Paper ID #8574Enhancement of the Engineering Measurements Laboratory for SemesterConversionDr. Michael J. Schertzer, Rochester Institute of Technology Michael J. Schertzer received the Bachelor of Engineering and Management and Master of Applied Sci- ence degrees from the Department of Mechanical Engineering at McMaster University in Hamilton, On- tario, Canada. He earned his Doctorate in the Department of Mechanical and Industrial Engineering at the University of Toronto for his work characterizing the motion and mixing of droplets in Electrowetting on Dielectric Devices. Before joining the Mechanical Engineering
boom and a budget not to exceed$15 per group. Results of this project will be presented at the 2014 ASEE Annual Conference.Final remarksWhen the Mechanics Based Design Laboratory course was first developed in 2012, assessmenttools were not included in the curriculum to provide information on the effectiveness of thecourse. Anecdotal comments from the students and from the teaching assistances (several ofwhom had taken the four-credit course prior to 2012) indicate that the laboratory course isdelivering the hands-on experiences and the machine design instruction that was missing prior toits inception.Reference 1 Nagurka and Anton, “Discovery learning experiments in a new machine design laboratory,” Proceeding from the 2013 ASEE
understandingthrough lab report scores as measured by teaching assistants. The results for the fluids and heattransfer laboratories showed that there was no significant difference in the learning of thestudents. Student perception of the remote lab experiences depended on the smooth running ofthe experiments. The pilot study suggests that some laboratory experiences can be successfullyported to a remote or online mode without sacrificing the student learning experience.IntroductionThe Mechanical Engineering (ME) program is the most popular major at Iowa State Universitywith a current enrollment of approximately 1800 students and about 240 BSMEs being awardedevery year. An integral part of the ME curriculum are core courses that have integratedlaboratories to
subject matter.3 Using toys for teaching is not novel;4 neither is usingbuilding blocks, cars, robots, and many other games to connect concept with practice in lab5,6,7,8,9but those efforts are usually targeted toward youth. This work is applies toys from childhood tocollege level dynamics concepts to show sophistication of science in the simplicity of play. Page 24.839.2The professors also benefit from the ease with which these laboratories can be transported. Mostof the laboratories are small enough to fit in a briefcase and can be assembled or disassembled ina minimal amount of time. This not only allows for easy transport and storage, but
Paper ID #9520I Should Not be Expected to Teach English!...ButMr. Craig J. Gunn, Michigan State University Craig Gunn is the Director of the Communication Program in the Department of Mechanical Engineer- ing at Michigan State University. He integrates communication skill activity into all courses within the mechanical Engineering program. He is editor of the CEED Newsbriefs and has co-authored numerous textbooks, including - Engineering Your Future.Mr. Pavel M. Polunin, Michigan State University Pavel Polunin is a Ph.D. student in Mechanical Engineering Department at Michigan State University. He obtained his M.S. in
Paper ID #10616Hands-On Method for Teaching Design of Mechanical Components CourseDr. Harold L. Stalford, University of Oklahoma Prof. Harold Stalford received M.S. (1966) and Ph.D.(1970) in Mechanical Engineering from the Uni- versity of California, Berkeley, California and B.S.(1965) from Oklahoma State University. After being on the faculties at the Virginia Polytechnic Institute and State University and at the Georgia Institute of technology, he served as the Director of the School of Aerospace and Mechanical Engineering 1995-2000 Director and continues on as Professor since 1995. Dr. Stalford has spent two
Paper ID #9090A Pilot Study of an Online Accelerated Statics Course with Intensive VideoDeliveryDr. Benjamin W Caldwell, LeTourneau University Benjamin Caldwell is an assistant professor of mechanical engineering at LeTourneau University. He earned his B.S. (2007), M.S. (2009), and Ph.D. (2011) degrees from Clemson University, each in Me- chanical Engineering, where his experiences were in the broad area of engineering design. Dr. Caldwell’s research interests include validation of design methods, design creativity, design for maintenance, and teaching effectiveness. Prior to working at LeTourneau University, Dr
and Learning. The Electronic Journal of e-Learning, 2008. 6(2): p. 119-130.[23] Burke, S.C., Snyder, S., and R.C. Rager, An Assessment of Faculty Usage of YouTube as a Teaching Resource. The Internet Journal of Allied Health Sciences and Practice, 2009. 7(1): p. 1-8.[24] Eller, V.M., Watkins, S.E., Hall, R.H., Balestra, J., and A.S. Rao, Multimedia Web-Based Resources for Engineering Education: The Media Design and Assessment Laboratory at UMR, in the Proceedings of the 2001 American Society for Engineering Education Annual Conference & Exposition. 2001: Albuquerque, New Mexico.[25] Snelson, C. and P. Elison-Bowers, Using YouTube Videos to Engage the Affective Domain in E-Learning, in the Proceedings of the Research
Paper ID #9874Curriculum Revision to Better Integrate Mechanical Engineering Science andPractice in the 2nd and 3rd Undergraduate YearsDr. Michele Miller, Michigan Technological University Dr. Michele Miller is an associate professor of Mechanical Engineering at Michigan Technological Uni- versity. She teaches classes on manufacturing and does research in engineering education with particular interest in hands-on ability, lifelong learning, and project-based learning.Dr. Jeffrey Allen, Michigan Technological UniversityDr. Jason Blough, Michigan Technological UniversityDr. James P. De Clerck, Michigan Technological University
