Paper ID #6251A Learning Outcomes Assessment Level Dashboard Based on Standard Ter-minologyDr. Khalid W Khawaja, American University in Dubai Dr. Khawaja is currently the associate dean of the School of Engineering and an associate professor of Computer Engineering at the American University in Dubai. In his tenure at AUD, he spearheaded ABET and UAE MOHESR accreditation of various graduate and undergraduate programs. He is an established expert on the use of Java technologies in enterprise applications. His research interest is in the area of Enterprise Computing and Architecture and its usage in Education Systems
Hydrokinetic Renewable Energy Application in Bangladesh Waliur Bhuiyan Rachmadian Wulandana Mechanical Engineering Program Mechanical Engineering Program SUNY New Paltz, NY SUNY New Paltz, NY New Paltz, NY, USA New Paltz, NY, USA bhuiyanw1@newpaltz.edu wulandar@newpaltz.edu The burning of fossil fuels to generate electricity has been Electricity consumption is on the rise in Bangladesh duearound for some time in society. The method of using fossil fuels to its economic development and population growth. Newhas proven to be reliable
mainly involved in identifying the research questions for the projectsand making decisions about how the results of the research-focused projects will beimplemented. This paper presents a replication of a model focused on university-communitycollaboration, student engagement and Science, Technology, Engineering, and Math (STEM)attraction and retention using three research-focused projects addressing community needs. Thethree projects are (1) empathic design project aimed at improving quality greenspaces andpedestrian streetscape experience, (2) food justice project to study the disparities in food accessbetween local regions, and (3) analyzing water quality in a local creek. The projects provided aunique opportunity for students to directly
Paper ID #36934Tuition Equity: A Study of the Impact of Upper/Lower Division TuitionRatesDr. Nicholas A. Baine. P.E., Grand Valley State University Nicholas Baine, Ph.D., P.E., is an Associate Professor in the School of Engineering at Grand Valley State University. His expertise is in the design of electrical control systems and sensor data fusion. As an instructor, he specializes in teaching first-year courses, probability and signal modeling, and control sys- tems. He has also been active in ASEE, serving on the board of the North Central Section, and publishing papers on a variety of topics which include ABET
Education vol. 6, 297–306, Winter 2007.[2] T.S. Ritchie, M. T. Perez Cardenas, and S. Ganapati, “Establishment and Implementation of aPeer-Supported Professional-Development Initiative by Doctoral Students, for DoctoralStudents.” J. Chem. Educ., vol. 95, pp 1947−1953, 2018.[3] Kendricks et al, “Aligning Best Practices in Student Success and Career Preparedness: AnExploratory Study to Establish Pathways to STEM Careers for Undergraduate MinorityStudents”, Journal of Research in Tech Careers, vol 3, No. 1, p 27, 2019.[4] Advance CTE. “Science, technology, engineering and mathematics career cluster knowledgeand skill statements.” 2008. Retrieved from https://cte.careertech.org/sites/default/files/K%26S-CareerCluster-ST-2008.pdf (Accessed October 2020
lastly, the technology is here today and very accessible to undergraduate engineeringstudents.Acknowledgements The author acknowledges the decision by the School of Engineering to offer this technicalelective course (with 7 students) and the engaging students in the course, most of whom areplanning on pursuing graduate degrees in engineering: Robert Ertel, Matthew Gartmann,Lindsey Hines, Ann Majewicz, Michael Moran, Lina Salah, and Michael Zimmerman.ReferencesASEE (1998). How do you measure success? Washington DC: ASEE.Close, C. M., Frederick, D. K., & Newell, J. C. (2002). Modeling and Analysis of Dynamic Systems (3rd ed.). New York, NY: John Wiley & Sons.Dabney, J. B., & Harman, T. L. (2004). Mastering SIMULINK®. Upper
microcontrollers • 16-bit digital signal controllers (DSC) • 32-bit ColdFire® microcontrollers/microprocessors • Power Architecture® technology microprocessors • i.MX ARM® microprocessorsThis wide range of architecture coverage is suitable for introducing students from entry-levelcontrollers found in toys to high-end controllers in an automobile engine control module. Thevarious core options give the professor the flexibility to choose based on personal preference.The MCU/MPU Story boards are designed to work stand-alone as cost effective, entry level toolsor in combination with the Tower platform giving curriculum the access to additional PeripheralStory boards. These boards contain the basic connections needed to operate the controller along
