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Differences in arithmetic performance between Chinese and German adults are accompanied by differences in processing of non-symbolic numerical magnitude

机译:中国和德国成年人的算术性能差异伴随着非符号数值幅度的处理差异

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摘要

Human beings are assumed to possess an approximate number system (ANS) dedicated to extracting and representing approximate numerical magnitude information. The ANS is assumed to be fundamental to arithmetic learning and has been shown to be associated with arithmetic performance. It is, however, still a matter of debate whether better arithmetic skills are reflected in the ANS. To address this issue, Chinese and German adults were compared regarding their performance in simple arithmetic tasks and in a non-symbolic numerical magnitude comparison task. Chinese participants showed a better performance in solving simple arithmetic tasks and faster reaction times in the non-symbolic numerical magnitude comparison task without making more errors than their German peers. These differences in performance could not be ascribed to differences in general cognitive abilities. Better arithmetic skills were thus found to be accompanied by a higher speed of retrieving non-symbolic numerical magnitude knowledge but not by a higher precision of non-symbolic numerical magnitude representations. The group difference in the speed of retrieving non-symbolic numerical magnitude knowledge was fully mediated by the performance in arithmetic tasks, suggesting that arithmetic skills shape non-symbolic numerical magnitude processing skills.
机译:假设人类拥有一个专用于提取和表示近似数值幅度信息的近似数系统(ANS)。 ANS被认为是算术学习的基础,并且已经证明与算术性能相关。但是,是否在ANS中反映出更好的算术技能仍是一个争论的问题。为了解决这个问题,对中国成年人和德国成年人在简单算术任务和非符号数值幅度比较任务中的表现进行了比较。与非德国同行相比,中国参与者在解决非符号数值幅度比较任务中表现出更好的解决简单算术任务和更快的反应时间方面表现出更好的表现。这些表现上的差异不能归因于一般认知能力的差异。因此,发现更好的算术技能将伴随着检索非符号数值幅度知识的更高速度,但没有更高的非符号数值幅度表示的精度。非符号数值幅度知识的检索速度上的群体差异完全由算术任务的表现来介导,这表明算术技能塑造了非符号数值幅度处理技能。

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