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Shapiro, Michael A. – 1985
The effect of a relevant analogy and of subject visualization on the amount of cognitive capacity needed to process unfamiliar information about science was investigated. The dependent measure was reaction time on a secondary task while listening to six tape recorded passages about chemistry and physics in a 2 x 2 x 6 mixed design. The analogy…
Descriptors: Analogy, Chemistry, Cognitive Structures, Higher Education
Peer reviewed Peer reviewed
Millar, Robin; And Others – Physics Education, 1990
Children's ideas about radiation and radioactivity are reviewed and several common areas of misunderstanding are identified. An approach to teaching the topic at the secondary school level which seeks to specifically address known difficulties is outlined. (CW)
Descriptors: Cognitive Structures, High Schools, Misconceptions, Physics
Peer reviewed Peer reviewed
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
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
Peer reviewed Peer reviewed
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
Peer reviewed Peer reviewed
Shipstone, D. M.; And Others – International Journal of Science Education, 1988
Describes a study of the understanding of basic electrical concepts shown by 15-17 year-old students in England, France, Netherlands, Sweden, and West Germany. Reports substantially the same pattern of learning difficulties across countries. Provides sample items. (Author/YP)
Descriptors: Cognitive Structures, Electricity, Foreign Countries, Physics
Peer reviewed Peer reviewed
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
Brown, David E. – 1988
This paper analyzes the misconceptions high school students have about force and suggests that the misunderstanding of Newton's third law is the key to these misconceptions. Clinical interview and diagnostic test data (N=104) indicates that many students have a naive view of force as an acquired or innate property of single objects rather than…
Descriptors: Cognitive Structures, Concept Formation, Force, Interviews
Peer reviewed Peer reviewed
Mohapatra, J. K. – Journal of Research in Science Teaching, 1988
Identifies an induced incorrect generalization as a generative cause for the formation of misconception. Analyzes students' protocol of an exploratory learning experiment about the laws of reflection of light. Suggests recommendations for textbook, teaching, and practical work. (Author/YP)
Descriptors: Cognitive Structures, Concept Formation, Generalization, Misconceptions
Peer reviewed Peer reviewed
Griffiths, Alan K.; And Others – Journal of Research in Science Teaching, 1988
Investigates the remediation of misconceptions through application of Gagne's hierarchical learning theory. Uses stoichiometry, food levels, and conservation of mechanical energy as the target concepts. Reports that there was no treatment effect in analysis of covariance using pretest scores as a covariant. (YP)
Descriptors: Biology, Chemistry, Cognitive Structures, High Schools
Clement, John – 1978
This paper posits a cognitive model for understanding and learning physics that is an alternative to the formal deductive system. Recent findings of Fuller, Karplus, Lawson, and others are cited in arguing against using a formal deductive approach to teaching physics. The model demonstrates types of action-oriented knowledge structures as they…
Descriptors: Cognitive Development, Cognitive Processes, Cognitive Structures, College Science
Peer reviewed Peer reviewed
Dupin, Jean-Jacques; Johsua, Samuel – Journal of Research in Science Teaching, 1987
Reports on the results of an investigation into the understanding of the concepts of basic electricity by French students from grade six up through the fourth year of college. Discusses the misconceptions formed and the challenges these present to physics educators. (TW)
Descriptors: Cognitive Structures, College Science, Concept Formation, Electricity
Peer reviewed Peer reviewed
Gauld, Colin F. – International Journal of Science Education, 1988
Discusses the rationality of students' alternative frameworks by considering the role played by their beliefs, their understanding of other views, and the reasons for justification or rejection. Investigates the way in which 14-year-old boys see the effects of classroom learning experience on their ideas. (Author/YP)
Descriptors: Beliefs, Cognitive Structures, Concept Teaching, Electricity
MacDonald, Dougal – 1989
This study explored the usefulness of an approach to science instruction which specifically considered children's spontaneous conceptions about natural phenomena. The aim of the instruction was the development of conceptual understanding. The instructional approach involved diagnosing children's spontaneous conceptions, making them aware of their…
Descriptors: Cognitive Structures, Concept Formation, Elementary School Science, Foreign Countries
Steinberg, Melvin S. – Scientific Reasoning Research Institute Newsletter, 1988
Cites the misconceptions that students beginning the study of electric circuits often have about electricity. Explains the use of capacitors with circuits of batteries and light bulbs to introduce electrostatic forces and help to alleviate the problem of misconceptions. (RT)
Descriptors: Cognitive Structures, College Science, Concept Formation, Electricity
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