Development Of An Ethnoscience-Based Digital Comic "Tari Saman" For Human Movement System Material
DOI:
https://doi.org/10.55227/ijhess.v3i3.723Keywords:
Ethnoscience, Digital Comic,, Movement System,, Tari SamanAbstract
Scientific literacy skills are still low, and students' lack of interest in getting to know culture is a current educational issue, so innovative, creative and interesting learning media are needed to increase interest in reading and the formation of national cultural character in students. The development of digital comics in the field of science has been carried out by many researchers, but there are still few who combine the material with local wisdom to form cultural characters. This ethnoscience- based digital comic designed to be a pilot project and learning resource for teachers and students in Indonesia in mastering science, technology, skills and attitudes based on the Independent Learning Curriculum. The data was analyzed by processing validator response data with a Likert scale which was converted into qualitative data . The research subjects were media, material and language experts, 60 high school students in class XI high school science, and 6 biology teachers. The instruments used were expert validation tests and questionnaires. The data was analyzed by processing validator response data with a Likert scale which was converted into qualitative data. The purpose of this research can measure the effectiveness of the ethnoscience -based digital comic "Tari Saman" on movement system material to improve students' scientific literacy skills and national cultural character according to P5 (Strengthening Pancasila Student Profile Project). This research uses the 4D method (Define, Design, Develop, Disseminate). The validity test results show that ethnoscience-based digital comics “tari saman” have a moderate level of validity with an Aiken index value > 0.4. the results of the feasibility test were 88% by the teachers and 90% by students and media practicability were 88% by teachers and 89% by students. It can be concluded that ethnoscience-based digital comics “tari saman” are valid, feasible and practical to use as supporting media for Biology learning.
References
Akcanca, N. (2020). An Alternative Teaching Tool in Science Education: Educational Comics. International Online Journal of Education & Teaching, 7(4), 1550.
Davy Tsz Kit, N. G., Luo, W., Chan, H. M. Y., & Chu, S. K. W. (2022). Using digital story writing as a pedagogy to develop AI literacy among primary students. Computers and Education: Artificial Intelligence, 3(February), 100054. https://doi.org/10.1016/j.caeai.2022.100054
Dong, H., Sun, J., Liu, X., Jiang, X., & Lu, S. (2022). Highly Sensitive and Stretchable MXene/CNTs/TPU Composite Strain Sensor with Bilayer Conductive Structure for Human Motion Detection. ACS Applied Materials & Interfaces, 14(13), 15504–15516. https://doi.org/10.1021/acsami.1c23567
Fadillah, N. (2013). Penanaman Pendidikan Karakter Berbasis Kearifan Lokal Di Sekolah Dasar. Jurnal Penanaman Pendidikan Karakter, 53(9), 1689–1699.
Fitria, Y., Malik, A., Mutiaramses, Halili, S. H., & Amelia, R. (2023). Digital comic teaching materials: It’s role to enhance student’s literacy on organism characteristic topic. Eurasia Journal of Mathematics, Science and Technology Education, 19(10). https://doi.org/10.29333/ejmste/13573
Gao, Q., Kopera, B. A. F., Zhu, J., Liao, X., Gao, C., Retsch, M., … Greiner, A. (2020). Breathable and flexible polymer membranes with mechanoresponsive electric resistance. Advanced Functional Materials, 30(26), 1907555.
Gu, X., Wang, C., & Lin, L. (2019). Examining scientific literacy through new media. Eurasia Journal of Mathematics, Science and Technology Education, 15(12). https://doi.org/10.29333/ejmste/109948
Hewi, L., & Shaleh, M. (2020). Refleksi Hasil PISA (The Programme For International Student Assesment): Upaya Perbaikan Bertumpu Pada Pendidikan Anak Usia Dini). Jurnal Golden Age, 4(01), 30–41. https://doi.org/10.29408/jga.v4i01.2018
Irdalisa, I., Akbar, B., Amirullah, G., Fuadi, T. M., Elvianasti, M., & Safahi, L. (2022). Implementation of Moodle platform to acquire the students’ knowledge and science process skills. Cypriot Journal of Educational Sciences, 17(9), 3238–3247. https://doi.org/10.18844/cjes.v17i9.7349
Jayathilaka, W. A. D. M., Qi, K., Qin, Y., Chinnappan, A., Serrano‐García, W., Baskar, C., … Ramakrishna, S. (2019). Significance of Nanomaterials in Wearables: A Review on Wearable Actuators and Sensors. Advanced Materials, 31(7), 1805921. https://doi.org/10.1002/adma.201805921
Lim, H., Kim, H. S., Qazi, R., Kwon, Y., Jeong, J., & Yeo, W. (2020). Advanced Soft Materials, Sensor Integrations, and Applications of Wearable Flexible Hybrid Electronics in Healthcare, Energy, and Environment. Advanced Materials, 32(15), 1901924. https://doi.org/10.1002/adma.201901924
Munawaroh, Z., Sari, P. K., Pambudi, B. S., & Ekapti, R. F. (2022). Development of the Etintec Student Book (Ethnoscience-Based Interactive Teaching Student Book) As an Interactive Learning Media Based on the Typical Ponorogo Culture on Ecology and Biodiversity Materials. INSECTA: Integrative Science Education and Teaching Activity Journal, 3(2), 158–167. https://doi.org/10.21154/insecta.v3i2.5143
Nahak, H. M. . (2019). Upaya Melestarikan Budaya Indonesia Di Era Globalisasi. Jurnal Sosiologi Nusantara, 5(1), 65–76. https://doi.org/10.33369/jsn.5.1.65-76
Ngazizah, N., & Laititia, T. (2022). Pengembangan Media Pembelajaran menggunakan Komik Berbasis Budaya Lokal untuk Penguatan Karakter Sesuai dengan Profil Pelajar Pancasila Jenjang SD. Jurnal Pendidikan Dan Konseling, 4(4), 1258–1263.
