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Peer reviewedde Vos, Wobbe; Verdonk, Adri H. – Journal of Chemical Education, 1987
Discusses the difficulties that some students have in understanding the concept of chemical reactions. Proposes that instructors try to consider the various difficulties during a chemistry course when students form their concepts of element conservation. (TW)
Descriptors: Atomic Structure, Chemical Reactions, Chemistry, Cognitive Structures
Peer reviewedClifford, Paul – Journal of Biological Education, 2002
Reviews textbooks in use in the sixth-form classroom. Reports numerous examples of muddled facts, confusing explanations, and serious misconceptions. (DDR)
Descriptors: Cognitive Structures, Educational Strategies, Elementary Secondary Education, Foreign Countries
Peer reviewedMohapatra, 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 reviewedHewson, Peter W.; Hewson, Mariana G. A'B. – Science Education, 1988
Analyzes the concept of teaching from various aspects. Reviews research on students' conceptions of natural phenomena, conceptual change, and teacher thinking. Suggests an appropriate conception of teaching science. (YP)
Descriptors: Cognitive Processes, Cognitive Structures, Concept Formation, Instruction
Peer reviewedTaylor, Marjorie; And Others – Child Development, 1994
Four experiments investigated children's ability to notice and remember events in which the acquisition of factual information occurs. Results indicated that children tend to report they have known newly learned information for a long time, suggesting that children have some understanding of knowledge acquisition, but not at the level of adults.…
Descriptors: Abstract Reasoning, Child Development, Cognitive Development, Cognitive Processes
Peer reviewedPerso, Thelma – Australian Mathematics Teacher, 1992
Discusses how student errors can be utilized to understand the nature of the conceptions that underlie students' mathematical activity. Looks at why errors are made in mathematics, how teachers and students perceive errors, and how to use errors in the classroom. (MDH)
Descriptors: Cognitive Structures, Diagnostic Teaching, Elementary Secondary Education, Error Patterns
Peer reviewedLecoutre, Marie-Paule – Educational Studies in Mathematics, 1992
Reviews research indicating that students' cognitive models hold random events to be equiprobable Examined 87 students between the ages of 15 and 17 to determine whether masking a random event using geometric figures would affect the students' view of the event as equiprobable. Results indicated that masking overcame the equiprobable bias of the…
Descriptors: Cognitive Processes, Cognitive Structures, Cognitive Style, Mathematical Concepts
Peer reviewedMariotti, Maria Alessandra – L'Insegnamento della Matematica e delle Scienze Integrate, 1992
Discusses geometrical reasoning in the framework of the theory of Figural Concepts to highlight the interaction between the figural and conceptual components of geometrical concepts. Examples of students' difficulties and errors in geometrical reasoning are interpreted according to the internal tension that appears in figural concepts resulting…
Descriptors: Abstract Reasoning, Cognitive Development, Cognitive Structures, Elementary Secondary Education
Peer reviewedBischoff, Paul J.; Anderson, O. R. – School Science and Mathematics, 1998
Randomly selected high school students (n=13) who studied an ecology unit were interviewed, and narrative data analyzed for changes in knowledge schema. Data support the current theory that the amount and quality of prior knowledge substantially influence gains in new knowledge and are closely linked to a capacity to apply higher-order cognitive…
Descriptors: Cognitive Processes, Cognitive Structures, Constructivism (Learning), Ecology
Gunstone, Richard F.; Northfield, Jeff R. – 1986
Perspectives on the need for consistency in considering the promotion of conceptual change in science students and teachers (and in some circumstances, researchers) are presented in this paper. The parallels between the consequences of this consistency and the literature on educational change are also highlighted. A particular focus is directed to…
Descriptors: Cognitive Processes, Cognitive Structures, Concept Formation, Higher Education
Peer reviewedMeyer, William Bruce – Journal of Geological Education, 1987
Discusses some of the ways that some scientific concepts evolve and are perpetuated, even if they are not completely accurate. Uses the example of groundwater, citing numerous ways that various people understand it and, in many cases, form misconceptions. (TW)
Descriptors: Cognitive Structures, College Science, Concept Formation, Earth Science
Peer reviewedChambers, Sharon K.; Andre, Thomas – Journal of Research in Science Teaching, 1997
Presents a study that investigated relationships between gender, interest, and experience in electricity. Also explored the effect of conceptual change text manipulations on learning fundamental concepts of direct current. Suggests that conceptual change text manipulations are likely to be effective for both men and women. Contains 57 references.…
Descriptors: Cognitive Psychology, Cognitive Structures, Concept Formation, Electricity
Peer reviewedWheeler, Alan E.; Hill, Doug – Science Teacher, 1990
Described is the relative complexity of commonly used diagrams in science instruction. Student interpretations of diagrams, implications for science instruction and the prevention of science misconceptions is discussed. (CW)
Descriptors: Cognitive Structures, Concept Formation, Diagrams, Illustrations
Peer reviewedTema, B. O. – Journal of Biological Education, 1989
Investigated are the alternative conceptions of the concept "animal" held by African youngsters. Three forms of thinking among the pupils are identified. An attempt is made to explain the possible origin of anthropocentric thinking among pupils. Urban and rural groups are compared. (CW)
Descriptors: Biological Sciences, Biology, Cognitive Structures, Foreign Countries
Peer reviewedGriffiths, 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


