Paper ID #14395Design a New Set of Strength Labs for the Course, ’Mechanics of Materials’Dr. Xiaobin Le P.E., Wentworth Institute of Technology Associate professor, Ph.D, PE., Department of Mechanical Engineering and Technology, Wentworth In- stitute of Technology, Boston, MA 02115, Phone: 617-989-4223, Email: Lex@wit.edu, Specialization in Computer Aided Design, Mechanical Design, Finite Element Analysis, Fatigue Design and Solid Me- chanicsProf. Masoud Olia P.E., Wentworth Institute of Technology Dr. Olia received his BS, MS and Ph.D. in the field of mechanical engineering from Northeastern Uni- versity. He Has
meta-cognition.Dr. Wade H Goodridge, Utah State University Wade Goodridge, Assistant Professor in the Department of Engineering and Technology Education at Utah State University, has taught Solid Modeling, CAD, Introductory Electronics, Surveying, Statics, teaching and Learning, Assessment and Evaluation, and Introductory Engineering courses at Utah State University. Goodridge has been teaching for the Utah State College of Engineering for more than 15 years. He holds dual B.S degrees in industrial technology education and civil engineering from Utah State University, as well as an M.S. and Ph.D. in civil engineering from Utah State University. His research interests include spatial thinking/spatial ability at a
Paper ID #16564Blended Learning in a Rigid-Body Dynamics Course Using On-Line Lecturesand Hands-On ExperimentsProf. Aldo A. Ferri, Georgia Institute of Technology Al Ferri received his BS degree in Mechanical Engineering from Lehigh University in 1981 and his PhD degree in Mechanical and Aerospace Engineering from Princeton University in 1985. Since 1985, he has been a faculty member in the School of Mechanical Engineering at Georgia Tech, where he now serves as the Associate Chair for Undergraduate Studies. His research areas are in the fields of dynamics, controls, vibrations, and acoustics. He is also active in course
Williams University and an Associate Professor and Director of the Civil Engineering Analysis Group at the United States Military Academy. Dr. O’ Neill is a retired Lieutenant Colonel, U.S. Army Corps of Engineers. He has been active at the national level with ASCE’s Technical Council on Computing and Information Technology (TCCIT), Committee on Faculty Development (CFD) and Excellence in Civil Engineering Education (ExCEEd) initiative. Dr. O’Neill is a licensed Professional Engineer in California, Florida, Nevada and Virginia. He is a civil engineering program evaluator for the Accreditation Board for Engineering and Technology (ABET). He is an American Society of Civil Engineering Fellow (ASCE), a member of the
Paper ID #15076Manipulatives in Engineering Statics: Supplementing Analytical Techniqueswith Physical ModelsDr. Joel Alejandro Mejia, Angelo State University Dr. Joel Alejandro Mejia is an Assistant Professor in the Department of Civil Engineering at Angelo State University. He is interested in research regarding underrepresentation of minority groups in Science, Technology, Engineering, and Mathematics (STEM), especially the use of culturally responsive practices in engineering education. He is particularly interested in the use of comprehension strategy instruction in linguistically and culturally diverse classrooms
Paper ID #15694Enhancing Mechanics Education through Shared Assessment DesignProf. Roger G. Hadgraft, University of Technology Sydney Roger Hadgraft BE(Hons), MEngSc, DipCompSc, PhD, FIEAust is Professor of Engineering and IT Pro- fessional Practice in the Faculty of Engineering and IT at the University of Technology Sydney. He is a civil engineer with 25 years involvement in leading change in engineering education, with a particular focus on problem/project-based learning (PBL), at RMIT, Monash, Melbourne and Central Queensland Universities. Roger is an ALTC (Australian Learning and Teaching Council) Discipline Scholar in
Paper ID #16581Understanding the Effects of Transferring In Statics Credit on Performancein Future Mechanics CoursesDr. Jacob R Grohs, Virginia Tech Jacob Grohs is an Assistant Professor in Engineering Education at Virginia Tech with Affiliate Faculty status in Biomedical Engineering and Mechanics and the Learning Sciences and Technologies at Virginia Tech. He holds degrees in Engineering Mechanics (BS, MS) and in Educational Psychology (MAEd, PhD).Ms. Michelle M Soledad, Virginia Tech, Ateneo de Davao University Michelle Soledad is a doctoral student and graduate research assistant in the Department of Engineering
student learning improved dramatically as a result ofparticipating in this laboratory experience.Review of Previous WorkAs explained by Feisel and Rosa4 there is knowledge that must be conveyed when educating astudent in engineering that can only be gained from laboratory experience. Though once anintegral part of engineering education in the early 19th century, the focus has shifted to a morelecture-based curriculum mainly because of budget cuts and new technology. The authors statethat the continually increasing complexity of technology that continues to drive up costs;meaning many engineering department budgets aren’t able to meet the necessary requirements ofa modern laboratory. While the emphasis on laboratories in engineering curricula has
