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Peer reviewedDreyfus, Amos; Mazouz, Yossef – Research in Science and Technological Education, 1992
Assesses the ability of tenth grade students (n=364) to acquire meanings of graphs that are frequently used in their biology textbooks. Indicates that the main source of failure to process information equally well from tables and graphs was not a lack of basic analytical skills but rather a lack of understanding of the relationship between…
Descriptors: Abstract Reasoning, Biology, Cognitive Processes, Critical Thinking
Peer reviewedCramer, Kathleen; Post, Thomas – Arithmetic Teacher, 1993
Defines the mathematical concept of proportionality. Uses graphs of linear relationships to explore and make generalizations about the characteristics of proportional situations to help students critically evaluate problems involving proportions. (MDH)
Descriptors: Abstract Reasoning, Formal Operations, Graphs, Mathematical Applications
Peer reviewedTrifone, James D. – American Biology Teacher, 1991
The reasoning abilities to be expected of the concrete operational and formal operational student, the percentage of secondary science students that are capable of each type of reasoning pattern, and effective strategies to teach science to concrete reasoners are described. Implications for curriculum development are discussed. (KR)
Descriptors: Abstract Reasoning, Biology, Cognitive Development, Concept Formation
Decker, Barbara C.; Silverman, Fredrick L. – 1986
Effective teaching strategies must be developed to help students bridge the gap between concrete operational thinking and full formal thinking in the content areas. Reading for meaning requires readers to categorize subjects, recognize relationships, develop and maintain a sequence of thought, recognize and understand inferences, and draw…
Descriptors: Abstract Reasoning, Cognitive Development, Content Area Reading, Critical Thinking
Peer reviewedHudak, Mary A.; Anderson, David E. – Teaching of Psychology, 1990
Studies 94 undergraduate students in introductory statistics and computer science courses. Applies Formal Operations Reasoning Test (FORT) and Kolb's Learning Style Inventory (LSI). Finds that substantial numbers of students have not achieved the formal operation level of cognitive maturity. Emphasizes need to examine students learning style and…
Descriptors: Abstract Reasoning, Academic Achievement, Analysis of Variance, Cognitive Ability


