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Evaluating the Effectiveness of Physlet-Based Materials in Supporting Conceptual Learning About Electricity

机译:评估基于微粒的材料在支持电力概念学习中的有效性

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摘要

To provide a good understanding of many abstract concepts in the field of electricity above that of their students is often a major challenge for secondary school teachers. Many educational researchers promote conceptual learning as a teaching approach that can help teachers to achieve this goal. In this paper, we present Physlet-based materials for supporting conceptual learning about electricity. To conduct research into the effectiveness of these materials, we designed two different physics courses: one group of students, the experimental group, was taught using Physlet-based materials and the second group of students, the control group, was taught using expository instruction without using Physlets. After completion of the teaching, we assessed students' thinking skills and analysed the materials with an independent t test, multiple regression analyses and one-way analysis of covariance. The test scores were significantly higher in the experimental group than in the control group (p < 0.05). The results of this study confirmed the effectiveness of conceptual learning about electricity with the help of Physlet-based materials.
机译:对中学领域中的电学领域中的许多抽象概念有很好的理解,这通常是中学教师面临的主要挑战。许多教育研究人员将概念学习作为一种教学方法来推广,可以帮助教师实现这一目标。在本文中,我们提出了基于Physlet的材料来支持有关电的概念学习。为了研究这些材料的有效性,我们设计了两种不同的物理课程:一组学生是实验组,使用基于Physlet的材料进行教学;另一组学生是对照组,使用的是不含注释的说明性教学。使用Physlets。完成教学后,我们评估了学生的思维能力,并通过独立的t检验,多元回归分析和协方差的单向分析对材料进行了分析。实验组的测试分数显着高于对照组(p <0.05)。这项研究的结果证实了借助基于Physlet的材料进行电学概念学习的有效性。

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