Claim Missing Document
Check
Articles

Found 11 Documents
Search

Implementation of the Cambridge Curriculum in Physics Learning Management in SIS Semarang Alhusni, Hanan Zaki; Suliyanah, Suliyanah; Deta, Utama Alan
Natural Science: Jurnal Penelitian Bidang IPA dan Pendidikan IPA Vol 10, No 1 (2024)
Publisher : Universitas Islam Negeri Imam Bonjol Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15548/nsc.v10i1.7850

Abstract

The curriculum is the backbone of education in every school. At the time of implementing the PLP in Semarang, the curriculum used at Secondary 3 (Junior High School class 9) to Junior College 2 (Senior High School class 3) in physics was Cambridge. The Cambridge Curriculum is an educational curriculum that gives students the skills they need for life, helping them achieve at school, university and work. This article aims to analyze the Cambridge curriculum in physics subjects at SIS Semarang. The method used in preparing the report on the results of the analysis was using interviews and direct observation at SIS Semarang. The school gives physics teacher the opportunity to develop learning styles, but demands that the syllabus must be discussed thoroughly, then the school also asks teachers to use active learning techniques, namely there is two-way interaction, such as students asking questions about the physics material, discussing it so that teacher can find out the students' abilities in the material. The school evaluates the implementation of the curriculum in the school which is always held every semester. There are several obstacles that may be faced in implementing the Cambridge curriculum, especially in physics subjects at SIS Semarang. Some of them are teacher readiness, required resources, student understanding, curriculum readiness to the local environment, and evaluation and assessment.
Exploration of Multiple Intelligences of High School Students in Physics Subjects as A Basis for Developing Learning Methods Alhusni, Hanan Zaki; Prahani, Binar Kurnia; Sunarti, Titin; Kurtuluş, Muhammed Akif; Wicaksono, Iwan; Salleh, Sallimah binti Hj Mohd; Bunyamin, Muhammad Abd Hadi; Wijaksono, Cahyo Febri
International Journal of Current Educational Research Vol. 4 No. 1 (2025): June
Publisher : Indonesia Emerging Literacy Education

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.53621/ijocer.v4i1.536

Abstract

Objective: This study aims to describe the profile of multiple intelligences among high school students in physics learning. The goal is to provide a basis for designing more adaptive and personalized instructional strategies that align with students' cognitive strengths. Method: A quantitative descriptive method with a survey approach was employed, involving 101 students from three different classes. Data were collected using a Likert-scale-based multiple intelligences questionnaire encompassing eight intelligence domains: verbal-linguistic, logical-mathematical, visual-spatial, kinesthetic, musical, interpersonal, intrapersonal, and naturalist. The data were analyzed using descriptive statistics, exploratory factor analysis (EFA), and reliability testing. Results: The findings revealed that intrapersonal (78.320%), interpersonal (77.030%), kinesthetic (76.780%), and naturalist (76.440%) intelligence were the most dominant among students. Verbal-linguistic (70.050%), musical (71.830%), visual-spatial (69.110%), and logical-mathematical (64.500%) also showed notable representation. EFA identified ten principal components that explained 65.040% of the total Variance. Reliability analysis showed that most factors had adequate Cronbach's Alpha values (> 0.700), although some required refinement. Novelty: This study provides updated empirical insights into high school students' multiple intelligences in physics learning, with a focus on the emerging dominance of kinesthetic, intrapersonal, and naturalist intelligence. It also incorporates recent psychometric validation using EFA, underscoring the need for intelligence-based instructional design. The novelty lies in combining psychological profiling with physics-specific pedagogy in a Merdeka Belajar framework.
Exploratory Factor Analysis of Students' Responses to the Dhysning (Dynamic Hybrid System for Integrating Glocal Wisdom) Application for Teaching Science Literacy Skills Alhusni, Hanan Zaki; Prahani, Binar Kurnia; Sunarti, Titin; Jatmiko, Budi; Citra, Nina Fajriyah; Kurtuluş, Muhammed Akif; Nugroho, Yuli Sutoto; Bunyamin, Muhammad Abd Hadi
JPPS (Jurnal Penelitian Pendidikan Sains) Vol. 14 No. 2 (2025)
Publisher : Universitas Negeri Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26740/jpps.v14n2.p185-202

