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Minding the Gap: Children's Difficulty Conceptualizing Spatial Intervals as Linear Measurement Units

机译:缩小差距:儿童的困难将空间间隔概念化为线性测量单位

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Understanding measurement units is critical to mathematics and science learning, but it is a topic that American students find difficult. In 3 studies, we investigated the challenges underlying this difficulty in kindergarten and second grade by comparing performance on different versions of a linear measurement task. Children measured crayons that were either aligned or shifted relative to the left edge of either a continuous ruler or a row of discrete units. The alignment (aligned, shifted) and the measuring tool (ruler, discrete units) were crossed to form 4 types of problems. Study 1 showed good performance in both grades on both types of aligned problems as well as on the shifted problems with discrete units. In contrast, performance was at chance on the shifted ruler problems. Study 2 showed that performance on shifted discrete unit problems declined when numbers were placed on the units, particularly for kindergarteners, suggesting that on the shifted ruler problems, the presence of numbers may have contributed to children's difficulty. However, Study 3 showed that the difficulty on the shifted ruler problems persisted even when the numbers were removed from the ruler. Taken together, these findings suggest that there are multiple challenges to understanding measurement, but that a key challenge is conceptualizing the ruler as a set of countable spatial interval units.
机译:了解度量单位对于数学和科学学习至关重要,但这是美国学生发现的难题。在3项研究中,我们通过比较线性测量任务的不同版本的性能,调查了幼儿园和二年级这一困难所面临的挑战。孩子们测量的蜡笔相对于连续标尺或一排离散单位的左边缘对齐或偏移。对齐(对齐,移动)和测量工具(标尺,离散单元)交叉形成4种类型的问题。研究1在两种类型的对齐问题以及离散单元的移位问题上都表现出良好的成绩。相反,在变化的标尺问题上,性能是偶然的。研究2表明,将离散数字放置在单元上时,尤其是对于幼儿园孩子,在离散单元问题上的表现会下降,这表明在规则尺问题上,数字的存在可能会导致儿童的困难。但是,研究3表明,即使从标尺上移走了标尺,移尺问题仍然存在困难。综上所述,这些发现表明理解测量存在多个挑战,但是关键的挑战是将标尺概念化为一组可数的空间间隔单位。

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