activeand interactive engagement in the undergraduate Engineering/Technology/Science programs.2. Experiment DesignFig 1. Picture of the students running the experimentIn this project the students are asked to form 4 member teams and conduct an experiment tostudy the projectile motion of a ball projected by an air cannon. The instructions are provided inan instruction sheet and every team runs the experiment separately with an air-canon, astopwatch and 2 tennis sized balls of different weights. An air cannon is a device that can propelan object (e.g. a ball) in air by applying a sudden thrust caused by the sudden expansion of a gasin the cannon’s barrel as shown in the schematic in Figure 2.Fig 2. Schematic of the air cannon.It is assumed that the
alsofind that such course blending initiative requires slower teaching and learning speed toallow students to digest the course material better. In addition, a more dedicated textbookthat combines both topics is required.1. Cultures of Learning in Polytechnics and UniversitiesA new Energy Engineering Program was launched by Schulich School of Engineering,University of Calgary in 2015 in order to provide a pathway toward a Bachelor ofScience (BSc) degree for applicants with a Diploma in Engineering Technology. Theapplicants normally come from nearby polytechnic colleges (polytechnics), such asSouthern Alberta Institute of Technology (SAIT) Polytechnic and Northern AlbertaInstitute of Technology (NAIT), and have two-year engineering technology
Paper ID #17418Using Concept Maps to Illustrate the Evolution of Key Concepts: StudentLearning Experience in a Foundational Undergraduate Engineering CourseProf. Ning Fang, Utah State University Ning Fang is a Professor in the Department of Engineering Education at Utah State University, USA. He has taught a variety of courses at both graduate and undergraduate levels, such as engineering dy- namics, metal machining, and design for manufacturing. His areas of interest include computer-assisted instructional technology, curricular reform in engineering education, and the modeling and optimization of manufacturing processes. He
educators about the process of teachingand the benefits of learning. One effective method comes from the simple Latin Proverb “Welearn by teaching”. This process of learning from teaching is also associated with Kolb’sexperiential learning cycle.1 Kolb’s methods of learning were implemented in a senior capstonedesign class where student learning is assessed. The capstone students are required to identify aneducational need within the mechanical engineering technology program. This need is discussedwith the faculty for the development of a hands-on laboratory instrument that will facilitatelearning in the program. The results from these discussions determine the design requirementsfor the capstone project. These capstone students must also learn the
the University of Southern Indiana. Prior to joining USI he taught for six years in the School of Technology at Eastern Illinois University. He earned his BSIE and MSIE degrees in Industrial Engineering from Clemson University and his PhD in Industrial and Systems Engineering from Virginia Tech. His research and teaching interests primarily include lean manufacturing, discrete event simulation and modeling, and engineering economy. Tom has been involved in lean manufacturing and modeling of production lines since 1999 and has worked with private organizations such as Danaher/Kollmorgen and AT&T. c American Society for Engineering Education, 2016 Can enforcing an organized
Paper ID #15591Analyzing an Abbreviated Dynamics Concept Inventory and Its Role as anInstrument for Assessing Emergent Learning PedagogiesMr. Nick Stites, Purdue University, West Lafayette Nick Stites is pursuing a PhD in Engineering Education at Purdue University. His research interests include the development of novel pedagogical methods to teach core engineering courses and leveraging technology to enhance learning experiences. Nick holds a BS and MS in Mechanical Engineering and has eight years of engineering experience. He also has four years of experience as an adjunct instructor at the community-college and
, design, measurements, and dynamics.Prof. Roelof Harm deVries P.E., Prof. deVries has been the Assistant Professor of Mechanical Engineering Technology at the University of Pittsburgh at Johnstown since 2008, with 25 years of experience in design and engineering management. c American Society for Engineering Education, 2016 End Fixture Design to Enhance Column Buckling Laboratory ExperimentAbstract Column buckling is an important topic in strength of materials courses. This topic hasbeen emphasized with a compression/buckling experiment using a Satec uni-axial testingmachine to compressively load 1/2 inch diameter Polyvinyl Chloride (PVC) pipe columns
2008 ASEE Annual Conference & Exposition, Pittsburgh, 2008.[5] B. Means, Y. Toyama, R. Murphy, M. Bakia, K. Jones and Center for Technology in Learning, "Evaluation of Evidence-Based Practices in Online Learning: A Meta-Analysis and Review of Online Learning Studies," U.S. Department of Education, 2010.[6] D. S. Brewer, The Effects of Online Homework on Achievement and Self-efficacy of College Algebra Students, Utah State University, 2009.[7] W. Ziemer, "WeBWorK: An Open-Source Online Homework System," in Invention and Impact: Building Excellence in Undergraduate Science, Technology, Engineering and Mathematics (STEM) Education, NSF DUE in collaboration with EHR and AAAS, 2004, pp. 169-171
