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Wilson-Lopez, Amy; Minichiello, Angela; Green, Theresa; Hartman, Christina; Garlick, Jared – Reading Research Quarterly, 2022
The purpose of this comparative case study, conducted with eight engineers in different firms who specialized in different disciplines of engineering, was to identify and describe the patterned ways in which they used written genres in the context of object-oriented activity, as well as to describe their evaluative frameworks and literacy…
Descriptors: Literacy, Engineering Education, Engineering, Technical Occupations
Calabrese Barton, Angela; Schenkel, Kathleen; Tan, Edna – Journal of Research in Science Teaching, 2021
In this article, it is argued that processes of co-production can support teachers and students in organizing resources for justice through science learning. Drawing upon a critical justice conceptual framework, critical ethnographic data from one urban middle school classroom during a unit focused on engineering for sustainable communities were…
Descriptors: STEM Education, Grade 6, Justice, Science Education
Hicks, Stephen – Technology and Engineering Teacher, 2013
This article presents a summary of the keynote speech presented at the ITEEA Conference in Columbus, OH, March 4, 2013, by Steven Hicks. Hicks is former Director, Research & Development, Flavor & Fragrance Development Global Capability, for the Procter & Gamble Company. Educated as a chemical engineer, his outside interests include…
Descriptors: Engineering Education, Engineering, Specialists, Conference Papers
Gohardani, Omid; Gohardani, Amir S.; Dokter, Erin; Macario, Kyla – Journal of College Science Teaching, 2014
Teaching in the 21st century requires a modern teaching practice coherent with the evolutions of the Information Age. Interestingly, teaching practices have stretched beyond an art form and into the realm of science. Following these scientific trails, one can argue that one of the greatest challenges educators currently face is to maintain student…
Descriptors: Engineering, Engineering Education, Engineering Technology, Aerospace Education
Yoder, S. Elizabeth; Kurz, M. Elizabeth – Journal of Education for Business, 2015
Linear programming (LP) is taught in different departments across college campuses with engineering and management curricula. Modeling an LP problem is taught in every linear programming class. As faculty teaching in Engineering and Management departments, the depth to which teachers should expect students to master this particular type of…
Descriptors: Programming, Educational Practices, Engineering, Engineering Education
Dare, Emily A.; Ellis, Joshua A.; Roehrig, Gillian H. – Journal of Pre-College Engineering Education Research, 2014
It is difficult to ignore the increased use of technological innovations in today's world, which has led to various calls for the integration of engineering into K-12 science standards. The need to understand how engineering is currently being brought to science classrooms is apparent and necessary in order to address these calls for integration.…
Descriptors: Science Teachers, Physics, Engineering, Engineering Education
National Centre for Vocational Education Research (NCVER), 2015
This report provides a summary of data relating to students, programs, training providers and funding in Australia's government-funded vocational education and training (VET) system (broadly defined as all activity delivered by government providers and government-funded activity delivered by community education and private training providers). The…
Descriptors: Foreign Countries, Community Education, Courses, Delivery Systems
Taylor, Gemma – School Science Review, 2014
"Real life" learning has often been suggested as a good method for engaging students in the science curriculum. In this article, an evidence-based rationale for the use of engineering as a context for "real life" science study is explained. This has been achieved through development work undertaken by the National Science…
Descriptors: Science Education, Evidence, Best Practices, Engineering
Beniston, Lee; Ellwood, Paul; Gold, Jeff; Roberts, James; Thorpe, Richard – Action Learning: Research and Practice, 2014
There is increasing evidence that action learning is valuable in a higher education setting. This paper goes on to report a personal development programme, based on principles of critical action learning, where the aim is to equip early-career scientists and engineers working in a university setting with the knowledge, skills and confidence to…
Descriptors: Experiential Learning, Innovation, Science Process Skills, Critical Thinking
Morton, William; Uhomoibhi, James – Campus-Wide Information Systems, 2011
Purpose: This paper aims to report on the design and implementation of an e-laboratory for enhanced science, technology and engineering education studies. Design/methodology/approach: The paper assesses a computer-based e-laboratory, designed for new entrants to science, technology and engineering programmes of study in further and higher…
Descriptors: Laboratories, Laboratory Experiments, STEM Education, Computer Simulation
Nersessian, Nancy J. – Mind, Culture, and Activity, 2012
As much research has demonstrated, novel scientific concepts do not arise fully formed in the head of a scientist but are created in problem-solving processes, which can extend for considerable periods and even span generations of scientists. To understand concept formation and conceptual change it is important to investigate these processes in…
Descriptors: Laboratories, Scientific Concepts, Concept Formation, Sciences
Bassetto, S.; Fiegenwald, V.; Cholez, C.; Mangione, F. – European Journal of Engineering Education, 2011
This paper presents a game of industrialisation, based on a paper airplane, that mimics real world production ramp-up and blends classical engineering courses together. It is based on a low cost product so that it can be mass produced. The game targets graduate students and practitioners in engineering fields. For students, it offers an experiment…
Descriptors: Graduate Students, Lifelong Learning, Engineering, Engineering Education
Hanson, James H.; Brophy, Patrick D. – Advances in Engineering Education, 2012
Not all knowledge and skills that educators want to pass to students exists yet in textbooks. Some still resides only in the experiences of practicing engineers (e.g., how engineers create new products, how designers identify errors in calculations). The critical incident technique, CIT, is an established method for cognitive task analysis. It is…
Descriptors: Critical Incidents Method, Engineering, Engineering Education, Task Analysis
Klein-Gardner, Stacy S.; Johnston, Megan E.; Benson, Lisa – Journal of Pre-College Engineering Education Research, 2012
This phenomenological study examined the impact of Research Experiences for Teachers (RET) teacher-developed curriculum on teaching styles and strategies at two RET sites with common Legacy Cycle training. The study was conducted to assess and document program-specific and National Science Foundation (NSF) goals related to classroom practices and…
Descriptors: Phenomenology, Teacher Researchers, Curriculum Development, Teaching Styles
Kelley, Todd R.; Wicklein, Robert C. – Journal of Industrial Teacher Education, 2009
This descriptive study examined the current status of technology education teacher practices with respect to engineering design. This article is the third article in a three-part series presenting the results of this study. The first article in the series titled "Examination of Engineering Design Curriculum Content" highlighted the research…
Descriptors: Technology Education, Secondary Education, Educational Practices, Engineering Education