Children’s reasoning about decimals and its relation to fraction learning and mathematics achievement.

十进制的 数学教育 班级(哲学) 心理信息 比例推理 算术 心理学 分数(化学) 价值(数学) 学业成绩 认知 数学 计算机科学 统计 人工智能 神经科学 梅德林 法学 化学 有机化学 政治学
作者
Ilyse Resnick,Luke Rinne,Christina Barbieri,Nancy C. Jordan
出处
期刊:Journal of Educational Psychology [American Psychological Association]
卷期号:111 (4): 604-618 被引量:24
标识
DOI:10.1037/edu0000309
摘要

Reasoning about numerical magnitudes is a key aspect of mathematics learning. Most research examining the relation of magnitude understanding to general mathematics achievement has focused on whole number and fraction magnitudes. The present longitudinal study (N = 435) used a 3-step latent class analysis to examine reasoning about magnitudes on a decimal comparison task in 4th grade, before systematic decimals instruction. Three classes of response patterns were identified, indicating empirically distinct levels of decimal magnitude understanding. Class 1 students consistently gave correct responses, suggesting that they understood decimal properties even before systematic decimal instruction. Class 2 students were accurate when a 0 immediately followed the decimal, but were inaccurate when a zero was added to the end of the decimal string, suggesting a partial understanding of place value; their performance was also negatively influenced by a whole number bias. Class 3 students showed misunderstanding of both place value and a whole number bias. Class membership accurately predicted 6th grade mathematics achievement, after controlling for whole number and fraction magnitude understanding as well as demographic and cognitive factors. Taken together, the findings suggest students may benefit from instruction that emphasizes decimal properties earlier in school. (PsycINFO Database Record (c) 2019 APA, all rights reserved)
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