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Soboleva, Elena V.; Karavaev, Nikita L. – European Journal of Contemporary Education, 2020
The problem of the research is urgent due to the need to develop a special style of thinking. This type is based on problem cognitive activity, focused on lean production, resource conservation, and supported by an automated system that provides resources for solving socioeconomic problems in the conditions of the fourth industrial revolution and…
Descriptors: Robotics, Engineering Education, Teaching Methods, Thinking Skills
Ngo, Truc Thanh; Chase, Bradley – International Journal of Sustainability in Higher Education, 2021
Purpose: Environmental sustainability and social contexts are becoming increasingly important concepts. The infusion of sustainability and humanitarian engineering (HE) into the academic core curriculum is often challenging. This study aims to provide an understanding of students' perceptions and attitudes toward the incorporation of active…
Descriptors: Student Attitudes, Student Projects, Active Learning, Sustainability
Sikand, Monika; Mazzatenta, Claudio; Wong, Keith; Bush, Joseph; Socha, Aaron M. – Journal of College Science Teaching, 2021
Interdisciplinary education offers a collaborative approach to multifaceted topics, such as environmental sustainability. In this article, we present the conceptual framework and lessons learned from a team-taught course, entitled Sustainability, Energy, and the Green Economy (SEGE). Faculty from the departments of Physics, Chemistry, and Biology…
Descriptors: Sustainability, Energy, STEM Education, Grades (Scholastic)
Schwarzman, Megan R.; Buckley, Heather L. – Journal of Chemical Education, 2019
For the last seven years, an interdisciplinary course known as "Greener Solutions", offered by the University of California, Berkeley Center for Green Chemistry, has brought together graduate students in chemistry, environmental health, and engineering to understand each other's disciplines, and to work together to develop safer…
Descriptors: Chemistry, Interdisciplinary Approach, Science Instruction, Course Descriptions
Gombert-Courvoisier, Sandrine; Sennès, Vincent; Ribeyre, Francis – International Journal of Sustainability in Higher Education, 2014
Purpose: This paper aims to present the authors' views on education for responsible consumption (ERC) in higher education, and deals with major components to be considered to educate students for responsible consumption. Design/methodology/approach: There are three components that seem relevant for ERC in higher education: taught courses should be…
Descriptors: Higher Education, Global Approach, Interdisciplinary Approach, Behavior Change
Uffelman, Erich S. – Journal of Chemical Education, 2007
Two linked courses examining conservation science and art history of 17th-century Dutch painting are described. The two courses have been taught on campus and, most recently, as study-abroad courses in collaboration with the Center for European Studies, Universiteit Maastricht, The Netherlands. The highly interdisciplinary courses are intense, yet…
Descriptors: Nonmajors, Majors (Students), Art History, Interdisciplinary Approach
Peer reviewedCaceres, L.; And Others – Chemical Engineering Education, 1992
Proposes that inclusion of waste water treatment subjects within the chemical engineering curriculum can provide students with direct access to environmental issues from both a biotechnological and an ethical perspective. The descriptive details of water recycling at a copper plant and waste water stabilization ponds exemplify this approach from…
Descriptors: Chemical Engineering, Conservation (Environment), Course Content, Course Descriptions
Hepburn, Mary A. – 1975
The basic model of a secondary-level interdisciplinary environmental education curriculum development project being developed by the University of Georgia is described. International environmental problems require citizens to act politically either by direct participation or through the indirect but often powerful force of public opinion. Hence,…
Descriptors: Conservation (Environment), Course Descriptions, Curriculum Development, Decision Making

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