Application of POE Based Module in Reaction Rate Material to Improve Students' Critical Thinking Abilities

Agnes Florida Patricia Saragih, Gulmah Sugiharti

Abstract


The use of teaching materials in schools is one of the supports in the learning process. Modules are teaching materials that students can use in learning. This research aims to 1) Determine the level of validity of the module being developed; 2) Knowing the increase in students' critical thinking abilities taught with the modules developed; 3) Knowing students' responses to the modules being developed. The research method is R&D with the 4D development model. Data collection techniques through BSNP questionnaires, student response questionnaires and N-Gain tests to improve critical thinking. The population was Holy Kids Bersinar Medan High School. Based on material and media expert validators, it shows that 84.7% of material experts, 83.75% of media experts, the modules developed have a validity level of "Very valid". The module was also successful in improving students' thinking abilities through pretest and posttest scores that were carried out and the n-gain was searched for and obtained a score of 0.83% in the "High" category. Student responses to the development of this module received score of 93.05 in the "Very Good" category. Thus, it can be concluded that the use of POE-based chemistry modules has been successful in improving students' critical thinking abilities.


Keywords


Module; POE; Reaction Rate; Critical Thinking

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References


Amdayani, S., Dalimunthe, M., & Nasution, H. A. (2022). Pengaruh Modul Termokimia Berbasis STEM Terhadap Hasil Belajar Dan Motivasi Belajar Mahasiswa Pada Mata Kuliah Kapita Selekta Kimia. School Education Journal, 12(2), 95–101. https://doi.org/10.24114/sejpgsd.v12i2.34343

Cahyati, R. T. (2019). Analisis Model Pembelajaran Predict Observe Explain (Poe) Berorientasi Green Chemistry Terhadap Kemampuan Berpikir Kritis Siswa pada Materi Termokimia [Universitas Islam Negeri Sultan Syarif Kasim Riau]. https://repository.uin-suska.ac.id/22073/

Dalimunthe, M., Amdayani, S., Syafriani, D., & Nasution, H. A. (2022). Development of Electronic Module on Colligative Materials STEM Based Solutions ( Science , Technology , Engineering , Mathematics ) Using Kvisoft Flipbook Maker Application. International Conference on Innovation in Education, Science and Culture, 8–13. https://doi.org/10.4108/eai.11-10-2022.2325278

Facione, P. A. (2013). Critical Thinking : What It Is and Why It Counts. Insight Assessment, 3(4), 1–28. https://ejournal-pasca.undiksha.ac.id/index.php/jurnal_ipa/article/view/716/501

Harahap, A. R., & Bayharti, B. (2021). Pengembangan Modul Laju Reaksi Berbasis Guided Discovery Learning untuk Kelas XI SMA atau MA. EduKimia, 1(3), 43–48. doi:10.24036/ekj.v3.i1.a223

Harefa, D. (2020). Pengaruh Model Pembelajaran Problem Solving Terhadap Hasil Belajar IPA Fisika Siswa Kelas IX SMP Negeri 1 Luahagundre Maniamolo Tahun Pembelajaran (Pada Materi Energi Dan Daya Listrik). Jurnal Education and Development, 8(1), 231–234. https://journal.ipts.ac.id/index.php/ED/article/view/1540/708

Harta, J., Listyarini, R. V., Pamenang, F. D. N., Wijayanti, L. W., & Lee, W. (2020). Developing Small Scale Chemistry Practicum Module to Identify Students’ Ability in Predict-Observe- Explain (POE) Implementation. JKPK (Jurnal Kimia Dan Pendidikan Kimia), 5(1), 91–99. https://jurnal.uns.ac.id/jkpk/article/view/38537

Hidayat, T., & Andromeda, A. (2017). Effectiveness of Using the Reaction Rate Module Based on Guided Inquiry and Integrated Experiments to Improve Student Learning Outcomes. Journal of RESIDU, 3(13), 69–76.

Marpaung, A. R., & Sutiani, A. (2020). Implementasi Model Pembelajaran Problem Based Learning Dengan Pendekatan Saintifik Terhadap Hasil Belajar Laju Reaksi Siswa. Jurnal Inovasi Pembelajaran Kimia (Journal Of Innovation in Chemistry Education), 2(1), 11-15. doi:10.24114/jipk.v2i1.16736

Muliaman, A., & Mellyzar, M. (2020). Peningkatan Hasil Belajar Menggunakan Model Project Based Learning Pada Materi Laju Reaksi. Chemistry in Education, 2(9), 1–5. https://journal.unnes.ac.id/sju/chemined/article/view/42771

