Asri Widowati
Master of Science Education Study Program, Universitas Negeri Yogyakarta, Indonesia

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Integration of Artificial Intelligence, Digital Multimedia, and Indigenous Knowledge In Science Education: A Systematic Review Nuriyana Eka Arsanti; Asri Widowati; Winarto
NUSRA : Jurnal Penelitian dan Ilmu Pendidikan Vol. 7 No. 3 (2026): NUSRA: Jurnal Penelitian dan Ilmu Pendidikan, Agustus 2026
Publisher : LPPM Institut Pendidikan Nusantara Global

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55681/nusra.v7i3.6240

Abstract

Science education in the 21st century requires transformative approaches through the integration of Artificial Intelligence (AI), digital multimedia, and indigenous knowledge to enhance scientific literacy and sustainability awareness. However, comprehensive syntheses integrating these three elements remain limited. This study aims to (1) map research trends on the integration of AI, digital multimedia, and indigenous knowledge in science education from 2015 to 2025, (2) examine their effectiveness in improving scientific literacy, (3) analyze their contribution to sustainability awareness, and (4) identify research gaps. This study employed a systematic literature review (SLR) using the PRISMA 2020 protocol across Scopus, ScienceDirect, and Google Scholar databases. From 487 identified articles, 32 empirical and research-and-development studies met the inclusion criteria. The results indicate three major developmental phases: multimedia-augmented reality (2015-2019), pedagogy-technology integration (2020-2022), and AI-indigenous knowledge-sustainability convergence (2023-2025). The synergistic integration of these elements demonstrates greater effectiveness than conventional approaches in improving scientific literacy. Furthermore, AI and multimedia grounded in indigenous knowledge contribute to sustainability awareness through contextualization, interactive visualization, and value internalization. Five major research gaps were identified, particularly the absence of integrated learning development combining AI, digital multimedia, and Suku Anak Dalam ethnobotany within an Understanding by Design framework at the junior high school level. These findings highlight the potential for developing EthnoRimba Interactive multimedia as a comprehensive and innovative learning solution.
Analisis Kebutuhan Pengembangan E-Module IPA Problem-Based Learning Berorientasi Hots Bagi Siswa SMP Annisa Wildayani Sebayang; Susilowati Susilowati; Asri Widowati
NUSRA : Jurnal Penelitian dan Ilmu Pendidikan Vol. 7 No. 3 (2026): NUSRA: Jurnal Penelitian dan Ilmu Pendidikan, Agustus 2026
Publisher : LPPM Institut Pendidikan Nusantara Global

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55681/nusra.v7i3.6402

Abstract

This study aims to analyze the needs for developing a Problem-Based Learning (PBL)-based science e-module oriented toward Higher Order Thinking Skills (HOTS) to support critical thinking skills and self-regulated learning among junior high school students. A quantitative descriptive design was employed. Data were collected primarily through a validated student questionnaire (20 items, 4-point Likert scale) administered to 45 seventh-grade students at SMP Adzkia Islamic School Medan, supplemented by a semi-structured teacher interview as supporting data for contextual interpretation. The questionnaire demonstrated good reliability (Cronbach’s α = 0.84). Data were analyzed using descriptive statistics (mean, standard deviation, and percentage). Results showed that science learning conditions were in the high category (M = 3.67; 91.8%), while students’ critical thinking skills (M = 2.85; 71.3%) and self-regulated learning (M = 2.72; 68.0%) were in the moderate category. Teacher interview data provided contextual support for these quantitative findings and confirmed the need for interactive, HOTS-oriented digital teaching materials. These findings empirically support the development of a PBL-HOTS-based e-module as a relevant solution to improve the quality of science learning at the junior high school level.