Effect of Project-Based Learning Model on Students' Higher-Order Thinking Skills
DOI:
https://doi.org/10.31980/mosharafa.v13i1.1986Keywords:
Kemampuan Berpikir Tingkat Tinggi, Project Based Learning, Sistem Persamaan Linier Tiga Variabel, Higher Order Thinking Skill, Systems of Linear Equations in Three VariablesAbstract
Masalah dalam penelitian ini berfokus pada rendahnya kemampuan berpikir tingkat tinggi siswa di sekolah menengah atas, yang menjadi perhatian utama dalam peningkatan kualitas pembelajaran. Penelitian ini bertujuan untuk mengetahui perbedaan pengaruh model project based learning (PjBL) terhadap kemampuan berpikir tingkat tinggi siswa kelas X di salah satu sekolah di Tilamuta, kabupaten Boalemo. Metode penelitian ini adalah eksperimen dengan desain penelitian One Group Pretest-Posttest Design. Subjek penelitian terdiri dari 3 kelas eksperimen (E1, E2, E3). Teknik pengumpulan data dilakukan melalui tes kemampuan berpikir tingkat tinggi berbentuk esai. Analisis inferensial menunjukkan bahwa H0 ditolak, yang berarti terdapat perbedaan signifikan dalam pengaruh model project based learning (PjBL) terhadap kemampuan berpikir tingkat tinggi siswa di ketiga kelas tersebut.
The problem in this study focuses on the low level of students' higher order thinking skills in senior high school, which is a major concern in improving the quality of learning. This study aims to determine the difference in the effect of project-based learning (PjBL) model on the high-level thinking ability of grade X students in one of the schools in Tilamuta, Boalemo district. This research method is an experiment with One Group Pretest-Posttest Design research design. The research subjects consisted of 3 experimental classes (E1, E2, E3). The data collection technique was done through an essay-shaped higher order thinking ability test. Inferential analysis showed that H0 was rejected, which means there is a significant difference in the effect of the project-based learning (PjBL) model on students' higher-order thinking skills in the three classes.
References
Abbas, N., & Zakaria, P. (2018). The Implementation of Mathematics Props-based Learning on Geometry Concept. Journal of Physics: Conference Series, 1028(1). https://doi.org/10.1088/1742-6596/1028/1/012157
Abbas, N., Zakaria, P., Djoyosuroto, D. H., & Ododay, N. (2021). Designing a Problem-Based Mathematics Learning with the Integration of Guided Discovery Method. 536(Icsteir 2020), 397–402.
Anazifa, R. D., & Djukri. (2017). Project- based learning and problem- based learning: Are they effective to improve student’s thinking skills? Jurnal Pendidikan IPA Indonesia, 6(2), 346–355. https://doi.org/10.15294/jpii.v6i2.11100
Arnellis, Fauzan, A., Arnawa, I. M., & Yerizon. (2021). Analysis of High Order Thinking Skill of Students in Contextual Problems Solving. Journal of Physics: Conference Series, 1742(1). https://doi.org/10.1088/1742-6596/1742/1/012021
Bito, N., Ismail, S., Deddy, R., & Dako, R. (n.d.). The Development of Character Building-Based Two- Dimensional Shapes Multimedia on Junior High School Students in Gorontalo Province, Indonesia. 115–125.
Chiang, C. L., & Lee, H. (2016). The Effect of Project-Based Learning on Learning Motivation and Problem-Solving Ability of Vocational High School Students. International Journal of Information and Education Technology, 6(9), 709–712. https://doi.org/10.7763/ijiet.2016.v6.779
Effendi, M. M., Ummah, S. K., & Cahyono, H. (2023). Teacher Perspective and Performance in Curriculum Prototype Implementation through the Development of Innovative Project-Based Learning Modules. Mosharafa: Jurnal Pendidikan Matematika, 12(1), 47-58.
Hulukati, E., Zakiyah, S., & Rustam, A. (2018). The Effect of Guided Discovery Learning Model with Superitem Test on Students’ Problem-Solving Ability in Mathematics. Journal of Social Science Studies, 5(2), 210. https://doi.org/10.5296/jsss.v5i2.13406
Jalinus, N., Nabawi, R. A., & Mardin, A. (2017). The Seven Steps of Project Based Learning Model to Enhance Productive Competences of Vocational Students. 102(Ictvt), 251–256. https://doi.org/10.2991/ictvt-17.2017.43
Kane, S. N., Mishra, A., & Dutta, A. K. (2016). Preface: International Conference on Recent Trends in Physics (ICRTP 2016). Journal of Physics: Conference Series, 755(1). https://doi.org/10.1088/1742-6596/755/1/011001
Kartikasari, N., Rahman, S., & Ahyan, S. (2023). Model Project-Based Learning untuk Meningkatkan Aktivitas dan Hasil Belajar Siswa Melalui Kegiatan Lesson Study. Plusminus: Jurnal Pendidikan Matematika, 3(2), 289-298.
Kean, A. C., & Kwe, N. M. (2014). Meaningful Learning in the Teaching of Culture: The Project Based Learning Approach. Journal of Education and Training Studies, 2(2), 189–197. https://doi.org/10.11114/jets.v2i2.270
KICE. (2015). მშობლის კითხვარი Pisa 2015 საცდელი კვლევა.
King, F., WKreidler, C., Keefe, E. B., Copeland, S. R., Harste, J. C., Baten, C. E., Goodson, L., Faranak Rohani, M., Caladine, R., & Lee, L. (2012). Higher Order Thinking Skills • Definition • Teaching Strategies • Assessment A publication of the Educational Services Program, now known as the Center for Advancement of Learning and Assessment. Voices from the Middle, 88(18), 495–496.
