Does the Integrated Discovery Learning STEM Model Improve Students' Problem Solving Skills in Chemistry Learning? Meta-Analysis Study

Erni Johan, Eli Rohaeti
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Abstract

The industrial revolution 4.0 has a significant impact on chemistry learning. Learning chemistry leads students to have problem-solving thinking skills in learning. There are many studies on STEM-integrated discovery learning models, but no overall effect size has been found from previous studies. This study aims to determine the effect of the size of the STEM-integrated discovery learning model on students' problem-solving skills. This type of research is quantitative research with a meta-analysis approach. The samples came from analyses of national and international journals. Inclusion criteria are publications derived from journals or proceedings indexed by SINTA and Scopus, experimental or quasi-experimental method research, research published in 2021-2024, research must be relevant, data search through google scholar, Springer, Hindawi, ScienceDirect and ERIC databases and Researchgate, research must have complete data to calculate effect size, and a sample size of ≥ 20 students. data analysis through JASP application. The results of the study concluded from the analysis of 19 heterogeneous and normally distributed journals explained the significant effect of the STEM-integrated discovery learning model on students' problem-solving skills (p < 0.001; rRE = 0.940) with high criteria.
综合发现学习 STEM 模式能否提高学生在化学学习中解决问题的能力?元分析研究
工业革命 4.0 对化学学习产生了重大影响。化学学习引导学生在学习中具备解决问题的思维能力。关于STEM整合发现学习模式的研究很多,但从以往的研究中并未发现整体效应大小。本研究旨在确定 STEM 整合发现学习模式对学生解决问题能力的影响大小。这类研究属于定量研究,采用元分析方法。样本来自对国内和国际期刊的分析。纳入标准为:论文来源于SINTA和Scopus收录的期刊或论文集,采用实验或准实验方法研究,研究发表于2021-2024年,研究必须具有相关性,通过google scholar、Springer、Hindawi、ScienceDirect和ERIC数据库以及Researchgate进行数据搜索,研究必须具有完整的数据以计算效应大小,样本量≥20名学生。研究结果通过对 19 种异质正态分布期刊的分析得出结论,解释了 STEM 整合发现学习模式对学生解决问题能力的显著影响(p < 0.001;rRE = 0.940),标准较高。
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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