The Effect of Religious Value-Based Reaction Rate Teaching Materials on Student Learning Outcomes Using The Guided Inquiry Model

Emalia Syafitri Haz, Ayi Darmana

Abstract


This study aims to determine (1) whether there is an effect in the form of differences between student learning outcomes using reaction rate chemistry teaching materials integrated with religious values using chemistry teaching materials SMA / MA with guided inquiry models, (2) whether there are differences in students' spiritual attitudes before and after being taught with teaching materials integrated with religious values, (3) is there a relationship between improving student learning outcomes on reaction rate material with students' spiritual attitudes. The sample in this study consisted of two classes, namely the experimental class and the control class. The research instrument was a multiple choice test of 20 valid and reliable items (0.862) and a spiritual attitude questionnaire. The data analysis used is the Mann-Whitney Test non-parametric test with a significance level of 0.05l, Paired Sample T-Test test, and correlation. The results of research and testing show the ability of student learning outcomes taught using teaching materials for reaction rates integrated with religious values using guided inquiry learning models is higher than using high school / MA Chemistry teaching materials with guided inquiry models, namely (0.037 <0.05), teaching materials for reaction rates integrated with religious values provide positive value to students, and there is a significant relationship between learning outcomes and students' spiritual attitudes of 0.461 in the moderate category.

Keywords


teaching materials, guided inquiry oriented, reaction rate, religious values, spirituality

References


Abduljabar, and Drajat. (2012). Statistics in Physical Education. FPOK UPI Bandung.

Almu'tasim, A. (2016). Creation of Religious Culture of Islamic Universities (Reflecting on the Religious Values of UIN Maulana Malik Ibrahim Malang). J-PAI: Journal ofIslamic Education, 3(1), 105-120. https://doi.org/10.18860/jpai.v3i1.3994

Almuntasheri, S., Gillies, R. M., & T. Wright. (2016). Effectiveness of a Guided Inquiry based Teacher Professional Development Program on Saudi Arabian Students' Understanding of Density. Science Education International, 27(1), 16-39.

Al Rasyidin and Wahyuddin, N. (2011). Learning and Learning Theory. Medan. Perdana Publishing.

Belviyani, J., & Utami, L. (2017). Effect of Character Education Implementation through Guided Inquiry Strategy on Electroit and Nonelectrolyte Solution Materials. Journal of Exact Education, 1 (November), 88-95.

Budiyono, A., & Hartini, H. (2016). The Effect of Guided Inquiry Learning Model on Science Process Skills of High School Students. Journal of Education and Science Research Thought, 4(2), 141-149. https://doi.org/10.31102/wacanadidaktika.4.2.141-149.

Darmadi. (2017). Development of Learning Methods in the Dynamics of Student Learning. Jakarta. Rineka Cipta.

Darmana, A. (2014). Internalization of Tauhid Value in Chemistry Learning. Bandung. Rizqi Press.

Darmana, A., Sutiani, A., & Jasmidi. (2020). Pengembangan Instrumen Pilihan Ganda Termokimia-Kalor-Ketuhanan. Jurnal Fisika: Conference Series, 1462(1). https://doi.org/10.1088/1742-6596/1462/1/012057

Darmansyah, D. (2014). Spiritual and Social Attitude Assessment Techniques in Character Education at Elementary School 08 Surau Gadang Nanggalo. Al-Ta Lim Journal, 21(1), 10-17. https://doi.org/10.15548/jt.v21i1.67

Dewi, R. K., Haryani, S., & Wardani, S. (2018). the Influence of Guided Inquiry Learning Assisted Flash Application on Electrolyte Solution Materials Against the Results of Students. Unnes Science Education Journal, 7(2). https://doi.org/10.15294/usej.v7i2.23273

Djudin, T. (2011). Incorporating Religious Values in Science Learning: An Alternative Effort to Safeguard Students' Aqidah. Journal of Khatulistiwa - Journal of Islamic Studies, 1(2), 151-160.

Fadlilah, A., & Nasrudin, H. (2020). Implementation of Inquiry Learning Models Integrated With Nested To Increase Student’S Critical Thinking Skills on Electrolyte and Non-Electrolyte Solution Materials. JCER (Journal of Chemistry Education Research), 4(2), 83–92. https://doi.org/10.26740/jcer.v4n2.p83-92

Fitriani, F., Mahmud, & Darmana, A. (2016). Development and Standardization of Chemistry Teaching Materials Integrated with Spiritual Values for Class XI SMA/MA Semester 1 Based on the National Education Standards Agency. Journal of Chemical Education, 8(1), 12-18.

Gioktavian, C. (2020). The Relationship between Religiosity and Student Learning Achievement in Chemistry Class XI IPA Subjects. UIN Syarif Hidyatullah.

Hake, R, R. (1999). Analyzing Change/Gain Scores.AREA-D American Education Research Association’s Devision.D, Measurement and Reasearch Methodology.

