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Showing 1 to 15 of 79 results Save | Export
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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
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Cai, Zhiqiang; Marquart, Cody; Shaffer, David W. – International Educational Data Mining Society, 2022
Regular expression (regex) coding has advantages for text analysis. Humans are often able to quickly construct intelligible coding rules with high precision. That is, researchers can identify words and word patterns that correctly classify examples of a particular concept. And, it is often easy to identify false positives and improve the regex…
Descriptors: Coding, Classification, Artificial Intelligence, Engineering Education
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Strehl, Elizabeth A.; Loweth, Robert P.; Daly, Shanna R. – Advances in Engineering Education, 2022
Design interviews with stakeholders are an important source of information that engineering designers can use to identify stakeholder needs and develop solutions that meet stakeholder requirements. However, engineering students often struggle to conduct effective design interviews. In this study, we investigated changes in engineering students'…
Descriptors: Blended Learning, Engineering Education, Design, Models
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Herianto; Jaslin Ikhsan; Lusila Andriani Purwastuti – Journal of Educational Research, 2024
Twenty-first-century skills are increasingly recognized as critical skills that today's students must develop to adapt to increasingly rapid world changes. This research aims to test the effectiveness of the STEM-EDELCY learning model to improve students' 21st-century skills. This research involved 285 junior high school students (aged 12-13) from…
Descriptors: 21st Century Skills, Skill Development, STEM Education, Engineering Education
Singelmann, Lauren Nichole – ProQuest LLC, 2022
To meet the national and international call for creative and innovative engineers, many engineering departments and classrooms are striving to create more authentic learning spaces where students are actively engaging with design and innovation activities. For example, one model for teaching innovation is Innovation-Based Learning (IBL) where…
Descriptors: Engineering Education, Design, Educational Innovation, Models
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Walls, William; Mentzer, Nathan – Technology and Engineering Teacher, 2021
As the field evolves over time, shifting from Industrial Arts, to Technology Education, to Engineering and Technology Education (ETE), so too does what teachers teach, how they teach, and the projects that they use. Projects that worked 10 years ago might not hold up today and, as reflective practitioners, they need to be able to align the current…
Descriptors: Engineering Education, Technology Education, Models, Student Projects
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Xie, Lei; Kogut, Ashlynn; Beyerlein, Michael; Boehm, Rodney – European Journal of Engineering Education, 2021
This grounded theory research examined the actions mentors take to help student teams. We interviewed nine mentors from an engineering competition using semi-structured interviews. We studied the interactions between mentors and student teams and identified nine mentoring actions: initiating the relationship, strategies to develop thinking, active…
Descriptors: Teamwork, Mentors, Grounded Theory, Competition
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Kang, Sung Pil; Chen, Yan; Svihla, Vanessa; Gallup, Amber; Ferris, Kristen; Datye, Abhaya K. – Studies in Higher Education, 2022
While university change initiatives have become more common in the face of changing learner needs and higher education funding, many fail to produce desired effects, even when guided by organizational change models. The purpose of this study was to document a successful change process in an engineering department at a Hispanic-serving institution…
Descriptors: Educational Change, Models, Change Strategies, Higher Education
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Batrouny, Nicole; Wendell, Kristen; Andrews, Chelsea; Dalvi, Tejaswini – Science and Children, 2021
The engineering design process (EDP) can be a wonderful tool to nurture creative problem-solving abilities, prepare students to tackle problems with intentional planning, and encourage learning from failures. Many lesson plans and instructional strategies are guided by the EDP (Hill Cunningham, Mott, and Hunt 2018). In this article, the authors…
Descriptors: Design, Science Education, Engineering Education, Teaching Methods
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Citrohn, Björn; Stolpe, Karin; Svensson, Maria; Bernhard, Jonte – Design and Technology Education, 2022
This study aims to investigate affordances of models and modelling in design projects in technology education. To learn more about affordances when working with models and modelling, four Swedish technology teachers were interviewed using a narrative approach. Despite a small number of informants data were rich, containing detailed descriptions of…
Descriptors: Foreign Countries, Technology Education, Design, Models
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Oguz Unver, Ayse; Okulu, Hasan Zuhtu – International Journal of Research in Education and Science, 2022
One of the most challenging tasks for teachers in projects is to develop creative ideas. Due to the linear system perspective of education, fostering students' creativity is restricted. However, engineering design and scientific process skills that comprise creativity have an iterative structure. An iterative process-oriented education enables…
Descriptors: Science Instruction, Engineering Education, Teaching Methods, Creativity
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Stevens, Laura; Kopnina, Helen; Mulder, Karel; De Vries, Marc – International Journal of Technology and Design Education, 2021
Preliminary empirical research conducted by the leading author has shown that design students using biological analogies, or models across different contexts, often misinterpreted these, intentionally or unintentionally, during design. By copying shape or form without integrating the main function of the mimicked biological model, students failed…
Descriptors: Industrial Arts, Design, Sustainability, Engineering Education
Ghahremani, Mehdi – ProQuest LLC, 2020
This thesis is an article-based (3-paper format) dissertation. In the first article, the research team adapted an input-process-outcome (IPO) model of group-level processes in the classroom, as a theoretical framework, to examine students' experiences regarding pre-college engineering curricula, classroom environments, and their experiences with…
Descriptors: Creativity, Design, Elementary Secondary Education, Engineering Education
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Bertoni, Marco; Bertoni, Alessandro – Education Sciences, 2020
Fostering 'experiential learning' in real-life situations is a critical task for engineering educators when creating constructively aligned learning activities. The paper proposes an approach to measure the students' perception of learning in Conceive-Design-Implement-Operate activities conducted outside the classroom. The approach is based on the…
Descriptors: Experiential Learning, Engineering Education, Models, Educational Innovation
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Niever, Manuel; Richter, Thilo; Duehr, Katharina; Wilmsen, Miriam; Lanz, Laura; Walter, Benjamin; Albers, Albert; Hahn, Carsten – Athens Journal of Education, 2020
The working environment of future university graduates is characterized by highly dynamic and complex product development processes. In addition to disciplinary competence, it is essential to build up methodical and social competence as well as to foster the elaboration and creativity potential of students. In order to meet industrial requirements…
Descriptors: Foreign Countries, Case Method (Teaching Technique), Active Learning, Engineering Education
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