cover
Contact Name
Wayan Suana
Contact Email
wsuane@gmail.com
Phone
+6281379770750
Journal Mail Official
jpf.pspf@fkip.unila.ac.id
Editorial Address
Jl. Sumantri Brojonegoro No. 1, L Building, 3rd Floor, Physics Education Program, FKIP, University of Lampung, Bandar Lampung, Indonesia, Post Code 35145
Location
Kota bandar lampung,
Lampung
INDONESIA
Jurnal Pembelajaran Fisika
Published by Universitas Lampung
ISSN : 23020105     EISSN : 26849828     DOI : http://dx.doi.org/10.23960/jpf
Core Subject : Education,
Jurnal Pembelajaran Fisika (p-ISSN: 2302-0105, e-ISSN: 2684-9828) is a media publication for researchers, lecturers, teachers, educational practitioners, and students, related to issues of physics teaching and learning innovation which include: 1. Assessment including formative, summative, authentic/work-integrated, etc.; 2. Media development and physics learning design-based ICT including printed, visual, and electronic media; 3. Inquiry-based learning including inquiry strategy, structured, controlled, guided, and free inquiry; 4. STEM Education; 5. Scientific Approach including scientific method as an ongoing method; 6. Blended and mobile learning. Jurnal Pembelajaran Fisika publishes articles that fulfil certain qualities and publications, which can provide knowledge and wisdom for increasing physics learning from lower to higher education levels.
Articles 14 Documents
Search results for , issue "Vol 12, No 2 (2024): Jurnal Pembelajaran Fisika" : 14 Documents clear
Identification of Physics Learning Models in Improving Learners’ Creative Thinking Skills: A Systematic Literature Review Sabila, Amalia Nufus; Wati, Mustika; Dewantara, Dewi; Lasiani, Lasiani
Jurnal Pembelajaran Fisika Vol 12, No 2 (2024): Jurnal Pembelajaran Fisika
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Editorial Team, Preface, and Table of Content Vol. 12 No. 2 JPF Vol. 12 No. 2, Editor
Jurnal Pembelajaran Fisika Vol 12, No 2 (2024): Jurnal Pembelajaran Fisika
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Analysis of Understanding Concepts and Misconceptions in Physics Learning: SLR (Systematic Literature Review) Sukmawati, Sukmawati; Wati, Mustika; Dewantara, Dewi; Setiono, Isnaini Agus
Jurnal Pembelajaran Fisika Vol 12, No 2 (2024): Jurnal Pembelajaran Fisika
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An educator often faces the challenge of ensuring that students truly understand the concepts taught or not, especially in physics learning. As one of the branches of science, physics aims for students to be competent in mastering the principles and concepts of physics. Misunderstanding of concepts will certainly hinder learning objectives so concrete steps are needed to overcome misconceptions. If misconceptions can be overcome, this will have a positive impact on students' conceptual understanding. This study aims to analyze conceptual understanding and misconceptions in physics learning. The method used is the Systematic Literature Review (SLR) through the PRISMA (Preferred Reporting Items for Systematic Reviews and Meta-Analyses) procedure. This study analyzed 24 national articles accredited by sinta 1, sinta 2, and scopus that discussed students' conceptual understanding and misconceptions in physics learning. The results showed that using innovative learning models such as the Learning Cycle (LC) 7E, generative learning, and guided inquiry significantly improved students' conceptual understanding. In addition, the development of modules based on Science, Environment, Technology, and Society (SETS) and the use of technology such as E-LKPD based on the Physics Toolbox Sensor Suite proved effective in strengthening the understanding of physics concepts. On the other hand, misconceptions are still widely found in the basic concepts of physics, which are identified through the Three-Tier Test and Four-Tier Diagnostic Test. Therefore, the selection of the right learning model and the use of technology in teaching are key factors to reduce misconceptions and improve students' understanding of physics.Keywords: Misconceptions, physics learning, tiered diagnostic tests, understanding concepts. DOI: http://dx.doi.org/10.23960/jpf.v12.n2.202403
Design of Augmented Reality-Based Learning Media Integrating Islamic Values for Teaching Atomic Structure Wiliyanti, Vandan; Yuberti, Yuberti
Jurnal Pembelajaran Fisika Vol 12, No 2 (2024): Jurnal Pembelajaran Fisika
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Abstract

This research examines the creation of augmented reality-based educational media for physics that incorporates Islamic principles, primarily aimed at teaching atomic structure. The study sought to ascertain the appropriateness of augmented reality (AR) media in improving students' comprehension of atomic structure while simultaneously imparting Islamic precepts. This study utilizes the Research and Development (R&D) methodology, consistent with the ADDIE paradigm (analysis, design, development, implementation, and evaluation). Data was acquired by administering a questionnaire to specialists in media, materials, and Islamic religion to assess the viability of the learning medium. The questionnaire addressed three primary aspects: media design, content relevance, and the incorporation of Islamic principles. This research employs descriptive quantitative and qualitative analysis approaches. The study concentrated on evaluating the development of AR media, its practicality, and the congruence of the content with Islamic beliefs. The findings of this study demonstrate that the AR-based learning medium is exceptionally appropriate for physics instruction. The media validation achieved a score of 86%, the material validation received 88%, and the integration of Islamic principles attained 85%, indicating the medium's efficacy and suitability. This augmented reality educational medium facilitates the cognitive and ethical maturation of students, underscoring its advantages for attaining both scholarly superiority and moral advancement.Keywords: Augmented reality, Islamic values, atomic structure, learning media, ADDIE modelDOI: http://dx.doi.org/10.23960/jpf.v12.n2.202406

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