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Rita Prestigiacomo; Chun Chuen Chan; Lauren Kark – European Journal of Education, 2024
Biomedical engineering is critical in improving people's lives through innovative solutions to biological and medical challenges. In the face of today's rapidly evolving climate, the field of biomedical engineering encounters numerous pressures that demand up-to-date skills and competencies. The (re-)development of curricula aligning with industry…
Descriptors: Biomedicine, Engineering Education, Curriculum Development, Stakeholders
Nikolic, Sasha; Daniel, Scott; Haque, Rezwanul; Belkina, Marina; Hassan, Ghulam M.; Grundy, Sarah; Lyden, Sarah; Neal, Peter; Sandison, Caz – European Journal of Engineering Education, 2023
ChatGPT, a sophisticated online chatbot, sent shockwaves through many sectors once reports filtered through that it could pass exams. In higher education, it has raised many questions about the authenticity of assessment and challenges in detecting plagiarism. Amongst the resulting frenetic hubbub, hints of potential opportunities in how ChatGPT…
Descriptors: Artificial Intelligence, Performance Based Assessment, Engineering Education, Integrity
Desha, Cheryl; Caldera, Savindi; Hutchinson, Deanna – International Journal of Sustainability in Higher Education, 2021
Purpose: This study aims to explore the role of planned, sudden shifts in lived experiences, in influencing learner capabilities towards improved problem-solving for sustainable development outcomes. The authors responded to employers of engineering and built environment graduates observing limited "real-life" problem-solving skills,…
Descriptors: Context Effect, Sustainable Development, Problem Solving, Engineering
Collofello, Jim; Fox, Derek; Jamieson, Leah H.; Johnson, Bart M.; Loughman, Joshua; Morgan, Jim; Oakes, William C.; Schoepf, Jared; Smith, Crystal – Advances in Engineering Education, 2021
The EPICS Program was created in 1995 with the dual purposes of improving engineering education and addressing compelling needs within our communities. The model broke with many traditional academic traditions, involving students in multidisciplinary teams of students from first-year to fourth years for multiple semesters or even years on projects…
Descriptors: Engineering Education, Service Learning, Higher Education, Undergraduate Students
Carnell, Brent, Ed.; Fung, Dilly, Ed. – UCL Press, 2017
A complementary volume to Dilly Fung's "A Connected Curriculum for Higher Education" (2017) [see ED613384], this book explores 'research-based education' as applied in practice within the higher education sector. A collection of 15 chapters followed by illustrative vignettes, it showcases approaches to engaging students actively with…
Descriptors: Higher Education, College Curriculum, Curriculum Development, Interdisciplinary Approach
Jensen, Matilde Bisballe; Utriainen, Tuuli Maria; Steinert, Martin – European Journal of Engineering Education, 2018
This paper presents the experienced difficulties of students participating in the multidisciplinary, remote collaborating engineering design course challenge-based innovation at CERN. This is with the aim to identify learning barriers and improve future learning experiences. We statistically analyse the rated differences between distinct design…
Descriptors: Barriers, Concept Mapping, Interdisciplinary Approach, Engineering Education
Verbic, Gregor; Keerthisinghe, Chanaka; Chapman, Archie C. – IEEE Transactions on Education, 2017
Engineering education is undergoing a restructuring driven by the needs of an increasingly multidisciplinary engineering profession. At the same time, power systems are transitioning toward future smart grids that will require power engineers with skills outside of the core power engineering domain. Since including new topics in the existing…
Descriptors: Sustainability, Teaching Methods, Active Learning, Student Projects
Loch, Birgit; Lamborn, Julia – International Journal of Mathematical Education in Science and Technology, 2016
Many approaches to make mathematics relevant to first-year engineering students have been described. These include teaching practical engineering applications, or a close collaboration between engineering and mathematics teaching staff on unit design and teaching. In this paper, we report on a novel approach where we gave higher year engineering…
Descriptors: Foreign Countries, Engineering Education, Undergraduate Students, Mathematics Education
Biswas, Wahidul K. – International Journal of Sustainability in Higher Education, 2012
Purpose: The purpose of this paper is to show how industrial ecology can facilitate the achievement of sustainable development through its incorporation into an engineering curriculum. Design/methodology/approach: A model has been developed for assessing sustainability learning outcomes due to the incorporation of the concept of industrial ecology…
Descriptors: Engineering Education, Maturity (Individuals), Environmental Education, Ecology
Mubin, Omar; Novoa, Mauricio; Al Mahmud, Abdullah – Interactive Technology and Smart Education, 2017
Purpose: This paper narrates a case study on design thinking-based education work in an industrial design honours program. Student projects were developed in a multi-disciplinary setting across a Computing and Engineering faculty that allowed promoting technologically and user-driven innovation strategies. Design/methodology/approach: A renewed…
Descriptors: Industrial Arts, Design, Case Studies, Teaching Methods
de Vere, Ian; Melles, Gavin; Kapoor, Ajay – European Journal of Engineering Education, 2010
Product design is the convergence point for engineering and design thinking and practices. Until recently, product design has been taught either as a component of mechanical engineering or as a subject within design schools but increasingly there is global recognition of the need for greater synergies between industrial design and engineering…
Descriptors: Engineering Education, Engineering, Foreign Countries, Interdisciplinary Approach
Smith, Elizabeth Joy; Mills, Julie Evelyn; Myers, Baden – Campus-Wide Information Systems, 2009
Purpose: This paper aims to examine some of the strengths and weaknesses of the use of online tools such as wikis and blogs for assessment purposes, with the aim of proposing future developments and improvements. Design/methodology/approach: The paper utilises a case study approach by examining the outcomes of a new first-year course for all…
Descriptors: Web Sites, Electronic Publishing, Student Evaluation, Course Objectives

Newman, Peter W. G. – Environmental Education and Information, 1981
Examines the structure of environmental education and defines the discipline as an integration of three streams: environmental sciences (physical and natural sciences), environmental studies (social sciences), and environmental engineering (engineering sciences). Describes four integrating problem-oriented courses offered at Murdoch University in…
Descriptors: College Science, Course Descriptions, Engineering, Engineering Education
Prosser, A. P. – Vestes, 1974
Descriptors: Course Content, Engineering Education, Higher Education, Interdisciplinary Approach
Paten, Cheryl J. K.; Palousis, Nicholas; Hargroves, Karlson; Smith, Michael – International Journal of Sustainability in Higher Education, 2005
Purpose: While a number of universities in Australia have embraced concepts such as project/problem-based learning and design of innovative learning environments for engineering education, there has been a lack of national guidance on including sustainability as a "critical literacy" into all engineering streams. This paper was presented…
Descriptors: Portfolios (Background Materials), Engineering Education, Engineering, Foreign Countries
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