Zahra Fathanah
Universiti Malaya, Malaysia

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The Impact of Augmented Reality Based on STEM Integrated Cognitive Conflict-Based Learning on Student Scientific Literacy, Motivation, and Retention Fatni Mufit; Melisa Putri; Hidayati Hidayati; Selma Riyasni; Zahra Fathanah
JIPI (Jurnal IPA & Pembelajaran IPA) Vol. 9 No. 4: DECEMBER 2025
Publisher : Universitas Syiah Kuala, in collaboration with the Perkumpulan Pendidik IPA Indonesia (PPII), (MoU)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24815/jipi.v9i4.116

Abstract

This research is motivated by the low science literacy, motivation and retention of students in learning physics, especially in Newton's law of gravity and Kepler's law. The use of teaching materials in schools has not been able to develop these three things optimally. This study aims to determine the effectiveness of the use of STEM-integrated cognitive conflict-based augmented reality on improving students' science literacy, motivation, and retention on Newton's law of gravity material. The method used is pre-experimental with a one-group pretest-posttest design, which involves one experimental class. The research sample consisted of 30 students in grade XI Phase F3 of SMAN. The instruments of this research are a critical thinking test and a motivation questionnaire. The results showed a significant improvement in students' science literacy skills, motivation, and retention after being given treatment, with the average science literacy score increasing from 48.00 to 75.33, and the motivation score from 2.51 to 3.83. The Wilcoxon test showed significant differences in the variables of science literacy and motivation. Student retention reached 81.95 percent, included in the very high category despite a decrease from posttest to retest. It can be concluded that the use of STEM-integrated cognitive conflict-based augmented reality is effective in improving students' science literacy, motivation, and retention
Framework of Interactive E-Assessment with Cognitive Conflict Phenomena to Measure Critical Thinking Ability: Analysis of Teachers’ Perceptions and Students’ Perspectives Liza Okwan Admas; Fatni Mufit; Emiliannur; Fuja Novitra; Zahra Fathanah
JIPI (Jurnal IPA & Pembelajaran IPA) Vol. 9 No. 4: DECEMBER 2025
Publisher : Universitas Syiah Kuala, in collaboration with the Perkumpulan Pendidik IPA Indonesia (PPII), (MoU)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24815/jipi.v9i4.120

Abstract

The PISA 2022 results indicate that Indonesia ranked 69th out of 81 participating countries, reflecting students’ low critical thinking ability, particularly in understanding scientific concepts. This condition highlights the need for more effective and interactive learning and assessment practices. This study aims to describe a framework of an interactive electronic assessment (e-assessment) incorporating cognitive conflict phenomena based on teachers’ perceptions and students’ perspectives. The research employed a qualitative descriptive design involving 15 physics teachers and 254 senior high school students from public schools in Pesisir Selatan Regency. Data were collected using adapted questionnaires on teachers’ perceptions and students’ perspectives and analyzed using a Likert scale. The results showed that teachers’ perceptions of interactive e-assessment were categorized as very good across pedagogical aspects, facility conditions, performance expectations, behavioral intention, and social influence. Meanwhile, students’ perspectives were categorized as good, covering socio-emotional, efficiency, actual behavior, and preference aspects. Based on these findings, a framework of interactive electronic assessment based on cognitive conflict was developed and subsequently validated by four experts, with results indicating that the framework was valid. Overall, both teachers and students responded positively to the implementation of interactive e-assessment. These findings suggest that the development of cognitive conflict–based electronic assessment is essential, as it has the potential to enhance students’ critical thinking skills, learning motivation, and the overall quality of physics learning in the digital era