Analisis Kemampuan Pemecahan Masalah Siswa SMA dalam Memecahkan Masalah Persamaan Kuadrat
DOI:
https://doi.org/10.28926/briliant.v6i4.691Keywords:
education, mathematicsAbstract
Penelitian ini bertujuan menganalisis kemampuan pemecahan masalah persamaan kuadrat siswa SMA. Jenis penelitian ini adalah kualitatif deskriptif. Analisis data pada penelitian ini menggunakan indikator kemampuan pemecahan masalah. Hasil penelitian ini menunjukkan bahwa 10% siswa dalam kategori sangat baik memenuhi semua indikator, 10% siswa dalam kategori baik memenuhi semua indikator tetapi tidak lengkap, 10% siswa dalam kategori cukup memenuhi semua indikator tetapi tidak lengkap dan kurang tepat, 20% siswa dalam kategori kurang hanya memenuhi indikator pertama, kedua, ketiga tetapi tidak lengkap dan kurang tepat, sedangkan 50% siswa dalam kategori sangat kurang hanya memenuhi indikator pertama dan kedua tetapi tidak lengkap dan kurang tepat.
References
Bernard, M., Akbar, P., Ansori, A., & Filiestianto, G. (2019). Improve the ability of understanding mathematics and confidence of elementary school students with a contextual approach using VBA learning media for Microsoft Excel. Journal of Physics: Conference Series, 1318(1). https://doi.org/10.1088/1742-6596/1318/1/012035
Bhat, M. A. (2014). International Journal Advances in Social Science and Humanities Available online at : www.ijassh.com The Effect of Learning Styles on Problem Solving Ability among High School Students. International Journal Advances in Social Science and Humanities, 2(7), 40–43.
Blum, W; Niss, M. (1991). Applied mathematical problem solving, modelling, applications, and links to the other subjects-state, trends and issues in mathematics instruction. Educational Studies in Mathematics, 37–68.
Charlito C., B., & Emybel M., A. (2019). Difficulties Encountered in Solving Quadratic Equation of the Grade 9 Students: Basis for Constructing Instructional Materials. International Journal of Scientific and Research Publications (IJSRP), 9(5), p8931. https://doi.org/10.29322/ijsrp.9.05.2019.p8931
Hadi, S., & Radiyatul, R. (2014). Metode Pemecahan Masalah Menurut Polya untuk Mengembangkan Kemampuan Siswa dalam Pemecahan Masalah Matematis di Sekolah Menengah Pertama. EDU-MAT: Jurnal Pendidikan Matematika, 2(1), 53–61. https://doi.org/10.20527/edumat.v2i1.603
Handayani, I., Januar, R. L., & Purwanto, S. E. (2018). The effect of Missouri mathematics project learning model on students’ mathematical problem solving ability. Journal of Physics: Conference Series, 948(1). https://doi.org/10.1088/1742-6596/948/1/012046
Hobri, H., Suharto, S., & Rifqi Naja, A. (2018). Analysis of students’ creative thinking level in problem solving based on national council of teachers of mathematics. Journal of Physics: Conference Series, 1008(1). https://doi.org/10.1088/1742-6596/1008/1/012065
Jazuli, A., Setyosari, P., Sulthon, & Kuswandi, D. (2017). Improving conceptual understanding and problem-solving in mathematics through a contextual learning strategy. Global Journal of Engineering Education, 19(1), 49–53.
Mairing, J. P. (2017). Students’ Abilities To Solve Mathematical Problems According To Accreditation Levels. International Journal of Education, 10(1), 1. https://doi.org/10.17509/ije.v10i1.6902
Makonye, J., & Nhlanhla, S. (2014). Exploring ‘non-science’ grade 11 learners’ errors in solving quadratic equations. Mediterranean Journal of Social Sciences, 5(27), 634–644. https://doi.org/10.5901/mjss.2014.v5n27p634
NCTM. (2000). Principles and Standards for School Mathematics. Reston : VA.
Nogueira de Lima, R., & Tall, D. (2008). Procedural embodiment and magic in linear equations. Educational Studies in Mathematics, 67(1), 3–18. https://doi.org/10.1007/s10649-007-9086-0
Ogilvie, C. A. (2009). Changes in students’ problem-solving strategies in a course that includes context-rich, multifaceted problems. Physical Review Special Topics - Physics Education Research, 5(2), 1–14. https://doi.org/10.1103/PhysRevSTPER.5.020102
Permata, L. D., Kusmayadi, T. A., & Fitriana, L. (2018). Mathematical problem solving skills analysis about word problems of linear program using IDEAL problem solver. Journal of Physics: Conference Series, 1108(1). https://doi.org/10.1088/1742-6596/1108/1/012025
Permata, L. D., Kusmayadi, T. A., & Fitriana, L. (2019). Exploration of student’s flexibility in solving linear equation system and linear inequality problems. Journal of Physics: Conference Series, 1211(1). https://doi.org/10.1088/1742-6596/1211/1/012099
Polya, G. (1973). How to Solve It : A New Aspect of Mathematical Method.
Sahar, B., & Rohani Ahmad. (2010). Assessing cognitive and metacognitive strategies during algebra problem solving among university students. Procedia - Social and Behavioral Sciences. https://doi.org/10.1016/j.sbspro.2010.12.056
Sarwadi, & Shahrill, M. (2014). Understanding Students’ Mathematical Errors and Misconceptions: The Case of Year 11 Repeating Students. Mathematics Education Trends and Research, 2014(June), 1–10. https://doi.org/10.5899/2014/metr-00051
Tambunan, H. (2018). Impact of Heuristic Strategy on Students’ Mathematics Ability in High Order Thinking. International Electronic Journal of Mathematics Education, 13(3), 321–328. https://doi.org/10.12973/iejme/3928
Tambychik, T., & Meerah, T. S. M. (2010). Students’ difficulties in mathematics problem-solving: What do they say? Procedia - Social and Behavioral Sciences, 8(5), 142–151. https://doi.org/10.1016/j.sbspro.2010.12.020
Tello, E. A. (2010). Making Mathematics Word Problems Reliable Measures of Student Mathematics Abilities. Journal of Mathematics Education, 3(1), 15–26.
Voogt, J., & Roblin, N. P. (2010). 21 st CENTURY SKILLS DISCUSSION PAPER. Pacific Policy Research Center in Research & Evaluation (2010). http://hdl.voced.edu.au/10707/254371.
Wahyuni, S., Indrawati, I., Sudarti, S., & Suana, W. (2017). Developing science process skills and problem-solving abilities based on outdoor learning in junior high school. Jurnal Pendidikan IPA Indonesia, 6(1), 165–169. https://doi.org/10.15294/jpii.v6i1.6849
Woodward, J; Beckmann, S; Driscoll, M; Franke, M; Herzig, P; Jitendra, A; Koedinger, K, R; Ogbuehi, P. (2012). Improving mathematical problem solving in grades 4 through 8: A practice guide. National Center for Education Evaluation and Regional Assistance, Institute of Education Sciences, U.S. Department of Education, 1–92. papers3://publication/uuid/FEC855E4-BFA6-4FC0-9784-3A6860CD4EAE
Yee, S. P., & Bostic, J. D. (2014). Developing a contextualization of students’ mathematical problem solving. Journal of Mathematical Behavior, 36, 1–19. https://doi.org/10.1016/j.jmathb.2014.08.002




