Development of Augmented Reality-Based Learning Media on Atomic Absorption Spectrophotometer (AAS) Material

Authors

  • Nur Fauzi’ah Nasution Chemistry Education Study Program, Faculty of Tarbiya and Teacher Training, UIN Sunan Gunung Djati Bandung, Indonesia
  • Ida Farida Chemistry Education Study Program, FFaculty of Tarbiya and Teacher Training, UIN Sunan Gunung Djati Bandung, Indonesia
  • Yulia Sukmawardani Chemistry Education Study Program, Faculty of Tarbiya and Teacher Training, UIN Sunan Gunung Djati Bandung, Indonesia
  • Silmi Rahma Amelia Computational Biochemistry, Kanazawa University, Japan

Keywords:

Atomic Absorption Spectrophotometer, Augmented Reality, Learning Media

Abstract

Atomic absorption spectrophotometer (AAS) instruments are not always found in universities or high schools, due to the high and complex maintenance and operation costs of these instruments. To overcome this, innovative learning media are needed that can visualize and facilitate understanding of concepts in AAS material. This study aims to describe the design of the learning media display, analyze the results of validation tests, and analyze the results of the feasibility test. The research method used is Design Based Research (DBR) with the ADDIE model approach. The results of the study are in the form of a learning media display design consisting of a home page (cover), a main menu consisting of learning objectives, instructions for use, materials, AR scans, quizzes, and compiler profiles. The material page consists of images about phenomena in everyday life and videos about the working principles of AAS, sample preparation processes, simulations of AAS data measurement and analysis, and data interpretation in the form of images and articles. The AR scan page consists of a menu of AAS components. The results of the validation test obtained an average value of 0.83, this indicates that the augmented reality-based learning media on AAS material is categorized as valid with high interpretation. Meanwhile, the results of the feasibility test obtained an average percentage value of 92.16%, this shows that augmented reality-based learning media on AAS material is very suitable for use as learning media.

References

Abidin, A. A., Cantona, E. Z., Wicaksana, M. A., Annastasya, S., & Sukmana, T. (2023). Dampak Penggunaan Smartphone pada Proses Pembelajaran. EDUCATION: Scientific Journal of Education, 1(2), 124–132. https://journal.csspublishing/index.php/education

Ahluwalia, V. K. (2023). Instrumental Methods of Chemical Analysis. In Instrumental Methods of Chemical Analysis. https://doi.org/10.1007/978-3-031-38355-7

Alatawi, H., Albalawi, N., Shahata, G., Aljohani, K., Alhakamy, A., & Tuceryan, M. (2023). Augmented Reality-Assisted Deep Reinforcement Learning-Based Model towards Industrial Training and Maintenance for NanoDrop Spectrophotometer. Sensors, 23(13). https://doi.org/10.3390/s23136024

Amanda, D. R. (2024). Analisis Penggunaan Media Pembelajaran Berbasis Media Visual Terhadap Hasil Belajar Bahasa Indonesia Siswa. Jurnal Pendidikan, Bahasa Dan Budaya, 3(2), 185–199. https://doi.org/10.55606/jpbb.v3i2.3181

Anafi, K., Wiryokusumo, I., & Leksono, I. P. (2021). Pengembangan Media Pembelajaran Model Addie Menggunakan Software Unity 3D. Jurnal Education and Development, 9(4), 433–438. https://journal.ipts.ac.id/index.php/ED/article/view/3206

Cochrane, T., Galvin, K., Buskes, G., Lam, L., Rajagopal, V., Glasser, S., Osborne, M., Loveridge, B., Davey, C., John, S., Townsin, L., & Moss, T. (2023). Design-Based Research. ASCILITE Publications, December, 351–356. https://doi.org/10.14742/apubs.2023.489

Dany, A., Rifan, H., & Suryandari, M. (2024). Peran Media Pembelajaran dalam Konteks Pendidikan Modern. Cendekia Pendidikan, 4(1), 91–100. https://doi.org/10.9644/sindoro.v4i1.2933

Ernawati, I., & Sukardiyono, T. (2017). Uji Kelayakan Media Pembelajaran Interaktif Pada Mata Pelajaran Administrasi Server. Elinvo (Electronics, Informatics, and Vocational Education), 2(2), 204–210. https://doi.org/10.21831/elinvo.v2i2.17315

Fahreza, R., Suyanti, R. D., Nurfajriani. (2023). Analisis Kebutuhan Pengembangan Multimedia Interaktif Berbasis Studi Kasus Untuk Pembelajaran Kimia. Prosiding Seminar Nasional Kimia dan Terapan II, 81-86.https://jurnal.kimia.fmipa.unmul.ac.id/index.php/prosiding/article/view/1257/830

Fombona-Pascual, A., Fombona, J., & Vicente, R. (2022). Augmented Reality, a Review of a Way to Represent and Manipulate 3D Chemical Structures. Journal of Chemical Information and Modeling, 62(8), 1863–1872. https://doi.org/10.1021/acs.jcim.1c01255

