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The Impact of Digital-Based STEAM Learning on High School Students' Creative Thinking Skills : A Literature Review Muhammad Ghiyats Naufal; Dwikoranto Dwikoranto; Iqbal Ainur Rizki
Journal of Digitalization in Physics Education Vol. 1 No. 1 April 2025
Publisher : Universitas Negeri Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26740/jdpe.v1i1.39001

Abstract

Objective: This study aims to analyze the impact of STEAM (Science, Technology, Engineering, Art, and Mathematics) learning on the creative thinking abilities of high school students. With creativity being a vital skill in the 21st century, this research addresses the gap in traditional learning methods that fail to equip students with adequate creative problem-solving skills. Method: The research adopts a systematic literature review (SLR) approach involving identifying, reviewing, and synthesizing 20 articles published within the last five years. Data was collected using academic databases such as Scopus, DOAJ, and Google Scholar. The selection of articles focused on those relevant to STEAM learning and creative thinking, followed by an in-depth analysis of themes and findings.  Results:  The analysis revealed that STEAM-based learning significantly enhances creative thinking skills across various indicators, including fluency, flexibility, originality, and elaboration. Integrated models like Project-Based Learning (PjBL) and Problem-Based Learning (PBL) within STEAM provide practical strategies for overcoming traditional learning challenges by offering hands-on, practical approaches. However, limitations were identified, such as the lack of research on integrating STEAM into physics education and its limited impact on students' digital literacy.  Novelty: This study contributes to the field by highlighting the transformative potential of STEAM learning in fostering creativity, particularly when integrated with cultural and contextual elements relevant to students. It also emphasizes the importance of expanding STEAM research into less-explored areas, such as physics education and advanced digital technologies.                 
Exploratory Factor Analysis (EFA) of PhET Simulation-Based Innovation in Rigid Body Equilibrium Learning to Enhance Students’ Conceptual Understanding Hanan Zaki Alhusni; Ratna Purnamawati; Binar Kurnia Prahani; Titin Sunarti; Riski Ramadani; Iqbal Ainur Rizki
Journal of Digitalization in Physics Education Vol. 1 No. 3 (2025): December
Publisher : Universitas Negeri Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26740/jdpe.v1i3.42475

Abstract

Objective: This study aimed to analyze the validity and reliability of an instrument developed to measure students’ perceptions of PhET simulation–based innovations in learning rigid body equilibrium. The research sought to determine whether the instrument accurately captured students’ conceptual understanding, engagement, and satisfaction while also identifying latent factors underlying their responses through Exploratory Factor Analysis (EFA). Method: The study employed a quantitative survey approach with 25 Likert-scale items distributed to students in one secondary school. Data were analyzed using descriptive statistics, Kaiser-Meyer-Olkin (KMO), and Bartlett's test for sampling adequacy, followed by EFA with Varimax rotation. Reliability testing was conducted through Cronbach's Alpha to evaluate the internal consistency of extracted factors. Results:  The findings revealed that the instrument achieved strong overall reliability (Cronbach’s α = .909). EFA identified nine distinct factors, extending beyond the original five theoretical dimensions of ease of use, engagement, conceptual clarity, collaboration, and satisfaction. While the first five factors demonstrated high reliability (α > .75), Factors 6–9 exhibited weaker reliability, indicating the need for refinement. These results confirm that PhET simulations effectively enhance conceptual understanding and engagement, but also reveal additional dimensions of students’ learning experiences. Novelty: This study contributes to physics education research by providing a validated multidimensional instrument for evaluating PhET-based learning in rigid body equilibrium. The emergence of nine empirical factors highlights the complex nature of students’ perceptions and underscores the need for more nuanced measurement tools. Unlike prior research focusing solely on conceptual gains, this study emphasizes the psychometric validation of students’ experiences, offering a novel framework for assessing technology integration in physics education.
Enhancing Creative Thinking in Physics Education: A Systematic Review and Meta-Analysis Fauziah Rasyid; Heru Kuswanto; Supahar Supahar; Jayanti Kharisma Putri; Wahyu Dilla Abdullah; Sul Daeng Naba; Iqbal Ainur Rizki
Kasuari: Physics Education Journal (KPEJ) Vol. 9 No. 1 (2026): June 2026
Publisher : Universitas Papua, Jurusan Pendidikan Fisika FKIP Unipa

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.37891/kpej.v9i1.1047

Abstract

Creative thinking is a critical skill in physics education that enables students to develop effective problem-solving. This study aims to explore various interventions and their effects on enhancing creative thinking skills in physics education through a systematic review and meta-analysis. A keyword search across Scopus and ERIC identified 22 studies that met the criteria and were selected for analysis. The meta-analysis findings indicate that interventions implemented in physics learning significantly enhance creative thinking skills, with a very strong effect size. Among the types of interventions, instructional models demonstrated the largest effect size, highlighting their potential to foster creative thinking. Moderator analysis revealed significant variations across countries of study, sample size, intervention duration, and the physics topics involved. However, no significant differences were found for moderators such as publication type, education level, types of interventions applied, and instruments measuring creative thinking. These findings emphasise the importance of designing and adapting teaching strategies to enhance creative thinking skills in physics learning. This study contributes to strengthening the evidence for integrating creative thinking into physics education to meet the demands of the 21st century.
Factors Determining Socio-Scientific Issues in STEAM Education to Enhance Problem-Solving Skills for Pre-Service Teachers: Development and Validation of a Measurement Model Eko Hariyono; Laily Rosdiana; Mohammad Budiyanto; Muhammad Satriawan; Hasna Nabilah; Iqbal Ainur Rizki
Jurnal Pendidikan IPA Indonesia Vol. 15 No. 1 (2026): March 2026
Publisher : Universitas Negeri Semarang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15294/jpii.v15i1.40341

Abstract

This study aimed to develop and validate a measurement model of SSI–STEAM education for pre-service science teachers (PSTs), with particular attention to dimensions associated with problem-solving skill development. Using a cross-sectional survey design, data were collected from 173 PSTs enrolled in science education programmes in Indonesia. Exploratory Factor Analysis (EFA) and Confirmatory Factor Analysis (CFA) were conducted to identify and validate the latent constructs underpinning SSI–STEAM implementation. EFA results supported a clear two-factor model, consisting of enacted values and practices, affective learning, authentic contexts and activities, interdisciplinary thinking and integrated practices, and problem-solving skill reflection. CFA confirmed the adequacy of this structure, producing acceptable model-fit indices and satisfactory reliability and convergent validity across factors. To conclude, this study highlights the multidimensional nature of SSI–STEAM education and underscores the importance of value-driven instruction, interdisciplinary integration, authentic socio-cultural contexts, and reflective problem-solving in preparing PSTs to engage learners with complex real-world scientific issues. These insights offer valuable implications for curriculum design in science teacher education, which are also discussed.