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A mathematical set-breaking task was used to examine the cognitive flexibility and planning of 19 school-identified gifted students and 11 average students in Grades 5 and 6. Gifted Ss tended to have more metacognitive knowledge (MCK) than average Ss regardless of problem-solving speed, and gifted Ss who were faster at problem solving had more MCK than gifted Ss who were slower. These intra- and intergroup differences may be useful in understanding the nature of giftedness and the ways in which gifted students' thinking differs from that of others. (PsycINFO Database Record (c) 2019 APA, all rights reserved)
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Reports an error in the original article by A. Dover and B. M. Shore ( Gifted Child Quarterly, 1991[Spr], Vol 35[2], 99–205). The water-jar quantities for Problems 6 and 7 in Table 1 were inadvertently reversed. The correct quantities for these trials are provided. (The following abstract of this article originally appeared in PA, Vol 78:27007.) A mathematical set-breaking task was used to examine the cognitive flexibility and planning of 19 school-identified gifted students and 11 average students in Grades 5 and 6. Gifted Ss tended to have more metacognitive knowledge (MCK) than average Ss regardless of problem-solving speed, and gifted Ss who were faster at problem solving had more MCK than gifted Ss who were slower. These intra- and intergroup differences may be useful in understanding the nature of giftedness and the ways in which gifted students' thinking differs from that of others. (PsycINFO Database Record (c) 2019 APA, all rights reserved)
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Discusses research on the relation of metacognition to giftedness. At Yale University, R. J. Sternberg (1980, 1983, 1984, 1985) and his colleagues have developed an original "triarchic" theory of intelligence and a subtheory of insight. It is maintained that interactions among the elements of the triarchic theory explain giftedness. The question of whether giftedness is a subset of intelligence or vice versa remains controversial. (PsycINFO Database Record (c) 2019 APA, all rights reserved)
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The contribution of metacognition to the better understanding of giftedness is explored in the context of the "triarchic" of intelligence and its subtheory of insight proposed by Sternberg and his colleagues at Yale University, and in relation to research into the interaction between availability and flexibility of cognitive style on one hand, and metacognitive knowledge and skill on the other. Support is offered for the importance of interactions among the elements (meta-components, performance components, and knowledge-acquisition components) of the triarchic theory to better explain giftedness. Finally, rather than regarding a theory of giftedness to be a subtheory of one of intelligence, might there be merit in considering the opposite order? (PsycInfo Database Record (c) 2024 APA, all rights reserved) (Source: chapter)
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