孵化器学习模式的应用,以提高学生对光和光学材料的概念掌握

Revi Syahfira, Niki Dian Permana, S. Susilawati, Azhar Azhar
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引用次数: 4

摘要

本研究旨在通过对光与光学材料的引导性研究性学习模式的应用来提高学生对科学概念的掌握。采用非等效控制设计的准实验方法进行研究。本研究的人群为北干巴鲁市一所医学院八年级的所有学生,样本为两个班级,采用有目的抽样的抽样技术。数据的收集是利用光和光材料科学概念掌握测试仪器进行的。采用独立样本t检验进行假设检验。结果表明,实验班学生对科学概念掌握程度的提高优于对照组,实验班学生的归一化增益平均分在高类别为76.12分,在中类别为60.01分。在假设检验的基础上,我们得出结论:采用引导性探究学习模式的实验班与采用传统学习模式的对照班在学生对科学概念的掌握上存在显著差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PENERAPAN MODEL PEMBELAJARAN INKUIRI TERBIMBING UNTUK MENINGKATKAN PENGUASAAN KONSEP IPA SISWA PADA MATERI CAHAYA DAN OPTIK
This study aims to obtain an overview of improving students' mastery of science concepts through the application of guided inquiry learning models on light and optical materials. The research was conducted using a quasi-experimental method with the nonequivalent control design. The population of this study was all students of class VIII at one MTs in Pekanbaru city with a sample of two classes with a sampling technique in the form of purposive sampling. Data collection was carried out using a test instrument for mastery of science concepts on light and optical materials. Hypothesis testing was carried out using the independent sample t test. The results showed that the increase in students' mastery of science concepts in the experimental class was better than the control class where the normalized gain average score of students in the experimental class was 76.12 in the high category while the control class was 60.01 in the medium category. Based on the hypothesis test, it was concluded that there was a significant difference in students' increasing mastery of science concepts between the experimental class that applied the guided inquiry learning model and the control class that applied the conventional learning model on light and optical materials.
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