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Problem-based Learning (PBL), Kemampuan Pemecahan Masalah, dan Self-Efficacy: A Systematic Literature Review I Made Sudarman Utama; I Wayan Redhana; I Nyoman Tika; Ida Bagus Putu Arnyana; Ni Ketut Rapi
Jurnal Penelitian Pendidikan IPA Vol 11 No 12 (2025): December
Publisher : Postgraduate, University of Mataram

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29303/jppipa.v11i12.12817

Abstract

Problem-solving skills and self-efficacy are essential competencies that enable students to face academic and real-life challenges, particularly in science learning. One instructional approach frequently associated with the development of these competencies is the Problem-Based Learning (PBL) model. However, research findings on the effectiveness of PBL in enhancing problem-solving skills and self-efficacy show varied results and have not been systematically synthesized, especially in the context of science education. Therefore, this study aims to identify and describe trends in research subjects, research designs, and types, as well as key findings related to the application of the PBL model to problem-solving skills and self-efficacy through a Systematic Literature Review (SLR). This study analyzed 20 research articles published over the last ten years (2016–2025) and indexed in the Directory of Open Access Journals (DOAJ). The selected articles were examined using a content analysis observation sheet to identify research subjects, methodological approaches, and key findings. The results show that research on PBL is dominated by studies conducted at the senior high school level, while research at the elementary and junior high school levels remains limited. Quantitative research designs, particularly quasi-experimental studies, predominate, with relatively few qualitative, mixed-methods, and research and development (R&D) studies. The key findings reveal variations in the achievement of problem-solving skill indicators and self-efficacy dimensions across studies. These findings indicate that although the PBL model has the potential to enhance problem-solving skills and self-efficacy, its effectiveness is influenced by student characteristics, learning contexts, and instructional design. This study highlights the need for further research, particularly at the elementary and junior high school levels, and encourages methodological diversification as well as the integration of PBL with other learning models and instructional strategies. Overall, this SLR provides a comprehensive overview that can serve as a reference for researchers and educators in developing more effective and context-sensitive PBL implementations in science education.
Emotional Intelligence and Its Impact on Students' Science Learning: A Systematic Literature Review Kamaluddin Kamaluddin; I Ketut Suma; Ni Ketut Rapi; I Wayan Suastra; Edi Firmansyah; Sofyan Syamratulangi
Vidya Karya Vol 41, No 1 (2026): APRIL 2026
Publisher : Universitas Lambung Mangkurat

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20527/jvk.v41i1.25549

Abstract

Emotional intelligence has become an important component that influences how well students succeed in learning, including in science. The purpose of this study specifically focuses on the role of emotional intelligence in the context of science learning. This article is a systematic literature review that investigates the relationship between emotional intelligence and science learning. PRISMA guidelines were used in this study to review empirical articles published from 2015 to 2024. In total, 22 articles met the criteria for the systematic literature review. Emotional intelligence acts as an essential basis that connects the emotional side of scientific learning to its cognitive side. Emotional intelligence not only aids in increasing engagement but is also beneficial for enhancing conceptual understanding and can thus be used effectively during the learning process. Studies show that emotional intelligence significantly improves student engagement, critical thinking, and learning outcomes in science learning. This article also discusses the mechanisms of these relationships and suggests ways emotional intelligence can be used in science education.