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Pelatihan Pembuatan KIT Energi Alternatif untuk Mendukung Pembelajaran Model PjBL Meta Yantidewi; Imam Sucahyo; Mita Anggaryani; Lydia Rohmawati; Muhammad Habibbulloh; Endah Rahmawati
Madaniya Vol. 4 No. 4 (2023)
Publisher : Pusat Studi Bahasa dan Publikasi Ilmiah

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.53696/27214834.676

Abstract

Guru adalah salah satu pilar pendidikan berkualitas yang berperan penting sebagai fasilitator dan motivator, termasuk juga guru fisika. Sebagai fasilitator dan motivator, tentunya guru fisika harus mampu memfasilitasi dan memotivasi siswa dalam pembelajaran fisika. Pembelajaran fisika dalam Kurikulum Merdeka menuntut para siswa berpikir kritis dan inovatif melalui proses penemuan dengan menggunakan model pembelajaran berbasis proyek (PjBL). Salah satu penerapan model pembelajaran PjBL di mata Pelajaran fisika adalah pada materi energi alternatif. Sayangnya, guru-guru masih kesulitan menerapkannya. Fakta inilah yang mendorong tim PKM Jurusan Fisika FMIPA Universitas Negeri Surabaya mengadakan kegiatan pengabdian berupa pelatihan pembuatan KIT energi alternatif untuk mendukung pembelajaran model PjBL. Kegiatan PKM ini dibagi dalam beberapa tahapan, yakni: identifikasi masalah dan kebutuhan mitra, persiapan PKM, pelaksanaan PKM pelatihan pembuatan KIT Energi Alternatif, dan melakukan evaluasi hasil kegiatan PKM. Sebanyak 22 orang guru fisika yang tergabung dalam MGMP Fisika Kota Surabaya menjadi peserta pelatihan. Kedua puluh dua orang guru tersebut sangat antusias dalam mengikuti kegiatan. Bahkan dari hasil angket respon dengan menggunakan Google Form yang disebar ke peserta nampak bahwa materi pelatihan yang diberikan tergolong baru, sangat menarik, dan inspiratif. Hasil angket juga menunjukkan bahwa materi pelatihan relevan dengan kebutuhan guru di sekolah.
Assessing Higher-Order Thinking Skills in Physics: A Comparative Study of Paper-Based and Computer-Based Method Rahman Eka Cahya Rahman Eka Cahya; Budi Jatmiko Budi Jatmiko; Mita Anggaryani; Dwikoranto; Salma Hasna Hamiydah
Journal of Digitalization in Physics Education Vol. 1 No. 2 (2025): August
Publisher : Universitas Negeri Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26740/jdpe.v1i2.41235

Abstract

Objective: This research is a quasi-experimental investigation with a non-equivalent control group design, aiming to analyse the differences in the use of CBT and PBT methods for HOTs' question assessments. Method: This research employed a quantitative approach, conducting statistical tests using SPSS 26 on each of 35 students by comparing the N-Gain results in the control group using PBT and the experimental group using CBT. Furthermore, normality tests, homogeneity tests, and independent sample-T tests were conducted to determine the significance of the differences between CBT and PBT results. Results: The N-Gain of the experimental group is 0.7652 higher than the N-Gain of the control group is 0.2272. Therefore, the CBT method is more effective than the PBT method. The datum distributed normally and homogeneously both to control group and experimental group, resulting the Sig. (2-tailed) in the independent sample-T test is 0.000 < 0.05. It is concluded, that there is a significant difference between the use of the PBT and CBT methods for assessing HOTs questions. Novelty: This research compares the use of digital and conventional technology in physics learning, especially to improve students' cognitive domain in achieving high-order thinking skills (HOTs), which is one of the important aspects of 21st-century education.
Implementation of PhET Simulation on Motion Material to Improve Problem Solving Skills of Middle School Students Nur Hidayati; Munasir Munasir; Mita Anggaryani; Muhammad Satriawan
Jurnal Penelitian Pendidikan IPA Vol 11 No 8 (2025): August
Publisher : Postgraduate, University of Mataram