indicated by a studentsurvey emphasising learning impact and workload management.IntroductionDue to their ubiquity and technological importance, switch-mode power converters are one of themost crucial components of a modern electrical engineering curriculum. The importance andubiquity of power electronics, however, are matched by their complexity. Students are typicallyintroduced to power electronics when they have developed a rigorous understanding of electricalcircuits, semiconductor physics, signal processing, elementary control theory, digital logic, andwave mathematics. The interplay between these concepts in practical circuits can be difficult forinexperienced students to grasp.Third-year undergraduate students at our university are
Paper ID #15171The inGEAR Program: Recruiting International Graduate Students throughUndergraduate Research InternshipsDr. Katy Luchini-Colbry, Michigan State University Katy Luchini-Colbry is the Director for Graduate Initiatives at the College of Engineering at Michigan State University, where she completed degrees in political theory and computer science. A recipient of a NSF Graduate Research Fellowship, she earned Ph.D. and M.S.E. in computer science and engi- neering from the University of Michigan. She has published more than two dozen peer-reviewed works related to her interests in educational technology and enhancing
York (1993).[13] C.A. Bodnar, D. Anastasio, J.A. Enszer, & D. D. Burkey, (2016). Engineers at Play: Games as Teaching Tools for Undergraduate Engineering Students. Journal of Engineering Education.[14] O. Pedreira, F. García, N. Brisaboa, & M. Piattini (2015). Gamification in software engineering–A systematic mapping. Information and Software Technology, 57, 157-168.[15] H. Arksey & L. O'Malley (2005). Scoping studies: towards a methodological framework. International journal of social research methodology, 8(1), 19-32.[16] J. Hamari, J. Koivisto, and H. Sarsa, “Does Gamification Work?–A Literature Review of Empirical Studies on Gamification” in System Sciences (HICSS), 2014 47th Hawaii
2017 ASEE Gulf-Southwest Section Annual Conference Introduction of the Construction Decision Making Inventory (CDMI) to Improve Educational Experience Dr. Tulio Sulbaran Full Professor, School of Construction, University of Southern Mississippi, Hattiesburg, Mississippi, USAAbstractEach learner has different characteristics, learners are not a homogenous mass, but varyconsiderably in terms of educational background, income, age and learning experience. Thesedifferences affect how they make decision and perform as practicing professionals, educators andstudents in the Architecture, Engineering and Construction (AEC) industry. These
AC 2008-87: TEACHING MULTIBODY DYNAMICS IN AN UNDERGRADUATECURRICULUM – AN INTUITIVE AND EXPLICIT FORMALISM BASED ONPARASITIC ELEMENTSGeoff Rideout, Memorial University of Newfoundland Geoff Rideout received his B.Eng. (Mechanical) from Memorial University in 1993, his M.A.Sc. (Eng.) from Queen's University in 1998, and his Ph.D. from the University of Michigan in 2004. He is currently an assistant professor of engineering at Memorial University, teaching mechanics and design courses. He is conducting research in the area of automated generation of computer simulation models for dynamic system design
2006-1831: SECURITY EDUCATIONTim Lin, California State Polytechnic University-PomonaSaeed Monemi, California State Polytechnic University-Pomona Page 11.1109.1© American Society for Engineering Education, 2006 Security EducationAbstract:Network security and computer security are usually hot topics whenever any intrusion incidentscause system crash and loss of work time in big corporations. In engineering colleges howeversecurity is usually a topic with least or incompatible attention.The author has taught many upper division classes in college and also graduate course(s) and hasbeen trying to imbue and enhance the courses with the security
Paper ID #6836Closing the Design Cycle: Integration of Analysis, Simulation, and Measure-ments Results to Guide Students on Evaluation of DesignMr. Avik Dayal, Virginia TechDr. Kathleen Meehan, Virginia Tech Kathleen Meehan is presently an Associate Professor in the Bradley Department of Electrical and Com- puter Engineering at Virginia Tech. Her previous academic positions were at at the University of Denver and West Virginia University. Prior to moving in academia, she was employed at Lytel, Inc., Polaroid Corporation, and Biocontrol Technology. She received her B.S.E.E. from Manhattan College and her M.S. and Ph.D
AC 2012-4854: MECHANIX: THE DEVELOPMENT OF A SKETCH RECOG-NITION TRUSS TUTORING SYSTEMMs. Olufunmilola Atilola, Texas A&M University Olufunmilola Atilola is currently a doctoral student in the department of mechanical engineering at Texas A&M University. She obtained her master’s degree from the University of South Carolina, Columbia and her bachelor’s degree from Georgia Institute of Technology, both in mechanical engineering. At Texas A&M, her research areas include representations in engineering design and innovations in engineering education.Ms. Cheryl OstermanFrancisco Vides, Texas A&M University Francisco Vides is a Graduate Researcher at the Sketch Recognition Lab at Texas A&M University
