traditionally, this course covered number systems, switches,combinational and sequential logic circuits design, and FPGA programming. In recent years,there is a need to introduce microcontrollers to the students in this course. The reason is that ourprogram does not offer a microcontroller course, but microcontrollers are used very often insenior design and could also be used in the course projects of some upper division courses. Theefforts of adding Arduino to the curriculum of Digital Circuits Fundamentals started about threeyears ago. In particular, we have used a low-cost Arduino kit and redesigned two labassignments to teach students how to use Arduino and how to interface Arduino with digitaldisplays and