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Amjad Almusaed; Marisol Rico Cortez; Asaad Almssad – International Society for Technology, Education, and Science, 2024
AI is a rapidly advancing technology, especially in education. "Generative AI" is particularly notable for revolutionizing how we teach and learn, prompting a reevaluation of teacher training. Engineering education is at the forefront of pedagogical innovation, enhancing learning tools, and fostering a new educational mindset. This…
Descriptors: Engineering Education, Artificial Intelligence, Computer Software, Educational Change
Doten-Snitker, Kerice; Margherio, Cara; Litzler, Elizabeth; Ingram, Ella; Williams, Julia – Research in Higher Education, 2021
Shared vision is an important process for change projects, serving to amplify success, increase participation, and erode the divide between project leaders and constituents. Yet there are few empirical examinations of the process of building shared vision within academic departments. Using focus groups and participant observation, this study…
Descriptors: Engineering Education, Computer Science Education, Higher Education, Educational Change
Renate G. Klaassen; Hans Hellendoorn; Linette Bossen – IEEE Transactions on Education, 2024
TU Delft education system is transformed on three levels: (1) new courses and projects in existing B.Sc. and M.Sc. programs for multidisciplinary and reflective learning; (2) new M.Sc. programs focusing on multi and interdisciplinarity, personal development, and professional skills; and (3) central Interdisciplinary Projects for Master Students…
Descriptors: Engineering Education, Resilience (Psychology), Foreign Countries, Ecology
Demian S. Barcellos; Victor A. B. Abade; Camilla B. Chrusciak; Juliana T. Machado; Izamara C. P. Dias; Graziella M. V. Mello; Santiago F. Luna Romero; Jennifer R. Amos; Ricardo A. Diogo – European Journal of Engineering Education, 2024
Modernising engineering education demands integrating diverse perspectives through multidisciplinary, collaborative approaches. In developing countries, collaboration with stakeholders presents a significant challenge. This study aimed to develop a novel collective approach to establish priorities for modernising engineering education. A workshop…
Descriptors: Educational Improvement, Educational Change, Engineering Education, Undergraduate Students
Haverly, Christa; Lyle, Angela; Spillane, James P.; Davis, Elizabeth A.; Peurach, Donald J. – Journal of Research in Science Teaching, 2022
The Next Generation Science Standards (NGSS), a reform effort "for states, by states," advances ambitious ideals for elementary science teaching, but the fate of these ideals will depend in part on the engagement of state science coordinators (SSCs). This article explores the responses of SSCs to NGSS in a purposeful sample of 18 US…
Descriptors: Instructional Improvement, Science Instruction, Elementary School Science, Academic Standards
Kähkönen, Elina; Hölttä-Otto, Katja – European Journal of Engineering Education, 2022
Interdisciplinary engineering programs have many perceived benefits including developing broader skills and an ability to work with complex real-life problems. However, the development of interdisciplinary programs faces many challenges including how to balance breadth and depth, how to integrate interdisciplinary learning into existing studies…
Descriptors: Engineering Education, Interdisciplinary Approach, Genetics, Models
Sheppard, Sheri D.; Anderson, R. Lanier; Kenny, Thomas W. – Advances in Engineering Education, 2021
Stanford has always embraced educational change, but not for its own sake. Instead, we have pursued reforms in response to specific problems or to realize definite possibilities. In that sense, our curricular innovations seek to move purposefully from "what is" to "what might be." Such purposeful change is guided by underlying…
Descriptors: College Faculty, Teacher Attitudes, Engineering Education, Educational Change
Hallberg, Peter; Ölvander, Johan – European Journal of Engineering Education, 2022
In times of rapid transformation of society in general and domains of technology in particular, questions are raised on how to effectively organise higher engineering education. As a response, this study examines the curriculum composition of eleven engineering programs to investigate curriculum nativeness, a novel approach for assessing…
Descriptors: Engineering Education, Course Content, Educational Change, Higher Education
Parrish, Dominique, Ed. – IntechOpen, 2020
Higher education contributes to the development of countries and their competitiveness in a global marketplace. However, to remain relevant and meet the demands of an ever-changing world, institutions and their operations must progress in unison with the changing world in which they function. Innovation can play a critical role in transforming and…
Descriptors: Educational Innovation, Higher Education, Educational Practices, Educational Change
McCance, Katherine Raenah – ProQuest LLC, 2021
The topic of interdisciplinarity has attracted interest and attention in academia for several decades. The intention behind interdisciplinarity is that bringing together experts from different disciplines--who have different knowledge and skills but shared interests or goals--will generate innovative ideas and novel approaches to societal and…
Descriptors: Engineering Education, Science Education, Interdisciplinary Approach, STEM Education
Mitchell, John E.; Nyamapfene, Abel; Roach, Kate; Tilley, Emanuela – European Journal of Engineering Education, 2021
Many traditional engineering schools are struggling to balance the calls to provide an innovative engineering education that meet the demands of graduates and their employers with the constraints and momentum of their existing curriculum. In this paper we present the conceptual design behind a framework that integrates existing discipline-specific…
Descriptors: Research Universities, Problem Based Learning, Engineering Education, Teaching Methods
Bertel, Lykke Brogaard; Askehave, Inger; Brohus, Henrik; Geil, Olav; Kolmos, Anette; Ovesen, Nis; Stoustrup, Jakob – Advances in Engineering Education, 2021
Since its establishment in 1974, Aalborg University has aimed to deliver cutting-edge research and innovative practices in engineering education. However, increasing complexity related to rapid developments in digitalization and emerging societal challenges offer new opportunities, requirements, and expectations across disciplines for educational…
Descriptors: Interdisciplinary Approach, Problem Based Learning, Student Projects, Active Learning
Balgopal, Meena M. – Science Education, 2020
Most science curricular reform efforts are designed by administrators or science education experts. It is less common for teachers to work collaboratively across disciplines to create, implement, and disseminate an integrated STEM curriculum developed for noncollege-bound students that ended up being popular across student populations at the…
Descriptors: STEM Education, Teacher Empowerment, Case Studies, Educational Change
Qu, Zejing; Huang, Wen; Zhou, Zhengjun – International Journal of Sustainability in Higher Education, 2020
Purpose: The purpose of this study is to evaluate the effectiveness of applying sustainability to the engineering curriculum at a university in China. Design/methodology/approach: A new curriculum, "ethics, involvement and sustainability," was designed and presented to engineering students from an undergraduate major in quality…
Descriptors: Sustainability, Engineering Education, Instructional Effectiveness, Teaching Methods
Custer, Rodney L.; Moye, Johnny J. – Technology and Engineering Teacher, 2019
Many industrial arts, technology education, and now technology and engineering education leaders have made their mark on our profession. Their legacy is something that members of the profession enjoy and have a responsibility to continue and build upon. This is the thirteenth in a series of articles entitled "The Legacy Project." The…
Descriptors: Industrial Arts, Vocational Education, Technology Education, Technical Education