Students' mathematical critical thinking ability in problem-based learning viewed based on learning style

Authors

DOI:

https://doi.org/10.29408/jel.v8i1.4536

Keywords:

learning style, mathematical critical thinking ability, problem-based learning

Abstract

The development of mathematical critical thinking ability and individual uniqueness in the learning of prospective teacher students needs attention so that they have sufficient provisions in their future work. This study aims to analyze the differences in prospective teacher students' mathematical critical thinking ability in their achievement and improvement from two different learning models and their learning styles. Problem-based learning was used in the experimental group, while the control group used conventional learning. This study used a quasi-experimental quantitative method with the pretest-posttest non-equivalent group design. Data were collected using: mathematical critical thinking ability test and a learning style questionnaire. Data were taken from 56 students of the Mathematics Education Study Program, Universitas Negeri Semarang. Data analysis was performed using independent samples t-test, Mann-Whitney U test, and normalized gain. The results showed that in the achievement and improvement of mathematical critical thinking ability, students who obtained Problem-based learning overall and viewed from a kinesthetic learning style were better than conventional learning. Meanwhile, in terms of auditory and kinesthetic learning styles, the mathematical critical thinking ability of students who obtained descriptive problem-based learning was better. However, in statistical testing, the two groups were not significantly different. Based on these results, Problem-based learning is considered adequate for developing mathematical critical thinking ability, especially for kinesthetic learning styles.

Author Biography

Bambang Eko Susilo, (SCOPUS ID: 57211610798), Universitas Negeri Semarang

<a href="https://www.scopus.com/authid/detail.uri?authorId=57211610798">Scopus Author Details<a/>
<a href="http://sinta2.ristekdikti.go.id/authors/detail?id=5978396&view=overview">SINTA Author Profile<a/>

References

Ali, S. S. (2019). Problem based learning: A student-centered approach. English Language Teaching, 12(5), 73-78. https://doi.org/10.5539/elt.v12n5p73

Alrahlah, A. (2016). How effective the problem-based learning (PBL) in dental education. A critical review. The Saudi Dental Journal, 28, 155–161. https://doi.org/10.1016/j.sdentj.2016.08.003.

Asyari, M., Al Muhdhar, M. H. I., Susilo, H., & Ibrohim. (2016). Improving critical thinking skills through the integration of problem-based learning and group investigation. International Journal for Lesson and Learning Studies, 5(1), 36–44. https://doi.org/10.1108/IJLLS-10-2014-0042.

Aziz, A., Ahyan, S., & Fauzi, L. M. (2016). Implementasi model problem based learning (PBL) dalam meningkatkan kemampuan berpikir kritis mahasiswa melalui Lesson Study [Implementation of the problem based learning (PBL) model in improving students' critical thinking skills through Lesson Study]. Jurnal Elemen, 2(1), 83-91. https://doi.org/10.29408/jel.v2i1.179.

Barrett, T., MacLabhrainn, I., & Fallon, H. (2005). Handbook of enquiry and problem-based learning: Understanding problem-based learning. Centre for Excellence in Learning and Teaching, NUI Galway.

Cohen, L., Manion, L., & Morrison, K. (2007). Research methods in education, sixth edition. Routledge. https://doi.org/10.4324/9780203029053

Darhim, Prabawanto, S., & Susilo, B.E. (2020). The effect of problem-based learning and mathematical problem posing in improving student’s critical thinking skills. International Journal of Instruction, 13(4), 103-116. https://doi.org/10.29333/iji.2020.1347a

DePorter, B., & Hernacki, M. (2010). Quantum learning: Membiasakan belajar nyaman dan menyenangkan [Quantum learning: Make learning comfortable and fun]. Kaifa.

Dwyer, C. P., Hogan, M. J., & Stewart, I. (2014). An integrated critical thinking framework for the 21st century. Thinking Skills and Creativity, 12, 43–52. https://doi.org/10.1016/j.tsc.2013.12.004.

Fajari, L.E.W, Sarwanto, S., & Chumdari, C. (2020). The effect of problem-based learning multimedia and picture media on students’ critical-thinking skills viewed from learning motivation and learning styles in elementary school. Ilkogretim Online, 19(3), 1797-1811. https://doi.org/10.17051/ilkonline.2020.735165

Fajrianthi, F., Hendriani, W., & Septarini, B. G. (2016). Pengembangan tes berpikir kritis dengan pendekatan item response theory [Development of critical thinking test with item response theory approach]. Jurnal Penelitian dan Evaluasi Pendidikan, 20(1), 45-55. https://doi.org/10.21831/pep.v20i1.6304

FitzPatrick, B., & Schulz, H. (2015). Do curriculum outcomes and assessment activities in science encourage higher order thinking? Canadian Journal of Science, Mathematics and Technology Education, 15(2), 136–154. https://doi.org/10.1080/14926156.2015.1014074.

