Publication Date
In 2025 | 1 |
Since 2024 | 4 |
Since 2021 (last 5 years) | 5 |
Since 2016 (last 10 years) | 5 |
Since 2006 (last 20 years) | 18 |
Descriptor
Graduate Study | 35 |
Interdisciplinary Approach | 35 |
Engineering Education | 29 |
Higher Education | 15 |
Foreign Countries | 10 |
Teaching Methods | 9 |
Undergraduate Study | 9 |
Science Education | 8 |
Engineering | 7 |
Program Descriptions | 7 |
College Science | 5 |
More ▼ |
Source
Author
Acar, B. Serpil | 1 |
Ahern, A. | 1 |
Aida Guerra | 1 |
Alain B. Bomgni | 1 |
Ayers, Jerry B. | 1 |
Biernacki, Joseph J. | 1 |
Biswas, Wahidul K. | 1 |
Blumenfield, Tami | 1 |
Borrego, Maura | 1 |
Bot, Ludovic | 1 |
Brayan Díaz | 1 |
More ▼ |
Publication Type
Education Level
Higher Education | 20 |
Postsecondary Education | 13 |
Elementary Secondary Education | 1 |
Audience
Location
Australia | 2 |
Ireland | 2 |
United States | 2 |
Asia | 1 |
California | 1 |
China | 1 |
Czech Republic | 1 |
European Union | 1 |
France | 1 |
Hong Kong | 1 |
Nepal | 1 |
More ▼ |
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Jessica L. S. Zylla; Alain B. Bomgni; Rajesh K. Sani; Mahadevan Subramaniam; Carol Lushbough; Robb Winter; Venkataramana R. Gadhamshetty; Parvathi Chundi; Etienne Z. Gnimpieba – Biomedical Engineering Education, 2024
Historically, research disciplines have successfully operated independently. However, the emergence of transdisciplinary research has led to convergence methodologies, resulting in groundbreaking discoveries. Despite the benefits, graduate programs face challenges in implementing transdisciplinary research and preparing students for real-world…
Descriptors: Research Methodology, Interdisciplinary Approach, Active Learning, Student Projects
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
Brayan Díaz; Collin Lynch; Cesar Delgado; Kevin Han – International Journal of STEM Education, 2025
Background: This paper describes research into two pedagogical approaches to foster transdisciplinarity in a graduate engineering course that involves education and computer science. Leveraging the Communities of Practice framework, we examine how students majoring in computer science can integrate new knowledge from education and computer science…
Descriptors: Graduate Study, Engineering Education, Computer Science, Interdisciplinary Approach
Luiz Ney d’Escoffier; Aida Guerra; Marco Braga – Journal of Problem Based Learning in Higher Education, 2024
Education for sustainability demands transformative knowledge, which can be obtained through problem-based, project-organized learning (PBL). However, the integration of PBL and sustainability in higher education has not yet met the needs required due to the lack of application of a systemic perspective and strategy. In this literature review, we…
Descriptors: Problem Based Learning, Engineering Education, Sustainability, Higher Education
Rafi Rashid; Rick Szostak – Issues in Interdisciplinary Studies, 2023
The literature on interdisciplinary teaching has tended to stress undergraduate teaching. As interdisciplinary graduate teaching becomes increasingly common, we need to reflect on what graduate students need to know. This article discusses key ideas that all interdisciplinary graduate programs should communicate. In particular, we need to teach…
Descriptors: Graduate School Faculty, Interdisciplinary Approach, Graduate Study, Student Needs
Ahern, A.; O'Connor, T.; McRuairc, G.; McNamara, M.; O'Donnell, D. – European Journal of Engineering Education, 2012
Critical thinking is a graduate attribute that many courses, including engineering courses, claim to produce in students. As a graduate attribute it is seen by academics as a particularly desirable outcome of student learning and is said by researchers to be a defining characteristic of university education. However, how critical thinking is…
Descriptors: Engineering Education, Interviews, Engineering, Critical Thinking
Blumenfield, Tami; Nerad, Maresi – Australian Universities' Review, 2012
"Internationalisation" has become the new buzzword for universities around the world, with jointly offered degrees as well as smaller-scale exchanges for students. Despite this rapid expansion of international campuses and programmes, and the increasing acceptance and encouragement of international experiences for [post]graduate students, little…
Descriptors: Engineering Education, Graduate Study, Measures (Individuals), Engineering
Chanan, Amit; Vigneswaran, Saravanamuth; Kandasamy, Jaya – European Journal of Engineering Education, 2012
It is now widely acknowledged that water management discipline is transforming, from being a public health and flood prevention challenge of the nineteenth century to a multi-dimensional challenge of water security for the twenty-first century. In order to train water engineers to be capable of working with this holistic multi-dimensional…
Descriptors: Engineering Education, Water, Models, Prevention
dos Santos, E. C., Jr.; da Silva, E. R. C. – IEEE Transactions on Education, 2013
This paper proposes a new methodology, Power Block Geometry (PBG), for the presentation of power electronics topologies that process ac voltage. PBG's strategy uses formal methods based on a geometrical representation with particular rules and defines a universe with axioms and conjectures to establish a formation law. It allows power…
Descriptors: Geometry, Geometric Concepts, Energy, Electronics
Paluri, Sesha L. A.; Edwards, Michelle L.; Lam, Nhi H.; Williams, Elizabeth M.; Meyerhoefer, Allie; Pavel Sizemore, Ioana E. – Journal of Chemical Education, 2015
In recent years, nanoscience and nanotechnology have been drawing enormous attention due to the numerous applications of nanomaterials. In an attempt to nurture interest towards these areas in young minds and to develop the next generation of environmentally conscious scientists and engineers, this new laboratory module focuses on the green and…
Descriptors: Molecular Structure, Technology, Science Instruction, Chemistry
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
Goggins, J. – Campus-Wide Information Systems, 2012
Purpose: The purpose of this paper is to focus on a number of initiatives in civil engineering undergraduate programmes at the National University of Ireland, Galway (NUIG) that allow students to complete engineering projects in the community, enabling them to learn by doing. Design/methodology/approach: A formal commitment to civic engagement was…
Descriptors: Foreign Countries, Engineering Education, Undergraduate Study, Graduate Study
Definitions of Interdisciplinary Research: Toward Graduate-Level Interdisciplinary Learning Outcomes
Borrego, Maura; Newswander, Lynita K. – Review of Higher Education, 2010
Combining the interdisciplinary studies (primarily humanities) literature with the content analysis of 129 successful National Science Foundation proposals written predominantly by science and engineering faculty members, the authors identify five categories of learning outcomes for interdisciplinary graduate education: disciplinary grounding,…
Descriptors: Graduate Study, Interdisciplinary Approach, Outcomes of Education, Teamwork
Business-Higher Education Forum (NJ1), 2011
Graduate education in the natural sciences has traditionally emphasized doctoral training for academic or research careers. This training, however, is not meeting the demand for professionals in business, industry, and the public sector, where individuals with a combination of scientific, technical, and managerial skills will be required.…
Descriptors: Graduate Study, Innovation, Masters Degrees, Engineering
The Multidisciplinary Imperative in Higher Education. Research & Occasional Paper Series. CSHE.11.10
King, C. Judson – Center for Studies in Higher Education, 2010
Disciplines codify related knowledge and have developed powerful approaches that enable both solutions to a wide variety of problems and efficient further extension of knowledge. Individual disciplines have translated into individual departments within universities. Academic departments tend to turn inward, deepening the knowledge within the…
Descriptors: Undergraduate Study, Vocabulary, Natural Sciences, Engineering