References
- Abedalaziz, N. & Akmar, S. N. (2012). Epistemological beliefs about mathematical problem solving among Malaysian students. OIDA International Journal of Sustainable Development 5(1), 59-74.
- Callejo, M. L. & Vila, A. (2009). Approach to mathematical problem solving and students' belief system: Two case studies. Educ. Stud. Math. 72(1), 111-126. ME 2010a.00118 https://doi.org/10.1007/s10649-009-9195-z
- Depaepe, F.; De Corte, E. & Verschaffel, L. (2010). Teachers' metacognitive and heuristic approaches to word problem solving: Analysis and impact on students' beliefs and performance. ZDM, Int. J. Math. Educ. 42(2), 205-218. ME 2010c.00124 https://doi.org/10.1007/s11858-009-0221-5
- Di Martino, P. & Zan, R. (2011). Attitude towards mathematics: A bridge between beliefs and emotions. ZDM, Int. J. Math. Educ. 43(4), 471-482. ME 2012a.00151 https://doi.org/10.1007/s11858-011-0309-6
- Fennema, E. & Sherman, J. (1976). Fennema-Sherman mathematics attitudes toward the learning of mathematics by females and males. Madison, WI: Wisconsin Center for Educational Research.
- Hair, J. F.; Black, W. C.; Babin, B. J. & Anderson, R. E. (2010). Multivariate data analysis (7th ed.). Upper Saddle River, NJ: Pearson Education.
- Hatcher, L. & Stepanski, E. J. (1994). A step-by-step approach to using the SAS system for univariate and multivariate statistics. Cary, NC: SAS Institute.
- Higgins, K. M. (1997). The effect of year-long instruction in mathematical problem solving on middle-school students' attitudes, beliefs, and abilities. Journal of Experimental Education 66(1), 5-28. https://doi.org/10.1080/00220979709601392
- Hofer, B. K. & Pintrich, P. R. (1997). The development of epistemological theories: Beliefs about knowledge and knowing and their relation to learning. Review of Educational Research, 67(1), 88-140. https://doi.org/10.3102/00346543067001088
- Kline, R. B. (2011). Principles and practice of structural equation modeling (3rd ed.). New York: The Guilford Press.
- Kloosterman, P. & Stage, F. K. (1992). Measuring beliefs about mathematical problem solving. School Science and Mathematics, 92(3), 109-115. ME 1992i.37098 https://doi.org/10.1111/j.1949-8594.1992.tb12154.x
- Leong, Y. H.; Tay, E. G.; Toh, T. L.; Quek, K. S. & Dindyal, J. (2011). Revising Polya's "look back" in a Singapore school. J. Math. Behav. 30(3), 181-193. ME 212a.00105 https://doi.org/10.1016/j.jmathb.2011.07.005
- Lester, F. K.; Garofalo, J. & Kroll, D. L. (1989). Self-confidence, interest, beliefs and metacognition: Key influences on problem-solving behavior. In: D. B. McLeod & V. M. Adams (Eds.), Affect and mathematical problem solving: A new perspective (pp. 75-88). New York: Springer-Verlag. ME 1991e.00337
- Mason, L. (2003). High school students' beliefs about maths, mathematical problem solving, and their achievement in maths: A cross-sectional study. Educational Psychology 23(1), 73-85. https://doi.org/10.1080/01443410303216
- Mason, L. & Scrivani, L. (2004). Enhancing students' mathematical beliefs: An intervention study. Learn. Instr. 14(2), 153-176. ME 212a.0010 https://doi.org/10.1016/j.learninstruc.2004.01.002
- McLeod, D. B. (1992). Research on affect in mathematics education: A reconceptualization. In: D. A. Grouws (Ed.), Handbook of research on mathematics teaching and learning: A project of the National Council of Teachers of Mathematics (pp. 575-596). New York: Macmillan.
