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Osgood, Libby; Johnston, Clifton R. – Education Sciences, 2022
There are myriad understandings of design that have evolved over time and vary by the industries and disciplines that practice it. In the engineering context, design is often described as a process or problem-solving ability. Through interviews with 12 experienced engineers, it was found that there are diverse understandings of the relationship…
Descriptors: Design, Engineering, Engineering Education, Interdisciplinary Approach
Paul Scovazzo – Chemical Engineering Education, 2025
Simplifying equations via assumptions is integral to the "engineering method." Algebraic scaling helps in teaching the engineering skill of making good assumptions. Algebraic scaling is more than a pedagogical tool. It can create a solution where one was not possible before scaling. Scaling helps in engineering proper design…
Descriptors: Algebra, Scaling, Engineering Education, Mathematics Skills
Rees Lewis, Daniel G.; Carlson, Spencer E.; Riesbeck, Christopher K.; Gerber, Elizabeth M.; Easterday, Matthew W. – Journal of Engineering Education, 2023
Background: To create design solutions experienced engineering designers engage in expert iterative practice. Researchers find that students struggle to learn this critical engineering design practice, particularly when tackling real-world engineering design problems. Purpose/Hypothesis: To improve our ability to teach iteration, this study…
Descriptors: Engineering, Design, Coaching (Performance), Problem Based Learning
Amanda Singer; Stacie Aguirre-Jaimes; Antonique White; Margot Vigeant; Michelle Jarvie-Eggart – IEEE Transactions on Education, 2024
Contribution: This article provides an examination of changes in first-year engineering students' perceptions of the role of an engineer after completing the Engineers Without Borders Challenge. Background: Essential pre- and post-comparisons missing in existing studies on the Challenge are provided, as well as comparison to other first-year…
Descriptors: College Freshmen, Student Attitudes, Engineering Education, Engineering
Burkholder, Eric; Hwang, Lisa; Wieman, Carl – Chemical Engineering Education, 2021
We have developed an assessment of authentic problem-solving in chemical engineering, which we used to measure students' problem-solving at the beginning and end of a cornerstone design course. We measured how much problem-solving students learned, and how these students compared with data collected from seniors at the beginning of the capstone…
Descriptors: Authentic Learning, Problem Solving, Chemical Engineering, Student Evaluation
Hanxiang Du; Gaoxia Zhu; Wanli Xing; Charles Xie – Journal of Science Education and Technology, 2025
Engineering design that requires mathematical analysis, scientific understanding, and technology is critical for preparing students for solving engineering problems. In simulated design environments, students are expected to learn about science and engineering through their design. However, there is a lack of understanding concerning linking…
Descriptors: Engineering, Design, Scientific Concepts, Problem Solving
Hongxia Shan – Studies in Continuing Education, 2024
Research shows a positive association between skilled migration and innovation. Related literature however is largely limited to the use of proxies such as patents, and publications. There is also a lack of attention to how innovation is accomplished in practices. This paper addresses these gaps with an examination of the innovative contributions…
Descriptors: Foreign Countries, Immigrants, Skilled Workers, Engineering
Cano-Moreno, Juan David; Arenas Reina, José Manuel; Sánchez Martínez, Francisca Victoria; Cabanellas Becerra, José María – International Journal of Technology and Design Education, 2022
One of the popular creativity methods to solve technical problems is the Theory of Inventive Problem Solving, (TRIZ), however, requires a considerable investment of time. A teaching methodology for a simplified version of TRIZ (TRIZ10) has been developed for reducing learning time and improving the creative process in solving technical problems.…
Descriptors: Problem Solving, Creativity, Engineering Education, Design
Roberto Duran-Novoa; Felipe Torres – Journal of Technology and Science Education, 2024
Problem-solving is at the core of engineering design, being fundamental for systematic innovation. During their education, students are taught numerous methods and tools, despite that literature shows debatable results regarding their real impact. Consequently, this study aims to quantify the relative impact of design methods on undergraduate…
Descriptors: Problem Solving, Undergraduate Students, STEM Education, Engineering Education
Rennick, Christopher; Litster, Greg; Hulls, C. C. W.; Hurst, Ada – IEEE Transactions on Education, 2023
Contribution: This article defines "curricular hackathons" and describes the features, challenges, and opportunities of adopting the hackathon format into engineering curricula. It is based on experience implementing a series of curricular hackathons which provide students with formative design experiences as they address ill-structured…
Descriptors: Curriculum Development, Engineering Education, Curriculum Implementation, Design
Jackson, Julie K.; Forsythe, Michelle; Parthemore, Joseph; Rix, Alexis; Medeiros, Danielle – Science and Children, 2021
Engineering design-based learning entered the discourse of science education with the release of the "Next Generation Science Standards" (NGSS Lead States 2013). Since that time there has been a focused effort to embed engineering design and engineering-based thinking in elementary school experiences. As thinking like an engineer is…
Descriptors: Engineering Education, Science Instruction, Standards, Design
Tejaswini Dalvi; Kristen Wendell – School Science and Mathematics, 2024
Insights on students' own authentic design practices--nascent design practices without much adult guidance--are crucial to informing responsive facilitation of engineering design tasks. This study unpacks how elementary students interpret teacher given information about a design task, and interact with each other and given resources, to traverse a…
Descriptors: Elementary School Students, Navigation, Engineering, Design
S. Misra; D. Wilson – IEEE Transactions on Education, 2024
Contribution: This article explored problem scoping in an industry sponsored engineering design capstone course before and during the COVID-19 pandemic. It employs reflection-in-action and quantitative action research, to demonstrate how the pandemic offered an opportunity for (1) students to develop their problem scoping skills and (2) for the…
Descriptors: Scaffolding (Teaching Technique), Reflection, COVID-19, Pandemics
Lane, Diarmaid; McGarr, Oliver; Nicholl, Bill – International Journal of Technology and Design Education, 2023
Research relating to the nature and purpose of 'design' activity across education sectors has accelerated in recent years as governments and policy makers throughout the world highlight the importance of skills such as creative problem-solving and innovation. Within secondary schools, responsibility for teaching and learning through design is…
Descriptors: Secondary School Teachers, Design, Problem Solving, Professional Development
Lammi, Matthew D.; Wells, John G.; Gero, John – International Journal of Technology and Design Education, 2022
This paper presents the results of a 2-year longitudinal study aimed at characterizing and comparing the design cognition of high school students with and without formal engineering design experiences. The students--working as dyads--engaged in design-only sessions generating solutions in response to the same engineering design challenges. The…
Descriptors: High School Students, Engineering, Design, Cognitive Processes