Trisnaningsih, Sari
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Visual Representations in Indonesian Chemistry Textbooks: Supporting Deep Learning for 2025 Educational Goals Ridhani, Jovita; Trisnaningsih, Sari; Fitriani, Ika Nur
Indonesian Journal of Instructional Media and Model Vol 7 No 1 (2025): Indonesian Journal of Instructional Media and Model
Publisher : Universitas Veteran Bangun Nusantara

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32585/ijimm.v7i1.6438

Abstract

Indonesian students struggle with abstract science concepts, as reflected in their low performance in international assessments. The primary learning resource is still textbook, and their visual materials are significant in helping students understand abstract concepts, especially in chemistry. However, visuals are often underutilized in science education. To address this gap, this study analyzes visual representations in Indonesian chemistry textbooks of the 2013 Curriculum to inform future improvements aligned with Indonesia’s 2025 educational goals. Two widely used textbooks for grades X and XII were examined to explore differences across grades. Using qualitative content analysis and a modified rubric, the study reveals that symbolic visuals that have explicit surface features (such as chemical formula and equations) dominate, while macroscopic and sub-microscopic visuals are underrepresented. In relation to the text, most visuals are completely related with the content but not directly referred to in the text, which may hinder students’ understandings. Positively, most visuals are contiguous (positioned close to the related text) with the related text and categorized as either with-caption or incorporated into text. These findings highlight gaps in textbook design, such as overreliance on symbolic visuals and poor visual-text integration. To support deep learning, textbooks should include multi-level visuals, ensure direct referencing, and provide clear captions. These changes are essential for fostering deeper understanding and aligning with Indonesia’s 2025 educational goals, offering insights for improving textbook quality. Indonesian students struggle with abstract science concepts, as reflected in their low performance in international assessments. The primary learning resource is still textbook, and their visual materials are significant in helping students understand abstract concepts, especially in chemistry. However, visuals are often underutilized in science education. To address this gap, this study analyzes visual representations in Indonesian chemistry textbooks of the 2013 Curriculum to inform future improvements aligned with Indonesia’s 2025 educational goals. Two widely used textbooks for grades X and XII were examined to explore differences across grades. Using qualitative content analysis and a modified rubric, the study reveals that symbolic visuals that have explicit surface features (such as chemical formula and equations) dominate, while macroscopic and sub-microscopic visuals are underrepresented. In relation to the text, most visuals are completely related with the content but not directly referred to in the text, which may hinder students’ understandings. Positively, most visuals are contiguous (positioned close to the related text) with the related text and categorized as either with-caption or incorporated into text. These findings highlight gaps in textbook design, such as overreliance on symbolic visuals and poor visual-text integration. To support deep learning, textbooks should include multi-level visuals, ensure direct referencing, and provide clear captions. These changes are essential for fostering deeper understanding and aligning with Indonesia’s 2025 educational goals, offering insights for improving textbook quality.
How to Differentiate Instruction for Deeper Learning Using Cognitive Task Analysis Juwita, Ratna; Sukmawati, Fatma; Santosa, Eka Budhi; Cahyono, Budi Tri; Prihatin, Relly; Suparmi, Suparmi; Ridhani, Jovita; Trisnaningsih, Sari
Jurnal Penelitian Kebijakan Pendidikan Vol 18 No 2 (2025)
Publisher : Pusat Standar dan Kebijakan Pendidikan, BSKAP, Kemendikbudristek

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24832/jpkp.v18i2.1312

Abstract

This study aims to explore the requisite skills for Differentiated instruction (DI) implementation and to identify best practices across school levels. Differentiated instruction (DI) for deeper learning is essential for responding to students’ diverse needs. Using 112 self-reported essays, interviews, videotaped practices, and experts meeting, this study employed Cognitive Task Analysis (CTA) to capture the knowledge experts use to carry out differentiation. The results revealed a 4:9:2 skill formula across the preparation, implementation, and evaluation phases. Notable differences across school levels emerged. In the preparation phase, primary and secondary school teachers prepared varied materials (34%) and grouping strategies (44%), whereas only a few kindergarten teachers (3%) employed these strategies. In the implementation phase, most primary (68%) and secondary (79%) teachers tailored materials to students' learning styles by offering content in multiple formats; however, only a small proportion of kindergarten teachers (26%) differentiated content, focusing instead on process differentiation and additional learning support. Despite the differing contexts, the study also identified cross-level similarities. Future research should investigate the long-term impacts of DI on student achievement and engagement, as well as examine DI practices in diverse educational settings.