Munawwarah Munawwarah
State University of Makassar

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Overview of Student Understanding in Research Statistics Lectures Using the PJBL Method Islawati Islawati; Munawwarah Munawwarah
Jurnal Studi Guru dan Pembelajaran Vol. 7 No. 3 (2024): September - Desember 2024
Publisher : Universitas Cokroaminoto Palopo

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30605/jsgp.7.3.2024.4857

Abstract

The main issue in this study is that many students still have difficulty integrating theory with practice, particularly at the stages of data visualization and interpretation. This study aims to explore students' understanding of data collection and analysis techniques in research statistics courses through the implementation of the Project-Based Learning (PJBL) method. A qualitative descriptive approach was used in this study, involving 22 students from the Chemistry Education Program. Students were applied to each stage of PJBL, namely: (1) Determining the Main Question, (2) Compiling a Project Plan, (3) Collecting and Analyzing Data, (4) Compiling Results and Interpretation, and (5) Project Evaluation. The results showed that students demonstrated a good understanding at the initial stages, such as Determining the Main Question and Compiling a Project Plan, which reflects their ability to understand and design the data analysis process. At more complex stages, such as Data Collection and Analysis and Compiling Results and Interpretation, it was found that some students had difficulty connecting the analysis results with the research context. Students' reflections during the Project Evaluation phase indicated that they were aware of the challenges they faced, such as the in-depth understanding of data visualization and interpretation techniques, as well as the importance of applying theory to practice. This study highlights the importance of the PJBL approach in supporting experiential learning to enhance students' understanding of research statistical techniques. Through in-depth exploration, this study provides insights into the learning challenges and the potential of project-based learning strategies to enhance students' research skills in higher education.
Unveiling Misconceptions in Chemistry: A Review of Causes, Common Patterns, and Levels of Student Understanding Munawwarah Munawwarah; Ayu Ashari
Jurnal Studi Guru dan Pembelajaran Vol. 8 No. 3 (2025): September - Desember 2025
Publisher : Universitas Cokroaminoto Palopo

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30605/jsgp.8.3.2025.6935

Abstract

The urgency of addressing this issue lies in its long-term impact on students’ conceptual development, from secondary school to pre-service teachers. Misconceptions remain a critical issue in chemistry education because they obstruct students’ ability to integrate macroscopic, submicroscopic, and symbolic representations, thereby limiting scientific literacy and problem-solving skills.. This review aims to identify chemistry topics most prone to misconceptions, analyze recurring misconception patterns, examine their underlying causes, and assess the reported levels of misunderstanding. A systematic literature review was conducted using the PRISMA 2020 framework, with inclusion criteria focusing on empirical studies published between 2015 and 2025 that employed diagnostic instruments (two-tier, three-tier, four-tier, five-tier, or CRI) and reported data on misconceptions. From an initial 100 records, 30 studies met the criteria and were analyzed. The synthesis shows that the highest average misconception rates occur in buffer solutions, hydrolysis, chemical bonding, and electrolytes (often exceeding 50%), while equilibrium, stoichiometry, thermochemistry, and redox reactions display moderate to lower levels. Common patterns include viewing all hydrogen-containing compounds as acids, assuming ionic bonds form between molecules, perceiving stoichiometry as purely algorithmic, and believing buffer solutions neutralize acids and bases completely. The findings reveal that misconceptions are driven by a combination of prior knowledge, the abstract nature of chemistry, inaccurate textbooks, insufficient teacher explanations, and ambiguous chemical language. The review concludes that misconceptions in chemistry are systematic and persistent, underscoring the need for diagnostic assessments and pedagogical strategies that integrate multiple representations and targeted corrective interventions.