Ethnochemistry-based Adobe Flash Learning Media Using Indigenous Knowledge to Improve Students' Scientific Literacy

L. Heliawati, L. Lidiawati, P. N. A. Adriansyah, E. Herlina

Abstract

This study aims to measure the effectiveness of using ethnochemistry-based Adobe Flash learning media using indigenous knowledge on scientific literacy. The study used a quasi-experimental method. The research subjects were 68 students who used ethnochemistry-based Adobe Flash learning media using indigenous knowledge on secondary metabolite material. The research is a quantitative study with pretest and posttest design. Data in the study were collected through tests to determine students' scientific literacy skills, including aspects of knowledge and competence in analyzing scientific phenomena, connecting chemical concepts to existing phenomena, and interpreting data or scientific evidence and questionnaires. Supporting data was obtained through a questionnaire to determine learning media users' opinions. The test was conducted with ten multiple-choice questions and a questionnaire with ten statements using a Likert scale of 1-4. The data analysis technique calculates the average score of test questions that have criteria according to scientific literacy and the percentage of user satisfaction. Based on the research results, the average value of 81.50 for scientific literacy skills on the concept of secondary metabolites with an N Gain of 80% is in a good category, and it is also known that the average percentage of user satisfaction is 83%, in a good category. Based on the hypothesis testing using the right-test, it has a t count of 16,160 and a t table of 2,021. The study concludes that applying ethnochemistry-based Adobe Flash learning media on secondary metabolites is effective for students' scientific literacy. Thus, it could be excluded that interactive media can support students' learning and improve scientific literacy.

Keywords

ethnochemistry; indigenous knowledge; scientific literacy

Full Text:

PDF

References

Adedoyin, O. B., & Soykan, E. (2020). Covid-19 Pandemic and Online Learning: the Challenges and Opportunities. Interactive Learning Environments, 0(0), 1–13.

Ahied, M., Muharrami, L. K., Fikriyah, A., & Rosidi, I. (2020). Improving Students' Scientific Literacy Through Distance Learning with Augmented Reality-based Multimedia Amid the Covid-19 Pandemic. Jurnal Pendidikan IPA Indonesia, 9(4), 499–511.

Anulika, J. (2021). Effects of Ethnochemistry Instructional Strategy on Secondary School Students ' Achievement in Chemistry in Onitsha Education Zone. African Journal of Research in Mathematics, Science and Technology Education, 6(1), 121-128.

Asrizal, A., Yurnetti, Y., & Usman, E. A. (2022). ICT Thematic Science Teaching Material with 5E Learning Cycle Model to Develop Students' 21st-Century Skills. Jurnal Pendidikan IPA Indonesia, 11(1), 61-72.

Azhar, A. (2011). Media Pembelajaran. In Raja Grafindo Persada.

Bortnik, B., Stozhko, N., Pervukhina, I., Tchernysheva, A., & Belysheva, G. (2017). Effect of Virtual Analytical Chemistry Laboratory on Enhancing Student Research Skills and Practices. Research in Learning Technology, 25(1063519), 1–20.

Bradley, D. (2021). Indigenous knowledge during a pandemic. February 2–3.

Carrillo, C., & Flores, M. A. (2020). Covid-19 and Teacher Education: a Literature Review of Online Teaching and Learning Practices. European Journal of Teacher Education, 43(4), 466–487.

Chiappetta, E. L., & Fillman, D. A. (2007). Analysis of Five High School Biology Textbooks Used in the United States for Inclusion of the Nature of Science. International Journal of Science Education, 29(15), 1847–1868.

Chiappetta, E. L., Fillman, D. A., & Sethna, G. H. (1991). A Method to Quantify Major Themes of Scientific Literacy in Science Textbooks. Journal of Research in Science Teaching, 28(8), 713–725.

Cohen, L., Manion, L., & Morrison, K. (2000). Research Methods in Education. In Routledge (5th ed.). Routledge Falmer.

