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Ezeamuzie, Ndudi O. – Journal of Educational Computing Research, 2023
Most studies suggest that students develop computational thinking (CT) through learning programming. However, when the target of CT is decoupled from programming, emerging evidence challenges the assertion of CT transferability from programming. In this study, CT was operationalized in everyday problem-solving contexts in a learning experiment (n…
Descriptors: Programming, Computer Science Education, Problem Solving, Thinking Skills
Calderón-Tena, Carlos O. – Educational Psychology in Practice, 2016
This study investigated the role of broad cognitive processes in the development of mathematics skills among children and adolescents. Four hundred and forty-seven students (age mean [M] = 10.23 years, 73% boys and 27% girls) from an elementary school district in the US southwest participated. Structural equation modelling tests indicated that…
Descriptors: Mathematics Education, Mathematics Skills, Cognitive Processes, Elementary School Students

Tschirgi, Judith E. – Child Development, 1980
Investigates the asserted differences in reasoning between adults and second, fourth, and sixth graders in a manipulation of variables task using class inclusion and story problems with common everyday situations. Results are discussed in terms of sensible reasoning and problem-solving skills. (CM)
Descriptors: Abstract Reasoning, Age Differences, Children, Cognitive Processes

Klaczynski, Paul A.; Narasimham, Gayathri – Developmental Psychology, 1998
Three experiments examined the role of representations in adolescents' deductive reasoning. Findings indicated that, with age, conditional reasoning improved on tasks containing permission conditional relations; reasoning fallacies increased on tasks containing causal conditional relations. Valid conditional inferences were more common on problems…
Descriptors: Abstract Reasoning, Adolescents, Age Differences, Deduction
Heindel, Patricia; Ward, Deanna – 1987
Deductive reasoning problems were presented to 72 public elementary school students, half of whom were identified as gifted (mean age of 9.6 years) and half of whom were regular education students (mean age of 9.3 years). They were used to test an hypothesis that gifted children who score significantly higher than average on standardized…
Descriptors: Abstract Reasoning, Age Differences, Cognitive Development, Cognitive Style

Koslowski, Barbara; Okagaki, Lynn – Child Development, 1986
According to Humean framework, relations are judged to be causal to extent that they are characterized by regularity, continuity, and covariation among college students and college-bound 11- and 14-year-olds. Presents subjects with information about one of the following indices: potential causal factor covaried with effect and potential causal…
Descriptors: Abstract Reasoning, Adolescents, Age Differences, Cognitive Development

Flavell, John H.; And Others – Developmental Psychology, 1978
A developmental study of elementary school children's use of rule v computation in solving spacial perspective-taking problems. (CM)
Descriptors: Abstract Reasoning, Age Differences, Child Development, Elementary Education
Stone, C. Addison; And Others – 1984
The study is described which examined quantitative and qualitative differences among learning disabled (LD) subgroups and between LD and normal Ss in reasoning and problem solving behaviors. The research strategy involved (1) detailed analyses of the behavior of subgroups of LD adolescents and of matched normal achieving adolescents in a task…
Descriptors: Abstract Reasoning, Age Differences, Case Studies, Cognitive Processes

Hartley, Alan A. – Journal of Gerontology, 1981
Explored deductive inference processes in concept learning in four age groups. Results confirm findings of age differences in concept problem solving, with likelihood of solving the problem lower in older adults. However, solvers of all ages made the same correct inferences. (Author/JAC)
Descriptors: Abstract Reasoning, Age Differences, College Students, Concept Formation
Flavell, John H.; And Others – 1976
This paper describes two experiments in which children in grades 1, 3, and 5 were given three kinds of spatial perspective-taking problems to solve as quickly as they could: (1) C problems, solvable only by computation (that is, noting which features of a particular object array were closest to another observer in order to estimate how the array…
Descriptors: Abstract Reasoning, Age Differences, Cognitive Development, Concept Formation

Ferrara, 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

Grobecker, 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

Fernie, David E.; DeVries, Rheta – Early Childhood Research Quarterly, 1990
A total of 87 children, 3- to 7-years old, were examined in a study of children's play and reasoning in games of mathematical logic and social logic. Children's sophistication in reasoning was positively related for two games, suggesting a common three-level progression from mastery of procedures to a competitive attitude to advanced strategy. (SH)
Descriptors: Abstract Reasoning, Age Differences, Childrens Games, Cognitive Processes

Goswami, Usha – Child Development, 1991
Children's analogical reasoning has traditionally been measured by classical four-term analogy tasks or problem-solving tasks. Current theories of analogical development and the evidence on which they are based are reviewed. It is concluded that structural views of analogical development are wrong, and knowledge-based accounts of what develops are…
Descriptors: Abstract Reasoning, Age Differences, Analogy, Children
Sternberg, Robert J. – 1979
About 25 children in each of grades 3, 5, 7, 9, and 11 were tested in their ability to solve linear syllogisms, such as: John is taller than Mary. Mary is taller than Pete. Who is tallest--John, Mary, or Pete? Response latencies and error rates decreased across grade levels and sessions. Component latencies also generally decreased with increasing…
Descriptors: Abstract Reasoning, Age Differences, Algorithms, Cognitive Development
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