Working memory components that predict word problem solving: Is it merely a function of reading, calculation, and fluid intelligence?

被引:0
作者
Wenson Fung
H. Lee Swanson
机构
[1] JBS International,Area of Educational Psychology
[2] University of California,undefined
来源
Memory & Cognition | 2017年 / 45卷
关键词
Working memory; Executive processing; Phonological processing;
D O I
暂无
中图分类号
学科分类号
摘要
The purpose of this study was to assess whether the differential effects of working memory (WM) components (the central executive, phonological loop, and visual–spatial sketchpad) on math word problem-solving accuracy in children (N = 413, ages 6–10) are completely mediated by reading, calculation, and fluid intelligence. The results indicated that all three WM components predicted word problem solving in the nonmediated model, but only the storage component of WM yielded a significant direct path to word problem-solving accuracy in the fully mediated model. Fluid intelligence was found to moderate the relationship between WM and word problem solving, whereas reading, calculation, and related skills (naming speed, domain-specific knowledge) completely mediated the influence of the executive system on problem-solving accuracy. Our results are consistent with findings suggesting that storage eliminates the predictive contribution of executive WM to various measures Colom, Rebollo, Abad, & Shih (Memory & Cognition, 34: 158-171, 2006). The findings suggest that the storage component of WM, rather than the executive component, has a direct path to higher-order processing in children.
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页码:804 / 823
页数:19
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  • [1] Ackerman PL(2005)Working memory and intelligence: The same or different constructs Psychological Bulletin 131 30-60
  • [2] Beier ME(2009)Working memory, but not IQ, predicts subsequent learning in children with learning difficulties European Journal of Psychological Assessment 25 92-98
  • [3] Boyle MO(2010)Investigating the predictive roles of working memory and IQ in academic attainment Journal of Experimental Child Psychology 106 20-29
  • [4] Alloway TP(1996)Working memory: Activation limitations on retrieval Cognitive Psychology 30 221-256
  • [5] Alloway TP(2000)The episodic buffer: A new component of working memory? Trends in Cognitive Sciences 4 417-422
  • [6] Alloway RG(2012)Working memory: Theories, models, and controversies Annual Review of Psychology 63 1-29
  • [7] Anderson JR(1998)The phonological loop as a language learning device Psychological Review 105 158-173
  • [8] Reder LM(2008)Working memory and arithmetic calculation in children: The contributory roles of processing speed, short-term memory, and reading Journal of Experimental Child Psychology 99 288-308
  • [9] Lebiere C(1993)Working-memory capacity as long-term memory activation: An individual-differences approach Journal of Experimental Psychology: Learning, Memory, and Cognition 19 1101-1114
  • [10] Baddeley AD(2011)The interrelationships of mathematical precursors in kindergarten Journal of Experimental Child Psychology 108 713-733