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Wavering, Michael James – School Science and Mathematics, 2011
In his last book, "Toward a Logic of Meanings" (Piaget & Garcia, 1991), Jean Piaget describes how thought can be categorized into a form of propositional logic, a logic of meanings. The intent of this article is to offer this analysis by Piaget as a means to understand the language and teaching of science. Using binary propositions, conjunctions,…
Descriptors: Logical Thinking, Classrooms, Pedagogical Content Knowledge, Science Instruction
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Hungerford, Harold R.; And Others – School Science and Mathematics, 1976
Reviews research in the area of scientific classification of botany concepts. The acquisition, transfer, and ability to use cognitive skills were investigated. (CP)
Descriptors: Botany, Classification, Cognitive Development, Educational Research
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Cooney, Thomas J.; Davis, Edward J. – School Science and Mathematics, 1976
The teacher of mathematics or science must be aware of the concepts, facts, and generalizations of his field, of psychological principles of learning, and of teaching methods. Methods appropriate to the teaching of concepts differ from methods for teaching generalizations. (SD)
Descriptors: Cognitive Development, Concept Teaching, Elementary Secondary Education, Generalization
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Vachon, Myra K.; Haney, Richard E. – School Science and Mathematics, 1983
This study was conducted to determine the cognitive demand made by an eighth-grade science textbook. Reasoning patterns and science concepts were listed and compared. Concrete reasoning was required more often than formal reasoning, but some points of difficulty for students who are not formal reasoners were noted. (MNS)
Descriptors: Cognitive Development, Cognitive Processes, Educational Research, Grade 8
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Moore, John M.; And Others – School Science and Mathematics, 1992
Reports an experimental study of 80 ninth grade biology students randomly assigned to treatment and control groups to determine whether the use of human examples in instructional strategies on Mendelian genetics increases acquisition and retention of genetics concepts. Results indicate that use of human examples in contrast to traditional examples…
Descriptors: Biology, Cognitive Development, Cognitive Measurement, Cognitive Structures
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Dyche, Steven; And Others – School Science and Mathematics, 1993
Raises questions regarding what students are perceiving when concrete models are used to represent abstract scientific concepts. Discussion of several exploratory investigations on the role of models in science teaching is presented in three areas: (1) interactions with students; (2) effectiveness of models; and (3) spatial ability and models.…
Descriptors: Atomic Structure, Cognitive Development, Concept Formation, Elementary Secondary Education
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Thompson, Cathy L. – School Science and Mathematics, 1989
Discusses the advantages of using discrepant events in elementary school science classrooms in terms of motivation and problem solving skills. Describes the materials, procedures, and reasons behind five discrepant activities. (YP)
Descriptors: Cognitive Development, Cognitive Structures, Elementary School Science, Laboratory Experiments
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Tirosh, Dina; Stavy, Ruth – School Science and Mathematics, 1992
Reports a study to examine secondary school students' (n=200) responses to two figurally and spatially similar problems from mathematics and science that require different responses before and after instruction. Results indicated that most students gave the same response to both questions. Reasons for this pattern are discussed. (MDH)
Descriptors: Cognitive Development, Cognitive Processes, Context Effect, Grade 10
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Doerr, Helen M. – School Science and Mathematics, 1996
Investigates the construction of understanding of the motion of an object down an inclined plane which takes place through the process of model building in an integrated algebra, trigonometry, and physics class. Discusses four major themes related to student learning through modeling that emerged from the results. Discusses implications for…
Descriptors: Algebra, Cognitive Development, Computer Uses in Education, Educational Strategies