Page 197 - Children’s mathematical development and learning needs in perspective of teachers’ use of dynamic math interviews
P. 197
disabled children. Focus on Learning Problems in Mathematics, 22(2), 18–31. https://doi. org/ 10.1080/135467998387389
Pajares, F., & Miller, M. D. (1994). Role of self-efficacy and self-concept beliefs in mathematical problem-solving: A path analysis. Journal of Educational Psychology, 86(2), 193–203. https//doi.org/10.1037/0022-0663.86.2.193
Passolunghi, M. C., & Pazzaglia, F. (2004). Individual differences in updating in relation to arithmetic problem solving. Learning and Individual Differences, 14(4), 219–230. https:// doi.org/10.1016/j.lindif.2004.03.001
Porter, A. C., Garet, M. S., Desimone, L., Birman, B. F., & Suk Yoon, K. (2000). Does professional development change teaching practice? Results from a three-year study. U.S. Department of Education. Retrieved from http://www.ed.gov/pubs/edpubs.html.
Rockoff, J. (2004). The impact of individual teachers on student achievement: Evidence from panel data. The American Economic Review, 94(2), 247–252. https://doi. org/10.1257/0002828041302244
Seidel, T., & Shavelson, R. J. (2007). Teaching effectiveness research in the past decade: The role of theory and research design in disentangling meta-analysis results. Review of Educational Research, 77(4), 454–499. https://doi.org/10.3102/0034654307310317
Stipek, D. J., Givvin, K. B., Salmon, J. M., & MacGyvers, V. L. (2001). Teachers’ beliefs and practices related to mathematics instruction. Teaching and Teacher Education, 17(2), 213–226. https://doi.org/10.1016/S0742-051X(00)00052-4
Stronge, J. H., Ward, T. J., & Grant, L. W. (2011). What makes good teachers good? A cross-case analysis of the connection between teacher effectiveness and student achievement. Journal of Teacher Education, 62(4), 339–355. https://doi. org/10.1177/0022487111404241
Tella, A. (2008). Teacher variables as predictors of academic achievement of primary school pupils mathematics. International Electronic Journal of Elementary Education, 1(1),17–33. Retrieved from https://iejee.com/index.php/IEJEE/article/view/4
Tripp, T. R., & Rich, P. J. (2012). The influence of video analysis on the process of teacher change. Teaching and Teacher Education, 28(5), 728–739. https://doi.org/10.1016/j. tate.2012.01.011
Van Driel, J., Meirink, J., Van Veen, K., & Zwart, R. (2012). Current trends and missing links in studies on teacher professional development in science education: A review of design features and quality of research. Studies in Science Education, 48(2), 129–160. https://doi.org/10.1080/03057267.2012.738020
Veldhuis, M., Van den Heuvel-Panhuizen, M., Vermeulen, J. A., & Eggen, T. J. H. M. (2013). Teachers’ use of classroom assessment in primary school mathematics education in the Netherlands. Cadmo, 21(2), 35–53. https://doi.org/10.3280/CAD2013-002004
Verschaffel, L., Schukajlow, S., Star, J., & Van Dooren, W. (2020). Word problems in mathematics education: A survey. ZDM Mathematics Education, 52(1), 1–16. https://doi. org/10.1007/s11858-020-01130-4
Weidinger, A. F., Steinmayr, R., & Spinath, B. (2018). Changes in the relation between competence beliefs and achievement in math accross elementary school years. Child Development, 89(2), 138–156. htpps://doi.org/10.1111/cdev.12806
Wiley, J., & Jarosz, A. F. (2012). How working memory capacity affects problem solving. Psychology of Learning and Motivation, 56(6), 185–227. https://doi.org/10.1016/B978-0- 12-394393-4.00006-6
Wilkins, J. L. M. (2008). The relationship among elementary teachers’ content knowledge, attitudes, beliefs, and practices. Journal of Math Teacher Education, 11(2), 139–164. https://doi.org/10.1007/s10857-007-9068-2
Wolff, F., Helm, F., Zimmerman, F., Nagy, G., & Möller, J. (2018). On the effects of social, temporal, and dimensional comparisons on academic self-concept. Journal of Educational Psychology, 110(7), 1005–1025. https://doi.org/10.1037/edu0000248
Zheng, X., Swanson, H. L., & Marcoulides, G. A. (2011). Working memory components as predictors of students’ mathematical word problem solving. Journal of Experimental Child Psychology, 110(4), 481–498. https://doi.org/10.1016/j.jecp.2011.06.001
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