Rhischa Assabet Shilla
The University of Sydney, Australia

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Augmented Reality Utilization for Mathematical Thinking Skills in Indonesian Junior High Schools Juwita Rini; Eko Pradipta Kurnaedi; Nurul Husnah Mustika Sari; Rhischa Assabet Shilla
Hipotenusa: Journal of Mathematical Society Vol. 7 No. 1 (2025): Hipotenusa : Journal of Mathematical Society
Publisher : Program Studi Tadris Matematika Universitas Islam Negeri (UIN) Salatiga

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.18326/hipotenusa.v7i1.3942

Abstract

Augmented Reality (AR) is one of the technologies used in Indonesian junior high school mathematics learning. This study aims to conduct a systematic literature review on the use of AR and its influence on mathematical thinking skills at the junior high school level from 2020 to 2024. Mathematical thinking skills in this study are focused on students' problem-solving skills, reasoning skills, creative thinking skills, and critical thinking skills The Systematic Literature Review method is used by reviewing, analyzing, and synthesizing findings from 11 previous empirical studies on augmented reality articles at the junior high school level related to mathematical abilities (problem solving, reasoning, creative thinking, or critical thinking) conducted in Indonesia, sourced from the Google Scholar database (indexed Sinta 1 to Sinta 3) and Scopus (articles and proceedings) published in 2020-2024, in English or Indonesian, and full-text articles are available. This study found that researchers have used various methods to investigate AR in junior high school mathematics education, with quasi-experimental designs, often involving control groups, being the most common. Geometry emerged as the most frequently studied topic. AR-based instruction has been shown to improve junior high school students' mathematical skills in Indonesia, demonstrating a significant impact on academic achievement and critical thinking compared to traditional methods, while also enhancing reasoning and problem-solving abilities. The potential challenges of integrating augmented reality into junior high school mathematics instruction include the need for sufficient technological devices, teachers' technological competencies, and effective learning time management.
Mapping the learning styles of pre-service enviromental science education in interaction with artificial intelligence on the topic of electric fields Jadnika Dwi Rakhmawan Amrullah; Nur Ahmad; Rhischa Assabet Shilla
Journal of Environment and Sustainability Education Vol. 3 No. 3 (2025)
Publisher : Education and Development Research

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62672/joease.v3i3.118

Abstract

The integration of Artificial Intelligence (AI) in education offers new opportunities to address complex science concepts, yet its interaction with learning styles remains underexplored. Objectives: This study aimed to identify the learning styles of pre-service environmental science teachers and examine how AI-based instruction supports their understanding of electric fields. Using a mixed-methods design, 72 undergraduate students completed the VARK questionnaire, pre- and post-tests on electric field concepts, and participated in interviews. The findings showed significant improvement in conceptual understanding after AI-based learning, with visual and kinesthetic learners benefiting most from simulations and interactive tasks, while aural and read/write learners showed limited gains. Implications: The study highlights the potential of AI to enhance learning through multimodal engagement, but also emphasises the need for inclusive designs that move beyond learning styles toward broader pedagogical frameworks.
The effect of metacognitive scaffolding-based student worksheets on junior high school students' argumentation skills in science learning Achmad Faisal Masruri; Rusdianto Rusdianto; Fauziyatul Iffah; Jadnika Dwi Rakhmawan Amrullah; Rhischa Assabet Shilla
Journal of Environment and Sustainability Education Vol. 4 No. 2 (2026)
Publisher : Education and Development Research

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62672/joease.v4i2.218

Abstract

Argumentation skills are a vital competence in 21st-century learning, playing a crucial role in developing students' critical thinking and communication abilities. However, preliminary observations indicate that students' argumentation skills at the junior high school level, specifically at senior high school 2 Panti, remain low. Although active student engagement during the learning process is critical, empirical studies on the use of metacognitive scaffolding-based worksheets to address this issue in science learning are still limited. This study aims to investigate the effect of metacognitive scaffolding–based student worksheets on students' argumentation skills to contribute to effective science teaching practices. This study employed a quasi-experimental method with a one-group pretest-posttest design. The research subjects consisted of 28 seventh-grade students (Class VII E) at senior high school 2 Panti during the odd semester of the 2025/2026 academic year. The research instrument utilized an argumentation skills essay test administered during the pretest and posttest phases, assessing three specific indicators: claim, evidence, and reasoning. Data were analyzed using descriptive statistics and a paired sample t-test. The results showed a significant increase in the mean argumentation score from 30.68 (pretest) to 76.64 (posttest). which was statistically supported by a paired sample t-test (p < 0.001). Based on these findings, it is concluded that student worksheets based on metacognitive scaffolding have a significant effect on students' argumentation skills. Consequently, this approach offers a specific contribution to the design of metacognition-based science teaching materials.