Students’ Conceptual Understanding and Self-Directed Learning on Blended Learning

IF 1.2 4区 教育学 Q3 EDUCATION, SPECIAL Journal of Special Education Technology Pub Date : 2022-12-14 DOI:10.23887/jet.v6i4.49229
Riana Novita, Jumadi
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引用次数: 2

Abstract

Learning physics requires understanding the concept so that students can analyze the relationship between concepts to explain a natural phenomenon. However, students need clarification and help to understand and analyze physics concepts. So to train to understand, students need self-directed learning. This study aims to analyze students' conceptual understanding, learning independence, and the effect of student learning independence on students' conceptual understanding of straight motion in blended learning. The sample in this study was 22 students of class X. The method in this study was a pre-experimental design with a one-group pretest-posttest group design. The instrument used in data collection is a test. Data were analyzed using the non-parametric Wilcoxon test and the one-sample T-test. The study results show that blended learning can significantly improve students' conceptual comprehension abilities and learning independence in straight-motion material. It is because students can learn independently during the learning process, so they are more active, creative, and independent in understanding a concept. Learning with blended learning influences understanding concepts, and understanding concepts affects students' self-directed learning.
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混合式学习中学生概念理解与自主学习
学习物理需要理解概念,这样学生才能分析概念之间的关系来解释一个自然现象。然而,学生需要澄清和帮助理解和分析物理概念。因此,为了培养学生的理解能力,他们需要自主学习。本研究旨在分析混合学习中学生的概念理解、学习独立性以及学生学习独立性对学生直线动作概念理解的影响。本研究的样本为22名x班学生。本研究的方法为实验前设计,一组前测后测组设计。用于数据收集的仪器是一个测试。数据分析采用非参数Wilcoxon检验和单样本t检验。研究结果表明,混合学习可以显著提高学生对直行材料的概念理解能力和学习独立性。这是因为学生在学习过程中可以独立学习,所以他们在理解一个概念时更主动、更有创造性、更独立。混合式学习影响概念理解,概念理解影响学生自主学习。
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来源期刊
CiteScore
3.90
自引率
15.80%
发文量
31
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