Kokotsaki, D., Menzies, V., & Wiggins, A. (2014). Durham Research Online Woodlands. Critical Studies on Security, 2(2), 210–222.
Mahendra, F. E., Sundari, S., Eregua, E. E., Setyo, A. A., Rusani, I., & Trisnawati, N. F. (2023). Pengaruh Model Pembelajaran Project Based Learning Terhadap Motivasi Belajar Matematika Siswa Sekolah Dasar. Prima Magistra: Jurnal Ilmiah Kependidikan, 4(4), 540–545. https://doi.org/10.37478/jpm.v4i4.3041
Mathematics, A. (2016). 済無No Title No Title No Title. 1–23.
Mutakinati, L., Anwari, I., & Yoshisuke, K. (2018). Analysis of students’ critical thinking skill of middle school through stem education project-based learning. Jurnal Pendidikan IPA Indonesia, 7(1), 54–65. https://doi.org/10.15294/jpii.v7i1.10495
Nurhikmayati, I., & Sunendar, A. (2020). Pengembangan project-based learning berbasis kearifan lokal berorientasi pada kemampuan berpikir kreatif dan kemandirian belajar. Mosharafa: Jurnal Pendidikan Matematika, 9(1), 1-12.
Pasani, C. F., & Suryaningsih, Y. (2021). Analysis of students’ Higher Order Thinking Skills (HOTS) ability in matrix subjects. Journal of Physics: Conference Series, 1760(1). https://doi.org/10.1088/1742-6596/1760/1/012039
Pusvita, Y., Zamzaili, & Sumardi, H. (2024). Pengaruh Model Project Based Learning Terhadap Pemahaman Konsep Matematika Dan Kemampuan. Math-Umb.Edu, 11(2), 137–143.
Putri, R. I. I., & Dolk, Maarten Zulkardi, Z. (2015). Professional Development of Pmri Teachers for. IndoMS-JME: Journal on Mathematics Education, 6(1), 11–19.
Putri, R. I. I., & Zulkardi, Z. (2018). Higher-order thinking skill problem on data representation in primary school: A case study. Journal of Physics: Conference Series, 948(1). https://doi.org/10.1088/1742-6596/948/1/012056
Retnawati, H., Djidu, H., Kartianom, Apino, E., & Anazifa, R. D. (2018). Teachers’ knowledge about higher-order thinking skills and its learning strategy. Problems of Education in the 21st Century, 76(2), 215–230. https://doi.org/10.33225/pec/18.76.215
Riskawati, R., Achmad, N., & Bito, N. (2021). Analisis Kesulitan Pembelajaran Daring pada Mata Pelajaran Matematika di Tengah Pandemi Covid-19. Jambura Journal of Mathematics Education, 2(2), 78–86. https://doi.org/10.34312/jmathedu.v2i2.11105
Rohmawati, E., & Afriansyah, E. A. (2022). Kemampuan Abstraksi Matematis Siswa Ditinjau Dari Perbedaan Gender. Jurnal Kongruen, 1(4), 379-405.
Rozien, M. I., & Retnawati, H. (2019). Analysis of junior high school national examination year 2014 to 2017 on facilitating students’ high order thinking skill. Journal of Physics: Conference Series, 1320(1). https://doi.org/10.1088/1742-6596/1320/1/012107
Rusdi, Fauzan, A., Arnawa, I. M., & Lufri. (2020). Designing Mathematics Learning Models Based on Realistic Mathematics Education and Literacy. Journal of Physics: Conference Series, 1471(1). https://doi.org/10.1088/1742-6596/1471/1/012055
Sugiyono. (2013). Metode penelitian pendidikan pendekatan kuantitatif, kualitatif dan R&D.
Sugiyono. (2016). Metode Penelitian dan Pengembangan (Research and Development/R&D). Bandung: Alfabeta, 334.
Susanti, D., Retnawati, H., Arliani, E., & Irfan, L. (2023). Peluang dan tantangan pengembangan asesmen high order thinking skills dalam pembelajaran matematika di indonesia. Jurnal Inovasi Pembelajaran Matematika: PowerMathEdu, 2(2), 229-242.
Sutama, Prayitno, H. J., Narimo, S., Ishartono, N., & Sari, D. P. (2021). The development of student worksheets based on higher order thinking skill for mathematics learning in junior high school. Journal of Physics: Conference Series, 1776(1). https://doi.org/10.1088/1742-6596/1776/1/012032
Tanudjaya, C. P., & Doorman, M. (2020). Examining higher order thinking in Indonesian lower secondary mathematics classrooms. Journal on Mathematics Education, 11(2), 277–300. https://doi.org/10.22342/jme.11.2.11000.277-300
Tularam, G. A., & Hulsman, K. (2013). A study of first year tertiary students’ mathematical knowledgeconceptual and procedural knowledge, logical thinking and creativity. Journal of Mathematics and Statistics, 9(3), 219–237. https://doi.org/10.3844/jmssp.2013.219.237
Wastiani, R., Taufiq, M., & Wijaya, A. B. (2023). Pengaruh Pendekatan Steam Berbasis Project based learning Terhadap Kemampuan Berfikir Kreatif Dan Berfikir Kritis Pada Mata Pelajaran Matematika Siswa SMP Labschool Cibubur (Quasi Eksperimen). Jurnal Konatif: Jurnal Ilmiah Pendidikan, 1(1), 75–87. https://doi.org/10.62203/jkjip.v1i1.10
Wowiling, Y. X., Machmud, T., & Yahya, L. (2013). Pengaruh Metode Pemetaan Pikiran (Mind Mapping) Terhadap Penguasaan Konsep Siswa Kelas Viii Pada Materi Kubus Dan Balok (Studi Eksperimen pada siswa dan siswi SMP Katolik Santa Maria Gorontalo).
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