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Showing 1 to 15 of 71 results Save | Export
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Happs, John C.; Stead, Keith – Research in Science and Technological Education, 1989
Considered are two commonly used techniques, the interview and word association techniques. Highlighted is a third technique called the repertory grid. This third technique can be used to interpret students' knowledge based on an explicit, psychological theory of human behavior. (Author/CW)
Descriptors: Cognitive Development, Cognitive Structures, Evaluation Methods, Interviews
Koplowitz, Herb – 1979
The world presented to our senses is essentially continuous in space and time. The simplest observations of children have shown that we are not born with ways of "breaking up" the world. The structures of our knowledge must be developed, and the major issue this paper considers is how those structures develop. The discussion focuses on Jean…
Descriptors: Cognitive Processes, Cognitive Structures, Concept Formation, Epistemology
Good, Ron; And Others – 1988
The science learning cycle developed by Robert Karplus and others in the 1960's has been a useful model for many science teachers and researchers. This model stresses the use of structured inquiry to organize knowledge acquisition and problem solving. Recent research in the cognitive science tradition, however, has shown that learning and problem…
Descriptors: Cognitive Development, Cognitive Processes, Cognitive Structures, Concept Formation
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Hills, George L. C. – Science Education, 1989
Explores how some of the work in the history and philosophy of science might develop a more adequate understanding of students' untutored ideas. Describes how students' views can be interpreted. Explains and discusses the merits of commonsense-scientific theory analogy. (YP)
Descriptors: Beliefs, Cognitive Structures, Concept Formation, Misconceptions
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Richardson, Daniel R. – Advances in Physiology Education, 1990
Presented are the results of a study of high school and college students concerning their thinking about functions of the human body. It was shown that students' thinking could be positively changed over the short term from teleologic to mechanistic. Sample survey questions are included. (CW)
Descriptors: Cognitive Structures, College Science, High Schools, Higher Education
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Gussarsky, Esther; Gorodetsky, Malka – Journal of Research in Science Teaching, 1990
Word associations were used to map high school students' concepts of "chemical equilibrium" and "equilibrium." It was found that the preconception of the two concepts was differentiated on noncritical dimensions. (Author/CW)
Descriptors: Associative Learning, Chemical Equilibrium, Chemistry, Cognitive Structures
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Mullet, Etienne; Montcouquiol, Anne – International Journal of Science Education, 1988
Describes an application of methodology based on the Information Integration Theory to study intuitive mastery by 13-14 year-olds of Archimedes' Effect in physics. (Author/YP)
Descriptors: Cognitive Structures, Foreign Countries, Misconceptions, Physics
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Lawson, Anton E. – Journal of Research in Science Teaching, 1988
Reports on a study in which clinical interviews were conducted with three elementary school children to determine the extent to which they held naive misconceptions about important biological topics, and to determine agewise trends in the development of biological knowledge. (TW)
Descriptors: Biology, Cognitive Structures, Concept Formation, Elementary Education
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Brown, C. R. – Journal of Biological Education, 1990
Discussed are problems revealed in student responses to a practical task which formed part of an advanced level examination. The frequencies with which some misconceptions about cell reproduction and genetics occurred are presented. The nature of these misconceptions is analyzed and their implications discussed. (CW)
Descriptors: Biological Sciences, Biology, Cognitive Structures, Genetics
delMas, Robert C.; Bart, William M. – Focus on Learning Problems in Mathematics, 1989
Investigated are three misconceptions of probability and the differential effect of two activity-based instructional units. Response categories (law of averages, law of small numbers, and availability) are identified. Treatment differences (evaluation or no evaluation) appear to influence subjects' interpretations of the information. (YP)
Descriptors: Achievement Tests, Cognitive Structures, College Mathematics, Higher Education
Minstrell, Jim; Stimpson, Virginia C. – 1986
By studying many observations from recent research dealing with beginning physics students' conceptions about forces and motion, this investigation produced a framework within which this research can be organized. The framework summarizes the mechanisms of force invoked by students in particular situations, and it describes the features of…
Descriptors: Cognitive Structures, Concept Formation, Force, Misconceptions
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Fu, Yunling – Physics Education, 1990
Discussed is a common error made by students in judging the distribution of the magnetic field of a circular loop along its diameter. Qualitative and quantitative explanations of the magnetic field distribution are presented. (CW)
Descriptors: Cognitive Structures, College Science, Electricity, High Schools
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Graeber, Anna O.; And Others – Journal for Research in Mathematics Education, 1989
Studied were the misconceptions that preservice elementary teachers have about multiplication and division. Results indicated that they are influenced by the same primitive models as students; the most common errors made by both groups are quite similar. (MNS)
Descriptors: Cognitive Structures, College Students, Computation, Concept Formation
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Dreyfus, Amos; Jungwirth, Ehud – Journal of Biological Education, 1989
The results of survey of secondary school biology students used to access misconceptions about cells are presented. A distinction between conceptions, misconceptions, and nonconceptions is drawn in terms of secondary school biology concepts. The resilience of misconceptions is discussed. (CW)
Descriptors: Biology, Cognitive Development, Cognitive Structures, Cytology
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Sadanand, Nanjundiah; Kess, Joseph – Physics Teacher, 1990
Described are the results of a conceptual physics survey given to a small group of high school physics students with the goal of identifying common misconceptions held by students. Three common misconceptions were identified and are discussed in detail. (CW)
Descriptors: Cognitive Structures, High Schools, Mechanics (Physics), Misconceptions
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