Gholami, M., Moghadam, P. K., Mohammadipoor, F., Tarahi, M. J., Sak, M., Toulabi, T., & Pour, A. H. H. (2016). Comparing the effects of problem-based learning and the traditional lecture method on critical thinking skills and metacognitive awareness in nursing students in a critical care nursing course. Nurse Education Today, 45, 16–21. https://doi.org/10.1016/j.nedt.2016.06.007.

Gleason, N. W. (2018). Higher education in the era of the fourth industrial revolution (p. 229). Springer Nature. https://doi.org/10.1007/978-981-13-0194-0_1

Gorghiu, G., Drăghicescu, L. M., Cristea, S., Petrescu, A.-M., & Gorghiu, L. M. (2015). Problem-based learning - an efficient learning strategy in the science lessons context. Procedia - Social and Behavioral Sciences, 191, 1865–1870. https://doi.org/10.1016/j.sbspro.2015.04.570.

Hake, R. R. (1998). Interactive-engagement versus traditional methods: A six-thousand-student survey of mechanics test data for introductory physics courses. American journal of Physics, 66(1), 64-74. https://doi.org/10.1119/1.18809

Hananto, R. B., & Kusmayadi, T. A. (2018, May). Analysis of the critical thinking process of junior high school students in solving geometric problems by utilizing the vak learning styles model. Journal of Physics: Conference Series, 1013(1), Article 012132. https://doi.org/10.1088/1742-6596/1013/1/012132

Hussain, H., & Anwar, N. (2017). Effects of problem based learning on students' critical thinking skills, attitudes towards learning and achievement. Journal of Educational Research, 20(2), 28-41. http://jer.iub.edu.pk/journals/JER-Vol-20.No-2/3_Effects_of_Problem_Based_Learning_on_Students%E2%80%99_Critical_Thinking_Skills,_Attitudes_towards_Learning_and_Achievement.pdf

Husnidar, Ikhsan, M. dan Rizal, S. (2014). Penerapan model pembelajaran berbasis masalah untuk meningkatkan kemampuan berpikir kritis dan disposisi matematis siswa [Application of problem-based learning model to improve students' critical thinking ability and mathematical disposition]. Jurnal Didaktik Matematika, 1(1), 71-82.

Karim, A. (2015). Pengaruh gaya belajar dan sikap siswa pada pelajaran matematika terhadap kemampuan berpikir kritis matematika [The effect of learning styles and student attitudes in mathematics lessons on mathematical critical thinking skills]. Formatif: Jurnal Ilmiah Pendidikan MIPA, 4(3), 188-195. https://doi.org/10.30998/formatif.v4i3.154

Laksana, D. N. L. (2019). Kesulitan belajar anak dengan gaya belajar yang berbeda dalam menghadapi pembelajaran 4.0 serta strategi yang digunakan [Learning difficulties of children with different learning styles in dealing with learning 4.0 and the strategies used]. Pembelajaran di era big data dalam berbagai kondisi belajar (hal. 1-16). CV. AA. Rizky.

Masek, A., & Yamin, S. (2011). The effect of problem-based learning on critical thinking ability: a theoretical and empirical review. International Review of Social Sciences and Humanities, 2(1), 215-221.

Mulyanto, H., Gunarhadi, G., & Indriayu, M. (2018). The effect of problem based learning model on student mathematics learning outcomes viewed from critical thinking skills. International Journal of Educational Research Review, 3(2), 37-45. https://doi.org/10.24331/ijere.408454

Nadeak, B., & Naibaho, L. (2020). The effectiveness of problem-based learning on students'critical thinking. Jurnal Dinamika Pendidikan, 13(1), 1-7.

Nursyahidah, F., & Albab, I. U. (2018). Identifikasi kemampuan berpikir kritis matematis mahasiswa berkemampuan pemecahan masalah level rendah dalam pembelajaran kalkulus integral [Identification of mathematical critical thinking ability of students with low level problem solving ability in integral calculus learning]. Jurnal Elemen, 4(1), 34–49. https://doi.org/10.29408/jel.v4i1.513

Paul, R., & Elder, L. (2013). Critical thinking: Tools for taking charge of your professional and personal life. Pearson Education.