Abstract

Objective:  This study aims to develop and evaluate the effectiveness of the Dhysning (Dynamic Hybrid System for Integrating Glocal Wisdom) application, which integrates the local wisdom of the Boranan Lamongan Dance into physics learning, specifically on the topic of rigid body equilibrium. Method: The development of the Dhysning application followed the ADDIE model (Analysis, Design, and Development). The application was designed using Adobe Flash CS6 and included teaching modules, interactive multimedia, student worksheets, virtual laboratory simulations, and quizzes. The research was conducted through a limited trial involving three classes and three physics teachers at senior high school. Data were collected through response questionnaires and analyzed using descriptive statistics and Exploratory Factor Analysis (EFA) to examine the construct validity and reliability of student responses. Results: The results show that the application effectively supports science learning with strong student engagement. The Kaiser-Meyer-Olkin (KMO) measure of 0.638 and Bartlett's test of significance (p < 0.001) confirmed the suitability of the data for factor analysis. Eight factors were extracted, explaining 78.63% of the total variance, with an overall Cronbach's Alpha of 0.884, indicating high internal consistency. Students showed positive responses toward the contextual content, visual interactivity, and cultural relevance of the learning media. Novelty: This study introduces a glocalized science learning approach by incorporating regional cultural elements into physics education through interactive technology. It bridges local cultural identity with global scientific competencies, fostering deeper student engagement and scientific literacy in a unique and meaningful way.            
An Exploration of Physics Concepts in Pletokan (Luthang) Traditional Game: What is the Potential of a Physics Learning Media in the Merdeka Belajar Curriculum? Safitri, Afaurina Indriana; Admoko, Setyo; Suprapto, Nadi; Putri, Rahmah Trinita; Alhusni, Hanan Zaki
Jurnal Ilmiah Pendidikan Fisika Al-Biruni Vol 12 No 2 (2023): Jurnal Ilmiah Pendidikan Fisika Al-Biruni
Publisher : Universitas Islam Negeri Raden Intan Lampung, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24042/jipfalbiruni.v12i2.18234

Abstract

This research explores physics concepts in depth in pletokan to be integrated into physics learning in the Merdeka Belajar curriculum. Using a qualitative descriptive approach and data triangulation techniques (observation, interviews, and literature study), this research identified pletokan as a superior contextual media for learning physics. Effectively achieve the learning objectives of the Merdeka Belajar curriculum while providing an enjoyable educational experience. The exploration results obtained specifically show that the traditional game of pletokan involves various physics principles such as gravitational potential energy, friction force, work and energy, ideal gas compression, bulk modulus, sound waves, motion dynamics, parabolic motion, and partially elastic collisions. These findings highlight the potential of Pletokan as a promising ethnoscience-based medium for physics learning, which is beneficial in improving student motivation and academic outcomes. Further research is needed to validate advanced applications and their effectiveness in improving student learning outcomes. Embracing ethnoscience in this way enriches students' understanding by including context and preserving the nation's cultural heritage.
Inquiry-based Physics Learning Integrated with Mobile Apps, Multiple Intelligences, and Local Wisdom: A Bibliometric Analysis of Research Trends and Scientific Literacy Implications Alhusni, Hanan Zaki; Prahani, Binar Kurnia; Sunarti, Titin; Madlazim, Madlazim; Kurtulus, Muhammed Akif
Jurnal Penelitian dan Pengkajian Ilmu Pendidikan: e-Saintika Vol. 10 No. 1 (2026): March
Publisher : Lembaga Penelitian dan Pemberdayaan Masyarakat (LITPAM)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36312/e-saintika.v10i1.3967

Abstract

This bibliometric study maps and evaluates the publication landscape on inquiry-based physics learning that intersects with mobile applications, multiple intelligences (MI), and local wisdom, with attention to implications for scientific literacy. Scopus records were retrieved using a TITLE-ABS-KEY search and processed following PRISMA 2020 and PRISMA-S. The screening window was restricted to 2020–2025, English-language, final-status documents, and journal articles or conference papers/proceedings. From 138,162 initially identified records, 362 remained after year and subject filtering; 305 met eligibility criteria, and 99 unique documents were included after DOI/title deduplication (full flow and exclusion reasons are reported in the PRISMA diagram and accompanying table). Performance analysis (annual output, sources, authors, countries, and subject areas) and science mapping (co-authorship, keyword co-occurrence, co-citation, and bibliographic coupling) were conducted using Bibliometrix/Biblioshiny and visualized in VOSviewer with association-strength normalization and full versus fractional counting sensitivity checks. Results show a publication peak in 2020, a decline across 2021–2023, and a rebound in 2024. Conference proceedings dominate the corpus (≈91%), with Journal of Physics: Conference Series contributing nearly two-thirds of documents. Indonesia is the leading contributor by affiliation and country; Physics and Astronomy accounts for ≈48–49% of subject assignments, followed by Engineering (≈14%) and Computer Science (≈12%). Keyword networks center on “students” and “education computing,” while MI and scientific literacy occur infrequently and local wisdom appears peripheral, indicating an early-stage, technology-driven field. Limitation: the Physics subject-area filter likely underrepresents education-journal studies where MI and literacy are more explicitly operationalized. Future work should prioritize journal-level designs, validated scientific-literacy measures, and transparent term normalization and counting schemes.
Three-Dimensional Soliton Propagation in Ruby for High-Stability Optical Communication Yantidewi, Meta; Firdaus, Rohim Aminullah; Khoiro, Muhimmatul; Winarno, Nanang; Ramadani, Riski; Nikmah, Afiyah; Alhusni, Hanan Zaki
POSITRON Vol 16, No 1 (2026): Vol. 16 No. 1 Edition
Publisher : Fakultas Matematika dan Ilmu Pengetahuan Alam, Univetsitas Tanjungpura

