基于现象的学习(phenobl)模式在提高学生光学材料学习成绩方面的应用效果

Tesa Liantika Putri, A. Azizahwati, N. Islami
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引用次数: 2

摘要

在学校的物理学习过程中,有些题目与日常生活中的现象联系较少。在这种情况下,有必要应用基于现象的学习模型(PhenoBL)来提高学生的学习效果。研究采用非等效对照组设计的准实验模式。收集数据的工具分别是前测和后测的学生认知测试。对数据进行了描述性和推论性分析。描述性分析结果显示,实验班的平均吸收率为 71.05%,对照班的平均吸收率为 63.33%,两个班级的吸收率都处于良好水平。配对样本 t 检验结果表明,学生的认知学习成果从前测到后测都在增加。从推理分析中也可以看出,这意味着实验班与对照班之间存在显著差异。因此,可以得出结论,使用 PhenoBL 模型可以提高北干巴鲁 MIPA SMA Negeri 5 高中 XI 班学生在光学材料方面的学习成绩。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EFFECTIVENESS OF PHENOMENON BASED LEARNING (PHENOBL) MODEL APPLICATION FOR IMPROVING STUDENT LEARNING RESULTS IN OPTICAL MATERIALS
The learning process of physics at school, the topics is sometime less relatedto the existing dailylifephenomenon.This condition causes low improvement of students' cognitive learning result. In this case, it was a necessary to apply a learning model to improve student learning result by applying phenomenon based learning model (PhenoBL). Quasi experiment in the form of nonequivalent control group design as the model of the research. The instrument to collect data used test of student cognitive at pretest and posttest, respectively. The Data was analyzed by descriptive and inferential analysis. The results of descriptive analysis show the average absorption rate of experiment class is 71.05% and control class is 63.33% which both classes are in a good category. In the paired sample t-test results stated an increasing of students cognitive learning outcomes from pretest to posttest. This can also be seen from the inferential analysis in that means there was a significant differences between experimental class and kontrol class. Thus, it can be concluded that the use of PhenoBL model can improve student learning outcomes of class XI MIPA SMA Negeri 5 Pekanbaru on optical material.
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