The INoSIT (Integration Nature of Science in Inquiry with Technology) Model to Enhance the Scientific Literacy Skills of Junior High School Students: Development of Student Worksheet-Based Flip PDF Professional

Amiruddin Takda, Nasrun Balulu, Sitti Kasmiati, Benjamin Laurentino Vaz

Abstract


The research's goal was to create student worksheets based on the INoSIT model with the help of Flip PDF Professional that met the criteria for validity, applicability, and effectiveness to improve junior high school students' scientific literacy competence. The study adopted a research and development (R&D) design with a 4-D model. The student worksheets were tested at Junior High School 10 Kendari using one-group pretest-posttest design involving science teachers as observers. The research subjects for the limited trial were 15 students, and the extensive test was conducted with 27 students. Three validators provided personal validation of the student worksheets, which led to the collection of practicality data through observation sheets on the application of learning, student activities, teacher and student response questionnaires, and effectiveness data through science literacy test instruments. The research showed that the INoSIT model student worksheets fell into valid and reliable categories. For the limited and extensive trials, the n-gain <g> analysis results on measures of science literacy, like being able to explain scientific phenomena, were 0.632 and 0.712, respectively. This means that they were in the moderate to high category. Furthermore, regarding evaluating and designing scientific inquiries, the average normalized gain was 0.541–0.580, indicating an intermediate category. Similarly, on the indicators of interpreting data and scientific evidence, the average normalized gain was 0,510-0,572, indicating a moderate category. Based on this data, the INoSIT model student worksheets were considered practical and effective in improving the scientific literacy competence of junior high school students.

Keywords


INoSIT Learning Model; Student Worksheets; Scientific Literacy

Full Text:

PDF (English)

References


Takda, A., Jadmiko, B., & Erman, E. (2022). Development of INoSIT (integration nature of science in Inquiry with technology) learning models to improve science literacy: a preliminary studies. Jurnal Penelitian Pendidikan IPA, 8(1), 18-31.

Wasis, Y. S. R., Sunarti, T., & Indiana, S. (2020). HOTS dan Literasi Sains Konsep, Pebelajaran, dan Penilaiannya. Kun Faayakun Crop.

OECD. (2019). PISA 2018 Assessment and Analytical Framework.

Suherman, A., Supriyadi, T., & Safari, I. (2020). Promoting digital literacy skills: An action research to people of Kampung Literasi. Universal Journal of Educational Research, 8(4), 1372-1386.

Nathanael, G. K. (2023). Trend of Digital Literacy Skill Research in Communication Education Journals across Indonesia: from Research Design to Data Analysis. IKRA-ITH HUMANIORA: Jurnal Sosial dan Humaniora, 7(2), 79-90.

Murdy, R., & Ekawati, R. (2021). Levels of students mathematics literacy using Indonesian culture context. Jurnal Riset Pendidikan dan Inovasi Pembelajaran Matematika (JRPIPM), 5(1), 1-19.

Mayuni, I., Leiliyanti, E., Agustina, N., & Antoro, B. (2020). The praxis of literacy movement in Indonesian context. KnE Social Sciences, 897-909.

Arsyad, S., & Villia, A. S. (2022). Exploring the Effect of Digital Literacy Skill and Learning Style of Students on Their Meta-Cognitive Strategies in Listening. International Journal of Instruction, 15(1), 527-546.

Suryanto, E., & Akhadiah, S. (2019, December). Developing a competency-based of language skills and literary abilities in the primary school. In Journal of Physics: Conference Series (Vol. 1339, No. 1, p. 012066). IOP Publishing.

Fayanto, S., Wedi, A., Takda, A., & Fadilah, M. (2023). Exploration of Integrated Science-Physics Textbooks Based on Science Literacy Indicators: A Case Study in Kendari City Indonesia. Anatolian Journal of Education, 8(1), 159-172.

Nur’aini, F., Ulumuddin, I., Sari, L. S., & Fujianita, S. (2021). Meningkatkan kemampuan literasi dasar siswa indonesia berdasarkan analisis data PISA 2018. Pusat Penelitian Kebijakan, 3, 1-10.