- Muis, K. R. (2004). Personal epistemology and mathematics: A critical review and synthesis of research. Review of Educational Research 74(3), 317-377. https://doi.org/10.3102/00346543074003317
- National Council of Teachers of Mathematics [NCTM] (1989). Curriculum and evaluation standards for school mathematics. Reston, VA: NCTM. ME 1989k.00892
- Op't Eynde, P. & De Corte, E. (2003). Students' mathematics-related belief systems: Design and analysis of a questionnaire. Paper presented at the Annual Meeting of the American Educational Research Association, Chicago; Apr. 21-25, 2003.
- Perrenet, J. & Taconis, R. (2009). Mathematical enculturation from the students' perspective: Shift in problem-solving beliefs and behavior during the bachelor programme. Educ. Stud. Math. 71(2), 181-198. ME 2010a.00088 https://doi.org/10.1007/s10649-008-9166-9
- Polya, G. (1957). How to solve it: A new aspect of mathematical method (2nd ed.). Princeton, NJ: Princeton University Press. ME 1977a.00026
- Quek, K. S.; Dindyal, J.; Toh, T. L.; Leong, Y. H. & Tay, E. G. (2011). Problem solving for everyone: A design experiment. J. Korean Soc. Math. Educ. Ser. D, Res. Math. Educ. 15(1), 31-44.
- Roesken, B.; Hannula, M. S. & Pehkonen, E. (2011). Dimensions of students' views of themselves as learners of mathematics. ZDM, Int. J. Math. Educ. 43(4), 497-506. doi: 10.1007/s11858-011-0315-8 ME 2012a.00253
- Schoenfeld, A. H. (1983). Beyond the purely cognitive: Belief systems, social cognitions, and metacognition as driving forces in intellectual performance. Cognitive Science 7, 329-363. https://doi.org/10.1207/s15516709cog0704_3
- Schoenfeld, A. H. (1985). Mathematical problem solving. Orlando, Florida: Academic Press. ME 1986a.01069
- Schoenfeld, A. H. (1989). Explorations of students' mathematical beliefs and behavior. Journal for Research in Mathematics Education, 20(4), 338-355. ME 1990b.00597 https://doi.org/10.2307/749440
- Schoenfeld, A. H. (1992). Learning to think mathematically: Problem solving, metacognition and sensemaking in mathematics. In: D. A. Grouws (Ed.), Handbook of research in mathematics teaching and learning (pp. 334-389). New York: MacMillan. ME 1993f.01809
- Schommer-Aikins, M.; Duell, O. K. & Hutter, R. (2005). Epistemological beliefs, mathematical problem-solving beliefs, and academic performance of middle school students. The Elementary School Journal, 105(3), 289-304. https://doi.org/10.1086/428745
- Tay, E. G.; Quek, K. S.; Dindyal, J.; Leong, Y. H. & Toh, T. L. (2011). Teachers solving mathematics problems: Lessons from their learning journeys. J. Korean Soc. Math. Educ. Ser. D, Res. Math. Educ.15(2), 159-179.
- Teong, S. K. (2003). The effect of metacognitive training on mathematical word-problem solving. Journal of Computer Assisted Learning, 19(1), 46-55. https://doi.org/10.1046/j.0266-4909.2003.00005.x
- Toh, T. L.; Quek, K. S.; Leong, Y. H.; Jaguthsing, D. & Tay, E. G. (2011). Making mathematics practical: An approach to problem solving. Singapore: World Scientific. ME 2012b.00450
- Verschaffel, L.; De Corte, E.; Lasure, S.; van Vaerenbergh, G.; Bogaerts, H. & Ratinckx, E. (1999). Learning to solve mathematical application problems: A design experiment with fifth graders. Mathematical Thinking and Learning, 1(3), 195-229. ME 1999f.04027 https://doi.org/10.1207/s15327833mtl0103_2
- Wenger, E. (1999). Communities of practice: Learning, meaning, and identity. Cambridge, UK: Cambridge University Press.