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Mark H. Newton – Journal of College Science Teaching, 2023
A perennial goal of science educators is to develop functional scientific literacy in their students, especially those who will not become professional scientists. This article provides an example of implementing a socioscientific issues approach in an undergraduate environmental science course that enables students to develop the knowledge,…
Descriptors: Undergraduate Students, Science Teachers, Environmental Education, Science and Society
Koen R. Wessels; Cok Bakker; Arjen E. J. Wals; George Lengkeek – Pedagogy, Culture and Society, 2024
Confronted by myriad interconnected societal challenges, this paper asks: what kind of pedagogy does justice to the experience and challenge of living in a complex world? Departing from a critical reading of a preparative-logic to education, this paper emphasises students' entangledness: more-or-less consciously, students are uniquely shaped-by…
Descriptors: Social Problems, Difficulty Level, Thinking Skills, Teaching Methods
Cian, Heidi – Electronic Journal for Research in Science & Mathematics Education, 2020
Socioscientific issues, issues that center on the intersection between scientific and social problems in real-world contexts, are valuable tools to use in science instruction due to their association with gains in scientific literacy, argumentation skills, and content knowledge. However, due to their complex nature, crafting instruction using…
Descriptors: Science and Society, Social Problems, Science Instruction, Prior Learning
Saunders, Cheston Andrew – Science Activities: Classroom Projects and Curriculum Ideas, 2016
Many students leave the environmental science classroom with misconceptions centered on the availability of natural resources such as water. This article presents a case study where students assume the roles of various stakeholders and articulate their position on whether or not to pipe water from the Red Sea to the Dead Sea. Additionally,…
Descriptors: Environmental Education, Natural Resources, Misconceptions, Water
Madden, Andrew S.; Hochella, Michael F., Jr.; Glasson, George E.; Grady, Julie R.; Bank, Tracy L.; Green, Andre M.; Norris, Mary A.; Hurst, Andrew N.; Eriksson, Susan C. – National Science Teachers Association (NJ3), 2011
In a society where technology plays an ever-increasing role, students' ability to understand the underlying science and make smart social and environmental decisions based on that knowledge is crucial. "Welcome to Nanoscience" helps biology, chemistry, and Earth science teachers introduce the revolutionary fields of nanoscience and nanotechnology…
Descriptors: Water, Investigations, Computer Simulation, Mineralogy
Levy Nahum, Tami; Ben-Chaim, David; Azaiza, Ibtesam; Herskovitz, Orit; Zoller, Uri – International Journal of Science Education, 2010
Today's society is continuously coping with sustainability-related complex issues in the Science-Technology-Environment-Society (STES) interfaces. In those contexts, the need and relevance of the development of students' higher-order cognitive skills (HOCS) such as question-asking, critical-thinking, problem-solving and decision-making…
Descriptors: Grade 10, Science Education, Teaching Methods, Foreign Countries
Byerly, Greg; Brodie, Carolyn S. – School Library Media Activities Monthly, 2005
"Give a hoot, don't pollute!" "Save the environment!" "Save the Whales!" Ranger Rick. Recycle. These are all well-known phrases and emblems of the fight to "protect the environment." Young children seem to understand almost intuitively the need to do those simple things that will make the Earth a better place to live and play. However, especially…
Descriptors: Science and Society, Web Sites, Environment, Environmental Education

Environmental Protection Agency, Washington, DC. – 1995
This guide has been developed through a collaborative effort involving the U.S. Environmental Protection Agency (EPA), the National Oceanic and Atmospheric Administration (NOAA), and the National Aeronautics and Space Administration (NASA). It is part of an ongoing commitment to ensure that the results of scientific research on ozone depletion are…
Descriptors: Environmental Education, Higher Education, Science Activities, Science and Society
Disinger, John F.; And Others – 1988
This digest identifies characteristics of successful higher education programs in environmental studies and trends in environmental studies programs and courses. Characteristics of programs that have continued for the past two decades are listed. Some of the variables associated with programs that have not continued are identified. Recent trends…
Descriptors: College Programs, College Science, Curriculum, Educational Trends
Disinger, John F. – 1990
This digest discusses the inclusion of "sustainability" concept in environmental education. Topics included are: (1) definiton of sustainability; (2) inclusion of the concept in the curriculum using interdisciplinary approaches; and (3) a list of instructional materials containing the concept at the elementary, secondary, and college…
Descriptors: Curriculum, Elementary School Science, Elementary Secondary Education, Environmental Education
Mikelskis, Helmut – Western European Education, 1990
Attempts to develop a theoretical foundation for the practice of ecological education. Focuses upon the severed relationship between man and nature. Identifies seven elements of ecological education designed to develop ecological action and experience as well as knowledge. Argues that, without a comprehensive, ecological framework, environmental…
Descriptors: Ecology, Educational Research, Educational Theories, Elementary Secondary Education
Schnell, Bobbi; Blau, Judith H.; Hinrichs, Jennifer Judd – 1997
This activity guide is designed to be used with the Growing Together program. Tree-related activities are correlated to the Benchmarks for Scientific Literacy, the recommended standards for mathematics, science, and technology suggested by the American Association for the Advancement of Science (AAAS). The Treature Educational Program is dedicated…
Descriptors: Academic Standards, Biology, Early Childhood Education, Environmental Education
Altieri, Miguel; Vukasin, Helen L., Ed. – 1988
Environmental planning requires more than finding the right technology and a source of funds. Planning involves consideration of the social, cultural, economic, and natural environments in which the project occurs. The challenge is to develop sustainable food systems that have reasonable production but do not degrade the resource base and upset…
Descriptors: Agriculture, Agronomy, Community Planning, Conservation (Environment)
Schachterle, Lance E., Ed.; Shanahan, Joan M., Ed. – 1987
In 1970, Worcester Polytechnic Institute (WPI) radically revised its curriculum by replacing specific course distributions with a new program, emphasizing projects at various levels. In instituting this change, faculty were especially concerned to encourage engineering, science, and management students to recognize how their professional work…
Descriptors: Conservation (Environment), Environmental Education, Program Descriptions, Research Papers (Students)

Robottom, Ian – Journal of Research in Science Teaching, 1989
Discussed is the issue of the appropriateness of applied science approaches to evaluation in environmental education. The relationships between characteristics of applied science approaches to evaluation and the special characteristics of environmental education are explored. (Author/YP)
Descriptors: Environmental Education, Evaluation, Evaluation Criteria, Evaluation Problems