Enhancing Grade-10 students' conceptual understanding of ionic bonding through small-scale experiments in conjunction with particulate-level model kits

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Abstract

Understanding ionic bonding requires students to link observable phenomena with symbolic and particulate-level representations, a task many find challenging. This study examined a 5E inquiry-based instructional intervention integrating small-scale experiments (SSE) and particulate-level model (PLM) kits to support Grade-10 students' understanding of ionic bonding. Thirty-two students participated in four classroom-based learning sessions. Data were collected through a two-tier conceptual test, particulate-level drawing tasks, and semi-structured interviews. Post-test scores were significantly higher than pre-test scores (p < 0.05), with many students shifting from partial understanding with misconceptions to more scientifically coherent explanations. Analysis of particulate-level mental model drawings and interviews revealed improved particulate-level reasoning, particularly in depicting ion separation, hydration, and distinctions between soluble and sparingly soluble ionic compounds. The findings suggest that combining SSE and PLM within a 5E inquiry framework supports conceptual change by helping students coordinate macroscopic observations, symbolic representations, and particulate-level models of ionic bonding.

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Nugultham, K., Tamuang, S., Seebunrueng, K., & Supasorn, S. (2026). Enhancing Grade-10 students’ conceptual understanding of ionic bonding through small-scale experiments in conjunction with particulate-level model kits. Chemistry Teacher International. https://doi.org/10.1515/cti-2026-0008

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