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29303/jppipa.v11i8.11592

Abstract

This study aimed to enhance junior high school students’ problem-solving skills through the integration of PhET simulations within a Problem-Based Learning (PBL) model. The research design employed was Classroom Action Research (CAR), carried out in two iterative cycles consisting of planning, implementation, observation, and reflection stages. A total of 60 Grade VII students from two parallel classes at a private junior high school in Surabaya participated in this study during the 2024–2025 academic year. Data collection involved pre-tests and post-tests for each cycle, focusing on both general learning outcomes and specific indicators of problem-solving ability. The data were analyzed quantitatively using the normalized gain (N-Gain) formula. Results showed that general learning outcomes improved from an N-Gain score of 0.29 in the first cycle (low category) to 0.69 in the second cycle (medium category). Problem-solving skills demonstrated a stronger gain, increasing from 0.47 (medium) to 0.85 (high). These improvements suggest that combining differentiated instruction and simulation-based learning effectively fosters students’ conceptual understanding and higher-order thinking. The study concludes that the PhET-assisted PBL approach is a promising instructional model to develop both cognitive and analytical competencies in science education, particularly in motion and force topics.
Trend Analysis of VR- and AR-Based Learning Media Development in Physics Education in the 2015–2025 Period Handoko Bintoro; Mita Anggaryani; Mohd Zaidi Bin Amiruddin
Inovasi Pendidikan Fisika Vol. 14 No. 3 (2025): Volume 14 Nomor 3 Tahun 2025
Publisher : Universitas Negeri Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

This study analyzes trends in the development of Virtual Reality (VR) and Augmented Reality (AR)-based learning media in physics education from 2015 to 2025. A systematic literature review (SLR) following the PRISMA framework was conducted, resulting in 103 selected articles. The analysis focuses on the distribution of physics topics, learning activities, instructional stages, and learning actors. The results show that VR/AR is predominantly used in mechanics and electromagnetism, while solid-state physics is least represented. Learning activities are mainly dominated by visualization/animation and experimental activities, highlighting the role of VR/AR in supporting interactive and experiential learning. These technologies are most frequently applied in the exploration stage, with limited use in the introduction stage. In addition, individual students are the primary users, indicating a strong emphasis on self-directed learning. Overall, VR and AR demonstrate strong potential to enhance conceptual understanding and engagement in physics learning, although their implementation remains uneven across topics and instructional contexts
Bibliometric Study: Trends of Development Digital Media to Improve 21st Century Students' Skills in Physics Learning Mohamad Wahdiansyah Arrahmat; Mita Anggaryani; Oka Saputra; Noval Maleakhi Hulu
Journal of Law and Bibliometrics Studies Vol. 1 No. 2 (2025): August
Publisher : Sekolah Tinggi Agama Islam Sabilul Muttaqin Mojokerto

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.63230/jolabis.1.2.89

Abstract

Objective: This bibliometric study aims to analyze trends in the development of digital media to enhance 21st-century skills among students in physics learning. It seeks to map research patterns, identify key contributions, collaborations, and emerging themes, while highlighting gaps in the application of interactive digital tools like animations, virtual reality (VR), and augmented reality (AR) to foster critical thinking, creativity, collaboration, and communication in physics education. Method: This study used method with a bibliometric literature review was conducted using data from the Scopus database and analyzed using VOSviewer and Microsoft Excel. Results: The study's results, which show a significant increase in publication trends post-2020, peaked at 47-79 articles annually, driven by COVID-19-induced shifts to online learning. Key co-occurrence networks revealed dominant keywords like "digital media," "critical thinking," "visualization," "teaching," "students," "collaborative learning," "e-learning," "three-dimensional," and "technology," clustered into interconnected themes. Novelty: This study provides the first comprehensive bibliometric mapping of digital media trends specifically tailored to physics education in enhancing 21st-century skills. It offers actionable recommendations for integrating interactive visualizations in physics curricula, bridging gaps in Indonesian education amid technological advancements.
Bibliometric Study: Trends of Development Digital Media to Improve 21st Century Students' Skills in Physics Learning Mohamad Wahdiansyah Arrahmat; Mita Anggaryani; Oka Saputra; Noval Maleakhi Hulu
Journal of Law and Bibliometrics Studies Vol. 1 No. 2 (2025): August
Publisher : Sekolah Tinggi Agama Islam Sabilul Muttaqin Mojokerto

