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References
Agostino, A., Johnson, J., & Pascual-Leone, J. (2010). Executive functions underlying multiplicative reasoning: Problem type matters. Journal of Experimental Child Psychology, 105(4), 286–305. https://doi.org/10.1016/j.jecp.2009.09.006
Allen, K., & Giofrè, D. (2021). A distinction between working memory components as unique predictors of mathematical components in 7-8 year old children. Educational Psychology, 42(6), 678–694. https://doi.org/10.1080/01443410.2020.1857702
Alloway, T. P. (2012). Alloway Working Memory Assessment 2nd Edition (AWMA-2): Manual. Pearson Education.
Andersson, U. (2007). The contribution of working memory to students’ mathematical word problem solving. Applied Cognitive Psychology, 21(9), 1201–1216. https://doi. org/10.1002/acp.1317
Andersson, U. (2008). Working memory as a predictor of written arithmetical skills in students: The importance of central executive functions. British Journal of Educational Psychology, 78(2), 181–203. https://doi.org/10.1348/000709907X209854
Baddeley, A. D. (2000). The episodic buffer: A new component of working memory? Trends in Cognitive Sciences, 4(11), 417–423. https://doi.org/10.1016/S1364-6613(00)01538-2
Balhinez, R., & Shaul, S. (2019). The relationship between reading fluency and arithmetic fact fluency and their shared cognitive skills: A developmental perspective. Frontiers in Psychology, 10, Article 1281. https://doi.org.10.3389/fpsyg.2019.01281
Best, J. R., & Miller, P. H. (2010). A developmental perspective on executive function. Child Development, 81(6), 1641–1660. https://doi.org/10.1111/j.1467-8624.2010.01499.x
Boonen, A. J. H., Van der Schoot, M., Van Wesel, F., De Vries, M. H., & Jolles, J. (2013). What underlies successful word problem solving? A path analysis in sixth grade students. Contemporary Educational Psychology, 38(3), 271–279. https://doi.org/10.1016/j. cedpsych.2013.05.001
Bull, R., Johnston, R. S., & Roy, J. A. (1999). Exploring the roles of the visual-spatial sketch pad and central executive in children’s arithmetical skills: Views from cognition and developmental neuropsychology. Developmental Neuropsychology, 15(3), 421–442. https://doi.org/10.1080/87565649909540759
Bull, R., & Lee, K. (2014). Executive functioning and mathematics achievement. Child Development Perspectives, 8(1), 36–41. https://doi.org/10.1111/cdep.12059
Bull, R., & Scerif, G. (2001). Executive functioning as a predictor of students’ mathematics ability: Inhibition, switching, and working memory. Developmental Neuropsychology, 19(3), 273–293. https://doi.org/10.1207/S15326942DN1903_3
Cantin, R. H., Gnaedinger, E. K., Gallaway, K. C., Hesson-McInnis, S., & Hund, A. M. (2016). Executive functioning predicts reading, mathematics, and theory of mind during the elementary years. Journal of Experimental Child Psychology, 146(2016), 66–78. https:// doi.org/10.1016/j.jecp.2016.01.014
Cragg, L. Keeble, S., Richardson, S., Roome, H. E., & Gilmore, C. (2017). Direct and indirect influences of executive functions on mathematics achievement. Cognition, 162(2017), 12–26. https://doi.org/10.1016/j.cognition.2017.01.014
Delis, D. C., Kaplan, E., & Kramer, J. H. (2001). Delis-Kaplan executive function system, color- word interference test: Manual. Pearson Assessment and Information.
De Vos, T. (2010). TempoTest Automatiseren [Speeded Arithmetic Test]. Boom Test Uitgevers.
Diamond, A. (2012). Activities and programs that improve children’s executive functions. Current Directions in Psychological Science, 21(5), 335–341. https://doi. org/10.1177/0963721412453722
Field, A. P. (2009). Discovering statistics using SPSS 3rd ed.. Sage.
Friso-van den Bos, I., Van der Ven, S. H. G., Kroesbergen, E. H., & Van Luit, J. E. H. (2013). Working memory and mathematics in primary school students: A meta- analysis. Educational Research Review, 10(2013), 29–44. http:/dx.doi.org/10.1016/j. edurev.2013.05.003