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26418/positron.v16i1.93213

Abstract

Optical communication in digitalisation is a significant catalyst in supporting high-speed and large capacity data transmission. However, optical communication applications face substantial challenges, such as energy loss, dispersion effects, and signal stability over long transmission distances. One material that has the potential to overcome these problems is ruby due to its nonlinear characteristics. This research work numerically investigates soliton propagation in ruby material analysis as a Nonlinear Schrödinger Equation numerical modelling and three-dimensional visualisation with Cubic B-Spline, modified Korteweg-de Vries-Zakharov-Kuznetsov, and Boussinesq methods to understand ruby material characteristics more deeply. The simulations show that the soliton waveform remains stable during propagation, with its amplitude confined within approximately -1.05 to 0.35, indicating robust shape preservation under anisotropy and temperature variations. like most previous studies that are limited to one or two dimensional modelling or to dispersive fibre media, this study implement a full 3D NLSE framework tailored to the physical properties of ruby. The results show that both numerical modelling and three-dimensional visualisation indicate that ruby material can maintain the soliton waveform during propagation. This finding suggests that ruby has the potential to be applied in optical communication systems with high stability to support long-distance data transmission.
Intelligent Virtual Environment in STEM Education: A Systematic Literature Review for Sustainable Digital Learning Alhusni, Hanan Zaki; Prahani, Binar Kurnia; Jatmiko, Budi; Hulu, Noval Maleakhi
Journal of Current Studies in SDGs Vol. 2 No. 1 (2026): March
Publisher : Sekolah Tinggi Agama Islam Sabilul Muttaqin Mojokerto

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.63230/jocsis.2.1.132

Abstract

Objective: This study aims to analyze the development and application of Intelligent Virtual Environment (IVE) in STEM education to support sustainable digital learning. The study focuses on identifying research trends, technologies used, and the impact of immersive digital environments on STEM learning outcomes. Method: This research employed a Systematic Literature Review (SLR) approach to synthesize relevant studies published in the last five years. Articles were collected from several academic databases, including Scopus, Web of Science, ScienceDirect, IEEE Xplore, and Google Scholar. The selection process followed the PRISMA framework to ensure systematic identification, screening, eligibility assessment, and inclusion of relevant studies. A total of 15 articles were selected based on inclusion criteria related to immersive technologies, artificial intelligence, and virtual learning environments in STEM education. The selected studies were analyzed to identify research trends, technological approaches, and reported learning outcomes. Result: The results show that Intelligent Virtual Environment technologies, particularly those integrating virtual reality, augmented reality, and artificial intelligence, have been widely applied in STEM learning. These technologies improve conceptual understanding, student engagement, and interactive learning experiences. The findings also indicate that immersive learning environments support visualization of complex scientific concepts and encourage active learning through simulation and exploration. Novelty: This study provides a comprehensive synthesis of recent research on Intelligent Virtual Environment in STEM education and highlights its role in advancing sustainable digital learning. The review also identifies current research trends and future research directions for integrating immersive technologies and artificial intelligence in STEM education.
Problem-Based Learning in Digital Learning Environments: A Systematic Literature Review Supporting SDG 4 Alhusni, Hanan Zaki; Prahani, Binar Kurnia; Jatmiko, Budi; Hamiyda, Salma Hasna
Journal of Current Studies in SDGs Vol. 2 No. 1 (2026): March
Publisher : Sekolah Tinggi Agama Islam Sabilul Muttaqin Mojokerto

