., “Constructivism: The Learning Theory That Supports Competency Development ofEngineers For Engineering Practice and Technology Leadership Through Graduate Education”, Proceedings of theASEE Annual Conference, Portland, OR, 2005.[9] F. N. Dempster, “Spacing Effects and Their Implications for Theory and Practice”, Educational PsychologyReview, Vol. 1, No. 4, pp. 309-330, 1989.[10] D. Rohrer, “The Effects of Spacing and Mixing Practice Problems”, Journal for Research in MathematicsEducation, Vol. 40, No. 1, pp. 4-17, 2009.[11] S. K. Carpenter et al., “Using Spacing to Enhance Diverse Forms of Learning: Review of Recent Research andImplications for Instruction”, Educational Psychology Review, Vol. 24, No. 3, pp. 369-378, 2012.[12] R. M. Felder and L. K
Paper ID #9969Development and Assessment of an Inquiry-Based Learning Activity in Dy-namics: A Case Study in Identifying Sources and Repairing Student Miscon-ceptionsDr. James M Widmann, California Polytechnic State University Jim Widmann is a Professor of Mechanical Engineering at California Polytechnic State University, San Luis Obispo. He received his Ph.D. in 1994 from Stanford University. Currently he teaches mechanics and design courses. He conducts research in the areas of machine design, fluid power control and engineering education. He is a past Chair of the ASEE-DEED Division and a U.S. Fulbright Scholar.Dr
engineering and Mechanics at the University of Wisconsin, Milwaukee. Papadopoulos has diverse research and teaching interests in structural mechanics and bioconstruction (with emphasis in bamboo); appropriate technology; engineering ethics; and mechanics education. He has served as PI of several NSF-sponsored research projects and is co-author of Lying by Approximation: The Truth about Finite Element Analysis. He is active in the Mechanics Division.Dr. Aidsa I. Santiago-Rom´an, University of Puerto Rico, Mayaguez Campus Dr. Aidsa I. Santiago-Rom´an is a Professor and Chair in the Engineering Sciences and Materials (CIIM) Department at the University of Puerto Rico, Mayag¨uez Campus (UPRM). Dr. Santiago earned a BS and MS
Paper ID #25396A Specifications-Based Approach for the Design and Delivery of a Statics/DynamicsCourseDr. John A. Mirth, Saint Cloud State University John Mirth is an associate professor in the Mechanical and Manufacturing Engineering Department at the St. Cloud State University in Minnesota. Prior to this, he had positions at the University of Denver, the University of Wisconsin-Platteville, Rose-Hulman Institute of Technology and the University of Iowa. He obtained his BSME degree from Ohio University and his MSME and Ph.D. degrees from the University of Minnesota. c American Society for
AC 2007-1256: DIFFERENTIATED INSTRUCTIONS IN STATICS LEARNINGRungun Nathan, Villanova University Dr. Rungun Nathan is an Assistant Professor in the Department of Mechanical engineering at Villanova University. He got his BS from University of Mysore, DIISc from Indian Institute of Science, MS from Louisiana State University and PhD from Drexel University. He worked as a post-doc at University of Pennsylvania in the area of Haptics. His research interests are in the areas of ornithopters, mechatronics, robotics, MEMS, virtual reality and haptics, and teaching with technology. He is an active member of ASEE and ASME
scaffolding can be removed.References[1] Clark, Ruth C., Frank Nguyen, and John Sweller. Efficiency in learning: Evidence-basedguidelines to manage cognitive load. John Wiley & Sons, 2011.[2] Sweller, John, Paul Ayres, and Slava Kalyuga. Cognitive Load Theory. Explorations in thelearning sciences, instructional systems and performance technologies: Vol. 1., 2011.[3] Bedford, Anthony and Fowler, Wallace. Engineering Mechanics: Dynamics. PearsonPrentice Hall, 5th ed., 2008.[4] G. L. Gray, F. Constanzo, D. Evans, P. Cornwell, B. Self, and J. Lane, “The dynamicsconcept inventory assessment test: a progress report and some results,” 2005. ASEE AnnualConference and Exposition.[5] Beer, Ferdinand, Johnston, E.Russell, Mazurek, David
