Hidayati Hidayati
Department of Physics Universitas Negeri Padang,Padang,Indonesia.

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Effects of E-Module Integrated Problem Based Learning Model of Fluid Material on Student’s Learning Outcomes Amelia Agustin; Hidayati Hidayati; Fatni Mufit; Renol Afrizon
Jurnal Penelitian Pembelajaran Fisika Vol. 12 No. 2 (2026): JPPF (Jurnal Penelitian Pembelajaran Fisika) : In Progress
Publisher : Universitas Negeri Padang in collaboration with Association of Mathematics and Natural Sciences Institution for Education of Teaching Staff Indonesia (AMLI)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24036/jppf.v13i2.60

Abstract

Improving students’ physics learning outcomes is one of the primary goals of implementing the Independent Curriculum, which emphasizes active, independent, and student-centered learning, However, students learning outcomes on fluid materials remain relatively low because the teaching materials commonly used in schools have not fully facilitated active learning and problem-solving activities. To address this issue, the use of Problem-Based Learning (PBL)-based E-Modules is proposed as an alternative solution to create more meaningful and independent learning experiences. This study aims to analyze the effect of the use of Problem Based Learning (PBL)-based E-Modules on physics learning outcomes of grade XI students of SMA Negeri 14 Padang on fluid materials. The research uses a quasi-experimental method with a Posttest-Only Control Design. The research sample consisted of 71 students divided into experimental classes and control classes. The experimental class uses PBL-based E-Modules, while the control class uses teaching materials commonly used in schools. The research data includes learning outcomes of cognitive, affective, and psychomotor aspects obtained through tests and observation sheets. The results showed that the average learning outcomes of students in cognitive, affective, and psychomotor aspects in the experimental class were higher than in the control class. These findings show that the use of Problem Based Learning-based E-Modules is effective in improving students' physics learning outcomes on fluid materials. The use of PBL-based E-Modules provides benefits in creating more active, meaningful learning, and supports the development of students' knowledge, attitudes, and skills in learning fluid material.
Need Analysis to Develop Alternative Energy E-Student Worksheet Integrated Inquiry Learning and Local Wisdomto Facilitate Students' Critical Thinking Skills Tiara Julia; Emiliannur Emiliannur; Hidayati Hidayati; Renol Afrizon
Jurnal Penelitian Pembelajaran Fisika Vol. 12 No. 2 (2026): JPPF (Jurnal Penelitian Pembelajaran Fisika) : In Progress
Publisher : Universitas Negeri Padang in collaboration with Association of Mathematics and Natural Sciences Institution for Education of Teaching Staff Indonesia (AMLI)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24036/jppf.v13i2.62

Abstract

This study aims to develop an E-Student Worksheet on alternative energy integrated with Inquiry Based Learning (IBL), local wisdom, and Canva AI to facilitate the critical thinking skills of Phase E senior high school students. This research is motivated by the low level of students' critical thinking skills, limited digital teaching materials, and difficulties in understanding physics concepts. To address these challenges, a digital E-Student Worksheet was developed by integrating inquiry-based activities, local wisdom of West Pasaman, and interactive Canva AI features. This study employed the Research and Development (R&D) method using the 4D model, consisting of Define, Design, Develop, and Disseminate stages. Research data were collected through preliminary studies, student needs questionnaires, teacher interviews, and validity and practicality assessments. The preliminary study showed that students' critical thinking skills were relatively low, with an average achievement of 49.70%. The developed E-Student Worksheet is expected to serve as a valid and practical digital learning resource that facilitates students' critical thinking skills in physics learning