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Smith, K. Christopher; Nakhleh, Mary B.; Bretz, Stacey Lowery – Chemistry Education Research and Practice, 2010
This paper describes an expanded framework to aid chemical educators in constructing exams for their courses. The framework has three primary levels: definition, algorithmic, and conceptual. These primary levels have often been used in chemical education research to analyze and describe exam questions, but in this study the definition,…
Descriptors: Chemistry, Science Teachers, Test Construction, Educational Research

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

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

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

Treagust, David F.; Smith, Clifton L. – School Science and Mathematics, 1989
Examined are tenth-grade Western Australian students' conceptual knowledge of gravity and the motion of the planets. Students were interviewed with seven cards, and a four-item diagnostic test based on the interview data on the first four cards was developed. A total of 113 students' responses to the test are summarized. (YP)
Descriptors: Astronomy, Cognitive Structures, Foreign Countries, Grade 10

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

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

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

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

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

Tema, 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

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
Vosniadou, Stella; Brewer, William F. – 1989
This paper presents the results of an experiment which investigated elementary school children's concept of the earth's shape and the related concept of gravity. First, third, and fifth grade children were asked a series of factual, explanatory, and generative questions in an attempt to understand as clearly as possible the way they conceptualized…
Descriptors: Cognitive Structures, Concept Formation, Earth Science, Elementary Education

Mahadeva, Madhu N. – Science Teacher, 1989
Discusses the causes and effects of conceptual errors inadvertently introduced and nurtured by scientists, teachers, and textbook writers. Cites ways to prevent the communication breakdowns that prevent the learning of science. (RT)
Descriptors: Cognitive Structures, Concept Formation, Elementary School Science, Learning Processes
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