Suparya, I. K., Suastra, I. W., & Arnyana, I. B. P. (2022). Rendahnya literasi sains: faktor penyebab dan alternatif solusinya. Jurnal Ilmiah Pendidikan Citra Bakti, 9(1), 153-166.

Rusilowati, A., Astuti, B., & Rahman, N. A. (2019, March). How to improve student’s scientific literacy. In Journal of Physics: Conference Series (Vol. 1170, No. 1, p. 012028). IOP Publishing.

Takda, A., Jadmiko, B., & Erman, E. (2022). Development of INoSIT (integration nature of science in Inquiry with technology) learning models to improve science literacy: a preliminary studies. Jurnal Penelitian Pendidikan IPA, 8(1), 18-31.

Hsiao, H. S., Hong, J. C., Chen, P. H., Lu, C. C., & Chen, S. Y. (2017). A five-stage prediction-observation-explanation inquiry-based learning model to improve students’ learning performance in science courses. Eurasia Journal of Mathematics, Science and Technology Education, 13(7), 3393-3416.

Bhat, R. A. (2023). Digital Literacy Development: Assessing the Efficacy of Online Learning Platforms in Enhancing Students'information Fluency. International Journal of Social Science, Educational, Economics, Agriculture Research and Technology (IJSET).

Rusydiyah, E. F., Purwati, E., & Prabowo, A. (2020). How to use digital literacy as a learning resource for teacher candidates in Indonesia. Cakrawala Pendidikan, 39(2), 305-318.

Rabbani, G. F., Abdurrahman, A., Hervin Maulina, H. M., & Herlina, K. (2024). An Introduction to the Level of Inquiry Model: Validity and Practicality of Inquiry STEM-Based Learning Sequence e-Worksheet to Stimulate Student Communication Skill. Jurnal Ilmu Pendidikan Fisika, 9(1), 1-13.

Sutama, H. J. P., Anif, S., Faiziyah, N., Novitasari, M., & Fadhilah, M. W. (2019, August). A PISA-based Student Worksheet for Better Understanding of Mathematical Concept. In PROFUNEDU 2019: Proceedings of the 4th Progressive and Fun Education International Conference, Profunedu 2019, 6-8 August 2019, Makassar, Indonesia (p. 38). European Alliance for Innovation.

Sari, R. R., Abdurrahman, A., & Herlina, K. (2020, February). Development and Validation of students’ Worksheet Based on Guided-Inquiry to Improve Students’ Scientific Literacy Skills of Junior High School on Straight Motion Concept. In Journal of Physics: Conference Series (Vol. 1467, No. 1, p. 012073). IOP Publishing.

Rahayu, Y. S., Pratiwi, R., & Indana, S. (2018). Development of biology student worksheets to facilitate science process skills of student. In IOP Conference Series: Materials Science and Engineering (Vol. 296, No. 1, p. 012044). IOP Publishing.

Fauziah, A. M., & Nurita, T. (2019, December). Activities of students in using worksheet based on Contextual Teaching and Learning. In Journal of Physics: Conference Series (Vol. 1417, No. 1, p. 012088). IOP Publishing.

Putri, G. R. M., & Mitarlis, M. (2021). Student Worksheets with Scientific Literacy Oriented on Hydrolysis Matter by Utilizing Surrounding Materials as an Alternative Practicum in Pandemic Era. Journal of Educational Sciences, 5(3), 542-558.

Dewantara, D., Mahtari, S., Misbah, M., & Haryandi, S. (2019). Student responses in biology physics courses use worksheets based on scientific literacy. Prisma Sains: Jurnal Pengkajian Ilmu Dan Pembelajaran Matematika Dan IPA IKIP Mataram, 7(2), 192-197.

