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Peer reviewedLawson, Anton E.; And Others – Journal of Research in Science Teaching, 1978
Investigates whether the formal schemata and propositional logic are acquired gradually across age during adolescence, in agreement with Piaget's logical analysis of the structure of formal thought, or acquired in wholesale spurts, thus disagreeing with Piaget's theory. (GA)
Descriptors: Ability, Abstract Reasoning, Cognitive Development, Cognitive Processes
Peer reviewedFerrara, Roberta A.; And Others – Child Development, 1986
Two studies examined the relation between current developmental levels, as estimated by IQ, and proximal levels of development, as estimated by the efficiency of learning and transfer in assisted contexts. Subjects were 8- to ll-year-old children. Theoretical and clinical implications are discussed. (HOD)
Descriptors: Abstract Reasoning, Age Differences, Children, Cognitive Development
Peer reviewedFong, Geoffrey T.; And Others – Cognitive Psychology, 1986
Four experiments are presented to support the theory that the rule system governing the law of large numbers is not tied to a content domain, and that it can be improved by formal teaching techniques. The experiments showed that statistical training enhanced everyday reasoning. Test problems and objective example problems are appended. (LMO)
Descriptors: Abstract Reasoning, Adults, Cognitive Processes, High Schools
Peer reviewedWhimbey, Arthur – Journal of Reading, 1985
Examines why analytical thinking should be a major focus of teaching in the reading and writing classroom. (HOD)
Descriptors: Abstract Reasoning, Cognitive Processes, Communication Skills, Expository Writing
Peer reviewedPaul, Richard W. – Educational Leadership, 1984
Short and long term strategies for implementing critical thinking skills into school programs are discussed. The short term strategy is to teach analytic skills within established subject areas, while the long term strategy involves recognizing and overcoming the unconscious obstacles to development of sound critical and dialectical thinking. (TE)
Descriptors: Abstract Reasoning, Cognitive Development, Cognitive Processes, Critical Thinking
Cai, Jinfa; Hwang, Stephen – International Group for the Psychology of Mathematics Education, 2003
In a previous study, we posited a link between Chinese sixth grade students' problem solving and problem posing based on a pattern-formation strategy (Cai & Hwang, 2002). A similar parallel structure between problem solving and problem posing did not obtain for the U.S. sixth graders in the study. The present study attempts to locate this type of…
Descriptors: Problem Solving, Grade 7, Grade 6, Correlation
Peer reviewedBeyth-Marom, Ruth; Dekel, Shlomit – Instructional Science, 1983
Describes the development of a curriculum to improve problem- solving ability when faced with uncertainty by (1) encouraging students to examine their thought processes, (2) presenting fallacious arguments, and (3) providing better tools for decision making. Relevant psychological research, some problems of teacher training, and a small-scale…
Descriptors: Abstract Reasoning, Cognitive Processes, Curriculum Development, Decision Making
Peer reviewedThornton, Melvin C.; Fuller, Robert G. – Journal of Research in Science Teaching, 1981
Reports results of a study investigating the ability of college students to solve problems using proportional reasoning. Also discusses implications for consideration of Piagetian cognitive level of students in planning college courses. (CS)
Descriptors: Abstract Reasoning, Cognitive Development, Cognitive Tests, College Science
The Development of Proportional Reasoning and the Ratio Concept: Part I - Differentiation of Stages.
Peer reviewedNoelting, Gerald – Educational Studies in Mathematics, 1980
This study considers two problems related to cognitive development: "Is development hierarchical?" and "If so, what are the mechanisms involved in the process of development?" Analysis of the results of an experiment lead to differentiation of stages of development, and problem-solving strategies at each level are discussed.…
Descriptors: Abstract Reasoning, Cognitive Development, Concept Formation, Developmental Stages
Peer reviewedLarkin, Jill; And Others – Science, 1980
Focuses on human information processes and problem solving. Although a large body of knowledge is prerequisite to acquiring skill, the authors state that knowledge must be indexed by patterns that guide the person in a fraction of a second to relevant parts of the knowledge store. (Author/SA)
Descriptors: Abstract Reasoning, Academic Achievement, Computers, Higher Education
Peer reviewedSmith, Mike U. – Journal of Research in Science Teaching, 1988
Examines successful/unsuccessful distinctions between novices and experts in problem solving in terms of genetic knowledge, use of production rules, strategy selection, use of critical cues, use of logic, understanding of probability, and the thinking process itself. Suggests five implications for genetics instruction and provides three problems…
Descriptors: Abstract Reasoning, Biology, College Science, Genetics
Peer reviewedRabinowitz, F. Michael; And Others – Journal of Experimental Child Psychology, 1994
Proposes a new conceptual framework, embedded in a dynamic model, that accounts for children's failure to reason transitively. Examines five different models of transitive reasoning. Develops a model of how children initially represent and then use the ordered information available in the transitive inference model and how these processes change…
Descriptors: Abstract Reasoning, Children, Cognitive Development, Encoding (Psychology)
Peer reviewedColeman, Elaine B.; Shore, Bruce – Journal for the Education of the Gifted, 1991
This study examined the problem-solving protocols of 21 students in a grade 11 enriched physics course as well as 3 adult "experts" in physics. Experts and high performing students made more correct metastatements and more references to prior knowledge than did average performing students. (DB)
Descriptors: Abstract Reasoning, Academically Gifted, Grade 11, High Achievement
Peer reviewedThompson, Patrick W. – Educational Studies in Mathematics, 1993
Six fifth-grade children participated in a four-day teaching experiment on complex additively structured problems to investigate difficulties in concurrently holding in mind situations in which items play multiple roles. Difficulties included distinguishing take-away difference from comparison difference and indirect evaluation of an additive…
Descriptors: Abstract Reasoning, Addition, Cognitive Processes, Elementary School Students
Peer reviewedGrobecker, Betsey – Learning Disability Quarterly, 1999
Twenty-nine children with learning disabilities (LD) in grades 2 and 4 through 7 were compared with children without LD for their development of proportional structures of thought. Significantly fewer children with LD had constructed second-order logical structures necessary to act on problems using multiplicative and preproportional reasoning.…
Descriptors: Abstract Reasoning, Age Differences, Cognitive Development, Comparative Analysis


