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Landrum, Nancy E. – International Journal of Sustainability in Higher Education, 2021
Purpose: This paper aims to learn how sustainability and the circular economy were being integrated into the curriculum of a Dutch university and to transfer that knowledge back to a US university business school curriculum. Given the resistance toward integrating sustainability into the US business school curriculum, the Dutch university served…
Descriptors: Business Schools, Sustainable Development, Urban Areas, Sustainability
Turcsányi-Szabó, Márta – Informatics in Education, 2012
The paper composes a framework for learning design, using Web 2.0 technologies in teacher training, transferring the advancement in technology to become an affordance in the teaching/learning process, based on Bloom's Extended Digital Taxonomy in order to enhance the Technological Pedagogical and Content Knowledge of teachers. As a case study, it…
Descriptors: Sustainability, Teacher Education, Pedagogical Content Knowledge, Web 2.0 Technologies

Ahmed, M. – Physics Education, 1984
Discusses the role and importance of physics in the engineering curriculum, considering the need for physics knowledge in technology transfer and in preventing architectural disasters. Also discusses preuniversity physics preparation in Saudi Arabia and an optimum engineering physics curriculum, outlining a proposed four-semester physics course.…
Descriptors: Course Descriptions, Engineering, Engineering Education, Higher Education

Ingen-Housz, A. J. – European Journal of Engineering Education, 1987
Presents an overview of the teaching of plastics at various levels of technological education in the Netherlands focusing on mechanical engineering. Highlights the design process and discusses the Dutch perspective of the role of materials engineering in engineering curricula. (ML)
Descriptors: College Science, Course Descriptions, Engineering Education, Engineering Technology

Reid, S. A. – European Journal of Engineering Education, 1987
Presents a rationale for the teaching of materials in engineering degree courses. Reviews the requirements established by various professional engineering bodies in the United Kingdom for accredited engineering degree courses. Discusses the aims of the course as well as instructional concerns. (ML)
Descriptors: College Science, Course Descriptions, Developed Nations, Engineering Education
Seabrook, Roberta – 1988
In 1986 the Technology and Social Change Program and the College of Business at Iowa State University joined forces to develop a new graduate course that focused on the role of the multinational corporation in technology transfer to the lesser developed countries. The course was team taught by faculty from different disciplines and colleges, and…
Descriptors: Business Education, Course Descriptions, Curriculum Development, Developing Nations
Behar, Joseph – Science, Technology & Society, 1988
This syllabus describes the course background, central themes and issues, texts, resources, and recommended readings. Main topics are the sociology of information technology, computers and social change, telecommunications, computers and human interactions, applications in working, and social issues and political implications. (YP)
Descriptors: College Science, Computers, Course Content, Course Descriptions

Zabicky, Jacob – Chemical Engineering Education, 1986
Describes a course for third- or fourth-year chemical engineering students designed to acquaint them with the chemical industry. The course deals with productivity, characteristics of the chemical industry, sources of information, industrial intelligence, research and development, patent law, technology transfer, and quality control. (TW)
Descriptors: Chemical Engineering, Chemical Industry, Chemical Nomenclature, College Science

Moo-Young, Murray – Chemical Engineering Education, 1986
Describes the biochemical engineering and industrial biotechnology programs of the University of Waterloo (Ontario, Canada). Provides descriptions of graduate courses, along with a sample of current research activities. Includes a discussion of the programs' mechanisms for technology transfer. (TW)
Descriptors: Biochemistry, Chemical Engineering, College Science, Consortia