Development of Holokul: 3D Hologram Learning Media on Molecular Structure
Abstract
Learning media refers to equipment designed and developed to convey information, facilitating the effective transmission of knowledge. Molecular structure is a complex chemical concept containing abstract ideas, which can challenge student comprehension. To address this, the development of 3D hologram learning media for molecular structures aims to provide students with a visual representation for enhanced understanding. This research aims to (1) understand the process of developing 3D hologram learning media for molecular structures via the ADDIE development model and (2) assess the validity and practicality of the developed media. The supporting instruments for this research include product and instrument validation sheets, product readability questionnaires, and question items. The study involved six students from the 12th grade. Descriptive analysis of the data reveals that the developed product aligns with the ADDIE model, achieving a validation rate of 90%. The practicality of the product is determined to be 89%. Therefore, the developed product can be utilized as a learning media for molecular structures via 3D holograms.
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Abdul, I., Listyorini, T., & Riadi, A. (2016). 3D Hologram Sebagai Media Interaktif Pengenalan Hewan Purbakala Dinosaurus. Prosiding Seminar Nasional Teknologi dan Informatika, 3. Universitas Muria Kudus.
Akker, J. van den, Bannan, B., Kelly, A. E., Nieveen, N., & Plomp, T. (2007) An Introduction to Educational Design Research. In T. Plomp & N. Nieveen (Eds.). Proceedings of the seminar conducted at the East China Normal University, SLO.
Anwar, M., & Muharram. (2019). Development of Assessment Instruments for Chemistry Education Seminar Course at Chemical Education Program of Makassar State University, Journal of Physics: Conference Series, 1317(1), 1-5. https://doi.org/10.1088/1742-6596/1317/1/012142
Baharuddin, B. (2018). ADDIE Model Application Promoting Interactive Multimedia, IOP Conference Series: Materials Science and Engineering, 306(1), 1–5, https://doi.org/10.1088/1757-899X/306/1/012020
Chang, R. (2005). Kimia Dasar Konsep-konsep Inti Jilid 1 (Ketiga) (3rd ed.), Erlangga.
Courduff, J., & Szapkiw, A. (2015). Technology Integration in the Resource Specialist Program Environment: Research-Based Strategies for Technology Integration in Complex Learning Environments. Journal of Research in Innovative Teaching, 8(1), 99–115.
Fernandez, C. J. (2016) Virtual and augmented reality in education. Are we ready for a disruptive innovation in education? The 9th International Conference of Education, Research, and Innovation, 2013-2022, Seville. https://doi.org/10.21125/iceri.2016.1454
Fuadi, M. M., & Listyorini, T. (2018) 3D Hologram Introduction of Solar System Based on Android. AIP Conference Proceedings, 1–8. https://doi.org/10.1063/1.5042928
Gilbert, J. K., Reiner, M., & Nakhleh, M. (2008). Visualization: Theory and Practice in Science Education (1 ed.), Springer Dordrecht. https://doi.org/10.1007/978-1-4020-5267-5
Gillespie, R. J., & Popelier, P. L. (2001). Chemical Bonding and Molecular Geometry (1 ed.). Manchester: Oxford University Press.
Hoon, L. N., & Shaharuddin, S. S. (2019) Learning Effectiveness of 3D Hologram Animation on Primary School Learners. Journal of Visual Art and Design, 11(2), 93–104. https://doi.org/10.5614/j.vad.2019.11.2.2
Jhurree, V. (2005). Technology integration in education in developing countries: Guidelines to policymakers. International Education Journal, 6(4) 467-483.
Langitasari, I., Affifah, I., Aisyah, R. S., & Pratama, M. A. (2022). Electrolysis Cell Learning Media Based on Virtual Reality Millealab. Educhemia Jurnal Kimia dan Pendidikan, 7(2), 278-292. https://doi.org/10.30870/educhemia.v7i1.17576
Lee, W. W., & Owens, D. L. (2004) Multimedia-Based Instructional Design (Second Edition) (2nd ed.), Pfeiffer.
Magwilang, E. B. (2016). Teaching Chemistry in Context: Its Effects on Students’ Motivation, Attitudes and Achievement in Chemistry, International Journal of Learning, Teaching and Educational Research, 15(4), 60–68.
Ninkovic, S. O., & Adamov, J. (2023). University students' opinions on the use of 3D holograms in learning organic chemistry. The 5th International Baltic Symposium on Science and Technology Education (151-161). Siauliai: Scientia Socialis Press. https://doi.org/10.33225/BalticSTE/2023.151
Olsson, E. M., & Broman, K. (2020). Holographic Learning – the use of augmented reality technology in chemistry teaching to develop students’ spatial ability, Joint Proceedings of Workshops IMHE 2020 and WELL4SD, Hamburg, CEUR WS.
Purnasari, P. D., & Sadewo, Y. D. (2020). Pemanfaatan Teknologi Dalam Pembelajaran Sebagai Upaya Peningkatan Kompetesnsi Pedagogik. Jurnal Publikasi Pendidikan, 10(3), 189–196. http://ojs.unm.ac.id/index.php/pubpend
Rahmawati, Y., Dianhar, H., & Arifin, F. (2021). Analysing Students’ Spatial Abilities in Chemistry Learning Using 3D Virtual Representation. Education Sciences, 11(185), 1-22. https://doi.org/10.3390/educsci11040185
Riduwan. (2011). Skala Pengukuran Variabel-variabel Penelitian. Bandung: Alfabeta.
Safitri, F. E., & Djuniadi, D. (2021). Pengembangan Media Berbasis Hologram 3D Dalam Pembelajaran Tanaman Kelapa. Jurnal Eksakta Pendidikan (JEP), 5(1), 87–94. https://doi.org/10.24036/jep/vol5-iss1/577
Setiawan, I., Indriyanti, Y., & Mulyani, S. (2018). Profil Pembelajaran Kimia Berbasis Kurikulum 2013 di Kota Gorontalo dan Kota Surakarta Kelas X Tahun Ajaran 2016/2017. Jurnal Inovasi Pendidikan Kimia, 12(1), 2039–2054.
Sugiyono. (2013). Metodologi Penelitian Kuantitatif, Kualitatif, dan R & D. Bandung: Alfabeta.
Wu, H. K., Krajcik, J. S., & Soloway, E. (2001). Promoting Understanding of Chemical Representations: Students' Use of a Visualization Tool in the Classroom. Journal of Research in Science Teaching, 38(7), 821-842. https://doi.org/10.1002/tea.1033
Yaumi, M. (2018). Media dan Teknologi Pembelajaran. Jakarta: Prenadamedia Group.
DOI: http://dx.doi.org/10.30870/educhemia.v9i2.24694
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