Paper ID #23830Board 160: General Chemistry Laboratory as Situated Engineering DesignDr. Kent J. Crippen, University of Florida Kent Crippen is a 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.Lorelie Imperial, University of Florida School of Teaching and Learning, College of Education, University of FloridaMr. Corey Payne, University of FloridaDr
Paper ID #22448Learning in Laboratories: How Undergraduates Participate in EngineeringResearchDr. Caitlin Donahue Wylie, University of Virginia Caitlin D. Wylie is an assistant professor of Science, Technology and Society in the University of Vir- ginia’s School of Engineering and Applied Science.Dr. Michael E. Gorman, University of Virginia c American Society for Engineering Education, 2018 Learning in Laboratories: How Undergraduates Participate in Engineering ResearchABSTRACT: Survey studies find benefits for undergraduate students who participate in scienceand
served as a research faculty member and co-director of Broadband, Mobile and Wireless Networking Laboratory at the Department of Electrical Engineering of Wright State University. c American Society for Engineering Education, 2018Software Defined Radio based Mixed Signal Detection Laboratories forEnhancing Undergraduate Communication and Networking CurriculaAbstract: Communication and networking courses, especially wireless communication andnetworking courses, have become more and more important in many disciplines such asElectrical Engineering, Computer Science, and Computer Engineering. Due to costly hardwareneeded for communication and networking teaching laboratories, many of these courses aretaught
conversation and transmission, post-processing, liquid-based AM (stereolithography, polyjet, multijet, aerosol jet, two-photonpolymerization, rapid freeze prototyping), extrusion-based AM (fused deposition modeling,multi jet fusion), powder-based AM (selective deposition lamination, electron beam melting,selective laser sintering, selective laser melting), STL data format, STL file repair, medical andbioengineering applications, benchmarking, and the future of AM.Apart from the lectures, a variety of laboratory projects are integrated and conducted at thenewly formed teaching lab (Stinson lab) in the Department of Industrial, Manufacturing, andSystems Engineering. Specifically, the tasks will contain: (1) infill and structural designs usingFused
Paper ID #21239Developing a Summer Engineering Teaching Institute for Community Col-lege Engineering FacultyDr. Amelito G. Enriquez, Canada College Amelito Enriquez is a professor of Engineering and Mathematics at Ca˜nada College in Redwood City, CA. He received a BS in Geodetic Engineering from the University of the Philippines, his MS in Geode- tic Science from the Ohio State University, and his PhD in Mechanical Engineering from the University of California, Irvine. His research interests include technology-enhanced instruction and increasing the representation of female, minority and other underrepresented groups in
State University Charles T. Jahren is the W. A. Klinger Teaching Professor and the Assistant Chair for Construction Engi- neering in the Department of Civil, Construction and Environmental Engineering at Iowa State University. He earned his Bachelor of Science in Civil Engineering and his Master of Business Administration from the University of Minnesota and his PhD in Civil Engineering from Purdue University. He has over six years of industrial 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
regarding their perceptions of manufacturing and their views of STEM topics in general;the later data were collected using the validated T-STEM instrument. External evaluation alsoprovided feedback on the usefulness of various program activities. Overall participants foundtheir laboratory research and research facility tours extremely useful. They felt that the programenhanced their excitement about STEM and their laboratory skills. Participants also showedsignificant increases in their post program technology teaching efficacy, student technology use,and STEM career awareness. In addition to empirical results, project descriptions and programdetails are also be presented.IntroductionA recent survey by the U.S. department of commerce concluded that
application has over digital orphysical textbooks.In regards to the use of software to supplement the educational process, many academic papershave been published exploring this topic. Many researchers have acknowledged the value ofhaving a virtual laboratory to explore physical phenomenon, noting it is an efficient, cost-effective alternative to physical laboratories, and as a potentially suitable replacement whenphysical laboratories are not available [2]-[6]. Many studies report the value of simulations tostudent learning, noting their ease of introduction into pre-existing curricula [7]-[10].Educational technology has demonstrated the ability to stimulate more interactive andcooperative teaching methods and student learning, in addition to saving