Komikesari, H., Mutoharoh, M., Dewi, P. S., Utami, G. N., Anggraini, W., & Himmah, E. F. (2020, June). Development of e-module using flip pdf professional on temperature and heat material. In Journal of Physics: Conference Series (Vol. 1572, No. 1, p. 012017). IOP Publishing.

Gaurisankar, F. A., Wahyuni, S., & Nuha, U. (2022). The Development of Electronic Students' Worksheet Assisted by Flip PDF Professional in Natural Science Lessons to Improve Students' Higher Order Thinking Skills. SEJ (Science Education Journal), 6(2), 79-98.

Iswantini, W. (2017). Validitas Lembar Kegiatan Siswa Berbasis Inkuiri pada Materi Pencemaran Lingkungan untuk Melatihkan Literasi Sains Siswa Kelas X SMA. Berkala Ilmiah Pendidikan Biologi (BioEdu), 6(3).

Burkholder, E., Mohamed-Hinds, N., & Wieman, C. (2021). Evidence-Based Principles for Worksheet Design. The Physics Teacher, 59(6), 402-403.

Sitanggang, I., & Gultom, E. S. (2020, February). Developing of student worksheets with scientific approach on growth and development topic at SMAN 1 berastagi grade XII academic year 2019/2020. In Journal of Physics: Conference Series (Vol. 1462, No. 1, p. 012016). IOP Publishing.

Khabibah, N., Jalmo, T., Suyatna, A., & Suyatna, A. (2018). the Use of Inquiry-Based Student Worksheet To Instills Science Generic Skill of the Students. International Journal of Research-GRANTHAALAYAH, 6(6), 131-138.

Tsani, İ., Yasin, M., Zuroidah, N., Huda, S., Lestari, F., & Rahmat, A. (2019). Management development of student worksheets to improve teacher communication skills: A case study self-efficacy and student achievement. Journal for the Education of Gifted Young Scientists, 7(4), 777-798.

Hartini, S., Mariani, I., & Sulaeman, N. F. (2020, June). Developing of students worksheets through STEM approach to train critical thinking skills. In Journal of Physics: Conference Series (Vol. 1567, No. 4, p. 042029). IOP Publishing.

Irawan, A. G., nyoman Padmadewi, N., & Artini, L. P. (2018). Instructional materials development through 4D model. In SHS Web of Conferences (Vol. 42, p. 00086). EDP Sciences.

Utusan, F. C., & Buhungo, T. J. (2023). Developing Learning Management System-Based Inquiry Model Learning Devices for Dynamic Electricity Materials. Journal of Humanities and Social Sciences Studies, 5(5), 81-90.

Devi, V. M., Susilawati, S., & Gunada, I. W. (2021). Effectiveness of Problem Based Learning Device Development to Improve Generic Science Skills. Journal of Science and Science Education, 2(2), 97-101.

Fraenkel, J., Wallen, N., & Hyun, H. (1993). How to Design and Evaluate Research in Education 10th ed. McGraw-Hill Education.

Aiken, L. R. (1985). Three coefficients for analyzing the reliability and validity of ratings. Educational and psychological measurement, 45(1), 131-142.

Meltzer, D. E. (2002). The relationship between mathematics preparation and conceptual learning gains in physics: A possible “hidden variable” in diagnostic pretest scores. American journal of physics, 70(12), 1259-1268.

Rubini, B., Suhartoyo, H., & Permanasari, A. (2018). Apakah inkuiri ilmiah berbasis investigasi kelompok dapat meningkatkan kerja ilmiah dan literasi sains siswa?. Jurnal Inovasi Pendidikan IPA, 4(2), 149-157.

Retnawati, H. (2016). Analisis kuantitatif instrumen penelitian (panduan peneliti, mahasiswa, dan psikometrian). Parama publishing.

Borich, G. D. (2016). Observation skills for effective teaching: Research-based practice. Routledge.

Dermawati, N., Takda, A., & Sudiana, I. N. (2022). Pengembangan perangkat pembelajaran model inosit (integrated nature of science inquiry technology) untuk meningkatkan kompetensi literasi sains peserta didik kelas xii sma. Jurnal Biofiskim: ISSN, 2684, 995X.