Creswell, J. W. (2009). Research Design; Qualitative, Quantitative, and Mixed Methods Approaches (3rd ed.). SAGE Publications.

Danjou, P. E. (2020). Distance Teaching of Organic Chemistry Tutorials during the Covid-19 Pandemic: Focus on the Use of Videos and Social Media. Journal of Chemical Education, 97(9), 3168–3171.

Dewi, C. A., Erna, M., Martini, Haris, I., & Kundera, I. N. (2021). Effect of Contextual Collaborative Learning Based Ethnoscience to Increase Student's Scientific Literacy Ability. Journal of Turkish Science Education, 18(3), 525–541.

Dewi, C. A.., Khery, Y., & Erna M (2019). An Ethnoscience Study in Chemistry Learning to Develop Scientific Literacy. Jurnal Pendidikan IPA Indonesia, 8(2), 279-287.

Eljack, S. M., Alfayez, F., & Suleman, N. M. (2020). Organic Chemistry Virtual Laboratory Enhancement. International Journal of Mathematics and Computer Science, 15(1), 309–323.

Faour, M. A., Ayoubi, Z., & The, Z. (2018). The Effect of Using Virtual Laboratory on Grade 10 Students' Conceptual Understanding and their Attitudes towards Physics. Journal of Education in Science, Environment and Health, 4(1),54–68.

Hake, R. R. (1999). Analyzing Change/ Gain Scores. Unpublished (Online).

Hakim, A., Jufri, A. W., & Ramandha, M. E. P. (2020). Inovasi Praktikum Kimia Bahan Alam dengan Memanfaatkan Kearifan Lokal Suku Sasambo. Jurnal Pijar Mipa, 15(4), 325.

Heliawati, L. (2021). Multimedia Interaktif Pembelajaran Kimia Bahan Alam untuk Mahasiswa Universitas Pakuan (online).

Heliawati, L., Kardinan, A., Mayanti, T., & Tjokronegoro, R. ati. (2015). Piceatanol: Anti-Cancer Compound from Gewang Seed Extract. Journal of Applied Pharmaceutical Science, 5(1), 110–113.

Hilaria, M., & Octavia, D.R. (2020). Pengaruh Penambahan Amilum Gewang (Corypha Utan Lamarck) Secara Intragranular dan Ekstragranular Terhadap Sifat Fisik Tablet Paracetamol Dengan Metode Granulasi Basah. Jurnal Ilmiah Manuntung, 6(1), 110-121.

Isnaeni, W., Sujatmiko, Y. A. & Pujiasih, P. (2021) Analysis of the Role of Android-Based Learning Media in Learning Critical Thinking Skills and Scientific Attitude. Jurnal Pendidikan IPA Indonesia, 10(4), 607-617.

Kapilan, N., Vidhya, P., & Gao, X. Z. (2021). Virtual Laboratory: A Boon to the Mechanical Engineering Education During Covid-19 Pandemic. Higher Education for the Future, 8(1), 31–46.

Krouska, A., Troussas, C., & Sgouropoulou, C. (2021). Mobile Game-Based Learning as a Solution in Covid-19 Era: Modeling the Pedagogical Affordance and Student Interactions. Education and Information Technologies, 229–241.

Lazarus, E. J. L., & Lawa, E. D. W. (2022). In Vitro Nutrition Value Of Slow Release Urea Products From The Combination Cooking Results Of Urea With Gewang ( Corypha Utan Lamk .) Stem Content ( Umbut ) Starch In Vitro Nutrition Value Of Slow Release Urea Products From The Combination Cooking Results Of Urea With Gewang ( Corypha Utan Lamk .) Stem Content ( Umbut ) Starch. World Journal of Pharmaceutical and Life Sciences, 8,( 5), 9-16.

Lin, C. L., Jin, Y. Q., Zhao, Q., Yu, S. W., & Su, Y. S. (2021). Factors Influence Students' Switching Behavior to Online Learning under Covid-19 Pandemic: A Push-Pull–Mooring Model Perspective. Asia-Pacific Education Researcher, 30(3), 229–245.