Murtihapsari, M., Parafia, A., & Rombe, Y. P. (2022). Penerapan Model Pembelajaran Predict Observe Explain (Poe) Untuk Meningkatkan Pemahaman Konsep dan Kemampuan Berfikir Kritis Dasar Siswa. Jurnal Zarah, 10(1), 47–52. http://repository.unipa.ac.id:8080/xmlui/handle/123456789/1085

Nurfiyani, I. O., Suharsono, S., & Mustofa, R. F. (2019). Pengaruh Model Pembelajaran Poe (Predict-Observe-Explain) Terhadap Hasil Belajar dan Kemampuan Berpikir Kritis Peserta Didik pada Konsep Keanekaragaman Hayati. BIOSFER : Jurnal Biologi Dan Pendidikan Biologi, 4(2), 67–72. https://journal.unpas.ac.id/index.php/biosfer/article/view/1928/1108

Panggabean, F. T. M., Silitonga, P. M., Purba, J., Jasmidi, J., & Purba, R. A. (2023). Analysis Student Motivation and Learning Outcomes by Apllying Problem Based Learning and Discovery Learning Models. Jurnal Inovasi Pembelajaran Kimia (Journal Of Innovation in Chemistry Education), 5(1), 11–16. https://garuda.kemdikbud.go.id/documents/detail/3415973

Prastowo, A. (2013). Panduan kreatif membuat bahan ajar inovatif : Menciptakan metode pembelajaran yang menarik dan menyenangkan (D. Wijaya (ed.); 5th ed.). Diva Press.

Putri, N., Junaidi, E., Hakim, A., & Anwar, Y. A. S. (2022). Pengembangan Modul Pembelajaran Kimia Berbasis POE ( Predict , Observe , Explain ) pada Materi Sifat Koligatif Larutan di Masa Pandemi Covid-19. Chemistry Education Practice, 5(1), 46-52. https://doi.org/10.29303/cep.v5i1.2729

Rahman, A. S., Ashadi, A., & Rahardjo, S. B. (2016). Pengembangan Modul Kimia SMK Berbasis POE (Predict-Observe-Explain) Pada Materi Koloid. Jurnal FKIP UNS, 1–8. https://digilib.uns.ac.id/dokumen/download/246194/MjQ2MTk0

Restami, M. P., Suma, K., & Pujani, M. (2013). Pengaruh Model Pembelajaran Poe (Predict-observe-explaint)terhadap Pemahaman Konsep Fisika Dan Sikap Ilmiah Ditinjau Dari Gaya Belajar Siswa. E-Journal Program Pascasarjana Universitas Pendidikan Ganesha Program, 3(1), 1–11. https://ejournal-pasca.undiksha.ac.id/index.php/jurnal_ipa/article/view/716/501

Sakti, S., Fatah, A. H., & Anggraeni, M. E. (2020). Analisis Materi Ajar Konsep Laju Reaksi Pada Buku Teks Kimia SMA / MA. Jurnal Ilmiah Kanderang Tingang, 11(1), 78–91. https://chem-upr.education/ojs/index.php/JIKT/article/download/77/102

Silaban, R., & Panggabean, M. V. (2022). Pengembangan Media Pembelajaran Berbasis Android Pada Materi Kesetimbangan Kimia. Jurnal Inovasi Pembelajaran Kimia (Journal Of Innovation in Chemistry Education), 4(1), 1–9. https://garuda.kemdikbud.go.id/documents/detail/2635045

Sugiharti, G., Hamid, A., & Mukhtar, M. (2019). The implementation of learning model and virtual lab toward learning outcome of chemistry education Gulmah. Jurnal Pendidikan Kimia, 11(3), 79–86. https://doi.org/10.24114/jpkim.v11i3.15734

Sugiharti, G., & Hasibuan, K. (2017). Pengaruh Model Pembelajaran Inkuiri Dengan Dan Kemampuan Berpikir Logis Terhadap Hasil Belajar Siswa Pada Materi Laju Reaksi. Jurnal Pendidikan Kimian (JPKim), 9(1), 229–235. http://download.garuda.kemdikbud.go.id/article.php?article=2089862&val=11653&title=The Effect of Inquiry Learning Method by Using Laboratory and Logical Thinking on Learning Outcome in Chemical Reaction Rate

Suswati, U. (2021). Penerapan Problem Based Learning (PBL) Meningkatkan Hasil Belajar Kimia. TEACHING : Jurnal Inovasi Keguruan Dan Ilmu Pendidikan, 1(3), 127–136. https://www.jurnalp4i.com/index.php/teaching/article/download/444/434




DOI: https://doi.org/10.24114/jipk.v6i1.55974

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