students elect the course as well. The on-campus version of the course has been taught for many years, with two meetings a week for a 15-week semester. Beginning about five years ago, the college began offering a master ofengineering degree that is not specialized in any particular engineering discipline. At that time, allnon-laboratory master’s courses in the college were required to include online sections that havebeen taught concurrently with the face-to-face sections. Faculty members teach both sections asone course assignment.The advanced engineering thermodynamics course had an initial enrollment of eight students at adistance who were pursuing their master of engineering degrees while employed full time andtwenty-eight on-campus students
economics and ethics, and graduate finite elements, numerical methods, thermodynamics, statistical mechanics, plasma fundamentals and gas dynamics.Bradley S. Davidson, University of Denver Bradley Davidson is an Assistant Professor in Mechanical Engineering and director of the Human Dy- namics Laboratory at the University of Denver. He holds a BS in civil engineering from Tennessee Tech, an MS in engineering mechanics from Virginia Tech, and a PhD in biomedical engineering from the Vir- ginia Tech–Wake Forest School of Biomedical Engineering and Sciences. His research in musculoskeletal biomechanics emphasizes measurement of human movement and motor control, with applications in the lumbar spine stability, total knee
Eastern Washington University in the Engineering and Design De- partment. He teaches courses in Thermodynamics, Fluids, CAD, and Capstone. Page 24.268.1 c American Society for Engineering Education, 2014 Challenges and Evolution of Combined and Separate Thermodynamics Courses in a Mechanical Engineering and Mechanical Engineering Technology Program AbstractIn 2010 the engineering department at Eastern Washington University added a mechanicalengineering (ME) program to its already established mechanical engineering
Paper ID #9476Role of Artifacts in Creating a Self-Renewing Design and ManufacturingCommunity of PracticeDr. Steven W. Beyerlein, University of Idaho, Moscow Dr. Beyerlein is coordinator for the inter-disciplinary capstone design sequence at the University of Idaho. In addition to this responsibility, he teaches introductory CAD courses, advanced CAD courses, and manufacturing technical electives within the Mechanical Engineering program. He has published widely in the engineering education literature and has participated in several NSF grants that have produced a variety of assessment tools for engineering design
to communicate effectively through reports, engineering drawing, oral presentations supported by PowerPoint and through poster presentations.The course is divided into a lecture session and a laboratory session. In the spring semester of2011 the lecture session covered an introduction to fuel cells, CNC programming, roboticstechnology, robot programming and notions of engineering communication including progressreports, oral presentations supported by PowerPoint slides and poster presentations. The classnotes which are supported by PowerPoint slides were made available to students on BlackboardVista. During the laboratory session, students familiarized with PEMFC manufacturingprocesses, developed G-codes for machining fuel cell
steering committee for the International Conference on Wear of Materials and on the Mechanical executive committee of the Mechanical Engineering Division of ASEE. He also serves as an ABET program evaluator on behalf of ASME. Prof. Sundararajan has been recognized for his accomplishments with the Young Engineering Faculty Research Award and Early Achievement in Teaching Award at Iowa State University. He received his B.E. degree in Mechanical Engineering from The Birla Institute of Technology and Science, Pilani (India) followed by M.S. and PhD degrees in Mechanical Engineering from The Ohio State University, Columbus, Ohio
in a manufacturing application should be discussed. Examples include: statics, dynamics, mechanics of materials, fluid mechanics, thermodynamics, and heat transfer. Critical areas from the manufacturing knowledge base that all mechanical engineering education programs should strongly consider including in their curricula are: the impact of processing on materials, especially from the vantage point of materials selection, basic manufacturing processes (with laboratory), metrology with linkages to geometric dimensioning and tolerancing (GD&T), and statistical quality control. When teaching product design, ensure that principles of simultaneous product and process design are emphasized
- ever, he has evidently improved the luck of institutions by teaching undergraduate courses in design and mechanical engineering. Dr. Trivett is an Associate Professor at the University of Prince Edward Island, Canada. In 2014, he was appointed director of the Engineering Clinic in the Department of Mechanical and Mechatronics Engineering at the University of Waterloo. Thankfully, these institutions continue to thrive, and support innovative programs in engineering. Page 24.152.1 c American Society for Engineering Education, 2014 An Attempt to Gamify a First Course in