Noorhidayati, Apriliana, I., & Hardiansyah. (2021). The Development of Student Worksheets on Inquiry-Based Plant Growth and Development Sub-Concept. BIO-INOVED : Jurnal Biologi-Inovasi Pendidikan, 3(2), 119. https://doi.org/10.20527/bino.v3i2.10376
Nozariasbmarz, A., Collins, H., Dsouza, K., Polash, M. H., Hosseini, M., Hyland, M., … Vashaee, D. (2020). Review of wearable thermoelectric energy harvesting: From body temperature to electronic systems. Applied Energy, 258, 114069. https://doi.org/10.1016/j.apenergy.2019.114069
Pyo, S., Lee, J., Bae, K., Sim, S., & Kim, J. (2021). Recent Progress in Flexible Tactile Sensors for Human‐Interactive Systems: From Sensors to Advanced Applications. Advanced Materials, 33(47), 2005902. https://doi.org/10.1002/adma.202005902
Rahmawati, F., & Atmojo, I. R. W. (2021). Etnosains Pasar Terapung Kalimantan Selatan dalam Materi Ilmu Pengetahuan Alam (IPA) Sekolah Dasar. Jurnal Basicedu, 5(6), 6280–6287. https://doi.org/10.31004/basicedu.v5i6.1809
Rajab Bahry. (2014). SAMAN, Kesenian dari Tanah Gayo. 1–169.
Ranting, N. W., & Citra Wibawa, I. M. (2022). Media Komik Digital pada Topik Sumber Energi. Jurnal Edutech Undiksha, 10(2), 262–270. https://doi.org/10.23887/jeu.v10i2.47743
Risdianto, E., Dinissjah, M. J., Nirwana, N., Sutarno, M., & Putri, D. H. (2021). Analysis of student responses toward ethnoscience based Direct Instruction learning model in learning physics applying Rasch Model Approach. Journal of Physics: Conference Series, 1731(1). https://doi.org/10.1088/1742-6596/1731/1/012081
Saliman. (2016). Penerapan Pembelajaran Berbasis Budaya Sebagai Upaya Peningkatan Kualitas Pembelajaran Pada Mata Kuliah Perencanaan Pembelajaran. Ppkp.
Shi, J., Liu, S., Zhang, L., Yang, B., Shu, L., Yang, Y., … Tao, X. (2020). Smart Textile‐Integrated Microelectronic Systems for Wearable Applications. Advanced Materials, 32(5), 1901958. https://doi.org/10.1002/adma.201901958
Sims, S., Fletcher-Wood, H., O’Mara-Eves, A., Cottingham, S., Stansfield, C., Van Herwegen, J., & Anders, J. (2021). What are the Characteristics of Effective Teacher Professional Development? A Systematic Review and Meta-analysis. Education Endowment Foundation, (October), 196.
Song, E., Li, J., Won, S. M., Bai, W., & Rogers, J. A. (2020). Materials for flexible bioelectronic systems as chronic neural interfaces. Nature Materials, 19(6), 590–603. https://doi.org/10.1038/s41563-020-0679-7
Souri, H., Banerjee, H., Jusufi, A., Radacsi, N., Stokes, A. A., Park, I., … Amjadi, M. (2020). Wearable and Stretchable Strain Sensors: Materials, Sensing Mechanisms, and Applications. Advanced Intelligent Systems, 2(8), 2000039. https://doi.org/10.1002/aisy.202000039
Souri, H., & Bhattacharyya, D. (2018). Highly sensitive, stretchable and wearable strain sensors using fragmented conductive cotton fabric. Journal of Materials Chemistry C, 6(39), 10524–10531. https://doi.org/10.1039/C8TC03702G
Sulistri, E., Sunarsih, E., Utama, E. G., & Moseki, U. R. (2020). The Development of Digital Pocketbook Based on the Ethnoscience of the Singkawang City to Increase Students’ Scientific Literacy on Heat Matter and Its Transfer. JETL (Journal of Education, Teaching and Learning), 5(2), 263. https://doi.org/10.26737/jetl.v5i2.2042
Wang, D., Zhang, D., Yang, Y., Mi, Q., Zhang, J., & Yu, L. (2021). Multifunctional latex/polytetrafluoroethylene-based triboelectric nanogenerator for self-powered organ-like MXene/metal–organic framework-derived CuO nanohybrid ammonia sensor. ACS Nano, 15(2), 2911–2919.
Ye, Y., Zhang, Y., Chen, Y., Han, X., & Jiang, F. (2020). Cellulose Nanofibrils Enhanced, Strong, Stretchable, Freezing‐Tolerant Ionic Conductive Organohydrogel for Multi‐Functional Sensors. Advanced Functional Materials, 30(35), 2003430. https://doi.org/10.1002/adfm.202003430
Yin, R., Wang, D., Zhao, S., Lou, Z., & Shen, G. (2021). Wearable Sensors‐Enabled Human–Machine Interaction Systems: From Design to Application. Advanced Functional Materials, 31(11), 2008936. https://doi.org/10.1002/adfm.202008936
Zeng, H., Wasylczyk, P., Wiersma, D. S., & Priimagi, A. (2018). Light Robots: Bridging the Gap between Microrobotics and Photomechanics in Soft Materials. Advanced Materials, 30(24), 1703554. https://doi.org/10.1002/adma.201703554
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