current position, he worked as a learning scientist for the VaNTH Engineering Research Center at Northwestern University for three years. Yalvac’s research is in STEM education, 21st century skills, and design and evaluation of learning environments informed by the How People Learn framework.Mrs. Elif OzturkMs. Ke Liu, Prairie View A&M University Ke Liu, is a graduate student and Graduate Research Assistant in the Department of Mechanical Engineer- ing at Prairie View A&M University. She received her BS in Donghua University, China. Her research interests include CAD, Virtual Reality Technology and CFD
AC 2011-1800: ADMINISTERING A DIGITAL LOGIC CONCEPT INVEN-TORY AT MULTIPLE INSTITUTIONSGeoffrey L. Herman, University of Illinois at Urbana-Champaign Geoffrey L. Herman is a PhD Candidate in Electrical and Computer Engineering and a Mavis Future Faculty Fellow at the University of Illinois at Urbana-Champaign. His research interests include cogni- tive science, identifying and assessing common student misconceptions and difficulties in electrical and computer engineering topics, blended learning (integrating online teaching tools into the classroom), in- telligent tutoring systems, and music signal processing. He is a winner of the 2011 Educational Research and Methods Division Apprentice Faculty Grant. He has been
Coffman-Wolph, Ohio Northern University Dr. Stephany Coffman-Wolph is an Assistant Professor at Ohio Northern University in the Department of Electrical, Computer Engineering, and Computer Science (ECCS). Previously, she worked at The Univer- sity of Texas at Austin and West Virginia University Institute of Technology (WVU Tech). She is actively involved in community outreach with a goal of increasing the number of women in STEM and creating effective methods for introducing young children to CS concepts and topics. Dr. Coffman-Wolph’s re- search interests include: Artificial Intelligence, Fuzzy Logic, Software Engineering, STEM Education, and Diversity and Inclusion within STEM. ©American
. 2020, pp. 221–35. https://doi.org/10.1037/edu0000366. 15Leveraging Learning Styles for Enhanced Student Outcomes at USMAPashler, H., McDaniel, M., Rohrer, D., & Bjork, R. (2008). Learning Styles: Concepts and Evidence. Psychological Science in the Public Interest, 9(3), 105-119. https://doi.org/10.1111/j.1539- 6053.2009.01038.xTerrence Tsui & R. Nazim Khan (2023) Is mathematics a barrier for engineering?, International Journal of Mathematical Education in Science and Technology, 54:9, 1853-1873, DOI: 10.1080/0020739X.2023.2256319Zwanenberg, N. V., Wilkinson, L. J., & Anderson, A. (2000). Felder and Silverman's index of learning styles and Honey and
Paper ID #42451Boosting Achieved-Learning Outcomes with Maritime-Specific Projects in aMachine Learning CourseDr. Paul Marty Kump, Kansas State UniversityIan August ©American Society for Engineering Education, 2024 BOOSTING ACHIEVED LEARNING OUTCOMES WITH MARITIME-SPECIFIC PROJECTS IN A MACHINE LEARNING COURSE0: AbstractIn 2022, we developed a maritime-specific course in machine learning (ML) for undergraduatemaritime engineering and naval architecture students in an effort to boost low levels of achievedstudent outcomes as articulated by the Accreditation Board for Engineering and Technology
Paper ID #39889GIFTS: Making Research Experiences Meaningful through CriticalSelf-ReflectionPeter DeCrescenzo, University of Maryland Baltimore County Author is a doctoral student in the Student Affairs program at a public research university in the Mid- Atlantic. He serves as an Assistant Director to an NSF-funded project in order to increase the number of racial and ethnic minorities who matriculate into and successfully complete high-quality degree pro- grams in science, technology, engineering and mathematics (STEM) disciplines in order to diversify the STEM workforce. His research interests are centered around
Paper ID #36696Smartphone App Developed By Students to Help CommunityMembers in CrisisThomas Rossi Thomas Rossi is a lecturer in Computer Science and Software Engineering at Penn State Behrend. His research focuses on improving the post-secondary experience for students through the use of current computing tools and technologies. Thomas graduated with his MS in Computer Science from the University of New Hampshire in 2016. © American Society for Engineering Education, 2022 Powered by www.slayte.com Smartphone App Developed by Students to Help Community Members
