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Development Of The Smarty-Ai Model Within The Understanding By Design Framework To Enhance Students Critical Thinking Skills Nurlinda Safitri; Indri Yani; Ratih Purnamasari; Hanifah Tri Nur Fadillah
JHSS (JOURNAL OF HUMANITIES AND SOCIAL STUDIES) Vol. 10 No. 02. (2026): JHSS (Journal of Humanities and Social Studies)
Publisher : UNIVERSITAS PAKUAN

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33751/jhss.v10i02..218

Abstract

This study aims to develop and examine the effectiveness of the SMARTY-AI Model within the Understanding by Design (UbD) framework integrated with Artificial Intelligence (AI) in improving elementary school students critical thinking skills. The research employed a Research and Development (R&D) method consisting of model development stages, expert validation, and effectiveness testing through a quasi-experimental design involving experimental and control groups. The findings revealed that the SMARTY-AI Model achieved a very high level of feasibility based on expert validation results, with an average score of 92.6%. Furthermore, the effectiveness test indicated a more significant improvement in learning outcomes in the experimental class compared to the control class. The N-Gain score in the experimental class was 0.61 (moderate category), while the control class obtained 0.29 (low category).These findings indicate that the integration of the Understanding by Design approach with Artificial Intelligence support in the SMARTY-AI Model is effective in enhancing elementary school students’ critical thinking skills. This model can serve as an innovative alternative for 21st century learning that emphasizes the development of higher-order thinking skills.
Developing Augmented Reality Media On Ecosystems In Science Learning For Grade Vii Students Indri Yani; Lufty Hari Susanto; Neng Dila Siti Fadilah; Alifia Siti Nurjanah; Dwi Sri Wahyuni; Radika Lesmana
JHSS (JOURNAL OF HUMANITIES AND SOCIAL STUDIES) Vol. 10 No. 02. (2026): JHSS (Journal of Humanities and Social Studies)
Publisher : UNIVERSITAS PAKUAN

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33751/jhss.v10i02..230

Abstract

The development of technology-based learning media has become an essential strategy for improving the quality of science education at the junior secondary school level, particularly in ecosystem topics that require students to understand the interrelationships among ecosystem components comprehensively. In classroom practice, students often encounter difficulties in understanding these concepts because the material is abstract in nature, while instruction is still predominantly conducted through lecture-based methods and textbook-centered learning. This study aimed to develop a Web Augmented Reality (AR)-based learning medium for ecosystem topics that is valid, practical, and effective for use in seventh-grade science learning. The research employed a Research and Development (R&D) approach using the ADDIE model, which consists of the Analysis, Design, Development, Implementation, and Evaluation phases. Data were collected through observations, interviews, expert validation, student response questionnaires, and pretest-posttest assessments. The results indicated that the developed learning media were categorized as valid based on evaluations conducted by both material and media experts. Student responses to the media reached a percentage of 78.06%, indicating that the media were considered practical and appropriate for classroom use. The effectiveness of the media was demonstrated by an increase in students’ mean scores from 2.40 on the pretest to 4.25 on the posttest, with an N-gain score of 0.71 (71%), which falls into the high category. Furthermore, the Paired Sample t-Test yielded a significance value of 0.000 (p < 0.05), indicating a statistically significant difference between students’ learning outcomes before and after the implementation of the media. Therefore, the Web Augmented Reality-based learning media on ecosystem topics can be considered valid, practical, and effective in supporting science learning for seventh-grade students.