-Director of the Experimental and Computational Mechanics Laboratory at South Dakota School of Mines and Technology (SDSM&T). Before joining SDSM&T, he was an Associate Professor of Mechanical Engineering at the University of Detroit Mercy. He received his Ph.D. in Engineering Mechanics from Iowa State University in 1992. His main interest areas include Computational Mechanics, Solid Mechanics, and Product Design and Development. He has taught several different courses at the undergraduate and graduate level, has over 50 publications, is co-author of one book, and has done consulting for industry in Mexico and the US. He can be reached at Karim.Muci@sdsmt.edu
Paper ID #10089Thermodynamics in the ArtsDr. Heather E Dillon, University of Portland Dr. Heather Dillon is an Assistant Professor in Mechanical Engineering at the University of Portland. Her teaching focuses on thermodynamics, heat transfer, renewable energy, and optimization of energy systems. She currently leads a research team working on energy efficiency, renewable energy, and fundamental heat transfer. Before joining the university, Heather Dillon worked for the Pacific Northwest National Laboratory (PNNL) as a senior research engineer. Dr. Dillon’s research at PNNL supported the US Department of Energy and
Paper ID #10227Redesigning the First Course of Thermodynamics to Improve Student Con-ceptualization and Application of Entropy and Second Law ConceptsDr. Timothy J. Jacobs, Texas A&M University Dr. Jacobs is associate professor and undergraduate program coordinator at Texas A&M University De- partment of Mechanical Engineering. His primary teaching interests are thermodynamics and internal combustion engines. Similarly, his research interests center on thermodynamics, performance, efficiency, and emissions of internal combustion engines. Dr. Jacobs received his Ph.D (2005), MS (2002), and BSE (1999) from
Paper ID #9822Using an Engineering Design Center to Infuse Design Experience into a Me-chanical Engineering ProgramDr. Vincent Wilczynski, Yale University Vincent Wilczynski is the Deputy Dean of the School of Engineering & Applied Science at Yale Univer- sity. As the Deputy Dean, Dr. Wilczynski helps plan and implement all academic initiatives at the School. In addition, he manages the School’s teaching and research resources and facilities, including establishing the Yale Center for Engineering Innovation and Design. Previously Dr. Wilczynski served as the Dean of Engineering at the U.S. Coast Guard Academy. Dr
, he was recognized as a United Nations Development Program expert in Noise & Vibration Control. He serves as an Associate Editor for the International Journal of Vehicle Noise and Vibration. He was recently awarded the 2011 INCE Outstanding Educator Award from the Institute of Noise Control Engineering, USA for his decades of outstanding contribution to noise control education. He is also active in Engineering Education, ABET accreditation and short course teaching in the areas of Acoustics, Noise, Vibration, Modal Analysis, Digital Signal Processing, Sound Quality, Outcome Based Engineering Education and Preparing for ABET Accreditation
implemented in a junior-level fluid mechanics course thatincluded both lecture and laboratory components. A total of nine learning objectives werespecified for the course. These learning objectives are: calculate fluid thrust forces, calculateaerodynamic forces, solve pipe flow problems, select a pump for a system, select a flowmeter fora system, write a computer program to solve transient fluids problems, write a professionalquality lab report, acquire and analyze laboratory data, and be a valuable member of team thatsuccessfully completes a project. The learning objectives can be mapped to ABET studentoutcomes. In this implementation of Standards-Based Grading, all assessments are done on apass-fail basis. That is to say, there is no partial credit
Company and Senior Vice President and Chief Marketing Officer with Intuit in Silicon Valley. Dr. Schar has a BSS from Northwestern University, an MBA from the Kellogg School of Management and his PhD in Mechanical Engineering is from Stanford University.Dr. Sarah L. Billington, Stanford University Sarah Billington is Professor and Associate Chair of the Department of Civil & Environmental Engineer- ing at Stanford University. Her research group focuses on sustainable, durable construction materials and their application to structures and construction. She teaches an undergraduate class on introductory solid mechanics as well as graduate courses in structural concrete behavior and design. Most recently she has
, University of Maine John Thompson is an Associate Professor of Physics and Cooperating Associate Professor of STEM Education, and a member of the Maine Center for Research in STEM Education at the University of Maine. He is co-director of the UMaine Physics Education Research Laboratory, a research group of over a dozen faculty, postdoctoral research associates, graduate students, and undergraduates. His research focuses on the learning and teaching of thermodynamics and statistical mechanics at the upper division, and student understanding at the physics-mathematics interface. He is very interested in cross-disciplinary studies of specific topics.Donald B. Mountcastle, University of Maine Donald Mountcastle is an
Paper ID #10253An Inventory to Assess Students’ Knowledge of Second Law ConceptsDr. Timothy J. Jacobs, Texas A&M University Dr. Timothy J. Jacobs is an associate professor in the Department of Mechanical Engineering at Texas A&M University. His research interests include thermodynamics, internal combustion engines, and ped- agogical improvements to content and integration of design in engineering science courses. His teaching interests include thermodynamics, internal combustion engines, and experimental design.Dr. Jerald A. Caton, Texas A&M University