Gandhi, K., Sharma, N., Gautam, P. B., Sharma, R., Mann, B., & Pandey, V. (2022). Western Blotting BT - Advanced Analytical Techniques in Dairy Chemistry. https://doi.org/10.1007/978-1-0716-1940-7_5

Glasby, L. T., Oktavian, R., Zhu, K., Cordiner, J. L., Cole, J. C., & Moghadam, P. Z. (2023). Augmented Reality for Enhanced Visualization of MOF Adsorbents. Journal of Chemical Information and Modeling, 63(19), 5950–5955. https://doi.org/10.1021/acs.jcim.3c01190

Haryanto, S., Zahra, R., Merakati, I., Nuwrun Thasimmim, S., & Arifianto, T. (2024). Pembelajaran Berbasis Game: Pelatihan Membuat Media Pembelajaran Menarik Dengan Teknologi. Communnity Development Journal, 5(1), 868–883. https://doi.org/10.31004/cdj.v5i1.24930

Helsy, I., & Andriyani, L. (2017). Pengembangan Bahan Ajar Pada Materi Kesetimbangan Kimia Berorientasi Multipel Representasi Kimia. JTK (Jurnal Tadris Kimiya), 2(1), 104–108. https://doi.org/10.15575/jta.v2i1.1365

Indahsari, L., & Sumirat, S. (2023). Implementasi Teknologi Augmented Reality dalam Pembelajaran Interaktif. Cognoscere: Jurnal Komunikasi Dan Media Pendidikan, 1(1), 7–11. https://doi.org/10.61292/cognoscere.v1i1.20

Irwansyah, F. S., Asyiah, E. N., & Farida, I. (2019). Augmented Reality-based Media on Molecular Hybridization Concepts Learning. Tadris: Jurnal Keguruan Dan Ilmu Tarbiyah, 4(2), 227–236. https://doi.org/10.24042/tadris.v4i2.5239

Kodiyah, J., Irwansyah, F. S., & Windayani, N. (2020). Application of augmented reality (AR) media on conformation of alkanes and cycloalkanes concepts to improve student’s spatial ability. Journal of Physics: Conference Series, 1521(4). https://doi.org/10.1088/1742-6596/1521/4/042093

Kuswanto, J., & Radiansah, F. (2018). Media Pembelajaran Berbasis Android Pada Mata Pelajaran Sistem Operasi Jaringan Kelas XI. Jurnal Media Infotama, 14(1). https://doi.org/10.37676/jmi.v14i1.467

Lau, P. N., Chan, W. L., & Li, Y. (2022). Prototype of a Transition Metal Visualization App for the Learning of Stereochemistry in a General Chemistry Course: Initial Findings and Reflections. Journal of Chemical Education, 99(3), 1167–1175. https://doi.org/10.1021/acs.jchemed.1c01261

Lestari, L., Aprilia, L., Fortuna, N., Cahyo, R. N., Fitriani, S., Mulyana, Y., & Kusumaningtyas, P. (2023). Review: Laboratorium Virtual untuk Pembelajaran Kimia di Era Digital. Jambura Journal of Educational Chemistry, 5(1), 1–10. https://doi.org/10.34312/jjec.v5i1.15008

Mohamad, S. A., Zaharudin, R., Kamin, Y., Hisyam, N., & Noor, M. (2024). Integrating Augmented Reality With Cognitive Constructivist Theory: A Systematic Review of Enhancing Learning in Education. Journal of Contemporary Social Science and Education Studies, 4(3), 124–132. https://doi.org/10.5281/zenodo.14048799

Murniatiningtyas, D., Degeng, I. N. S., & Sitompul, N. C. (2024). Developing Instructional Media Android-Based for Building Computational Thinking Skills for High School Students. Pedagogia : Jurnal Pendidikan, 13(1), 159–188. https://doi.org/10.21070/pedagogia.v13i1.1610

Naese, J. A., McAteer, D., Hughes, K. D., Kelbon, C., Mugweru, A., & Grinias, J. P. (2019). Use of Augmented Reality in the Instruction of Analytical Instrumentation Design. Journal of Chemical Education, 96(3), 593–596. https://doi.org/10.1021/acs.jchemed.8b00794

Noviani, D. A., Farida, I., & Sukmawardani, Y. (2021). Pengembangan Desain Pembelajaran Team Games Tournament (Tgt) Menggunakan Media Monopoli Kimia Mengenai Alat-Alat Laboratorium Development of Team Games Tournament (Tgt) Learning Design Using Chemistry Monopoly Media on Laboratory Equipment. Gunung Djati Conference Series, 2. https://conferences.uinsgd.ac.id/index.php/gdcs/article/view/33

Purnama, M. M., Adha, M. M., Perdana, R., & Maulina, D. (2024). Development of Technological Learning Media to Increase Students’ Civic Knowledge. IJORER : International Journal of Recent Educational Research, 5(5), 1121–1133. https://doi.org/10.46245/ijorer.v5i5.670

Rahmi, C., Fitria, A., Santika, V., & Rahmawati, S. (2022). Analisis Pengembangan Media Dalam Pembelajaran Kimia. Lantanida Journal, 10(1), 10. https://doi.org/10.22373/lj.v10i1.13355