hours in mechanics ofmaterial course are allocated to a traditional in-class lecture with limited numbers of laboratoryexperiment. Due to the limitation of budget, space, and time, even laboratory experiments areoften limited to a simple testing, such as tension or torsion tests conducted on samples withsimple shapes.With the advancement of computation technology, instructors of engineering courses canimplement low-cost and quick hands-on experience by using a numerical simulation methodsuch as Finite Element Analysis (FEA). Today, many commercial FEA software are availableand used in the education of mechanics of material course3,4. In mechanics of material course,instructors can also utilize FEA built in the in Computer-Aided Design software
Wisconsin, Milwaukee. Papadopoulos has diverse research and teaching interests in structural mechanics, biomechanics, appropri- ate technology, engineering ethics, and engineering education. He is PI of two NSF-sponsored research projects and is co-author of Lying by Approximation: The Truth about Finite Element Analysis. Pa- padopoulos is currently Chair of the ASEE Mechanics Division and serves on numerous committees at UPRM that relate to undergraduate and graduate education.Dr. Aidsa I. Santiago Roman, University of Puerto Rico, Mayaguez Campus Aidsa I. Santiago-Rom´an is an Associated Professor in the General Engineering Department at the Uni- versity of Puerto Rico, Mayaguez Campus (UPRM). Dr. Santiago earned a BA
Paper ID #16199A Laboratory Study of Student Usage of Worked-example Videos to SupportProblem SolvingDr. Edward J. Berger, Purdue University, West Lafayette Edward Berger is an Associate Professor of Engineering Education and Mechanical Engineering at Purdue University, joining Purdue in August 2014. He has been teaching mechanics for nearly 20 years, and has worked extensively on the integration and assessment of specific technology interventions in mechanics classes. He was one of the co-leaders in 2013-2014 of the ASEE Virtual Community of Practice (VCP) for mechanics educators across the country.Prof. Michael Wilson
Paper ID #15153Challenges and Logistics in Flipping a Large Classroom for Junior-year Me-chanical VibrationsDr. Geoff Rideout, Memorial University of Newfoundland Geoff Rideout received his B.Eng. (Mechanical) from Memorial University of Newfoundland in 1993. After working in the manufacturing and building systems consulting industries, he earned his M.A.Sc. in Mechanical Engineering from Queen’s University in Kingston, Ontario and his Ph.D. in Mechanical Engineering from the University of Michigan. He has lectured at the University of Michigan and at the Humber Institute for Advanced Technology and Applied Learning in
Illinois at Urbana-Champaign. His research interests include solid mechanics, microme- chanics of materials, fracture mechanics, and STEM education research.Prof. Matthew West, University of Illinois, Urbana-Champaign Matthew West is an Associate Professor in the Department of Mechanical Science and Engineering at the University of Illinois at Urbana-Champaign. Prior to joining Illinois he was on the faculties of the Department of Aeronautics and Astronautics at Stanford University and the Department of Mathematics at the University of California, Davis. Prof. West holds a Ph.D. in Control and Dynamical Systems from the California Institute of Technology and a B.Sc. in Pure and Applied Mathematics from the University of
Paper ID #16325Pre- and Post-Class Student Viewing Behaviors for Recorded Videos in anInverted Sophomore Mechanics CourseDr. Shawn P. Gross, Villanova University Dr. Shawn P. Gross is an associate professor in the Department of Civil and Environmental Engineering at Villanova University. He has as M.S.E. and Ph.D. degrees in Civil Engineering from the University of Texas at Austin, and a B.S.E. degree from Tulane University. He teaches undergraduate and graduate courses on mechanics and structural design (reinforced concrete, structural steel, masonry, and wood).Dr. David W Dinehart, Villanova University Professor and Chairman
, Arizona State University James A. Middleton is Professor of Mechanical and Aerospace Engineering and Director of the Center for Research on Education in Science, Mathematics, Engineering, and Technology at Arizona State Univer- sity. For the last three years he also held the Elmhurst Energy Chair in STEM education at the University of Birmingham in the UK. Previously, Dr. Middleton was Associate Dean for Research in the Mary Lou Fulton College of Education at Arizona State University, and Director of the Division of Curriculum and Instruction. He received his Ph.D. in Educational Psychology from the University of Wisconsin-Madison in 1992, where he also served in the National Center for Research on Mathematical
Paper ID #16398Analogy Methods to Address Warping and Plasticity in TorsionProf. Somnath Chattopadhyay, University at Buffalo, SUNY Dr. Somnath Chattopadhyay teaches mechanics, materials, manufacturing and design at University at Buffalo He has authored a text on Pressure Vessel s and till recently was an Associate Editor of the ASME Journal of Pressure Vessel Technology. His research interests are in the areas of fatigue and fracture of metals, carbon nanotubes, multi-scale material modeling and engineering education. He had a very successful industrial career with Westinghouse Electric where he directed and performed