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Identifying Taiwanese University Students' Physics Learning Profiles and Their Role in Physics Learning Self-Efficacy

机译:识别台湾大学生的物理学习概况及其在物理学习自我效能中的作用

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摘要

The main purposes of this study were to identify Taiwanese university students' physics learning profiles in terms of their critical conceptions of learning physics and to compare their physics learning self-efficacy with the different learning profiles. A total of 250 Taiwanese undergraduates who were majoring in physics participated in this study and were invited to complete two instruments, physics learning profile and physics learning self-efficacy (PLSE). The main results indicated that, first, the two instruments developed in this study had satisfactory validity and reliability. Second, three fundamental physics learning profiles, the reproductive, transitional, and constructive profiles, were characterized based on the cluster analysis. It is also evident that the three learning profiles demonstrated different levels of self-efficacy for the five PLSE dimensions. The students with a reproductive profile tended to possess the lowest PLSE across the five dimensions. The students with a transitional profile may possess higher confidence in higher-order cognitive skills and laboratory activities than those with a reproductive profile. However, only those with a constructive profile, highlighting a comprehensive understanding of physics knowledge/concepts as well as de-emphasizing physics learning as preparing for tests and calculating and practising tutorial problems, possessed stronger PLSE in applying what they learned to real-world contexts as well as in scientifically communicating with others.
机译:这项研究的主要目的是根据台湾学生对物理学习的批判性概念来确定他们的物理学习概况,并将他们的物理学习自我效能与不同的学习概况进行比较。共有250名台湾物理专业的本科生参加了这项研究,并受邀完成了两种工具,即物理学习概况和物理学习自我效能感(PLSE)。主要结果表明,首先,本研究开发的两种仪器具有令人满意的有效性和可靠性。第二,基于聚类分析,表征了三个基本的物理学习概况,即生殖,过渡和建构性概况。同样明显的是,这三种学习模式对五个PLSE维度表现出不同的自我效能水平。具有生殖特征的学生在五个维度上的PLSE最低。具有过渡特征的学生比具有生殖特征的学生对更高阶的认知技能和实验室活动更有信心。但是,只有那些具有建设性的个人,突出强调对物理知识/概念的全面理解,并不再强调物理学习作为准备测试以及计算和练习教程问题的能力,才能将PLSE应用于实际环境中以及与他人进行科学交流。

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