DEVELOPMENT OF MATHEMATICAL LEARNING DEVICES BASED ON THE POE (PREDICTION, OBSERVATION, EXPLANATION) MODEL IN THE MATERIAL OF CONSTRUCTING FLAT SIDE SPACES

Faisal Bakti, Rezi Ariawan
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Abstract

Mathematical creative thinking is the ability to produce varied answers or ideas to solve problems in mathematics. This study aims to build a valid learning device on flat-sided geometry using the POE model (Prediction, Observation, Explanation). The learning tools developed were syllabus, lesson plans, and LKPD on the flat side space building material. This type of research is development research with the ADDIE model, modified into three stages (Analysis, Design dan Development) without the implementation and evaluation stages. The research data collection instrument was a learning device validation sheet in a syllabus, lesson plans, and LKPD. Analysis of the data used is descriptive data analysis that describes the level of validity of the product. This study yielded a valid syllabus, lesson plans, and LKPD with 83.65%, 87.86%, and 86.31%, respectively. This study concludes that the Development of mathematical learning tools based on the POE model on the flat-sided geometry material has been tested for validity
基于预测、观察、解释(POE)模型的数学学习装置的研制
数学创造性思维是为解决数学问题而提出不同答案或想法的能力。本研究旨在利用POE模型(Prediction, Observation, explain)构建一个有效的平面几何学习装置。开发的学习工具有教学大纲、课程计划和LKPD平侧空间建筑材料。这种类型的研究是开发研究与ADDIE模型,修改为三个阶段(分析,设计和开发)没有实施和评估阶段。研究数据收集工具是教学大纲、课程计划和LKPD中的学习设备验证表。对所用数据的分析是描述产品有效性水平的描述性数据分析。本研究之教学大纲、教案及教学大纲之有效度分别为83.65%、87.86%及86.31%。本研究的结论是,基于平面几何材料的POE模型的数学学习工具的开发已经进行了有效性测试
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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