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Malcolm Newson; John Lewin; Paul Raven – Journal of Geography in Higher Education, 2024
Integrated river science provides decision-making life-skills for individuals and communities facing environmental change; it is a variant of critical physical geography through its socio-political dimensions. As an example, the frequency and magnitude of river flooding are amplified by climate change: society needs to understand how to cope…
Descriptors: Climate, Decision Making, Daily Living Skills, Earth Science
Daus, Stephan; Nilsen, Trude; Braeken, Johan – Scandinavian Journal of Educational Research, 2019
This study offers curriculum developers, teachers, and science education researchers a fine-grained profile on strengths and weaknesses in specific science domains and topics. The study involved a representative sample of 3844 Norwegian pupils in grade 8. Their responses on 216 TIMSS items in 18 topics from 4 science domains were modelled in a…
Descriptors: Foreign Countries, International Assessment, Achievement Tests, Science Achievement
Blank, Lisa M.; Plautz, Mike; Almquist, Heather; Crews, Jeff; Estrada, Jen – Science Scope, 2012
"A Framework for K-12 Science Education: Practices, Crosscutting Concepts, and Core Ideas" emphasizes that the practice of science is inherently a model-building activity focused on constructing explanations using evidence and reasoning (NRC 2012). Because building and refining is an iterative process, middle school students may view this practice…
Descriptors: Models, Elementary Secondary Education, Technology Uses in Education, Technology Integration
Finley, Fred N.; Nam, Younkeyong; Oughton, John – Science Education, 2011
Earth Systems Science (ESS) is emerging rapidly as a discipline and is being used to replace the older earth science education that has been taught as unrelated disciplines--geology, meteorology, astronomy, and oceanography. ESS is complex and is based on the idea that the earth can be understood as a set of interacting natural and social systems.…
Descriptors: Social Systems, Earth Science, Intellectual Disciplines, Concept Teaching
Smith, Carol L. – Cognition and Instruction, 2007
This study explores whether the development of students' understanding of matter as something that occupies space and has weight involves conceptual change and restructuring rather than only simple belief revision. Based on an analysis of how the concepts in students' initial matter theory (henceforth MT1) may differ from the concepts in the…
Descriptors: Earth Science, Concept Formation, Science Instruction, Scientific Concepts
Penuel, William R.; Gallagher, Lawrence P. – Society for Research on Educational Effectiveness, 2009
The purpose of this study is to compare the efficacy of three different approaches to professional development in Earth science education: preparing teachers to "adopt" expert-"design" curricula; preparing teachers to use a principled approach to design curricula; and preparing teachers to use a principled approach to "adapt" curricula. The claims…
Descriptors: Earth Science, Teaching Methods, Instructional Design, Middle School Teachers

Edelman, Steven Harold – Journal of Geological Education, 1989
Provides an introduction and explanations of stress-strain relationships, measuring stress, a goal of structural analysis, and legitimate applications of the concept of stress. Diagrams include a derivation of the stress tensor, graphical representations of stress-strain relations, and related problems. (RT)
Descriptors: College Science, Curriculum Development, Earth Science, Geology
Bybee, Rodger W.; Van Scotter, Pamela – Educational Leadership, 2007
For many, the dominant model of curriculum development in science includes generating a topic, clarifying science content, identifying activities associated with the topic, and figuring out an assessment. Unfortunately, this approach tends to overemphasize activities and underemphasize mastery of science concepts and the process of scientific…
Descriptors: Science and Society, Curriculum Development, Biology, Science Curriculum

Chamberlain, Valerie Elaine – Journal of Geological Education, 1989
Reviews a model used in the teaching of plate tectonics which includes processes and concepts related to: terranes and the amalgamation of terranes, relative plate motion and oblique subduction, the effects of continent-continent collision, changes in plate motion, plate configuration, and the type of plate boundary. Diagrams are included.…
Descriptors: College Science, Curriculum Development, Earth Science, Geology

Mayer, Victor J. – Science Teacher, 1991
Presented are the reasons why the earth sciences must play a major role in curriculum renovation. Philosophical, methodological, and conceptual contributions to K-12 curriculum content are discussed. (KR)
Descriptors: Biology, Curriculum Development, Earth Science, Geology
Missouri State Dept. of Elementary and Secondary Education, Jefferson City. – 1996
Missouri's Framework for Curriculum Development in Science acknowledges that teachers will bring the vision, ideals, and principles of the Show-Me Standards of the state of Missouri into their classrooms in exciting and innovative ways. The role of the frameworks is to provide districts with a "frame" for building curricula using the…
Descriptors: Biological Sciences, Curriculum Development, Earth Science, Ecology

Glenn, William Harold – Journal of Geoscience Education, 1992
Secondary school earth-science textbooks in print from 1960 through 1979 were examined to determine how rapidly concepts of plate tectonics were incorporated into those texts during the period when scientists' views about these concepts were evolving most rapidly. Suggests that delays were probably due to an unwillingness to engage in speculation…
Descriptors: Curriculum Development, Earth Science, Geology, Plate Tectonics
Browne, Kerry P.; Laws, Priscilla W. – Physics Education, 2003
We are developing a new activity-based unit on global warming and the environment as part of the "Explorations in Physics Curriculum." We describe the current status of this unit, which focuses on helping students understand the greenhouse effect and its relationship to global warming. We outline several problems encountered in testing the unit…
Descriptors: Population Growth, Climate, Earth Science, Physics
American Geological Inst., Alexandria, VA. – 1991
In response to the growing national concern about precollege science education, this guide was developed to assist school administrators, curriculum planners, teachers, and scientists in incorporating earth science in K-12 science curricula. The guide is divided into four main sections that provide a framework for planning and implementing earth…
Descriptors: College Preparation, Curriculum Development, Earth Science, Educational Change
Michigan State Board of Education, Lansing. – 1986
Guidance for the development, assessment and/or improvement of science education programs in Michigan is provided in this handbook for teachers, administrators, and parents. It provides a philosophical foundation and curricular framework from which educators could construct comprehensive local science education programs. The nature of science is…
Descriptors: Biological Sciences, Curriculum Development, Earth Science, Educational Philosophy