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Journal : Kappa Journal

Pengembangan Buku Ajar Sejarah Fisika Berbasis ICT Lia Anggraeni; Boisandi Boisandi; Matsun Matsun
Kappa Journal Vol 3 No 2 (2019): Desember
Publisher : Universitas Hamzanwadi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29408/kpj.v3i2.1714

Abstract

This study aims to determine: (1) The feasibility of ICT-based Physics History textbooks according to material experts, (2) The feasibility of ICT-based Physics History textbooks according to media experts. The research method used is R&D with reference to the 4-D model (four D model). The 4-D model consists of the define, design, development and disseminate stages. The development of ICT-based Physics History textbooks is the development of textbooks that help students in building information (knowledge) in understanding concepts through ICT in e-books in Physics History courses delivered. This is in accordance with KKNI curriculum planning, where the implementation of learning in the classroom is carried out with the Scientific Approach approach which includes observing, questioning, experimenting, associating (discussion), and networking (presentation). The results of the study are as follows: (1) ICT-Based Physics History Teaching books that have been validated by material experts with appropriate performance with an average value of 78, (2) ICT-Based Physics History Teaching books that have been validated by media experts with expertise suitable for use with an average rating of 80.      
Feasibility of Academic Blogs as Learning Media for Electromagnetik Induction Material Angraeni, Lia; Sari, Ira Nofita; Junghin, Noryi; Matsun, Matsun
Kappa Journal Vol 7 No 3 (2023): Desember
Publisher : Universitas Hamzanwadi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29408/kpj.v7i3.23918

Abstract

Based on pre-observation results, researchers found that student learning outcomes in electromagnetic induction material were still below the standards set by the school. This is due to the lack of learning media used. Therefore, it is necessary to develop innovative media that can support learning, namely blog-based learning media. This research aims to determine feasibility according to media experts, feasibility according to material experts, and test students' responses to the media being developed. This research uses Thiagarajan's R&D steps with a 4D model, namely (Define, Design, Develop, and Disseminate), but in its implementation in this research it is modified to 3D, namely Define, Design, and Develop. The results of data analysis show that from the media aspect it is categorized as very appropriate with a score of 91%, from the material aspect it is categorized as appropriate with a score of 75% and the results of student responses to the media being developed are categorized as very feasible with a score of 95%. Based on this, it can be concluded that the learning media with the Academic Blog is said to be suitable for use in learning electromagnetic induction material.
Magnetic Measuring Instrument Based on Arduino Uno Microcontroller and its Implementation as A Learning Medium Matsun, Matsun; Boisandi, Boisandi
Kappa Journal Vol 8 No 1 (2024): April
Publisher : Universitas Hamzanwadi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29408/kpj.v8i1.24447

Abstract

This study aims to develop a magnetic measuring instrument based on Arduino Uno microcontroller and apply the results as a learning medium to measure student achievement. This tool is designed to provide precise magnetic measurements using sensors integrated into the Arduino Uno. The measurement method implemented in this tool allows users to obtain magnetic data accurately and efficiently. This research is a Research and Development research using a five-stage ADDIE model. In preparation for the study, the analysis stage has been carried out. The Design, Development, and Implementation stages are carried out at the stage of research implementation. Evaluation is carried out at every stage starting from preparation, implementation to research reporting. The results of the research obtained based on the validation of material and media experts obtained an average value of 81 with a very feasible category so that the Arduino Uno microcontroller-based magnetic measuring instrument can be used in classroom learning. The results of the post test and pritest revealed that the Arduino Uno microcontroller-based magnetic measuring instrument proved effective in improving student learning outcomes with an N-Gain value of 0.76 in the high category. The implementation of this magnetic measuring instrument not only focuses on technical aspects, but also on its use as a learning medium. With a simple interface design and clear user guidance, the tool is expected to provide an interactive and effective learning experience. Users can understand the concept of magnetism and apply it in a practical context with the help of this tool. This research contributed to the development of magnetic measuring instruments that are affordable, easy to use, and can be applied in various learning contexts. Thus, the results of this research can be a reference for the development of similar technologies and provide benefits in the field of science and technology education.