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Graphical representations of data improve student understanding of measurement and uncertainty: An eye-tracking study

机译:数据的图形表示改善了学生对测量和不确定性的理解:一个追踪研究

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Developing a better understanding of the measurement process and measurement uncertainty is one of the main goals of university physics laboratory courses. This study investigated the influence of graphical representation of data on student understanding and interpreting of measurement results. A sample of 101 undergraduate students (48 first year students and 53 third and fifth year students) from the Department of Physics, University of Zagreb were tested with a paper-and-pencil test consisting of eight multiple-choice test items about measurement uncertainties. One version of the test items included graphical representations of the measurement data. About half of the students solved that version of the test while the remaining students solved the same test without graphical representations. The results have shown that the students who had the graphical representation of data scored higher than their colleagues without graphical representation. In the second part of the study, measurements of eye movements were carried out on a sample of thirty undergraduate students from the Department of Physics, University of Zagreb while students were solving the same test on a computer screen. The results revealed that students who had the graphical representation of data spent considerably less time viewing the numerical data than the other group of students. These results indicate that graphical representation may be beneficial for data processing and data comparison. Graphical representation helps with visualization of data and therefore reduces the cognitive load on students while performing measurement data analysis, so students should be encouraged to use it.
机译:更好地了解测量过程和测量不确定性是大学物理实验室课程的主要目标之一。本研究调查了图形表示数据对学生理解和对测量结果的解释的影响。 Zagreb大学的101名本科学生(48名学生和53名和第53岁和第五年学生)的样本用纸张和铅笔测试进行了测试,由八个多项选择试验项目组成,其中有八个关于测量不确定性。测试项目的一个版本包括测量数据的图形表示。大约一半的学生解决了该测试的测试,而剩下的学生在没有图形表示的情况下解决了相同的测试。结果表明,具有数据的图形表示的学生比他们的同事更高,没有图形表示。在该研究的第二部分中,对来自萨格勒大学的物理系的三十个本科生样本进行了眼部运动的测量,而学生则在电脑屏幕上解决同一测试。结果表明,与数据的图形表示的图形表示的学生比其他一组学生花费了很多时间。这些结果表明,图形表示可能是有益的数据处理和数据比较。图形表示有助于可视化数据,因此在执行测量数据分析时降低学生的认知负荷,因此应该鼓励学生使用它。

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