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Duarte, Abel J.; Malheiro, Benedita; Arnó, Elisabet; Perat, Ignasi; Silva, Manuel F.; Fuentes-Durá, Pedro; Guedes, Pedro; Ferreira, Paulo – IEEE Transactions on Education, 2020
Contribution: An analysis of the extent to which sustainability is present in the syllabi, project briefs, report templates, and student final reports of the three Iberian European project semester (EPS) providers, over a five-year period. Background: EPS is a one-semester capstone project framework that adopts project-based learning and…
Descriptors: Engineering Education, Sustainable Development, Problem Solving, Student Projects
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Childers, Gina; Wolfe, Kim; Dupree, Alan; Young, Sheila; Caver, Jessica; Quintanilla, Ruby; Thornton, Laura – Science Teacher, 2016
Project-based learning (PBL) takes student engagement to a higher level through reflective collaboration, inquiry, critical thinking, problem solving, and personal relevance. This article explains how six high school teachers developed an interconnected, interdisciplinary STEM-focused PBL called "Sculpting the Barnyard Gene Pool." The…
Descriptors: Genetics, Active Learning, Student Projects, Secondary School Teachers
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Reiss, Michael J. – Studies in Science Education, 2008
I begin by examining the natures of science and religion before looking at the ways in which they relate to one another. I then look at a number of case studies that centre on the relationships between science and religion, including attempts to find mechanisms for divine action in quantum theory and chaos theory, creationism, genetic engineering…
Descriptors: Religion, Quantum Mechanics, Genetics, Science Education
Orel, Harold – Science, Technology and Society, 1981
Outlines a humanities course which focuses on six topics: medical ethics, nuclear power, genetic engineering, drugs, energy, and cognitive abilities. Course requirements and units are described. (DC)
Descriptors: Course Descriptions, Drug Education, Energy, Ethics
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Callahan, Daniel – BioScience, 1971
Describes an institute founded to examine moral, ethical, and legal issues raised by possibilities of euthanasia, genetic engineering, behavior control, population control, and improved disease control. Indicates scope of present research. (Editor/AL)
Descriptors: Biology, Ethics, Genetics, Interdisciplinary Approach
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Markowitz, Dina G.; DuPre, Michael J.; Holt, Susan; Chen, Shaw-Ree; Wischnowski, Michael – Science Teacher, 2006
This article discusses "Family Secrets," a problem-based learning (PBL) curriculum module that focuses on the bioethical implications of genetic testing. In high school biology classrooms throughout New York State, students are using "Family Secrets" to learn about DNA testing; Huntington's disease (HD); and the ethical, legal,…
Descriptors: Teaching Methods, Diseases, Biology, Testing
Biomedical Interdisciplinary Curriculum Project, Berkeley, CA. – 1977
This collection of lessons and class activities covers two major concepts: (1) population growth and (2) genetic engineering. Lessons consist of readings, questions and answers, and problems of projects where appropriate. Issues are posed in as much as possible in a manner intended to cause the student to reach conclusions and values without being…
Descriptors: Biology, Environment, Environmental Education, Genetics
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Hurd, Paul DeHart – American Biology Teacher, 1971
Biology ought to be taught within the context of human culture; "man" can be the "type animal." Consideration should be given to questions of race, population, food resources, environmental quality, intelligence, genetic engineering, and organ transplants. (AL)
Descriptors: Biology, Cultural Influences, Curriculum, Interdisciplinary Approach
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Coble, Charles R.; Rice, Dale R. – Science Teacher, 1983
Active involvement in society-related issues can elevate junior high school students' interest not only in the problem being solved but also in related scientific concepts. Examples of how scientific concepts and society-related issues can be taught in the same class are presented, focusing on genetic engineering, water shortage, and others.…
Descriptors: Genetic Engineering, Interdisciplinary Approach, Junior High Schools, Problem Solving
Coleman, Robert J. – 1989
The University of North Carolina's Electrical Engineering Department developed and delivered a course for undergraduate engineering students. The course integrated technical, social, and ethical perspectives on problems and issues faced in the world of practicing engineers. It achieved this integration by making use of professors in engineering,…
Descriptors: Course Descriptions, Course Evaluation, Curriculum Development, Engineering Education
Walker, John M.; Cox, Michael – 1988
This dictionary attempts to define routinely used specialized language in the various areas of biotechnology, and remain suitable for use by scientists involved in unrelated disciplines. Viewing biotechnology as the practical application of biological systems to the manufacturing and service industries, and to the management of the environment,…
Descriptors: Biological Sciences, Interdisciplinary Approach, Jargon, Resource Materials
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Kähkönen, Elina; Hölttä-Otto, Katja – European Journal of Engineering Education, 2022
Interdisciplinary engineering programs have many perceived benefits including developing broader skills and an ability to work with complex real-life problems. However, the development of interdisciplinary programs faces many challenges including how to balance breadth and depth, how to integrate interdisciplinary learning into existing studies…
Descriptors: Engineering Education, Interdisciplinary Approach, Genetics, Models
Switzer, Thomas; Voss, Burton – 1981
Examples of the interface of science and society are offered as several persuasive reasons for integrating science and social studies curriculum in elementary and secondary schools. These reasons include: (1) the search for new personal and societal values as a result of scientific and technological development in prolonging human life, in…
Descriptors: Course Descriptions, Elementary School Science, Elementary Secondary Education, Integrated Curriculum
Tomas, Linda – 1996
Teaching drama gave one instructor a chance to renew herself, and drama became an important part of a personal teaching renaissance. An elective class for grade 12 entitled "Humanities and the Arts" offered opportunity for collaborative teaching with colleagues in their areas of expertise. In a class on "Modern Drama" designed…
Descriptors: Class Activities, Classroom Techniques, Cooperative Learning, Dramatics
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Aranda, Maurina L.; Guzey, S. Selcen; Moore, Tamara J. – International Journal of Technology and Design Education, 2020
To promote rich discourse around scientific and engineering practices, teachers may turn to engineering design-based science curricula; however, this has discursive demands which have yet to be examined in a unit focused on integration of engineering and science. To investigate these discursive demands, we expand on the definition of discourse to…
Descriptors: Interdisciplinary Approach, Engineering Education, Science Instruction, Science Curriculum
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