. She has authored or co-authored over 50 publications and has served as principal or co-principal investigator on seven grants from the National Science Foundation. At Lafayette College Dr. Roth has served as Department Head of Civil and Environmental Engineering, Director of Engineering, and Associate Provost for Academic Operations in addition to multiple faculty committee assignments. She has led campus-wide accreditation and assessment initiatives, implemented new faculty orientation programs, collaborated on the development of multiple proposals to private foun- dations, and coordinated interdisciplinary academic programs. She has received a number of awards in recognition of her scholarship and teaching
Paper ID #23738Algebra-Related Misconceptions Identified in a First-Year Engineering Rea-soning CourseDr. Lizzie Santiago, West Virginia University Lizzie Y. Santiago, Ph.D., is a Teaching Associate Professor for the Fundamentals of Engineering Program in the Benjamin M. Statler College of Engineering and Mineral Resources. She holds a Ph.D. in Chemical Engineering and has postdoctoral training in neural tissue engineering and molecular neurosciences. She teaches freshman engineering courses and supports the outreach and recruiting activities of the college. Her research interests include neural tissue engineering
Paper ID #22265Optimizing Student Team Skill Development using Evidence-Based Strate-gies: Year 3: NSF Award 1431694Dr. Matthew W. Ohland, Purdue University, West Lafayette (College of Engineering) Matthew W. Ohland is Professor of Engineering Education at Purdue University. He has degrees from Swarthmore College, Rensselaer Polytechnic Institute, and the University of Florida. His research on the longitudinal study of engineering students, team assignment, peer evaluation, and active and collaborative teaching methods has been supported by the National Science Foundation and the Sloan Foundation and his team received Best
the learning objectives of the courses have been accomplished, theirconfidence in taking on new challenges in these domains, and the degree to which they feel thatthe HPL centers entered into the course. This last topic was addressed by a series of elements notdirectly asking about HPL, but framed to reveal this. For example, to understand whether thecourse was assessment-centered we asked their level of agreement with the statements, “Ireceived adequate feedback on my work,” and “I was able to obtain enough practice onimportant topics.”Another part of the quantitative study was gauging to what extent the teaching reflects HPL. Weexpected simply by using the laboratory kits and employing active learning, these courses will beassessment and
research on Si and GaAs electronic devices and semiconductor lasers at the research laboratories of GEC and ITT and published numerous articles in this field. He was a professor of Electrical and Computer Engineering at Dominion University. He has advised 14 PhD and 16 MS students. He received numerous awards: Doctoral Mentor Award 2010; Excellence in Teaching Award 2009; Most Inspiring Faculty Award 2008; Excellence in Research Award 2004; and Certificate of Recognition for Research - NASA, 1994. He is a Senior Member of the IEEE and a Member of the Electrochemical Society.Dr. Demetris Geddis, Hampton University Demetris L. Geddis is an associate professor and Chair of Electrical and Computer Engineering at Hamp
chemical engineering from the University of Louisville. Dr. Ralston teaches undergraduate engineering mathematics and is currently involved in educational research on the effective use of technology in engineering education, the incorpo- ration of critical thinking in undergraduate engineering education, and retention of engineering students. She leads a research group whose goal is to foster active interdisciplinary research which investigates learning and motivation and whose findings will inform the development of evidence-based interventions to promote retention and student success in engineering. Her fields of technical expertise include process modeling, simulation, and process control.Ms. Campbell R. Bego
Univer- sity. She is teaching math methods classes. Her research interests are in math methods and in teacher preparation. She is also interested in online education research.Andrew Strom, Corona Del Sol High School Andrew Strom has been teaching mathematics at Corona Del Sol for 21 years. He has taught a variety of subjects: Algebra 1-2, Geometry, Algebra 3-4, Honors Algebra 3-4, Pre-Calculus, Honors Pre-Calculus, College Mathematics and AP Statistics. Andrew enjoys the beauty of mathematics and loves working with young people.Prof. Constantinos PattichisHuan Song c American Society for Engineering Education, 2018 Multidisciplinary Modules on Sensors and Machine