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.63230/jocsis.2.1.133

Abstract

Objective: This study aims to analyze the development and implementation of Problem-Based Learning (PBL) in digital learning environments to support sustainable digital education and improve learning quality. The study focuses on identifying research trends, technologies used, and the impact of technology-supported PBL on learning outcomes. Method: This research employed a Systematic Literature Review (SLR) approach to synthesize relevant studies published between 2021 and 2025. Articles were collected from several academic databases, including Scopus, Web of Science, ScienceDirect, and Google Scholar. The selection process followed the PRISMA framework, which includes identification, screening, eligibility assessment, and inclusion. Based on the established inclusion criteria related to PBL and digital learning environments, 15 articles were selected for further analysis. The selected studies were examined to identify research trends, technological approaches, and reported learning outcomes. Result: The findings show that the integration of PBL with digital technologies has been widely implemented in various educational contexts. Digital platforms such as learning management systems, collaborative tools, and interactive digital resources support the implementation of PBL and enhance student engagement. The results indicate that technology-supported PBL improves critical thinking, problem-solving skills, and collaborative learning experiences. In addition, digital learning environments encourage more interactive and student-centered learning through discussion, exploration, and problem-solving activities. Novelty: This study provides a synthesis of recent research on PBL in digital learning environments and highlights its potential to support innovative digital learning practices. The findings also indicate that the integration of PBL and digital technologies can contribute to improving educational quality and supporting the achievement of Sustainable Development Goal 4 (Quality Education).
Intelligent Virtual Environment in STEM Education: A Systematic Literature Review for Sustainable Digital Learning Alhusni, Hanan Zaki; Prahani, Binar Kurnia; Jatmiko, Budi; Hulu, Noval Maleakhi
Journal of Current Studies in SDGs Vol. 2 No. 1 (2026): March
Publisher : Sekolah Tinggi Agama Islam Sabilul Muttaqin Mojokerto

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.63230/jocsis.2.1.132

Abstract

Objective: This study aims to analyze the development and application of Intelligent Virtual Environment (IVE) in STEM education to support sustainable digital learning. The study focuses on identifying research trends, technologies used, and the impact of immersive digital environments on STEM learning outcomes. Method: This research employed a Systematic Literature Review (SLR) approach to synthesize relevant studies published in the last five years. Articles were collected from several academic databases, including Scopus, Web of Science, ScienceDirect, IEEE Xplore, and Google Scholar. The selection process followed the PRISMA framework to ensure systematic identification, screening, eligibility assessment, and inclusion of relevant studies. A total of 15 articles were selected based on inclusion criteria related to immersive technologies, artificial intelligence, and virtual learning environments in STEM education. The selected studies were analyzed to identify research trends, technological approaches, and reported learning outcomes. Result: The results show that Intelligent Virtual Environment technologies, particularly those integrating virtual reality, augmented reality, and artificial intelligence, have been widely applied in STEM learning. These technologies improve conceptual understanding, student engagement, and interactive learning experiences. The findings also indicate that immersive learning environments support visualization of complex scientific concepts and encourage active learning through simulation and exploration. Novelty: This study provides a comprehensive synthesis of recent research on Intelligent Virtual Environment in STEM education and highlights its role in advancing sustainable digital learning. The review also identifies current research trends and future research directions for integrating immersive technologies and artificial intelligence in STEM education.
Problem-Based Learning in Digital Learning Environments: A Systematic Literature Review Supporting SDG 4 Alhusni, Hanan Zaki; Prahani, Binar Kurnia; Jatmiko, Budi; Hamiyda, Salma Hasna
Journal of Current Studies in SDGs Vol. 2 No. 1 (2026): March
Publisher : Sekolah Tinggi Agama Islam Sabilul Muttaqin Mojokerto

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.63230/jocsis.2.1.133

Abstract

Objective: This study aims to analyze the development and implementation of Problem-Based Learning (PBL) in digital learning environments to support sustainable digital education and improve learning quality. The study focuses on identifying research trends, technologies used, and the impact of technology-supported PBL on learning outcomes. Method: This research employed a Systematic Literature Review (SLR) approach to synthesize relevant studies published between 2021 and 2025. Articles were collected from several academic databases, including Scopus, Web of Science, ScienceDirect, and Google Scholar. The selection process followed the PRISMA framework, which includes identification, screening, eligibility assessment, and inclusion. Based on the established inclusion criteria related to PBL and digital learning environments, 15 articles were selected for further analysis. The selected studies were examined to identify research trends, technological approaches, and reported learning outcomes. Result: The findings show that the integration of PBL with digital technologies has been widely implemented in various educational contexts. Digital platforms such as learning management systems, collaborative tools, and interactive digital resources support the implementation of PBL and enhance student engagement. The results indicate that technology-supported PBL improves critical thinking, problem-solving skills, and collaborative learning experiences. In addition, digital learning environments encourage more interactive and student-centered learning through discussion, exploration, and problem-solving activities. Novelty: This study provides a synthesis of recent research on PBL in digital learning environments and highlights its potential to support innovative digital learning practices. The findings also indicate that the integration of PBL and digital technologies can contribute to improving educational quality and supporting the achievement of Sustainable Development Goal 4 (Quality Education).