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.63230/jolabis.1.2.89

Abstract

Objective: This bibliometric study aims to analyze trends in the development of digital media to enhance 21st-century skills among students in physics learning. It seeks to map research patterns, identify key contributions, collaborations, and emerging themes, while highlighting gaps in the application of interactive digital tools like animations, virtual reality (VR), and augmented reality (AR) to foster critical thinking, creativity, collaboration, and communication in physics education. Method: This study used method with a bibliometric literature review was conducted using data from the Scopus database and analyzed using VOSviewer and Microsoft Excel. Results: The study's results, which show a significant increase in publication trends post-2020, peaked at 47-79 articles annually, driven by COVID-19-induced shifts to online learning. Key co-occurrence networks revealed dominant keywords like "digital media," "critical thinking," "visualization," "teaching," "students," "collaborative learning," "e-learning," "three-dimensional," and "technology," clustered into interconnected themes. Novelty: This study provides the first comprehensive bibliometric mapping of digital media trends specifically tailored to physics education in enhancing 21st-century skills. It offers actionable recommendations for integrating interactive visualizations in physics curricula, bridging gaps in Indonesian education amid technological advancements.
Physics Learning Utilizing VIRRIC (Virtual Reality Hydroelectric): Effects on Students' Learning Outcomes and Experiences Aminudin Zakaria; Mita Anggaryani; Tinezia Cendani; Nina Fajriah Citra
Journal of Digitalization in Physics Education Vol. 2 No. 1 (2026): April
Publisher : Universitas Negeri Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26740/jdpe.v2i1.52253

Abstract

Objective: This study explores the impact of physics learning using VR-based media on students' learning outcomes and learning experiences. This study also examined gender differences in gains. Method:  This study uses the one-group pre-test and post-test methods to measure learning outcomes and a questionnaire to determine student responses. These student responses assess how students experience learning after using the Virtual Reality Hydroelectric (VIRRIC) media. This paper reports on the design, implementation, and impact of applying VIRRIC. VIRRIC was created using MilleaLab Creator software, a VR platform inspired by the Karangkates Hydroelectric Power Plant. The inspiration for this real renewable energy product is to support students in contributing to SDG 7. VIRRIC was tested in science class learning, and 30 high school students were tested. Results:  The trial results showed that 93% of students had a moderate n-gain (average n-gain = 0.433), indicating a decent increase in learning outcomes before and after using VIRRIC. In addition, the application of VIRRIC was well received by the students, with a questionnaire score of 0.76, indicating that they had good learning experiences in physics through VIRRIC. Both results show a positive correlation between STEM activities using VIRRIC and students' learning outcomes and learning experiences. Therefore, VIRRIC can be a medium for teaching, particularly on the renewable energy topic. Novelty: This study provides scientific evidence of VR technology's effectiveness in supporting physics learning. It provides empirical evidence of how conventional physics learning can be transformed into digitalization using VR.
Learning from Earthquakes: The Role of Socio-Scientific Issues in Developing Students’ Science Argumentation Skills Atika Fatharani; Madlazim Madlazim; Mita Anggaryani; Muhammad Satriawan; Kiki Septaria
Prisma Sains : Jurnal Pengkajian Ilmu dan Pembelajaran Matematika dan IPA IKIP Mataram Vol. 14 No. 1: January 2026
Publisher : Universitas Pendidikan Mandalika

