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David J. Therriault; Elliot P. Douglas; Emily Buten; Elizabeth Anne Bates; Marah B. Berry; Jeremy A. M. Waisome – European Journal of Engineering Education, 2025
A common distinction in engineering problems is classifying them as well-structured or ill-structured. It is assumed that classroom problems are well-structured while workplace problems are ill-structured. However, we cannot find empirical data to confirm or deny the claim that the bulk of classroom problems are well-structured. This research…
Descriptors: Engineering Education, Textbooks, Textbook Content, Problems
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Kelley E. Dugan; Erika A. Mosyjowski; Shanna R. Daly; Lisa R. Lattuca – Journal of Engineering Education, 2024
Background: To prepare engineers who can address complex sociotechnical problems, a deep understanding of engineers' complex problem-solving approaches is needed. Purpose/Hypothesis: This study operationalizes comprehensive systems thinking as an analysis framework that attends to aspects of engineering work and relationships among those aspects.…
Descriptors: Engineering, Engineering Education, Problem Solving, Knowledge Level
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Renato B. Rodrigues; Jillian Seniuk Cicek – European Journal of Engineering Education, 2024
Sociotechnical thinking (STT) has recently emerged in response to technical-social dualism. It is defined as the ability to identify, address, and respond to both social and technical dimensions of engineering. As the number of publications on STT increases, so does the need to map the literature. This paper provides a scoping literature review of…
Descriptors: Engineering Education, Thinking Skills, Problem Solving, Social Problems
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Aida Guerra; Dan Jiang; Xiangyun Du; Imad Abou-Hayt; Andrés Felipe Valderrama Pineda – International Journal of Technology and Design Education, 2025
This study explores engineering design students' perceptions of their agency for sustainability in a Danish problem- and project-based learning (PBL) context. A conceptual framework is proposed with three dimensions: personal, action, and contextual. Q methodology was adopted to investigate the subjective views of 24 first-year undergraduate…
Descriptors: Engineering Education, Design, Student Attitudes, Sustainability
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Yiting Wang; Tong Li; Jiahui You; Xinran Zhang; Congkai Geng; Yu Liu – ACM Transactions on Computing Education, 2025
Understanding software modelers' difficulties and evaluating their performance is crucial to Model-Driven Engineering (MDE) education. The software modeling process contains fine-grained information about the modelers' analysis and thought processes. However, existing research primarily focuses on identifying obvious issues in the software…
Descriptors: Computer Software, Engineering Education, Models, Identification
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Linda Oktaviani; Ullu Yandi Aulia; Mukhamad Murdiono; Suharno Suharno – Journal of Education and Learning (EduLearn), 2024
This study aims to provide a comprehensive analysis of the implementation of Pancasila learning with the goal of improving critical thinking skills through the application of the six thinking hats model. The research adopts a descriptive approach utilizing qualitative methods. The study was conducted at the Faculty of Engineering, Universitas…
Descriptors: Critical Thinking, Thinking Skills, Skill Development, Active Learning
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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
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Andrew Olewnik; Vanessa Svihla – International Journal of Technology and Design Education, 2025
Undergraduate engineering students are commonly introduced to design in their first year and tackle a more authentic design challenge during senior year, with intervening courses focused on technical problem solving. Along this trajectory, students should acquire skills related to the development of engineering requirements, which are important to…
Descriptors: Engineering Education, College Freshmen, College Seniors, Knowledge Level
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Miranda Rocksén; Maria Berge – European Journal of Engineering Education, 2025
In this paper, we have combined a pragmatic and a sociocultural perspective on how artifacts are used in technical problem-solving. With these perspectives we explore how three mechanical engineering students build a plastic spider together, using instructions they found on the internet. Ten hours of video recordings were selected for a detailed…
Descriptors: Engineering Education, Problem Solving, Cooperative Learning, Inquiry
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Jessica Swenson; Emma Treadway; Krista Beranger – Journal of Engineering Education, 2024
Background: Real-world engineering problems are ill-defined and complex, and solving them may arouse negative epistemic affect (feelings experienced within problem-solving). These feelings fall into sequenced patterns (affective pathways). Over time, these patterns can alter students' attitudes toward engineering. Meta-affect (affect or cognition…
Descriptors: Engineering Education, Problem Solving, Student Attitudes, Affective Behavior
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Andrew Olewnik; Randy Yerrick; Mike Eastman – European Journal of Engineering Education, 2024
This study explores students' initial engagement with ill-structured problems before and after the introduction of engineering problem typology as a framework for problem engagement and reflection. Using problem discussions, debrief interviews, and qualitative analysis of written artifacts, we considered observed changes to students' initial…
Descriptors: Undergraduate Students, Engineering Education, Problem Solving, Classification
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Francisco Arredondo; Belen Garcia; Ruben Lijo – IEEE Transactions on Education, 2025
Contributions: This article presents the results from a teaching innovation project based on the creation of educational videos by students and their assessment through blind peer review in the context of an electric circuit course. This article also analyses the activity's impact on learning outcomes by comparing the results of participating…
Descriptors: Video Technology, Electronic Equipment, Peer Evaluation, Program Effectiveness
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Óscar Barquero-Pérez; Miguel Ángel Cámara-Vázquez; Rebeca Goya-Esteban – Biomedical Engineering Education, 2025
Purpose: Teaching and learning statistical signal processing in Biomedical Engineering Degrees poses challenges for both students and teachers. Students often perceive signal processing subjects as demanding and somewhat unattractive, with failure rates several times higher than that of other courses. The aim of this work is to address the…
Descriptors: Experiential Learning, Biomedicine, Engineering Education, Physiology
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Elisa Martinez-Marroquin; Bouchra Senadji; Sally Male; Lincoln Wood – European Journal of Engineering Education, 2025
Given the impact of engineering on society, it is crucial that engineering graduates have an appreciation of the social aspects of the profession and an understanding of the social implications of engineering practice. However, the socio-technical integration in engineering education has proven challenging and it is still a matter of concern. The…
Descriptors: Engineering Education, Professional Occupations, Engineering, Social Influences
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Xin Ming; Jan van der Veen; Miles MacLeod – European Journal of Engineering Education, 2025
Interdisciplinary engineering education (IEE) is gaining traction as engineering practices increasingly acknowledge the need to transcend traditional boundaries given the complexities of globalised systems. IEE, however, faces challenges that underscore uncertainties and different perceptions about what interdisciplinarity means for engineering…
Descriptors: Interdisciplinary Approach, Engineering Education, Competence, Job Skills
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