, "description" is used as a label forequations and processes that are used to describe properties and behaviors exhibited by andwithin mechanical systems. As engineers, we see this regularly because we are exposed to newor emerging technologies and processes. The word "expansion" will be used to mean the additionof mathematical terms or processes to an already existing description. A useful example ofexpansion is the Bernoulli equation. At its heart, the Bernoulli equation is an energy equation.The original equation defined by Bernoulli is only slightly different from the equation we usetoday. (My undergraduate fluids professor referred to it as the Modified Bernoulli Equation. Hemade quite a to-do in class about the use of the word "Modified." To
Paper ID #25917Mechanics Knowledge Enhanced with Videos Illustrating Concepts Experi-enced with Hands-on ActivitiesDr. Rania Al-Hammoud P.Eng., University of Waterloo Dr. Al-Hammoud is a Faculty lecturer (Graduate Attributes) in the department of civil and environmental engineering at the University of Waterloo. Dr. Al-Hammoud has a passion for teaching where she con- tinuously seeks new technologies to involve students in their learning process. She is actively involved in the Ideas Clinic, a major experiential learning initiative at the University of Waterloo. She is also re- sponsible for developing a process and
AC 2007-610: USING A SINGLE EQUATION TO ACCOUNT FOR ALL LOADS ONA BEAM IN THE METHOD OF DOUBLE INTEGRATION: A CAVEATIng-Chang Jong, University of Arkansas Ing-Chang Jong serves as Professor of Mechanical Engineering at the University of Arkansas. He received a BSCE in 1961 from the National Taiwan University, an MSCE in 1963 from South Dakota School of Mines and Technology, and a Ph.D. in Theoretical and Applied Mechanics in 1965 from Northwestern University. He was Chair of the Mechanics Division, ASEE, in 1996-97. His research interests are in mechanics and engineering education. Page 12.1535.1
AC 2007-11: ANALYSIS OF STATICALLY INDETERMINATE REACTIONS ANDDEFLECTIONS OF BEAMS USING MODEL FORMULAS: A NEW APPROACHIng-Chang Jong, University of Arkansas Ing-Chang Jong serves as Professor of Mechanical Engineering at the University of Arkansas. He received a BSCE in 1961 from the National Taiwan University, an MSCE in 1963 from South Dakota School of Mines and Technology, and a Ph.D. in Theoretical and Applied Mechanics in 1965 from Northwestern University. He was Chair of the Mechanics Division, ASEE, in 1996-97. His research interests are in mechanics and engineering education.Joseph Rencis, University of Arkansas Joseph J. Rencis is Professor and Head of the Department of Mechanical
AC 2011-91: TEACHING DEFLECTIONS OF BEAMS: COMPARISON OFADVANTAGES OF METHOD OF MODEL FORMULAS VERSUS METHODOF SUPERPOSITIONIng-Chang Jong, University of Arkansas Ing-Chang Jong is a Professor of Mechanical Engineering at the University of Arkansas. He received a BSCE in 1961 from the National Taiwan University, an MSCE in 1963 from South Dakota School of Mines and Technology, and a Ph.D. in Theoretical and Applied Mechanics in 1965 from Northwestern University. He and Dr. Bruce G. Rogers coauthored the textbook Engineering Mechanics: Statics and Dynamics, Oxford University Press (1991). Professor Jong was Chair of the Mechanics Division, ASEE, 1996-97, and received the Archie Higdon Distinguished Educator Award in
consultant for the Food and Agriculture Organization (FAO) of the United Nations and been awarded two UNESCO Fellowships. He has taught mechanics and related subjects at many institutions of higher learning: The University of Michigan-Ann Arbor, Eastern Michigan University, Western Wyoming College, Ecole Nationale Supérieure Polytechnique, Yaoundé, Cameroon, and Rochester Institute of Technology (RIT). He has been investigating the strategies that engineering students use to learn engineering subjects for many years. He is an active member of two research groups in his current department: The Undergraduate Projects Lab and the Energy Systems Lab. This paper came out of work done with his