Department of Wayne State University. From 2000 to 2002, Dr. Mian worked as a designer for Visteon Corporation’s automotive electronics division located in Dearborn, Michigan. He also served as a faculty member in the Department of Mechanical Engineering, BUET from 1988 to 1993. He has authored over 90 refereed and non-refereed publications.Dr. 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 DynamicsIntroductionEngineering dynamics (Newtonian mechanics) is often a difficult subject for students to grasp,particularly when taught in traditional lecture-only settings. In lecture-only settings, studentsoften exercise concepts solely through idealized textbook problems which provide little to noopportunity for understanding or exploring in realistic contexts [1]. This is understandable giventhe considerable expense and resources needed to create companion laboratories where studentsmight otherwise explore concepts through hands-on experimentation. Despite these difficulties, ithas been shown across STEM fields that demonstrations and experiments can dramaticallyimprove student learning compared to traditional teaching methods [2
Paper ID #22684Enhancing Learning by Assessing More than Content KnowledgeProf. Renee Cole, University of Iowa Dr. Ren´ee Cole is a Professor of Chemistry at the University of Iowa. Dr. Cole earned a B.A. in chemistry from Hendrix College, and M.S. and Ph.D. degrees in physical chemistry from the University of Okla- homa. Her research focuses on issues related to how students learn chemistry and how that guides the design of instructional materials and teaching strategies as well on efforts related to faculty development and the connection between chemistry education research and the practice of teaching. She is a PI
Virginia University Melissa Morris is currently a Teaching Associate Professor for the Freshman Engineering Program, in the Benjamin M. Statler College of Engineering and Mineral Resources at West Virginia University (WVU). She graduated Summa cum Laude with a BSME in 2006, earned a MSME in 2008, and completed her doctorate in mechanical engineering in 2011, all from WVU. At WVU, she has previously served as the Undergraduate and Outreach Advisor for the Mechanical and Aerospace Engineering department and the Assistant Director of the Center for Building Energy Efficiency. She has previously taught courses such as Thermodynamics, Thermal Fluids Laboratory, and Guided Missiles Systems, as well as serving as a Senior
Agency and Department of HomelandSecurity accreditation. Faculty research interests include high-performance graphics processing,cybersecurity, and databases. Numerous computer science graduate students complete theirresearch projects and masters theses in the Business Computer Research Laboratory. Thedepartment had close to twenty-five graduate students. The department had smart classrooms anddedicated undergraduate instructional laboratories for computer forensics, parallel computing,operating systems security, database security and network security.The Computer Science Department has ABET accreditation. The department has 12 full-timegraduate faculty members, all with terminal degrees, and 16 teaching assistants. Their researchinterests range
Paper ID #22466Promoting Academic and Career Success for Raleigh Future Scholars at NCState UniversityProf. Leda Lunardi, North Carolina State University Leda Lunardi received the BS and MS from University of S˜ao Paulo (USP), S˜ao Paulo, Brazil, and Ph.D. degree from Cornell University. Currently she is a professor in the Electrical and Computer Engineering Department at North Carolina State University in Raleigh. Her teaching and research interests include electronics, optoelectronics, and engineering undergraduate student retention and graduation improve- ment. Her research has been mainly sponsored by the National
Paper ID #22098Statewide Coalition: Supporting Underrepresented Populations in Precalcu-lus through Organizational Redesign Toward Engineering Diversity (SC:SUPPORTED)Results from Year OneDr. Eliza Gallagher, Clemson University Dr. Gallagher is an Assistant Professor of Engineering and Science Education at Clemson University, with joint appointments to Mathematical Sciences and Education & Human Development. Her research inter- ests include student cognition in mathematics, development of teacher identity among graduate teaching assistants, curricular reform to foster diversity and inclusion in STEM fields, and
. Sampson, J. Grooms and J. Walker, “Argument-Driven Inquiry as a Way to Help Students Learn How to Participate in Scientific Argumentation and Craft Written Arguments: An Exploratory Study,” Science Education, vol. 95, no. 2, pp. 217-257, Mar., 2011. doi: 10.1002/sce.20421[25] J. P. Walker and V. Sampson, “Learning to Argue and Arguing to Learn: Argument‐ Driven Inquiry as a Way to Help Undergraduate Chemistry Students Learn How to Construct Arguments and Engage in Argumentation During a Laboratory Course,” Journal of Research in Science Teaching, vol. 50, pp. 561-596, May, 2013. doi: 10.1002/tea.21082[26] Bill and Melinda Gates Foundation, “Vaccine Delivery,” gatesfoundation.org, 1999-2018. [Online]. Available: https
