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Roy Bendor; Maria Luce Lupetti – International Journal of Technology and Design Education, 2025
Speculative design is an emerging form of critical material engagement with possible futures. Designers working speculatively call attention to current and future sociotechnical dilemmas, and aim to provoke debate about the moral, political and ethical implications of sociotechnical innovation. Despite the popularity of speculative design and its…
Descriptors: Graduate Study, College Curriculum, Design, Engineering Education
Christopher Greer; Devon Eichfeld; Sara Sattarzadeh; Siu Ling Leung – Advances in Engineering Education, 2024
When engineering students are unable to evaluate the validity of their solutions, they are unprepared to solve complex, real-world engineering problems that require decomposition or knowledge transfer. A proper framework is key to successful implementation and can encourage more institutions to adopt problem-solving engineering labs. This paper…
Descriptors: Problem Solving, Engineering Education, Learning Laboratories, Scientific Concepts
Almeida, Fernando; Morais, José – Journal of Education, 2023
This study aims to explore how higher education institutions respond to the challenge of incorporating soft skills into their curricula. It employs a mixed-methods approach in which the quantitative analysis of the disciplines addressing this issue is complemented by a thematic analysis of semi-structured interviews conducted with four higher…
Descriptors: Colleges, Soft Skills, College Curriculum, Foreign Countries
Vinod Bhatt; Dev Brat Gupta; Asmita Sharma – Measurement: Interdisciplinary Research and Perspectives, 2025
The present study is a combination of qualitative and quantitative research in order to determine the impact on virtual teaching and learning methods, particularly in technical courses. The research is an attempt to demonstrate that the tools, practices, methodology, and so on that have been used are ineffective for technical courses because they…
Descriptors: Electronic Learning, College Instruction, Engineering Education, Instructional Effectiveness
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
Gómez-Martín, M. Esther; Gimenez-Carbo, Ester; Andrés-Doménech, Ignacio; Pellicer, Eugenio – International Journal of Sustainability in Higher Education, 2021
Purpose: The purpose of this paper is to analyze the potential for implementing Sustainable Development Goals (SDGs) into the civil engineering bachelor degree in the School of Civil Engineering at Universitat Politècnica de València (Spain). Design/methodology/approach: All the 2019/2020 course syllabi were analyzed to diagnose at which extent…
Descriptors: Civil Engineering, Engineering Education, Bachelors Degrees, Sustainable Development
Klassen, Mike – Teaching in Higher Education, 2022
Suellen Shay's work on higher education curricula foregrounds the importance of professional curricula which face inwards to disciplines and outwards to practice. This paper builds on her framing of professional curricula, distinctive in the differentiated knowledge base and the social relations which legitimate them. I extend Shay's work deeper…
Descriptors: Governance, Locus of Control, Decision Making, College Curriculum
Wai Tong Chor; Kam Meng Goh; Li Li Lim; Kin Yun Lum; Tsung Heng Chiew – Education and Information Technologies, 2024
The programme outcomes are broad statements of knowledge, skills, and competencies that the students should be able to demonstrate upon graduation from a programme, while the Educational Taxonomy classifies learning objectives into different domains. The precise mapping of a course outcomes to the programme outcome and the educational taxonomy…
Descriptors: Artificial Intelligence, Engineering Education, Taxonomy, Educational Objectives
Annala, Johanna – Higher Education: The International Journal of Higher Education Research, 2023
The aim of this study was to explore knowledge in the context of creating a shared curriculum between research-intensive and vocationally oriented universities of applied sciences. Curriculum knowledge was explored from the accounts of 26 teachers from four institutions in Finland. Shared curriculum initiatives created an environment in which…
Descriptors: Foreign Countries, College Curriculum, Curriculum Development, Intercollegiate Cooperation
Isa, Che Maznah Mat; Lian, Oh Chai; Pao, Liew Chia; Saman, Hamidah Mohd; Ibrahim, Che Khairil Izam Che; Yusof, Zulkiflee – Asian Journal of University Education, 2021
The Engineering Accreditation Council Standard 2020 requires the stipulated 12 programme outcomes that address complex engineering problems (CEP) and complex engineering activities (CEA) to be incorporated in the engineering programmes. However, the implementation of outcome-based education with regards to CEP and CEA is still in the infancy…
Descriptors: Foreign Countries, Engineering Education, Problems, Activities
Stephen Secules – European Journal of Engineering Education, 2023
This paper examines specific problems of educational practice that I, an undergraduate engineering educator and education researcher, have encountered in creating an interdisciplinary engineering project course. I reveal my process of theorising about problems of practice to position engineering educators' pedagogical theorising as worthy of…
Descriptors: Engineering Education, Undergraduate Study, Interdisciplinary Approach, Problems
Thanh Tuan To; Abdullah Al Mahmud; Charlie Ranscombe – Educational Technology & Society, 2024
3D printing (3DP) has emerged as a disruptive manufacturing technology that benefits both the manufacturing and educational sectors. The emergence of low-cost and affordable 3D printers has facilitated the widespread use of 3DP technology, particularly in higher education institutions (HEIs) in developing countries. Despite its promising benefits,…
Descriptors: Printing, Engineering Education, Developing Nations, Technology Uses in Education
Magnell, Marie; Geschwind, Lars – Higher Education Research and Development, 2019
The purpose of this article is to challenge the idea of incompatibility between links to research and links to professional practice in engineering education. The concept of 'academic drift' is introduced, both related to drift towards theory and towards research links in the curriculum. Empirical data were collected through a case study conducted…
Descriptors: Engineering Education, Theory Practice Relationship, Research and Development, Foreign Countries
Sánchez-Carracedo, Fermín; Sureda Carbonell, Bàrbara; Moreno-Pino, Francisco Manuel – International Journal of Sustainability in Higher Education, 2020
Purpose: This paper aims to analyze the presence of sustainability in 16 Spanish higher education curricula in the fields of education and engineering. Design/methodology/approach: The methodology uses two instruments: sustainability map and sustainability presence map. These instruments enable analysis of the number of subjects that develop…
Descriptors: Foreign Countries, Teacher Education, Engineering Education, Sustainable Development
Arefin, Md. Arman; Nabi, Md. Nurun; Sadeque, Saalem; Gudimetla, Prasad – International Journal of Sustainability in Higher Education, 2021
Purpose: Literature limited in scope regarding the incorporation of sustainability into engineering curriculum encouraged authors to look at the current approaches of universities to the integration of sustainability into university curricula. The purpose of this study is to evaluate the literature published and analyse the university secondary…
Descriptors: Sustainable Development, Environmental Education, Engineering Education, Integrated Curriculum