Perkins, C., & Murphy, E. (2006). Identifying and measuring individual engagement in critical thinking in online discussions: An exploratory case study. Educational Technology & Society, 9, 298-307. https://www.jstor.org/stable/jeductechsoci.9.1.298

Rosmaiyadi, R. (2017). Analisis kemampuan berpikir kritis matematis siswa dalam learning cycle 7e berdasarkan gaya belajar [Analysis of students' mathematical critical thinking ability in learning cycle 7e based on learning style]. AKSIOMA: Jurnal Program Studi Pendidikan Matematika, 6(1), 12-19. https://doi.org/10.24127/ajpm.v6i1.722

Samejima, M., Hisakane, D., & Komoda, N. (2015). Automatic annotation method on learners’ opinions in case method discussion. Interactive Technology and Smart Education, 12(2), 90–99. https://doi.org/10.1108/ITSE-04-2015-0003

Saputra, M. D., Joyoatmojo, S., Wardani, D. K., & Sangka, K. B. (2019). Developing critical-thinking skills through the collaboration of jigsaw model with problem-based learning model. International Journal of Instruction, 12(1), 1077-1094. https://doi.org/10.29333/iji.2019.12169a

Schoenberger-Orgad, M., & Spiller, D. (2014). Critical thinkers and capable practitioners. Journal of Communication Management, 18(3), 210–221. https://doi.org/10.1108/JCOM-11-2012-0085.

Şendağ, S., & Ferhan Odabaşi, H. (2009). Effects of an online problem-based learning course on content knowledge acquisition and critical thinking skills. Computers and Education, 53, 132–141. https://doi.org/10.1016/j.compedu.2009.01.008.

Sianturi, A., Sipayung, T. N., & Simorangkir, F. M. A. (2018). Pengaruh model problem based learning (PBL) terhadap kemampuan berpikir kritis matematis siswa SMPN 5 Sumbul [The effect of the problem based learning (PBL) model on the students’ mathematical critical thinking skills of SMPN 5 Sumbul]. Union: Jurnal Pendidikan Matematika, 6(1), 29-42. https://doi.org/10.30738/.v6i1.2082

Susilo, B. E. (2011). Analisis kesulitan belajar mahasiswa pada materi limit fungsi mata kuliah kalkulus dalam perspektif gaya belajar dan gaya berpikir mahasiswa [Analysis of student learning difficulties on the limit function of the calculus course in the perspective of student learning styles and thinking styles]. [Unpublished Master Thesis] Postgraduate Program of Universitas Sebelas Maret.

Susilo, B. E., Darhim, D., & Prabawanto, S. (2018). Supporting activities for critical thinking skills development based on students' perspective. In Proceedings of the 1st International Conference on Science and Technology for an Internet of Things. European Alliance for Innovation (EAI). https://doi.org/10.4108/eai.19-10-2018.2281320

Susilo, B. E., Darhim, D., & Prabawanto, S. (2019). Students critical thinking skills toward concepts differences in finding area of a plane region and definite integral. Unnes Journal of Mathematics Education, 8(1), 1-7.

Trilling, B., & Fadel, C. (2009). 21st century skills learning for life in our times. Jossey-Bass.

Vong, S. A., & Kaewurai, W. (2017). Instructional model development to enhance critical thinking and critical thinking teaching ability of trainee students at regional teaching training center in Takeo Province, Cambodia. Kasetsart Journal of Social Sciences, 38, 88–95. https://doi.org/10.1016/j.kjss.2016.05.002.

Widiawati, L., Joyoatmojo, S., & Sudiyanto. (2018). Higher order thinking skills as effect of problem-based learning in the 21st century learning. International Journal of Multicultural and Multireligious Understanding, 5(3), 96–105. https://ijmmu.com/index.php/ijmmu/article/view/223/139.

Zamzam, K. F. (2016). Pendekatan problem-based learning untuk mengembangkan kemampuan berpikir kritis mahasiswa [Problem-based learning approach to develop students' critical thinking ability]. Pedagogia: Jurnal Pendidikan, 5(2), 279-286. https://doi.org/10.21070/pedagogia.v5i2.261

Zetriuslita, Ariawan, R., & Nufus, H. (2016). Analisis kemampuan berpikir kritis matematis mahasiswa dalam menyelesaikan soal uraian kalkulus integral berdasarkan level kemampuan mahasiswa [Analysis of students' mathematical critical thinking skills in solving integral calculus description problems based on students' ability levels]. Infinity Journal, 5(1), 56–65. https://doi.org/10.22460/infinity.v5i1.p56-66

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Published

06-01-2022

How to Cite

Susilo, B. E. (2022). Students’ mathematical critical thinking ability in problem-based learning viewed based on learning style. Jurnal Elemen, 8(1), 187–200. https://doi.org/10.29408/jel.v8i1.4536

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