AC 2007-1875: WRITING PROGRAM IMPROVEMENTS FOR A MATERIALSENGINEERING LABORATORY COURSEAnastasia Micheals, San Jose State University Anastasia Micheals, materials researcher and instructor in materials engineering, works with a wide variety of materials, including metals, ceramics, composites, and polymers. She has more than 13 years experience in industry, government and consulting in the areas of materials characterization, analysis, and processing. She holds an M.S. in Materials Science and Engineering from Stanford University, and currently teaches Materials Engineering at San Jose State University. Courses include introductory materials engineering, electrical properties of
AC 2007-1800: SELF-PACED LABORATORY MODULES FOR ENGINEERINGMATERIALS AND MANUFACTURING PROCESSES LABORATORY COURSECarolyn Skurla, Baylor University Carolyn Skurla is an Assistant Professor in the Department of Mechanical Engineering. She received a B.S. in Biomedical Science from Texas A&M University and a Ph.D. in Mechanical Engineering from Colorado State University. In addition to the freshman engineering course, Dr. Skurla teaches courses in materials engineering, biomaterials, and biomedical engineering. Her research interests are in biomaterials and total joint replacements. Page
. The inspiration to structure a course around the designing andbuilding of educational museum displays was inspired by similar innovative classactivities by Crone4 and Pruitt5. MATE X424 was offered in the Fall of 2006, and was a2-unit activity (i.e., cross between a lecture and laboratory type class). The class met for4 hours a week, and much of the class time was devoted to actually working on thedisplays. The small class size of 6 students allowed us to truly work together as a team.Due to the service learning component of the course, the students were now working fortheir client, Chick Fidel and the school children. The instructor functioned more as theproject manager, rather than the judge that determines their grades (although that task
school teachers connecting math, science and engineering.Amaneh Tasooji, Arizona State University Amaneh Tasooji is an Associate Research Professor in the School of Materials at ASU and has been teaching and developing new content for materials science and engineering classes and laboratories. She has developed new content and contextual teaching methods from here experience as a researcher and a manager at Honeywell Inc. She is currently working to develop new assessments to to reveal and address student misconceptions in introductory materials engineering classes. Page 12.540.1© American Society
Empirical Page 12.36.15Studies of Design Processes,” Int. J. Engng. Ed., Vol. 22, No. 3, 2006, pp. 519-532.3. Dym, C.L., “Engineering Design: So Much to Learn,” Int. J. Engng. Ed., Vol. 22, No. 3,2006, pp. 422-428.4. Lamancusa, J.S., “Design as the Bridge Between Theory and Practice,” Int. J. Engng.Ed., Vol. 22, No. 3, 2006, pp. 652-658.5. Dym, C.L., Agogino, A.M., Eris, O., Frey, D.D. and Leifer, L.J., “Engineering DesignThinking, Teaching and Learning,” Journal of Engineering Education, January 2005, pp.103-120.6. Savage, R.N., “The Role of Design in Materials Science and Engineering,” InternationalJournal of Engineering Education, Vol. 22, No. 5, 2006
broader impacts of engineering, enhances systems thinking, reflects sustainable engineeringpractices, and helps prepare students to make an impact in the global community. Project-basedlearning approaches that emphasize student learning rather than instructor teaching may be a keyto successful development of “global engineers.” Evaluations of project-based courses showincreases in student motivation, problem-solving ability, communication and teaming skills,knowledge retention, and capacity for self-directed learning. Despite these reported benefits,curriculum-wide implementations of project-based learning are rare, probably partly due to thetraditional emphasis on technical content acquisition in upper-level courses and a lack of clearmethods
can be contacted at john.bridge@mma.eduBarbara Fleck, Maine Maritime Academy Barbara Fleck is an Associate Professor in the Engineering Department at Maine Maritime Academy and a professional engineer. She began teaching at MMA in 1994 after working with several research and development groups, including Battelle Columbus Laboratories, Brookhaven National Laboratory, Sunpower, Inc. and Stirling Technology, Inc. She can be contacted at Maine Maritime Academy, Castine, ME 04420; 207-326-2103, or bfleck@mma.edu Page 12.648.1© American Society for Engineering Education, 2007 Engineering
AC 2007-2288: EXPOSING HIGH SCHOOL STUDENTS TO THE ROLE OFENGINEERING AND ADVANCED MATERIALS IN DEVELOPINGALTERNATIVE ENERGY SOURCESGukan Rajaram, North Carolina A&T State University Gukan Rajaram is a Post-doctoral research scientist in the Department of Mechanical Engineering. He received his PhD in Mechanical Engineering from North Carolina A&T State University. His research is in the area of electrode and electrolyte synthesis and characterization for solid oxide fuel cells. He also teaches senior level mechanical engineering laboratory and actively involved in K-12 outreach activities.Devdas Pai, North Carolina A&T State University Devdas M. Pai is a Professor of Mechanical Engineering
AC 2007-39: MATERIALS SCIENCE AND ENGINEERING EDUCATION FORMICROELECTRONICS AND NANOTECHNOLOGYSantosh Kurinec, Rochester Institute of Technology Santosh Kurinec is a professor and the department head of Microelectronic Engineering at Rochester Institute of Technology. She has an extensive experience on integration of electronic materials in modern devices. She teaches undergraduate and graduate courses in microelectronics processing, electronic materials and solid state quantum mechanics.Surendra Gupta, Rochester Institute of Technology “Vinnie” Gupta is a Professor of Mechanical Engineering and Materials Science & Engineering, and the recipient of the 2000 Eisenhart Award for Excellence in
that a significant portion of students are visual, sensing, and active learnerswho are at a disadvantage when taking traditional engineering lecture courses that do not allowthem to experience the technology and concepts being taught in class1,2,3. It is necessary forthem to touch, feel, and see examples before they can fully understand and process the course Page 12.525.2concepts. To assist in the teaching of smart materials and to expose SMA to a wider, STEMbased student body, a series of demonstrations and experiments have been developed eitherdirectly or with the support of The Smart Materials and Structures Laboratory in theDepartment of
AC 2007-1905: SUPPLEMENTARY LEARNING METHODS IN MATERIALSSCIENCE EDUCATIONDhananjay Kumar, North Carolina A&T State University DHANANJAY KUMAR is an Assistant Professor of Mechanical Engineering. Holding a joint research position with Oak Ridge National Lab, Prof. Kumar teaches courses related to the science, characterization and processing of advanced materials. He holds a PhD in Chemistry from the Indian Institute of Technology - Mumbai. He is a prolific researcher, with two major NSF grants (NER and NIRT) as PI.Devdas Pai, North Carolina A&T State University DEVDAS M. PAI is a Professor of Mechanical Engineering at NC A&T State University and Associate Director (Operations) of
AC 2007-1005: MECHANICS, PROCESS, AND DESIGN SIMULATION OFFIBER-REINFORCED COMPOSITE MATERIALS – A NEW COURSEDEVELOPMENTYaomin Dong, Kettering University Dr. Yaomin Dong is Assistant Professor of Mechanical Engineering at Kettering University. He received his Ph.D. in Mechanical Engineering at the University of Kentucky in 1998. Dr. Dong has extensive R&D experience in automotive industry and holds multiple patents. Dr. Dong's areas of expertise include metalforming processes, design with composite materials, and finite element analysis.Jacqueline El-Sayed, Kettering University Dr. Jacqueline El-Sayed is the Director of the Center for Excellence of Teaching and Learning and Associate