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Stinner, Arthur – Science and Education, 2001
Discusses Newton's long struggle with the concepts of inertia and centrifugal force as an example of high-grade scientific thinking. Discusses the role of textbooks and how they largely emphasize memorization. Suggests that the historical approach can be more time-consuming than textbook-based teaching and that it requires a good understanding of…
Descriptors: Concept Formation, Physics, Problem Solving, Science Education

Quale, Andreas – Science and Education, 2002
Examines the role played by metaphor in supporting and conditioning thinking about theoretical models of learning in science education. With special reference to von Glasersfeld's theory of radical constructivism, suggests that much of the controversy appearing in the academic discussion of this theory stems from the injudicious use of metaphors…
Descriptors: Concept Formation, Constructivism (Learning), Elementary Secondary Education, Science Curriculum

Levine, Alexander T. – Science and Education, 2000
Discusses how Thomas Kuhn's view of scientific development parallels Piaget's model of conceptual development in childhood. (Author/CCM)
Descriptors: Child Development, Concept Formation, Higher Education, Philosophy

Gess-Newsome, Julie – Science and Education, 2002
Describes and evaluates an elementary science methods course in which the nature of science and scientific inquiry are embedded and explicitly taught. As a result of the course, incoming conceptions of science as primarily a body of knowledge changed to a more appropriate, blended view of science as a body of knowledge generated through the active…
Descriptors: Concept Formation, Elementary Education, Epistemology, Inquiry

Brickhouse, Nancy W.; Dagher, Zoubeida R.; Shipman, Harry L.; Letts, William J., IV – Science and Education, 2002
Describes a study providing evidence of how students' talk and writing about the nature of science differs depending on the particular scientific topic under discussion. Describes the relationship between theory and evidence, warrants for belief, and nature of observation. (Contains 25 references.) (Author/YDS)
Descriptors: Astronomy, Biology, Concept Formation, Epistemology

Lombardi, Olimpia – Science and Education, 1999
In science teaching, Aristotelian physics is often presented in a fragmentary and oversimplified way which distorts the true meaning of Aristotelian concepts. Discusses some mistakes that originate from a partial reading of Aristotle's work. Contains 32 references. (Author/WRM)
Descriptors: Astronomy, Concept Formation, Higher Education, Mathematical Concepts