Nieveen, N. (1999). Prototyping to reach product quality. Design approaches and tools in education and training, 125-135.

Shedletzky, E., & Zion, M. (2005). The essence of open-inquiry teaching. Science Education International, 16(1), 23-38.

Wale, B. D., & Bogale, Y. N. (2021). Using inquiry-based writing instruction to develop students’ academic writing skills. Asian-Pacific Journal of Second and Foreign Language Education, 6, 1-16.

Wu, H. K., & Hsieh, C. E. (2006). Developing sixth graders’ inquiry skills to construct explanations in inquiry‐based learning environments. International journal of science education, 28(11), 1289-1313.

Sutiani, A., Situmorang, M., & Silalahi, A. (2021). Implementation of an inquiry learning model with science literacy to improve student critical thinking skills. International Journal of Instruction, 14(2), 117-138.

Turiman, P., Omar, J., Daud, A. M., & Osman, K. (2012). Fostering the 21st century skills through scientific literacy and science process skills. Procedia-Social and Behavioral Sciences, 59, 110-116.

National Research Council, Center for Science, Mathematics, Engineering Education, & Committee on Development of an Addendum to the National Science Education Standards on Scientific Inquiry. (2000). Inquiry and the national science education standards: A guide for teaching and learning. National Academies Press.

Ferreira, D. M., Sentanin, F. C., Parra, K. N., Negrao Bonini, V. M., de Castro, M., & Kasseboehmer, A. C. (2021). Implementation of inquiry-based science in the classroom and its repercussion on the motivation to learn chemistry. Journal of Chemical Education, 99(2), 578-591.

Gormally, C., Brickman, P., Hallar, B., & Armstrong, N. (2009). Effects of inquiry-based learning on students’ science literacy skills and confidence. International journal for the scholarship of teaching and learning, 3(2), 16.

Schwarz, C. (2009). Developing preservice elementary teachers' knowledge and practices through modeling‐centered scientific inquiry. Science Education, 93(4), 720-744.

Ergül, R., Şımşeklı, Y., Çaliş, S., Özdılek, Z., Göçmençelebı, Ş., & Şanli, M. (2011). The Effects of Inquiry-Based Science Teaching on Elementary School Students'science Process Skills and Science Attitudes. Bulgarian Journal of Science & Education Policy, 5(1).

Gibson, H. L., & Chase, C. (2002). Longitudinal impact of an inquiry‐based science program on middle school students' attitudes toward science. Science education, 86(5), 693-705.

Lestari, D. P., Supahar, Paidi, Suwarjo, & Herianto. (2023). Effect of science virtual laboratory combination with demonstration methods on lower-secondary school students’ scientific literacy ability in a science course. Education and Information Technologies, 28(12), 16153-16175.

Liu, C. C., Wen, C. T., Chang, H. Y., Chang, M. H., Lai, P. H., Fan Chiang, S. H., ... & Hwang, F. K. (2022). Augmenting the effect of virtual labs with" teacher demonstration" and" student critique" instructional designs to scaffold the development of scientific literacy. Instructional Science, 1-31.




DOI: http://dx.doi.org/10.26737/jipf.v9i2.5164

Refbacks

  • There are currently no refbacks.


Copyright (c) 2024 Amiruddin Takda, Sitti Kasmiati, Nasrun Balulu, Benjamin Laurentino Vaz

Creative Commons License
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.

Publisher

Institute of Managing and Publishing of Scientific Journals
STKIP Singkawang

Jl. STKIP, Kelurahan Naram, Kecamatan Singkawang Utara, Kota Singkawang, Kalimantan Barat, Indonesia

Website: http://journal.stkipsingkawang.ac.id/index.php/JIPF
Email: [email protected]

 


JIPF Indexed by:

 

Copyright (c) JIPF (Jurnal Ilmu Pendidikan Fisika)

ISSN 2477-8451 (Online) and ISSN 2477-5959 (Print)