Maharani, R., & Fernandes, A. (2021). The Potential of Herbal Medicine from Kalimantan, Indonesia, to Stimulate Human Immunity during the Covid-19 Pandemic: A Brief Overview. Annals of Phytomedicine: An International Journal, 10(Sp-Issue1 (COVID-19): S4-S12).

Mailizar, M., Burg, D., & Maulina, S. (2021). Examining University Students' Behavioural Intention to Use E-learning during the Covid-19 Pandemic: An Extended TAM Model. Education and Information Technologies, 26(6), 7057–7077.

Martin, F., & Betrus, A. K. (2019). Digital Media for Learning. In Digital Media for Learning.

Mazzocchi, F. (2020). A Deeper Meaning of Sustainability: Insights from Indigenous Knowledge. Anthropocene Review, 7(1), 77–93.

Miyamoto, M., Milkowski, D. M., Young, C. D., & Lebowicz, L. A. (2019). Developing a Virtual Lab to Teach Essential Biology Laboratory Techniques. Journal of Biocommunication, 43(1), 23–31.

Muhammad, F. (2020). Covid-19 Pandemic: The Role of Traditional Medicine. International Journal of Infection, 7(3).

Ndihokubwayo, K., Uwamahoro, J., & Ndayambaje, I. (2020). Effectiveness of PhET Simulations and YouTube Videos to Improve the Learning of Optics in Rwandan Secondary Schools. African Journal of Research in Mathematics, Science and Technology Education, 0(0), 1–13.

Nisa, K., Indriyanti, D. R., & Parmin, P. (2021). Environmental Pollution Module Based on SETS with Islamic Value to Improve Student'Science Literacy. Journal of Innovative Science. 37.

Parmin, P., & Fibriana, F. (2019). Prospective Teachers' Scientific Literacy through Ethnoscience Learning Integrated with the Indigenous Knowledge of People in the Frontier, Outermost, and Least Developed Regions. Jurnal Penelitian Dan Pembelajaran IPA, 5(2), 142.

Parmin, Sajidan, Ashadi, Sutikno, & Fibriana, F. (2017). Science Integrated Learning Model to Enhance the Scientific Work Independence of Student Teacher in Indigenous Knowledge Transformation. Jurnal Pendidikan IPA Indonesia, 6(2), 365–372.

Pebriani, F., Heliawati, L., & Ardianto, D. (2022). The Effect of STREAM-Based Teaching Materials Using Smart Apps Creator 3 on Students' Scientific Literacy. 2(1), 78–93.

Purba, J., Tua, F., Panggabean, M., & Widarma, A. (2021). Development of General Chemical Teaching Materials (Stoichiometry) in an Integrated Network of Media-Based Higher Order Thinking Skills. 591(Aisteel), 949–954.

Putri, L. A., Permanasari, A., Winarno, N., & Ahmad, N. J. (2021). Enhancing Students STEM Scientific Literacy using Virtual Lab Activity with Inquiry-Based Learning. Journal of Science Learning, 4(2), 173–184.

Prasetia, I., & Adlan, M. (2022). Management of the Literacy Movement Program (LMP) to Improve Reading Culture in Elementary Schools. Journal of Innovation in Educational and Cultural Research, 3(3), 316-322.

Rosa, M., & Clark, D. (2011). Ethnomathematics: The Cultural Aspects of Mathematics. Revista Latinoamericana de Etnomatemática: Perspectivas Socioculturales de La Educación Matemática, 4(2), 32–54.

Rosenthal, S. (2018). Motivations to Seek Science Videos on YouTube: Free-choice Learning in a Connected Society. International Journal of Science Education, Part B: Communication and Public Engagement, 8(1), 22–39.

Rowe, R. J., Koban, L., Davidoff, A. J., & Thompson, K. H. (2018). Efficacy of Online Laboratory Science Courses. Journal of Formative Design in Learning, 2(1), 56–67.

