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Asaad Almssad; Amjad Almusaed; Ghaniyah Yasir Gbashi – International Society for Technology, Education, and Science, 2024
This article elucidates a nuanced methodology to embed the Sustainable Development Goals (SDGs) within engineering curricula, grounded in the tenets of the CDIO Standard 3 framework. Given the heightened emphasis on sustainability within contemporary industrial contexts, there is an imperative demand for engineers endowed with sophisticated…
Descriptors: Engineering Education, Sustainable Development, Objectives, Teaching Methods
Inese Trusina; Elita Jermolajeva; Viktors Gopejenko – Journal of Teacher Education for Sustainability, 2023
The article investigates sustainable development from the holistic perspective, taking into account the complex nature of the world and the dynamism of the socio-economic systems. The study is interdisciplinary, as it addresses the issues of economics, mathematics and physics with the main focus on the modern perspective of sustainable development…
Descriptors: Sustainable Development, Sustainability, Holistic Approach, Educational Methods
Musa Saimon; Zsolt Lavicza; Theodosia Prodromou – Journal of Information Technology Education: Research, 2023
Aim/Purpose: This study aimed to develop a model for using social media content to promote 3D thinking of sustainability among students in integrated Mathematics, Language, Arts, and Technology (MLAT) classrooms. Background: Social media is one of the most relevant platforms among students of the 21st century to the extent that connecting it to…
Descriptors: Social Media, Sustainability, Thinking Skills, Integrated Curriculum
Yusof, Mat Rahimi; Yaakob, Mohd Faiz Mohd; Nawi, Aliff; Awang, Hapini; Fuad, Dayang Rafidah Syariff M.; Rami, Aizuddin Md – International Journal of Evaluation and Research in Education, 2021
This study conducted to develop a measurement model for measuring GeoEducation in Malaysia context. This cross-sectional survey involved 245 trainee teachers in Universities and Institute Pendidikan Guru Malaysia (IPGM). The data collection was made through a set of questionnaires and analyzed using SEM-AMOS. There are four main elements measured,…
Descriptors: Environmental Education, Sustainable Development, Preservice Teachers, Measurement
Strachan, Scott Munro; Marshall, Stephen; Murray, Paul; Coyle, Edward J.; Sonnenberg-Klein, Julia – International Journal of Sustainability in Higher Education, 2019
Purpose: This paper aims to share the University of Strathclyde's experience of embedding research-based education for sustainable development (RBESD) within its undergraduate curricula through the use of an innovative pedagogy called Vertically Integrated Projects (VIP), originated at Georgia Institute of Technology. Design/methodology/approach:…
Descriptors: Undergraduate Students, Teaching Methods, Sustainable Development, Program Descriptions
Bunyatova, Fatma Khanim; Bunyatova, Aynur; Shahhuseynbayova, Nigar – International Society for Technology, Education, and Science, 2021
The reason for the interest in the use of learning technologies that protect health in education is not to harm the physical and psychological health of learners in the process of training and education. After the creation of new types of innovative educational institutions, the knowledge load of learners increases, the increasing learning load…
Descriptors: Interdisciplinary Approach, Sustainable Development, Technology Uses in Education, Human Body
Raus, Rea – Journal of Teacher Education for Sustainability, 2016
The article discusses the notion of the ecological self as a key concept for teacher identity construction during teacher education in the context of sustainable development (SD). Substantial amount of literature supports the understanding that the solution to the global sustainability crisis lies in the field of education where teacher identity,…
Descriptors: Self Concept, Teacher Education, Sustainable Development, Models
Teise, K.; le Roux, A. – Africa Education Review, 2016
Education for Sustainable Development (ESD) is an educational approach that, by being a catalyst of social change, promotes sustainability. Although South African education policy and practice appear to be oriented towards ESD, the concept is contested, and ragged with ambiguity and vagueness. Because the transformation of South African education…
Descriptors: Sustainable Development, Case Studies, Models, Foreign Countries
Kaiser, David Brian; Köhler, Thomas; Weith, Thomas – Applied Environmental Education and Communication, 2016
This article aims to sketch a conceptual design for an information and knowledge management system in sustainability research projects. The suitable frameworks to implement knowledge transfer models constitute social communities, because the mutual exchange and learning processes among all stakeholders promote key sustainable developments through…
Descriptors: Knowledge Management, Information Management, Sustainability, Sustainable Development
Margarita, Rasilla Cano; Argelia, Juárez Ruiz Lidia – Educational Research and Reviews, 2016
The IPN Oaxaca CIIDIR has a mission to train human resources to postgraduate level that contribute to sustainable regional development in the South-East of Mexico. This is a vulnerable region that boasts an important source of natural resources and a great social, economic and technological backwardness that is directly related to the educational…
Descriptors: Interdisciplinary Approach, Curriculum Design, Masters Degrees, Program Administration
Bajzelj, Bojana; Fenner, Richard A.; Curmi, Elizabeth; Richards, Keith S. – International Journal of Sustainability in Higher Education, 2016
Purpose: The purpose of this paper was to enhance and complement teaching about resource system feedbacks and environmental modelling. Students were given an interactive exercise based on a research model (ForeseerTM), developed by an inter-disciplinary research team, that explores the interconnectivity of water, energy and land resources. Two…
Descriptors: Natural Resources, Environmental Education, Interdisciplinary Approach, Vignettes
Weatherton, Yvette Pearson; Sattler, Melanie; Mattingly, Stephen; Chen, Victoria; Rogers, Jamie; Dennis, Brian – Forum on Public Policy Online, 2012
In order to meet the challenges of sustainable development, our approach to education must be modified to equip students to evaluate alternatives and devise solutions that meet multi-faceted requirements. In 2009, faculty in the Departments of Civil, Industrial and Mechanical Engineering at the University of Texas at Arlington began implementation…
Descriptors: Engineering Education, Engineering, Sustainable Development, Educational Experience
Wilson, Stephanie; Zamberlan, Lisa – Contemporary Issues in Education Research, 2012
In the competitive market of higher education, government funding agencies consider universities accountable for ensuring a better alignment between educational processes, graduate capabilities and real world employability. Workforce leaders have developed new expectations about the capabilities of graduating students, expecting to employ…
Descriptors: Interdisciplinary Approach, Learning Experience, Higher Education, Undergraduate Study
Owusu-Manu, D.; Badu, E.; Edwards, D. J. – Industry and Higher Education, 2011
Procurement in the corporate world is increasingly complex, multi-faceted and interdisciplinary. This paper explores existing knowledge specifications relating to procurement management competencies and proposes a new procurement management competency framework (PMCF) and a competency-based postgraduate programme for postgraduate students in…
Descriptors: Purchasing, Competency Based Education, Graduate Study, Business Administration 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
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