Restyayulita, R., Muntari, M., Sofia, B. F. D., & Loka, I. N. (2023). Pengembangan Media Pembelajaran Kimia Mobile Learning Berbasis Android pada Materi Pokok Larutan Penyangga. Jurnal Ilmiah Profesi Pendidikan, 8(4), 1981–1989. https://doi.org/10.29303/jipp.v8i4.1441

Rusdi, H., Riyanti, R., & Utari, P. (2023). VILBAR (Virtual Laboratory Based Augmented Reality) sebagai Media Praktikum Kimia di Universitas Muslim Maros. Didaktika: Jurnal Kependidikan, 12(4), 1051–1060. https://doi.org/10.58230/27454312.265

Sa’adah, A., Karyanto, P., & Masa Artikel Kata Kunci, L. (2023). Pengembangan multimedia interaktif berbasis articulate storyline pada pembelajaran ekologi sma kelas x. Bio-Pedagogi : Jurnal Pembelajaran Biologi, 12(1), 9–22. https://doi.org/10.20961/bio-pedagogi.v12i1.69720

Salsabiila, F., Rahmawati, L. N., Kholidah, H. M., & Shidiq, A. S. (2024). Portable and Inexpensive Blue LED based UV-Vis Spectrophotometer with Smartphone Detector as a Chemistry Learning Innovation. International Journal of Pedagogy and Teacher Education, 7(2), 119. https://doi.org/10.20961/ijpte.v7i2.87950

Saputri, D., Mellisa, Hidayati, N., & Fauziah, N. (2023). Lembar Validasi: Instrumen yang Digunakan Untuk Menilai Produk yang Dikembangkan Pada Penelitian Pengembangan Bidang Pendidikan. Biology and Education Journal, 3(2), 133–151. https://doi.org/10.25299/baej.2023.15347

Shidiq, A. S., Permanasari, A., Hernani, & Hendayana, S. (2022). Contemporary Hybrid Laboratory Pedagogy: Construction of a Simple Spectrophotometer with STEM Project-Based Learning to Introduce Systems Thinking Skills. Asia Pacific Journal of Educators and Education, 37(2), 107–146. https://doi.org/10.21315/apjee2022.37.2.6

Sugihartini, N., & Yudiana, K. (2018). Addie Sebagai Model Pengembangan Media Instruksional Edukatif (Mie) Mata Kuliah Kurikulum Dan Pengajaran. Jurnal Pendidikan Teknologi Dan Kejuruan, 15(2), 277–286. https://doi.org/10.23887/jptk-undiksha.v15i2.14892

Sugiyono. (2023). Metode Penelitian Kuantitatif, Kualitatif, dan R&D (2nd ed.). ALFABETA.

Sukasih., Cindi., Hana, M. N., Rohman, I., Gumilar, G. G., Setiadi, R., & Munawaroh, H. S. H. (2023). Pengembangan Media Pembelajaran Termokimia Berbasis Material Lokal untuk Membantu Pencapaian Ketuntasan Belajar Siswa. Jurnal Riset Dan Praktik Pendidikan Kimia, 11(1), 110–117. https://doi.org/10.17509/jrppk.v11i1.60599

Sulistina, O., Andhini, A. R., Mahmudah, H. A., Al Maudrey, L. I., & Wahyuni, R. (2024). Systematic Literature Review: Penggunaan Media Pembelajaran Virtual Lab Pada Pembelajaran Kimia. UNESA Journal of Chemical Education, 13(2), 100–107. https://doi.org/10.26740/ujced.v13n2.p100-107

Usmaedi, U., Fatmawati, P. Y., & Karisman, A. (2020). Pengembangan Media Pembelajaran Berbasis Teknologi Aplikasi Augmented Reality Dalam Meningkatkan Proses Pengajaran Siswa Sekolah Dasar. Jurnal Educatio FKIP UNMA, 6(2), 489–499. https://doi.org/10.31949/educatio.v6i2.595

Wulandari, I., Irwansyah, F. S., Farida, I., & Ramdhani, M. A. (2019). Development of student’s submicroscopic representation ability on molecular geometry material using Augmented Reality (AR) media. Journal of Physics: Conference Series, 1280(3). https://doi.org/10.1088/1742-6596/1280/3/032016

Yudha, S., Nurfajriani, N., & Silaban, R. (2023). Analisis Kebutuhan Guru Terhadap Pengembangan Media Pembelajaran Kimia Berbasis Android. Jurnal Warta Desa (JWD), 5(1), 42–47. https://doi.org/10.29303/jwd.v5i1.219

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Published

2025-09-13

How to Cite

Nasution, N. F., Farida, I., Sukmawardani, Y., & Amelia, S. R. (2025). Development of Augmented Reality-Based Learning Media on Atomic Absorption Spectrophotometer (AAS) Material. International Journal of Learning Media on Natural Science (IJLENS), 2(`2), 48–54. Retrieved from https://www.journal.genintelektual.id/index.php/ijlens/article/view/117

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