Rubini, B., Permanasari, A., & Yuningsih, W. (2018). Learning Multimedia Based on Science Literacy on the Lightning Theme. Jurnal Penelitian Dan Pembelajaran IPA, 4(2), 89.

Saifi, I. L., Akhter, N., & Salamat, L. (2020). Covid-19 Pandemic Shutdown: Challenges of Hei’s Electronic Support Services in Teacher Education Programs. International Journal of Distance Education and E-Learning (IJDEEL), VI, 149-169.

Saija, M., Rahayu, S. & Fajaroh, F. (2022). Enhancement of High School Students' Scientific Literacy Using Local-Socioscientific Issues in Oe3C Instructional Strategies. Jurnal Pendidikan IPA Indonesia, 11(1), 11-23.

Saputro, H. D., Muryani, C., & Sarwono, S. (2018). The Development of E-Learning Media with Adobe Flash Program in Contextual Learning Model to Improve the Students Learning. Jurnal Pendidikan IPA Indonesia, 11(1), 11–23.

Sheeba, & Begum, H. (2018). Comparative Study of Developing Interactive Multimedia Applications using Adobe Flash and HTML / CSS. International Journal of Advanced Research in Computer Science and Electronics Engineering, 7(5), 5–9.

Siburian, S., Hutagalung, S. M., & Daulay, S. (2020). Development of Adobe Flash CS6 Learning Media in Short Story-Based on Learning Text of Advanced Local Community of Batak Toba Students in Tanjungmorawa. Budapest International Research and Critics in Linguistics and Education (BirLE) Journal, 3(1), 591–599.

Spitzer, W., & Fraser, J. (2020). Advancing Community Science Literacy. Journal of Museum Education, 45(1), 5–15.

Sujarweni, V. W. (2015). SPSS untuk Penelitian. Pustaka Baru Press.

Sukariasih, L., Erniwati, E., & Salim, A. (2019). Development of Interactive Multimedia on Science Learning Based Adobe Flash CS6. International Journal for Educational and Vocational Studies, 1(4), 322–329.

Sutrisno, H., Wahyudiati, D., & Louise, I. S. Y. (2020). Ethnochemistry in the Chemistry Curriculum in Higher Education: Exploring Chemistry Learning Resources in Sasak Local Wisdom. Universal Journal of Educational Research, 8(12A), 7833–7842.

Taitingfong, R., & Ullah, A. (2021). Empowering Indigenous Knowledge in Deliberations on Gene Editing in the Wild. Hastings Center Report, 51(S2).

Victor, J. M., Goulet, L. M., Schmidt, K., Linds, W., Episkenew, J.-A., & Goulet, K. (2016). Like Braiding Sweetgrass. In International Review of Qualitative Research, 9(4).

Wargadinata, W., Maimunah, I., Dewi, E., & Rofiq, Z. (2020). Student’s Responses on Learning in the Early Covid-19 Pandemic. Tadris: Jurnal Keguruan Dan Ilmu Tarbiyah, 5(1), 141–153.

Widodo, W., Sudibyo, E., Suryanti, Sari, D. A. P., Inzanah, & Setiawan, B. (2020). The Effectiveness of Gadget-based Interactive Multimedia in Improving Generation z’s Scientific Literacy. Jurnal Pendidikan IPA Indonesia, 9(2), 248–256.

William, K., Siahaan, A., Marulitua Manurung, H., & Siahaan, M. M. (2021). Android-Based Learning Media Development Strategies During Pandemic Times To Improve Student Science Literature. International Journal of Education and Humanities, 1(1), 34–40.

Woodin, T., Celeste Carter, V., & Fletcher, L. (2010). Vision and Change in Biology Undergraduate Education, a Call for Action-Initial Responses. CBE Life Sciences Education, 9(2), 71–73.

Yusuf, M. (2014). Metode Penelitian Kuantitatif, Kualitatf, dan Penelitian Gabungan (4th ed.). Kencana.

Refbacks

  • There are currently no refbacks.