数线估计的几何方面

IF 0.2 Q4 EDUCATION & EDUCATIONAL RESEARCH Journal of Education and Future-Egitim ve Gelecek Dergisi Pub Date : 2019-01-25 DOI:10.30786/jef.460279
S. Olkun, M. Sarı, G. Smith
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引用次数: 4

摘要

数轴隐含在自然界中。然而,研究人员用它们来测量数字感,就好像它们纯粹是通过数字推理处理的一样。我们认为数轴估计任务是通过数值和几何推理来完成的。本研究的目的是探讨数学成绩、几何成绩、空间技能与数线估计之间的关系。对142名四年级学生进行了5项不同的测试:2项基于课程的数学成就测试、1项空间可视化测试、1项数轴估计测试和1项瑞文标准进步矩阵测试。结果显示;空数轴上数字的相对大小的估计精度更多地与几何成就和图解推理有关,而不是与数值或算术推理有关。数轴估计任务似乎构成了数字和形状之间的相互作用。因此,我们得出结论,使用数字的多种外部表征,如空间、符号和语言,可能有助于发展更强大的数字感。
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Geometric Aspects of Number Line Estimations
Number lines are implicitly embedded in nature. Yet researchers use them for measuring number sense as if they are processed purely through numerical reasoning. We argue that number line estimation tasks are done both by numerical and geometric reasoning. The purpose of this research was to investigate the relationships among mathematics achievement, geometry achievement, spatial skills, and number line estimations. A total of 142 fourth graders were administered 5 different tests: 2 curriculum-based math achievement tests, a spatial visualization test, a number line estimation test, and the Raven Standard Progresive Matrices test. Results showed; estimation accuracy of the relative magnitude of numbers on an empty number line has more to do with geometry achievement and diagrammatic reasoning rather than with numerical or arithmetic reasoning. It seems that number line estimation tasks may constitute an interplay between number and shape. Therefore, we conclude that using multiple external representations of numbers, such as spatial, symbolic, and verbal could be useful in developing a more robust number sense.
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