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Kashif Raza; Simon Li; Catherine Chua – Science & Education, 2024
Traditional engineering education (Eng. Ed) has received criticism for restricting student learning and experiences to practical skills development while ignoring the significance of fostering cognitive skills that encourage higher order thinking, criticality, and self-reflexivity. Imaginative education (IE) has emerged as a consideration for…
Descriptors: Engineering Education, Imagination, Higher Education, Conventional Instruction
Oscar H. Salcedo; David J. Carrejo; Sergio Luna – International Journal of Education in Mathematics, Science and Technology, 2024
This paper discusses engineering praxis ethos (EPE), a proposed framework for constructing a STEM learning environment embedding interrelated components of learner experience and design activity, which can support curriculum and instructional design and evaluation in STEM education. The authors propose that STEM is a meta-discipline that relies on…
Descriptors: STEM Education, Curriculum Development, Instructional Improvement, 21st Century Skills
Wolff, Karin; Winberg, Chris – Teaching in Higher Education, 2022
The increasingly complex socio-technical and economic challenges of our time place considerable pressure on engineering programmes. To ensure that graduates are well-prepared to address these challenges requires curriculum developers to select the appropriate knowledge for the engineering programme. A number of key theorists, notably from the…
Descriptors: Curriculum Development, Engineering Education, Knowledge Level, Higher Education
Jomeh, Sayyed Mahdi Emami; Tabatabei, Sayyed Mehran – Interchange: A Quarterly Review of Education, 2022
Mulla Sadra's philosophy has an ontological approach. However, his explicit texts or philosophical foundations in social issues such as education and especially the curriculum and its relationship with learning methods can be extracted. Mulla Sadra's different approach to learning has distinguished his educational system from other educational…
Descriptors: Learning Processes, Educational Philosophy, Social Problems, Teaching Methods
Meagan E. Ita; Gönül Z. Kaletunç; Katelyn E. Swindle-Reilly – Biomedical Engineering Education, 2023
Entrepreneurial minded learning (EML) is a pedagogical technique that gives students the tools to identify opportunities, focus on impact, and to create value through their solutions. The entrepreneurial mindset builds upon three key elements: curiosity, connections, and creating value (3 Cs). A biomedical engineering course was developed using…
Descriptors: Entrepreneurship, Student Attitudes, Biomedicine, Engineering Education
Reeping, David – International Journal for Academic Development, 2020
The framework of threshold concepts has been used across several disciplines in higher education. Although the literature surrounding the identification of threshold concepts and their nature has flourished, their conceptualization has seemingly diverged across disciplinary lines, which should be recognized by educational developers who work with…
Descriptors: Fundamental Concepts, College Curriculum, Engineering, Writing (Composition)
Isabel Miller; Sara Lamer; Aidan Brougham-Cook; Karin J. Jensen; Holly M. Golecki – Biomedical Engineering Education, 2022
Mental health challenges have been rising across college campuses. To destigmatize wellness practices and promote student mental health, we present a novel technical project in an introductory bioengineering course that explores stress management techniques through physiology, biosensors, and design. We hypothesize that if students measure…
Descriptors: Equipment, Biology, Engineering Education, Mental Health
Ochoa, Hector A.; Shirvaikar, Mukul V.; Onyango, Brolyne – Journal of STEM Education: Innovations and Research, 2020
Digital Systems is one of the basic foundational courses in Electrical and Computer Engineering. The job market is increasingly in need of Electrical Engineers with knowledge of Hardware Description Languages (HDL). Yet most digital systems design curriculum, largely remains based on design using Transistor-Transistor-Logic (TTL) devices or…
Descriptors: Curriculum Development, Engineering Education, Introductory Courses, College Curriculum
Christiaan H. L. Tempelman; Annemiek Rijgersberg; Michel van der Eijk – Journal of Chemical Education, 2023
The redesign of the first year basic chemistry course is described at the Rotterdam University of Applied Sciences Chemical Engineer educational course. This was done with the aim to reduce student drop-out during the first year of the educational program. On one hand, it was chosen to teach the basic chemistry course in the laboratory where…
Descriptors: Science Instruction, Chemistry, Science Laboratories, College Freshmen
Grohs, J. R.; Gillen, A. L.; Matusovich, H. M.; Kirk, G. R.; Lesko, H. L.; Brantley, J.; Carrico, C. – Journal of STEM Outreach, 2020
Broadening participation in engineering is an important national priority and has led to increasing demands for engineering content to be integrated into traditional K-12 curriculum. However, expecting teachers to incorporate engineering into their classrooms without additional training or resources is unreasonable. Partnering teachers with…
Descriptors: Capacity Building, Integrated Curriculum, Engineering Education, Science Education
Kim, Dayoung; Jesiek, Brent K.; Zoltowski, Carla B.; Loui, Michael C.; Brightman, Andrew O. – Advances in Engineering Education, 2020
In light of both social and ABET expectations, engineering educators need to consider how to effectively infuse engineering ethics education into current engineering curricula. This article describes our initial efforts in that realm. We considered how to improve ethics education in engineering through establishing an academic-industry…
Descriptors: School Business Relationship, Partnerships in Education, Engineering Education, Technical Occupations
Tang, Xiaofeng; Catchmark, Jeffrey M.; Mendieta, Eduardo; Litzinger, Thomas A. – Advances in Engineering Education, 2020
To meet complex ethical challenges in the engineering profession, students need ethics learning experiences that are integrated systematically across the engineering curriculum. Sustaining systematic changes in the engineering curriculum also calls for processes that respect and engage the engineering faculty. This paper reports the work to date…
Descriptors: Ethics, Biology, Engineering Education, Learning Experience
Lomask, Michal; Crismond, David; Hacker, Michael – Journal of Technology Education, 2018
This paper reports on the use of teaching portfolios to assist in curriculum revision and the exploration of instructional practices used by middle school technology and engineering education teachers. Two new middle school technology and engineering education units were developed through the Engineering for All (EfA) project. One EfA unit focused…
Descriptors: Engineering Education, Technology Education, Curriculum Development, Portfolios (Background Materials)
Cunningham, Christine M.; Kelly, Gregory J. – Science Education, 2017
Engineering offers new educational opportunities for students, yet also poses challenges about how to conceptualize the disciplinary core ideas, crosscutting concepts, and science and engineering practices of the disciplinary fields of engineering. In this paper, we draw from empirical studies of engineering in professional and school settings to…
Descriptors: Epistemology, Engineering Education, Curriculum Development, Teacher Education
Orr, John; Ibell, Timothy; Evernden, Mark; Darby, Antony – European Journal of Engineering Education, 2015
Emissions reductions targets for the UK set out in the Climate Change Act for the period to 2050 will only be achieved with significant changes to the built environment, which is currently estimated to account for 50% of the UK's carbon emissions. The socio-technological nature of Civil Engineering means that this field is uniquely placed to lead…
Descriptors: Climate, Energy Conservation, Foreign Countries, Interdisciplinary Approach