Development of trigonometry learning kit with a STEM approach to improve problem solving skills and learning achievement

A. N. Arivina, J. Jailani
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引用次数: 3

Abstract

This study aimed to produce the trigonometry learning kit for tenth-grade high school students using the STEM (Science, Technology, Engineering, and Mathematics) approach properly. This study was development research using the ADDIE model, which consisted of five stages, namely Analysis, Design, Development, Implementation, and Evaluation. This study's subjects were tenth-grade high school students (n = 32) in Semarang, Indonesia. Data collection was carried out through questionnaires and tests. To assess the learning kit's validity, we used a questionnaire with the expert (mathematics education lecturers) as data sources. To assess the learning kit's practicality, we used the questionnaire (with teacher and student as data sources) and observation sheets. We used a test to assess the learning kit's effectiveness in terms of problem-solving skills and learning achievement. This development resulted in the trigonometry learning kit in the form of lesson plans or Rencana Pelaksanaan Pembelajaran (RPP) and worksheets or Lembar Kerja Peserta Didik (LKPD) using the STEM approach properly (meet the criteria of being valid, practical, and effective). The learning kit characteristics were: facilitating problem-solving skills and learning achievement, using problems related to Science, Technology, Engineering, and Mathematics, and organizing based on the Engineering Design Process (EDP) steps.
利用STEM方法开发三角学学习工具包,以提高解决问题的能力和学习成绩
本研究旨在正确运用STEM (Science, Technology, Engineering, and Mathematics,科学、技术、工程和数学)教学方法,制作适合高中十年级学生使用的三角学教材。本研究采用ADDIE模型进行开发研究,分为分析、设计、开发、实施和评估五个阶段。本研究的研究对象为印尼三宝垄市高中十年级学生(n = 32)。数据收集是通过问卷调查和测试进行的。为了评估学习包的效度,我们使用专家(数学教育讲师)的问卷作为数据来源。为了评估学习包的实用性,我们使用了问卷调查(以教师和学生为数据来源)和观察表。我们使用了一个测试来评估学习工具包在解决问题的能力和学习成绩方面的有效性。这一发展导致了以课程计划或Rencana Pelaksanaan Pembelajaran (RPP)和工作表形式的三角学习工具包或Lembar Kerja Peserta Didik (LKPD)正确使用STEM方法(符合有效、实用和有效的标准)。学习包的特点是:促进解决问题的技能和学习成果,使用与科学、技术、工程和数学相关的问题,并根据工程设计过程(EDP)步骤进行组织。
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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