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Showing 1 to 15 of 62 results Save | Export
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Savelsbergh, Elwin R.; de Jong, Ton; Ferguson-Hessler, Monica G. M. – Journal of Research in Science Teaching, 2002
Investigates how situational knowledge differs across individuals of different competence levels. Analyzes participants' descriptions of physics problem situations. Discusses the relationship between competence and the structure of problem situations, differences between experts and novices, and implications for teaching. (Author/KHR)
Descriptors: Cognitive Structures, Competence, Concept Formation, Curriculum Development
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Garnett, Pamela J.; Treagust, David F. – Journal of Research in Science Teaching, 1992
This research used semistructured interviews to investigate students' (n=32) understanding of electrochemistry following a 7-9 week course of instruction. Three misconceptions were identified and incorporated with five previously reported into an alternative framework about electric current involving drifting electrons. Also noted was the tendency…
Descriptors: Chemistry, Cognitive Structures, Concept Formation, Educational Research
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Holcombe, Melinda; Shonka, Amy – Clearing House, 1993
Considers the ways that conceptual mapping as a classroom technique can help students reflect critically on complex conceptual relationships. Shows how teachers can use conceptual mapping in the classroom. (HB)
Descriptors: Classroom Techniques, Cognitive Processes, Cognitive Structures, Concept Formation
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Ferrari, E.; And Others – Insegnamento della Matematica e delle Scienze Integrate, 1995
Investigated the acquisition and maturation of the infinity concept in mathematics of students ages 13-15. Found the infinity concept is learned by students only when provided with appropriate guidance. (Author/MKR)
Descriptors: Cognitive Structures, Concept Formation, Foreign Countries, Mathematical Concepts
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Boschhuizen, Rob; Brinkman, Fred G. – Environmental Education Research, 1995
Examines the ideas secondary school students associate with the word "cycles" before instruction. Draws conclusions about the integrative role of this concept in teaching and learning about environmental issues. Possibilities for making use of the concept of cycles in lower and higher secondary environmental education are discussed. (LZ)
Descriptors: Cognitive Structures, Concept Formation, Environmental Education, High School Students
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Harrison, Allan G.; Grayson, Diane J.; Treagust, David F. – Journal of Research in Science Teaching, 1999
Focuses on cognitive and affective changes that occurred in one student during the study of heat and temperature. Initially the student's conceptual framework was undifferentiated with regard to heat and temperature; however, course activities and concomitant use of concept substitution helped the student differentiate these concepts and integrate…
Descriptors: Affective Behavior, Case Studies, Cognitive Structures, Concept Formation
Beichner, Robert J.; Saul, Jeffery M.; Allain, Rhett J.; Deardorff, Duane L.; Abbott, David S. – 2000
SCALE-UP is an extension of the highly successful IMPEC (Integrated Math, Physics, Engineering, and Chemistry) project, one of North Carolina State's curricular reform efforts undertaken as part of the SUCCEED coalition. The authors utilize the interactive, collaboratively based instruction that worked well in smaller class settings and find ways…
Descriptors: Cognitive Structures, College Curriculum, Concept Formation, Epistemology
Adams, Thomasenia Lott – Focus on Learning Problems in Mathematics, 1997
Presents a study designed to explore whether a student's use of the graphing calculator during instruction will affect their concept of function, how students' participation in a conceptual change assignment affects their concept of function, and how the graphing calculator and the conceptual change assignment interact with one another to…
Descriptors: Cognitive Structures, College Curriculum, Concept Formation, Functions (Mathematics)
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Stillman, Gloria – Mathematics Education Research Journal, 1996
Describes a study that investigates the relationship between secondary students' written responses and the mathematical and cognitive processing used when solving a complex problem. Contains 40 references. (DDR)
Descriptors: Cognitive Structures, Concept Formation, Knowledge Representation, Mathematics Skills
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Tsai, Chin-Chung; Huang, Chao-Ming – Journal of Biological Education, 2002
Reviews five methods of representing cognitive structures: (1) free word association; (2) controlled word association; (3) tree construction; (4) concept map; and (5) flow map. Discusses the applications as well as the limitations of these methods by comparing the types of analysis that are generated. (Contains 37 references.) (Author/YDS)
Descriptors: Biology, Cognitive Structures, Concept Formation, Concept Mapping
Lapsley, Daniel K.; And Others – 1984
Epistemological loneliness refers to the isolation adolescents may experience as the result of cognitive relativism, ushered in by the emergence of formal operational thought. To examine the relationship between cognitive relativity, epistemological loneliness, and depression in adolescence, 108 adolescents (29 seventh graders, 29 ninth graders,…
Descriptors: Adolescents, Cognitive Structures, College Students, Concept Formation
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McDonald, Janet L. – Journal for Research in Mathematics Education, 1989
Students at concrete or formal operational reasoning levels made similarity judgments on geometric concepts and mathematical expressions on ratio, proportion, and similarity. Clear prototypical maps could be derived for both groups. Formal operational students structured subject matter content significantly more like subject matter experts than…
Descriptors: Cognitive Structures, Concept Formation, Educational Research, Geometric Concepts
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
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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
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Clough, Elizabeth Engel; And Others – School Science Review, 1987
Reports on a study designed to examine students' understanding of certain aspects of heat, pressure, and evolution. Results indicated that little change was apparent over the two-year period of the study, with most of the students in the 12 to 14 age range at the same conceptual level as the 14 to 16 year olds. (TW)
Descriptors: Cognitive Structures, Concept Formation, Evolution, Foreign Countries
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