SMART assessment, a modified mastery learning pedagogy for problem based courses. He created and co-teaches a multi-year integrated system design (ISD) project for mechanical engineering students. He is a mentor to mechanical engineering graduate teaching fellows and actively champions the adoption and use of teaching technologies. American c Society for Engineering Education, 2021 Cheating and Chegg: a RetrospectiveAbstractIn the spring of 2020, universities across America, and the world, abruptly transitioned to onlinelearning. The online transition required faculty to find novel ways to administer assessments andin some cases, for
AC 2008-2796: DEFLECTION OF A BEAM IN NEUTRAL EQUILIBRIUM À LACONJUGATE BEAM METHOD: USE OF SUPPORT, NOT BOUNDARY,CONDITIONSIng-Chang Jong, University of Arkansas Ing-Chang Jong serves as Professor of Mechanical Engineering at the University of Arkansas. He received a BSCE in 1961 from the National Taiwan University, an MSCE in 1963 from South Dakota School of Mines and Technology, and a Ph.D. in Theoretical and Applied Mechanics in 1965 from Northwestern University. He was Chair of the Mechanics Division, ASEE, in 1996-97. His research interests are in mechanics and engineering education. Page 13.353.1
AC 2012-3998: TEACHING DEFLECTIONS OF BEAMS: ADVANTAGESOF METHOD OF MODEL FORMULAS VERSUS THOSE OF CONJU-GATE BEAM METHODDr. Ing-Chang Jong, University of Arkansas Ing-Chang Jong is a professor of mechanical engineering at the University of Arkansas. He received a B.S.C.E. in 1961 from the National Taiwan University, a M.S.C.E. in 1963 from South Dakota School of Mines and Technology, and a Ph.D. in theoretical and applied mechanics in 1965 from Northwestern Uni- versity. He and Bruce G. Rogers coauthored the textbook Engineering Mechanics: Statics and Dynamics, Oxford University Press (1991). Jong was Chair of the Mechanics Division, ASEE, 1996-1997, and re- ceived the Archie Higdon Distinguished Educator Award in
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
hopes to further advance their intellectual curiosity and problem solving skills.Charles Birdsong, California Polytechnic State University Charles Birdsong has expertise in vibrations, controls, signal processing, instrumentation, real-time control, active noise control, and dynamic system modeling. He received his BSME at Cal Poly San Luis Obispo, MS and Ph.D. at Michigan State University where he worked on active noise control applications for the automotive industry. He has worked in the vibration test and measurement industry helping to drive new technologies to market and working with industry to meet their emerging needs. He is currently an Assistant Professor at California Polytechnic
Paper ID #30062Replacing Graded Homework Assignments in StaticsProf. Charles S White, Norwich University Prof. White received BS, MS and PhD degrees in Mechanical Engineering from M.I.T. He has worked in government research (U.S. Army Materials Technology Lab), private industry (Gillette/P&G, The Velcro Companies, Saint-Gobain) and academia (Northeastern University, Norwich University). His return to academia in 2018 resulted from a desire to give back and share his experiences. Particular areas of exper- tise include constitutive modeling for mechanical behavior of materials, consumer product development, and
AC 2012-3164: TEACHING MULTIBODY SYSTEM SIMULATION: ANAPPROACH WITH MATLABDr. Peter Wolfsteiner, Munich University of Applied Sciences Peter Wolfsteiner is professor in mechanical engineering at the Munich University of Applied Sciences (HM) in Germany. He received his Ph.D. degree in M.E. from the Technical University Munich. Prior to joining the faculty at HM, he worked at Knorr-Bremse Group as a Manager in the area of new technologies for rail vehicle braking systems. He teaches undergraduate and graduate courses in statics, strength of materials, dynamics, controls, numerics, and simulation of dynamical systems. Research interests include simulation, nonlinear dynamics, random vibrations, and fatigue. He is