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Vogelaar, Bart; Sweijen, Sophie W.; Resing, Wilma C. M. – Journal of Intelligence, 2019
Analogical reasoning is assumed to play a large role in learning and problem solving in everyday and school settings. It was examined whether a newly developed dynamic test of analogical reasoning would be sufficiently difficult for identifying young gifted children's potential for solving analogies. The study included 74 gifted (n = 31) and…
Descriptors: Academically Gifted, Logical Thinking, Learning, Problem Solving
Urlings, Corrie C.; Coppens, Karien M.; Borghans, Lex – Computers in the Schools, 2019
We explored the potential of a robotics application in education as a measurement tool of child executive functioning skills. Sixty-five kindergarteners received assignments to go through a maze with a programmable robot, the Bee-Bot. Via observation we quantified how they solved these tasks. Their performance was successfully aggregated into a…
Descriptors: Robotics, Kindergarten, Programming, Problem Solving
Wong, Terry Tin-Yau; Ho, Connie Suk-Han – Journal of Educational Psychology, 2017
Arithmetic word-problem solving is an important component of elementary mathematics curricula that links school mathematics to real-life problem solving. The present 3-year longitudinal study examined children's arithmetic word-problem solving through understanding its 2 component processes: number-sentence construction and computation. Chinese…
Descriptors: Arithmetic, Word Problems (Mathematics), Problem Solving, Correlation
Chen, Zhe; Honomichl, Ryan; Kennedy, Diane; Tan, Enda – Developmental Psychology, 2016
The present study examines 5- to 8-year-old children's relation reasoning in solving matrix completion tasks. This study incorporates a componential analysis, an eye-tracking method, and a microgenetic approach, which together allow an investigation of the cognitive processing strategies involved in the development and learning of children's…
Descriptors: Eye Movements, Statistical Analysis, Componential Analysis, Cognitive Processes
Peer reviewedLawry, Janice A.; And Others – Child Development, 1983
Both between- and within-group differences in children ages nine to eleven identified as having reflective or impulsive cognitive tempos. Cognitive tempo was first assessed using Kagan's Matching Familiar Figures test, and children were later tested on the Raven's Standard Progressive Matrices. (Author/RH)
Descriptors: Conceptual Tempo, Difficulty Level, Individual Differences, Problem Solving

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