Paper ID #36904Motivating Students to Learn Basic Electronic Theories byAdopting Them in Different CoursesJack li JACK LI is an assistant professor of Electrical Engineering Technology in the School of Polytechnic at Purdue University Fort Wayne. He earned his BS, MS, and PhD degrees in electronics engineering. Dr. Li may be reached at lij@pfw.edu. © American Society for Engineering Education, 2022 Powered by www.slayte.com Motivating Students to Learn Basic Electronic Theories by Adopting Them in Different CourseJack Li, Purdue University Fort
strongly advocate use of in-person online teaching over face-to-face conventional teaching mode. A reason for success couldbe that the engineering students are more technology savvy so it is easier to move classes online.Alternatively, it might be because students saved commute time and used it for course work. Orbecause they were better off staying at home with less worries. Or due to availability of recordedlectures for the students to review in their own time.11. References[1]Teaching courses online from the Illinois website https://atlas.illinois.edu/teaching-online[2] Remote teaching technologies from Illinois website https://remote.illinois.edu/teaching-tools-and-technologies
ASEE-NMWSC2013-0049 Incorporating On-going Verification & Validation Research to a Reliable Real-Time Embedded Systems Course Nannan He Department of Electrical, Computer Engineering and Technology Minnesota State University, Mankato, MN 56001AbstractThis paper presents the enhancements to a senior-level and graduate-level course, Reliable Real-time Embedded Systems, in terms of introducing advanced verification and validation (V&V)approaches. Traditionally, this course covers the topics of fundamental principles in real-timeoperation systems like
responsibilities include providing support for student services, working with assessments of student services in online programs and also oversees the NSF STEM Master Scholar Program.Lori Wedig, University of Wisconsin, Platteville Lori Wedig works in the Distance Learning Center (DLC) as the Associate Outreach Specialist for the NSF STEM Master Scholars program and the Masters of Science in Engineering Graduate Scholars. She has worked in higher education for 25 years with the last 2 years working in the DLC advising the NSF STEM Master Scholar program. c American Society for Engineering Education, 2017 STEM Grown Masters Lisa Naderman
AC 2008-1190: AN INTERNATIONAL COLLABORATION FOR THE STUDY OFDEFECTS IN CASTINGSSergio Felicelli, Mississippi State UniversityJohn Berry, Mississippi State UniversityRafael Cuesta, CIDAUT, SpainRogelio Luck, Mississippi State UniversityRatessiea Lett, Mississippi State University Page 13.189.1© American Society for Engineering Education, 2008 An International Collaboration for the Study of Defects in CastingsAbstractThis work describes an international collaboration project that has been established betweenMississippi State University (MSU) and the CIDAUT Foundation in Spain. The project will befunded by the National Science Foundation (NSF) under the International
Society for Engineering Education, 2006 The Hubbert Curve: Enabling Students to Meaningfully Model Energy Resource DepletionAbstractCourses in Energy Systems (alternatively named “Applied Energy Conversion,” “EnergyConversion Systems,” or some variant) often discuss the idea of energy resource depletion interms of the exponential growth model. A typical problem is: given the current growth rate of oilproduction, in what year will known reserves be depleted? The exponential growth model,although offering reasonable results initially, becomes less accurate in the later stages of resourceexploitation as issues of scarcity, cost, and technological hurdles become important. It grosslyunder predicts how long a
enhance students’ mastery of the subject matter. While it isessential to keep the laboratory equipment up-to-date with the latest technologies 2 , it is alsoimportant to design a cost-effective 3 and flexible solution 4 and a safe operating environment inthe laboratory course.Although the electric machine laboratory has been traditionally offered in Electrical Engineeringcurriculum in many of the engineering institutions, the laboratory for electric machine drives hasnot been common. While the electric machines have not changed much in their structure andoperation, power electronic converters and machine drive technologies have been substantiallyimproved. Recently, there have been efforts to implement electric drive laboratories 5 , but
Paper ID #14630Transforming the CREDLE (Capstone Research Experience for Distance Learn-ing Executives)Dr. Malini Natarajarathinam, Texas A&M University Dr. Malini Natarajarathinam is an Associate professor with Department of Engineering Technology and Industrial Distribution. She teaches classes on strategic relationships for industrial distribution, distribu- tion information systems and new directions in Industrial Distribution. She is also the founding faculty and advisor for the Society of Women in Industrial Distribution (SWID). She works on many service learning projects with her students where they work