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Young, Sheila A.; Newton, Amanda R.; Fowler, Samantha R.; Park, Joo – Journal of Biological Education, 2023
This research shows that employing critical thinking (problem-solving and scientific reasoning) skills when learning about climate change helped undergraduate biology students to understand the subject matter better. In this post hoc analysis of pre- and post-test scores from a public Florida undergraduate college, we identified significant…
Descriptors: Critical Thinking, Undergraduate Students, Biology, Climate
Huang, Tien-Chi; Lin, Weijane; Yueh, Hsiu-Ping – International Journal of Science and Mathematics Education, 2019
Environmental education is intended to increase public awareness and knowledge about environmental issues and enhance individuals' problem-solving and decision-making skills by tackling problems in the real world. "Maker education," on the contrary, mostly relies on "problem-based" and "project-based learning"…
Descriptors: Environmental Education, Creative Thinking, Creativity, Problem Solving
Razzouk, Rabieh; Dyehouse, Melissa; Santone, Adam; Carr, Ronald – Science Teacher, 2014
Teachers typically teach subjects separately, but integrated science, technology, engineering, and mathematics (STEM) curriculums that focus on real-world practices are gaining momentum (NAE and NRC 2009). Before release of the "Next Generation of Science Standards" ("NGSS") (NGSS Lead States 2013), 36 states already had a…
Descriptors: Plants (Botany), Pollution, Science Instruction, Standards
Fortuin, Karen P. J.; van Koppen, C. S. A.; Leemans, Rik – BioScience, 2011
Conceptual models are useful for facing the challenges of environmental sciences curriculum and course developers and students. These challenges are inherent to the interdisciplinary and problem-oriented character of environmental sciences curricula. In this article, we review the merits of conceptual models in facing these challenges. These…
Descriptors: Environmental Education, Science Education, Interdisciplinary Approach, Models
Darner, Rebekka – International Journal of Environmental and Science Education, 2014
According to self-determination theory, social contexts that support students' basic psychological needs of autonomy, competence, and relatedness foster motivation toward behaviors that are valued in that social context. This study investigated the socio-contextual elements of a learning environment that support or undermine students' basic…
Descriptors: Self Determination, Social Environment, Educational Environment, Psychological Needs
Hansmann, Ralf – Journal of Research in Science Teaching, 2009
A university Environmental Sciences curriculum is described against the background of requirements for environmental problem solving for sustainability and then analyzed using data from regular surveys of graduates (N = 373). Three types of multiple regression models examine links between qualifications and curriculum components in order to derive…
Descriptors: Qualifications, Graduates, Education Work Relationship, Communication Skills
Robertson, William H.; Garcia, Claudia Vanessa; Lougheed, Vanessa L.; Tweedie, Craig; Velasco, Aaron – Journal of College Science Teaching, 2009
The International Polar Year-Research and Educational Opportunities in Antarctica for Minorities (IPY-ROAM) program was designed to increase minority participation in polar science by immersing participants in an academic program that included a trip to Antarctica. The IPY-ROAM program was focused on increasing public understanding of the polar…
Descriptors: Secondary School Teachers, Educational Opportunities, Minority Groups, Higher Education
Jickling, Bob – Clearing, 1991
Some misconceptions about the roles of action and problem solving in environmental education are examined. It is argued that the use of the term problem solving exaggerates the abilities of environmental educators and students. The implications of establishing problem solving as a goal of environmental education are discussed. (KR)
Descriptors: Environmental Education, Environmental Influences, Misconceptions, Problem Solving
EE News: Environmental Education in Wisconsin, 1996
Presents an activity to teach students how forests are managed to meet a variety of human and environmental needs. Involves students in thinking about forest uses, animals that live in forests, recreational activities in forests, and forest products. Teams pretend to be forest managers and develop strategies for managing forests for different,…
Descriptors: Ecology, Elementary Education, Environmental Education, Forestry
Peer reviewedMeyer, Robert E. – Journal of Geological Education, 1974
Discusses two ninth grade ten-week courses which use problem solving as one of the main teaching methods. Anecdotes are used to set up problems to be solved in student investigations. (MLH)
Descriptors: Earth Science, Environmental Education, Instructional Materials, Minicourses
Peer reviewedBattles, Denise A.; Franks, Melvin E.; Morrison-Shetlar, Alison I.; Orvis, Jessica N.; Rich, Fredrick J.; Deal, Tony J. – Journal of College Science Teaching, 2003
Describes a course developed for undergraduate students that includes an environmental science lecture and laboratory section. Focuses on the laboratory section as the critical component with activities that are real-world related, hands-on, problem solving-based, and use cooperative learning approaches. (Contains 12 references.) (Author/YDS)
Descriptors: Cooperative Learning, Environmental Education, Ethnicity, Hands on Science
Peer reviewedKyburz-Graber, Regula; And Others – Environmental Education Research, 1997
Presents research founded on a socio-ecological approach to environmental education that includes individual and structural aspects of environmental awareness and problem solving. Presents one instrument used in discussions with teacher teams. Contains 23 references. (DDR)
Descriptors: Ecology, Environmental Education, Formative Evaluation, Interdisciplinary Approach
Nous, Albert P. – 2000
This document focuses on using satellite images from space in the classroom. There are two types of environmental satellites routinely broadcasting: (1) Polar-Orbiting Operational Environmental Satellites (POES), and (2) Geostationary Operational Environmental Satellites (GOES). Imaging and visualization techniques provide students with a better…
Descriptors: Computers, Earth Science, Elementary Secondary Education, Environmental Education
Braus, Judy – EEducator, 1999
Details the results of a survey on the most important instructional strategies that enhance learning and employ the vehicle of environmental education. Discusses constructivism, cooperative learning, and problem solving. (DDR)
Descriptors: Constructivism (Learning), Cooperative Learning, Educational Change, Elementary Secondary Education
Watauga County Board of Education, Boone, NC. – 1995
Renewal is the focus of this curriculum designed for students in kindergarten through Grade 8. The purpose of this guide is to educate students and teachers about the problems faced in managing the amount of solid waste generated by society. Each grade level curriculum is organized into activities that support exploration of the nature of solid…
Descriptors: Art, Elementary Education, Environmental Education, Interdisciplinary Approach

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