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Annica Gullberg; Kristina Andersson; Jenny Ivarsson; Henni Söderberg – Journal of Technology Education, 2025
Practical activities are at the core of learning in both engineering and science education programs. Hence, such activities are included as important practical learning experiences in each of these fields. During such learning experiences students are confronted by many different entities, from simple equipment to advanced instrumentation, all of…
Descriptors: Engineering Education, Learning Activities, Psychological Patterns, Learning Processes
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Lena Gumaelius; Inga-Britt Skogh; Ásrún Matthíasdóttir; Panagiotis Pantzos – European Journal of Engineering Education, 2024
This study investigates the question of how Engineering education in the Nordic region responds to the challenge of educating future engineers who are ready for professional practice in a digital world. Particular interest is put on identifying who is responsible for the implementation of digital knowledge and what and how subject content is…
Descriptors: Engineering Education, Educational Change, Teaching Methods, Technological Advancement
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Mirjam S. Glessmer; Peter Persson; Rachel Forsyth – International Journal for Academic Development, 2025
Trust is an important aspect of learning. However, there is little published research on how students perceive its value. In this article, we report on engineering students' perceptions of the role of trust in their learning and their experiences of what teachers do in their courses that builds trust. Nine students participated in semi-structured…
Descriptors: Engineering Education, Trust (Psychology), Leadership Responsibility, Teaching Skills
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Susanne Engström; Johanna Blom – International Journal of Technology and Design Education, 2024
This study aims to understand how students manage higher technical education and contribute to research on institutional culture, STEM education, and students' educational strategies by identifying patterns of how students navigate within one university's engineering education. To achieve this, we define and use the concept of technical science…
Descriptors: Higher Education, Technical Education, STEM Education, Engineering Education
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Högfeldt, Anna-Karin; Gumaelius, Lena; Berglund, Per; Kari, Leif; Pears, Arnold; Kann, Viggo – European Journal of Engineering Education, 2023
This work spotlights the experiences from ten years of implementing sustainable development in all educational programs at a technical university. With a focus on the critical issue of involving more academics in the work, experiences are shared through an ethnographic account including focus group interviews. 'Sustainable development' has been…
Descriptors: Engineering Education, Sustainable Development, Educational Change, Foreign Countries
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Vinerean, Mirela; Liljekvist, Yvonne; Bengü, Elif – Open Education Studies, 2023
High dropout rates in the first year of undergraduate studies are an expression of the secondary-tertiary transition problem and they seem to be particularly high in those degree programs where specialized mathematics courses are taught in the first year of study. Research shows that students' difficulties during the transition period cannot be…
Descriptors: Student Development, Student Adjustment, Mathematics Education, Engineering Education
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Geschwind, Lars; Broström, Anders – Higher Education: The International Journal of Higher Education Research, 2022
Classifications of higher education institutions into categories that are more or less clearly differentiated through prestige and status are legion in the world of higher education. The notion of parallel categories with comparable statuses, such as those of different types of universities, is however much less well understood. This paper…
Descriptors: Technical Institutes, Universities, Technical Education, Classification
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Eidenskog, Maria; Leifler, Ola; Sefyrin, Johanna; Johnson, Ericka; Asplund, Mikael – International Journal of Sustainability in Higher Education, 2023
Purpose: The information technology (IT) sector has been seen as central to society's transformation to a more just and sustainable society, which underlines teachers' responsibility to foster engineers who can contribute specifically to such ends. This study aims to report an effort to significantly update an existing engineering programme in IT…
Descriptors: Engineering Education, Sustainability, Information Technology, Curriculum Development
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Winkens, Ann-Kristin; Leicht-Scholten, Carmen – European Journal of Engineering Education, 2023
Climate change increases the risk of natural disasters, which requires the design of sustainable and resilient infrastructure. This implies a need to enable engineering students to deal with highly complex problems and uncertainty. These competencies refer to the concept of resilience, describing the ability of a system to adapt to threatening…
Descriptors: Engineering Education, Resilience (Psychology), Outcomes of Education, Competence
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Gonsalves, Allison J.; Silfver, Eva; Danielsson, Anna; Berge, Maria – International Journal of STEM Education, 2019
Background: Research in engineering education has pointed to the need for new engineers to develop a broader skill-set with an emphasis on "softer" social skills. However, there remains strong tensions in the identity work that engineers must engage in to balance the technical demands of the discipline with the new emphasis on…
Descriptors: Foreign Countries, Engineering Education, Engineering, Technical Occupations
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Silfver, Eva; Gonsalves, Allison J.; Danielsson, Anna T.; Berge, Maria – Gender and Education, 2022
This article explores how female university students' abilities to present themselves as 'authentic' engineers are imbricated with discursive constructions of gender and gender equality. The empirical data comes from interviews and video diaries collected with three female engineering students. The analysis demonstrates the power of the Swedish…
Descriptors: College Students, Females, Engineering Education, Foreign Countries
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Hagvall Svensson, Oskar – European Journal of Engineering Education, 2023
As more entrepreneurial experiences are integrated into engineering programs, students are faced with new challenges they need help in managing. While previous research has identified entrepreneurial activities that engineering students struggle with, the antecedents of these difficulties have not been directly investigated. Drawing on an…
Descriptors: Entrepreneurship, Engineering Education, Active Learning, Student Projects
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Varagnolo, Damiano; Knorn, Steffi; Staffas, Kjell; Fjällström, Eva; Wrigstad, Tobias – European Journal of Engineering Education, 2021
In this paper, we propose a method to analyse the coherence of existing curricula at higher education institution. We focus our attention to engineering programmes at universities but the proposed method is by no means restricted to those cases. In contrast to other known methods, our approach is quantitative, decentralised, and asynchronous and…
Descriptors: Curriculum Evaluation, Evaluation Methods, College Curriculum, Engineering Education
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Norström, Per; Hallström, Jonas – International Journal of Technology and Design Education, 2023
The common purpose of models is to provide simplified representations of other phenomena. Depending on type, they are suitable for communication, documentation, prognostication, problem solving, and more. Various types of models, such as drawings, mock-ups, flow charts, and mathematical formulae, are important tools in engineering work. An…
Descriptors: Secondary School Students, Engineering Education, Technology Education, Models
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Maria Fahlgren; Mats Brunström – International Journal of Mathematical Education in Science and Technology, 2025
This paper provides some insights into the use of example-generating tasks in the design of a technology-rich learning environment to enhance students' mathematical thinking. The paper reports on an early stage of a design-based research project concerning the design of tasks and associated feedback utilising the affordances provided by a combined…
Descriptors: Mathematics Instruction, Educational Technology, Technology Uses in Education, Computer Software
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