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Showing 1 to 15 of 94 results Save | Export
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Janna van Grunsven; Taylor Stone; Lavinia Marin – European Journal of Engineering Education, 2024
It is crucial for engineers to anticipate the socio-ethical impacts of emerging technologies. Such acts of anticipation are thoroughly normative and should be cultivated in engineering ethics education. In this paper we ask: 'how do we anticipate the socio-ethical implications of emerging technologies responsibly?' And 'how can such responsible…
Descriptors: Engineering Education, Ethical Instruction, Interdisciplinary Approach, Educational Innovation
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Jung, Jiyoon; Mercier, Emma – Educational Technology Research and Development, 2023
In response to the criticism that theory-driven researcher-developed learning tools lack scalability and sustainability in the real world, the design-based implementation research (DBIR) approach was proposed. However, few empirical studies actually describe what a DBIR study looks like and how it can inform readers about learning tool design. We…
Descriptors: Engineering Education, Educational Research, Program Implementation, Interdisciplinary Approach
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Carlotta Berry; Leanne Holder; Nicole Pfiester; Tracy Weyand – IEEE Transactions on Education, 2024
Contribution: Visual maps that illustrate how mathematics, physics, and electrical engineering classes are connected to each other during the first two years of the electrical engineering curriculum were developed. Key terminology and differences in presentation between fields are discussed. Background: Experience has shown that engineering…
Descriptors: Concept Mapping, Mathematics, Physics, Engineering Education
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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
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Kakan Dey; Md Tawhidur Rahman; Abhik Roy; V. Dimitra Pyrialakou; David Martinelli; Julia Daisy Fraustino; John Deskins; Karen E. Rambo-Hernandez; L. Christopher Plein – Journal of Civil Engineering Education, 2024
Engineering students require nontechnical skill sets to combat the 21st century's complex engineering challenges in addition to possessing technical skills. To provide multidisciplinary experience to undergraduate engineering students and to study the formation of engineers, a research team at West Virginia University offered a multidisciplinary…
Descriptors: Engineering Education, Undergraduate Students, Interdisciplinary Approach, Social Sciences
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Koppikar, Unnati; Kandakatla, Rohit; Mallibhat, Kaushik; Joshi, Gopalkrishna – IEEE Transactions on Education, 2023
Contribution: This study identifies the skills required by the faculty to mentor first-year interdisciplinary design projects. The findings are compiled as a set of themes that can act as a guide for engineering educators in mentoring interdisciplinary design projects. Background: The National Academy of Engineering's (NAE) Engineer of 2020 report…
Descriptors: Engineering Education, Interdisciplinary Approach, Mentors, Problem Solving
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Elif Akçali; Jade Williams; Rachel Burress; Albert Aguila; Mariana Buraglia – INFORMS Transactions on Education, 2024
Although some studies have incorporated poetry into engineering courses, no studies exist that explore the use of writing poetry about technical topics to develop creative thinking skills in undergraduate engineering education. This study explores engineering students' perceptions of incorporating poetry writing within an upper-level…
Descriptors: Technical Writing, Poetry, Undergraduate Students, Engineering Education
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Jung Han; Euisuk Sung; Todd Kelley; John Geoffrey Knowles – Canadian Journal of Science, Mathematics and Technology Education, 2023
There is a notable shift towards prioritizing the teaching of engineering design within K-12 education, coupled with a strong recommendation for engineering design-based integrated STEM education. This approach underscores the sharing of science and engineering practices as a means to facilitate the learning of various STEM disciplines.…
Descriptors: STEM Education, Engineering Education, Elementary Schools, Secondary Schools
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Henrik Worm Routhe; Jette Egelund Holgaard; Anette Kolmos – European Journal of Engineering Education, 2024
The increasing complexity of societal problems and the need for more interdisciplinary problem-solving in the future raise new demands for future engineering competences. Consequently, competences related to management and leadership must be reconsidered and reflected in both engineering education and engineering education research. This leads to…
Descriptors: Engineering Education, Management Development, Leadership Training, Research Reports
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Anchalee Sangarwut; Meena Polsuwan – Higher Education Studies, 2025
The purposes of the current study were to examine the 5C social engineering model-based training program on Surat Thani Rajabhat University students and Khun Thale Subdistrict residents' problem solving and adaptability and to examine the participants' satisfaction learning with the 5C social engineering model-based training program. A training…
Descriptors: Foreign Countries, Curriculum Development, Engineering Education, Competency Based Education
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Kelly Schucker; Mary B. Mcvee; Christopher J. Jarmark; Lynn E. Shanahan – Pedagogies: An International Journal, 2024
Situated in an elementary afterschool Engineering Literacies Club framed around multiliteracies and the engineering design process, this article explores engineering habits of mind and disciplinary literacies. Disciplinary literacies encourage students to read, write, think, and act like historians, mathematicians, scientists, or engineers by…
Descriptors: After School Programs, Elementary School Science, Elementary Schools, Engineering Education
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Routhe, Henrik Worm; Holgaard, Jette Egelund; Kolmos, Anette – IEEE Transactions on Education, 2023
Contribution: This research paper contributes to engineering education research with a framework for interdisciplinary learning outcomes based on students' experiences from participation in an interdisciplinary project for engineering students. A theoretical frame of reference is developed to analyze students' experience with interdisciplinary…
Descriptors: Outcomes of Education, Student Projects, Interdisciplinary Approach, Case Studies
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Júlio César Dutra; Patrícia Schmid Calvão – European Journal of Engineering Education, 2024
This article aims to present our experience with transmedia storytelling in the design of materials selection, integrating two disciplines within an undergraduate mechanical engineering curriculum in Brazil. The students' project involved developing a narrative within the fictional universe of superheroes while exploring material properties using…
Descriptors: Educational Technology, Multimedia Materials, Story Telling, Social Media
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Vieira, Camilo; Magana, Alejandra J.; Roy, Anindya; Falk, Michael – Journal of Computing in Higher Education, 2021
This study implements a design-based research approach to design and evaluate different scaffolding strategies for supporting student learning as well as promoting student agency within a computational science course. The course introduces computational methods and tools in the context of disciplinary problems for materials science and engineering…
Descriptors: Personal Autonomy, Scaffolding (Teaching Technique), Self Management, Engineering Education
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Francisco Cima; Pilar Pazos; Minjung Lee; Kristie Gutierrez; Jennifer Kidd; Orlando Ayala; Stacie Ringleb; Krishnanand Kaipa; Danielle Rhemer – IEEE Transactions on Education, 2025
This study contributes to team science and competency development by comparing demonstrated teamwork skills by engineering students participating in disciplinary and cross-disciplinary team projects. Teamwork skills are key competencies necessary to solve complex technical challenges in the workplace. Despite prior efforts to enhance these…
Descriptors: Skill Development, Teamwork, Undergraduate Students, Engineering Education
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