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33394/j-ps.v14i1.16362

Abstract

This study aims to develop and test the effectiveness of learning modules based on Socio-Scientific Issues with Problem-Based Learning (SSI-PBL) approach in improving students' scientific argumentation skills on the topic of earthquake mitigation. The research method used is Research and Development with the 4D model (Define, Design, Develop, Disseminate) involving 95 grade VIII students at SMP Negeri 1 Maduran, Lamongan. Data collection techniques included scientific argumentation tests (pre-test and post-test), observation of student activities and learning implementation, and student response questionnaires. Data were analyzed descriptively quantitatively and inferentially using paired t-test, gain score and ANOVA test to measure skill improvement. The results showed a significant improvement in students' argumentation skills, with an average post-test score of 68% compared to 21% in the pre-test, as well as improvements in the indicators of claims (from 28% to 72%), use of data (15% to 65%), and preparation of rebuttal (25% to 58%). The SSI-PBL design facilitated deeper engagement by situating students in authentic, real-world contexts that required critical examination of seismic data, policy debates, and ethical considerations. These findings suggest that the SSI-PBL module is able to bridge the gap between theory and practice in disaster learning and strengthen 21st century skills such as critical thinking, problem solving, and public policy literacy. Results underscore the module’s effectiveness in fostering scientific literacy, critical thinking, and policy awareness, essential for disaster-resilient communities.
Analisis Kevalidan E-Book Interaktif Berbasis Problem Based Learning pada Materi Pemanasan Global dan Perubahan Iklim untuk Melatihkan Berpikir Kritis Sindya Lailatust Tsalist; Mita Anggaryani
Inovasi Pendidikan Fisika Vol. 14 No. 3 (2025): Volume 14 Nomor 3 Tahun 2025
Publisher : Universitas Negeri Surabaya

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Abstract

Penelitian ini bertujuan untuk menganalisis kevalidan e-book interaktif berbasis Problem Based Learning (PBL) pada materi Pemanasan Global dan Perubahan Iklim. Pengembangan e-book interaktif ini dilakukan sebagai media pembelajaran yang dirancang untuk mendukung pelatihan keterampilan berpikir kritis peserta didik. Metode penelitian yang digunakan adalah Research and Development (R&D) dengan model ADDIE (Analysis, Design, Development, Implementation, Evaluation), yang difokuskan pada tahap validasi produk. Proses validasi dilakukan oleh tiga validator ahli yang menilai aspek materi, bahasa, dan media. Hasil validasi menunjukkan bahwa e-book interaktif berbasis PBL memperoleh skor rata-rata sebesar 92%, yang termasuk dalam kategori sangat valid. Temuan ini menunjukkan bahwa e-book yang dikembangkan telah memenuhi kriteria kelayakan sebagai media pembelajaran yang sesuai untuk digunakan dalam proses pembelajaran terkait isu-isu lingkungan, khususnya pada materi pemanasan global dan perubahan iklim. Dengan demikian,media pembelajaran e-book interaktif dinyatakan layak untuk digunakan dalam tahap implementasi pembelajaran.
Bahasa Inggris Ali Khasan Al Farishi; Binar Kurnia Prahani; Mita Anggaryani; Muhammed Akif Kurtulus
JPPS (Jurnal Penelitian Pendidikan Sains) Vol. 15 No. 1 (2025)
Publisher : Universitas Negeri Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26740/jpps.v15n1.p17-34

Abstract

Objective: Physics learning on sound wave topics, particularly open-pipe organ systems, is often perceived as abstract due to the limited availability of contextual and meaningful learning media. This study aims to develop and evaluate the feasibility of the BASA Booklet (Bamboo Acoustic STEM Approach) as a physics learning medium that integrates the STEM approach, gamification, and ethnophysics through the local wisdom context of bamboo flute instruments. Method: This study employed a Research and Development (R&D) approach using a modified Borg and Gall development model, implemented up to the main field-testing stage. The research subjects consisted of physics teachers and pre-service physics teachers as potential users of the developed media. Data were collected using feasibility questionnaires that assessed media design, learning content, and gamification aspects, and were analyzed descriptively. Results:   The results of the main field testing indicate that the BASA Booklet received positive responses across all evaluated aspects, demonstrating that the developed media is conceptually and pedagogically feasible. Respondents perceived the booklet as visually engaging, easy to use, and supportive of independent and structured learning, particularly for abstract physics concepts related to sound waves and open-pipe organ principles.  Novelty: The novelty of this study lies in the development of a culture-based, gamified STEM booklet grounded in ethnophysics, which integrates local cultural contexts into physics learning. This model offers an alternative approach to making abstract physics concepts more contextual, meaningful, and relevant. Nevertheless, further studies are required to examine the classroom implementation and effectiveness of the BASA Booklet.