Paper ID #22917A Cross-Institution Collaboration: Analysis of Power Electronic Technolo-gies for Solar Panel ArraysMs. Jill Davishahl, Bellingham Technical College Jill Davishahl is a faculty member in the engineering department at Bellingham Technical College where she teaches courses ranging from Intro to Engineering Design to Engineering Statics. Outside of teaching, Jill is working on the design and development of a Bachelor of Applied Science in Engineering Technol- ogy and is currently PI on an NSF funded ATE project grant in renewable energy. She holds a Master of Science in Mechanical Engineering from the
Paper ID #22715Increasing Student Enrollment and Achievement in Engineering and Engi-neering TechnologyDr. Amir Elzawawy , Vaughn College of Aeronautics & Technology Dr. Amir Elzawawy is an assistant professor at Vaughn College of Aeronautics and Technology. Dr. Elzawawy teaches courses in mechanical and mechatronic engineering and engineering technology pro- grams. His research background is in the area of experimental fluid mechanics and currently active on the area of CFD (Computational Fluid Dynamics) and heat transfer simulations. This in addition to develop- ing STEM programs to enhance engineering education
seals for the next generation of manned spacecraft. The unique problem necessitated a grasp of both fluid dynamics and material science, as well as experimental and computational analysis. As a DAGSI/Air Force Research Laboratory Ohio Student-Faculty Fellow, Dr. Garafolo gained experimental knowledge in structural dynamics of turbomachinery. In particular, his research on engine order excitation yielded insight into generating high cycle fatigue of turbomachinery using acoustic excitation.Mr. Benjamin G. Kruggel, University of Akron Ben is a graduate student at the University of Akron pursuing a MEd in high school science education. He received his B.S. in aeronautical engineering from Ohio State in 1994 and was
discussions a common misconception emerged: many studentsstated they did not want to pursue graduate degrees because they did not want “to teach”. Thestudents believed there was no reason to pursue a Ph.D. unless one wanted to become a professor.The authors strongly believe in undergraduate research opportunities and have severalundergraduates working in their labs. While these research interactions have proven valuable forboth the faculty and the students, the authors felt like it would be good to expose undergraduateswith interest in research to additional mentors beyond university faculty. LSU is located in theheart of the petrochemical industry among the numerous plants and refineries located betweenBaton Rouge and New Orleans. The proximity to
Paper ID #22135Integrating Humanities with Engineering FundamentalsDr. Kauser Jahan, Rowan University Kauser Jahan, is a Professor of Civil and Environmental Engineering at Rowan University. She received her B.S.C.E. from the Bangladesh University of Engineering and Technology, an MSCE from the Univer- sity of Arkansas, Fayetteville and a Ph.D. from the University of Minnesota, Minneapolis. Her passion as an educator and mentor has been recognized by many professional organizations over the years. She is the recipient of the Gloucester County Women of Achievement Award, Lindback Foundation Teaching Award, the NJ ASCE
research and development job in either industry or a government laboratory. Eventually I will return to pursue my Ph. D. and then teach in academia.”Figure 1. Impact of the experience on student career goals.The program met its goal of at least 60% of the REU participants going to graduate school and asin past REU research [2], [8]. After the REU experience, there was one particular AERO studentwho wanted to go to private industry first by the end of the program.Some US students opting for industry instead of graduate school wanted to work at a companywhere they would still be involved in conducting research. For example, one students said: “I would like to pursue a research and development job in either industry or a
. conducteda survey revealing that students of civil/construction-engineering were in favor of collaborativelearning6. The authors of this paper also surveyed STEM students majoring in engineering,chemistry, mathematics, physics, computer science, which indicated that the students recognizedthe effectiveness of collaborative learning, and believed that their understanding can be betterimproved and it was necessary to provide support to facilitate their collaborative learning. Recognizing the importance and effectiveness of collaborative learning, more and moreSTEM faculty or instructors have utilized this learning mechanism in their teaching practice. Forexample, Soundarajan et al. adopted Peer Instruction approach to instruct engineering students