Handayani, H., Darmana, A., & Muchtar, Z. (2018). The Implementation of Teaching Material Integrated Religious Value. Advance in Socia Sccience, Education and Humanities Research, 200, 105–109. https://doi.org/10.2991/aisteel-18.2018.21

Hilda, L. (2015). Internalization of Tawhid Values in Science Subjects at SDIT Bunayya Padangsidimpuan. TAZKIR: Journal of Research in Social and Islamic Sciences, 1(2), 17-32. https://doi.org/10.24952/tazkir.v1i2.35

Irwandi, Santoso, S., Sakroni, Lukitasari, M., & Hasan, R. (2022). School-community Collaboration in Inquiry-based Learning to Strengthen Religious Character and Improve Learning Outcome of Students. International Journal of Instruction, 15(3), 913–930. https://doi.org/10.29333/iji.2022.15349a

Mthembu, T. G., Wegner, L., & Roman, N. V. (2018). Educators’ and students’ needs regarding teaching and learning strategies for integrating spirituality and spiritual care in occupational therapy education. African Journal for Physical Activity and Health Sciences (AJPHES), 24(2), 127–141.

Muslich Mansur. (2008). KTSP Competency-based and Contextual Learning. Jakarta. Bumi Aksara.

Nasution, M. K. (2017). The use of learning methods in improving student learning outcomes. STUDIA DIDACTIKA: Scientific Journal of Education, 11(1), 9-16.

Nismalasari, Santiani, & Rohmadi, H. M. (2016). Application of Learning Cycle Model to Science Process Skills and Student Learning Outcomes on the Subject of Harmonic Vibration. EduScience, 4(2), 74-94.

Nurrokhmah, I. E., & Sunarto, W. (2013). The Effect of Application of Inquiry-Based Virtual Labs on Chemistry Learning Outcomes. Chemistry in Education, 2(2), 201.

Okmarisa, H., Darmana, A., Retno, D., & Suyanti, D. (2016). Implementation of Chemistry Teaching Materials Integrated with Spiritual Values with Collaborative Oriented Problem Based Learning (PBL) Learning Model to Improve Student Learning Outcomes. Journal of Chemical Education, 8(2), 130-135. http://jurnal.unimed.ac.id/2012/index.php/jpk

Government of the Republic of Indonesia. (2003). National Education System Law No. 20 of 2003. President of the Republic of Indonesia. Jakarta.

Pratama, C. F. and Antuni W. (2009). Let's Learn Chemistry 2: For SMA-MA XI IPA. Jakarta. Center for Bookkeeping, Ministry of National Education.

Pratiwi, K. F., Wijayati, N., Mahatmanti, F. W., & Marsuudi. (2019). The Effect of Guided Inquiry Learning Model Based on Authentic Assessment on Student Learning Outcomes. Journal of Chemical Education Innovation, 13(1), 2337-234.

Rangkuti, A. N. (2016). Educational Research Methods Quantitative, Qualitative, PTK, and Development Research Approaches. Citapustaka Media.

Riyadi, I. P., Prayitno, B. A. & Marjono. (2015). Application of Guided Inquiry Learning Model on Coordination System Material to Improve Science Process Skills in Students of Grade XI IPA3 SMA Batik 2 Surakarta in 2013/2014 Academic Year. Journal of Biology Education, 7(2): 80-93.

Rusman. (2010). Learning Models: Developing Teacher Professionals. Jakarta. Grafindo Persada.

Side, S., Sulastry, T., & Supardi, R. (2017). The Effect of Giving Quizzes at the Beginning of Learning in the Inquiry Learning Model on the Learning Outcomes of Class X Students of Smk Negeri 2 Parepare (Study on the Subject Matter of Chemical Bonds). Chemica Journal, 18(1), 26-34. https://ojs.unm.ac.id/chemica/article/view/4667

Silitonga, P. M. (2014). Statistics Theory and Application in Research (Second). FMIPA State University of Medan.

Sudarmo, U. (2017). Chemistry for SMA/MA Class XI Specialization Group of Mathematics and Natural Sciences. Surakarta. Erlangga.

Sugiyono. (2012). Understanding Qualitative Research. Bandung. Alfabeta.

Sundari, U., Heliawati, L., & Permanasari, A. (2020). Persepsi Siswa terhadap Internalisasi Nilai-Nilai Islam pada Materi Larutan Penyangga. Jurnal IPA & Pembelajaran IPA, 4(2), 132-140. https://doi.org/10.24815/jipi.v4i2.16730

Syafitri, A., & Darmana, A. (2018). Development of chemistry module integrated with islamic values in thermochemistry and reaction rate for senior high school student. Jurnal Pendidikan Kimia, 10(3), 418–423. https://doi.org/10.24114/jpkim.v10i3.12720

Trianto. (2011). Innovative Learning Models with Constructivist Orientation. Jakarta. Prestasi Pustaka.




DOI: https://doi.org/10.33394/jtp.v8i3.7505

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