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Original Articles

Teachers’ Pedagogical Mathematical Awareness in Swedish Early Childhood Education

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References

  • Arcavi, A. (2003). The role of visual representations in the learning of mathematics. Educational Studies in Mathematics, 52(3), 215–241. doi: 10.1023/A:1024312321077
  • Aunio, P., & Niemivirta, M. (2010). Predicting children's mathematical performance in grade one by early numeracy. Learning and Individual Differences, 20(5), 427–435. doi: 10.1016/j.lindif.2010.06.003
  • Ball, D., Thames, M., & Phelps, G. (2008). Content knowledge for teaching. Journal of Teacher Education, 59(5), 389–407. doi: 10.1177/0022487108324554
  • Björklund, C. (2014). Powerful teaching in preschool – a study of goal-oriented activities for conceptual learning. International Journal of Early Years Education, 22(4), 380–394. doi: 10.1080/09669760.2014.988603
  • Burton, L. (2002). Children's mathematical narratives as learning stories. European Early Childhood Education Research Journal, 10(2), 5–18. doi: 10.1080/13502930285208921
  • Clements, D., & Sarama, J. (2007). Early childhood mathematics learning. In F. K. Lester Jr (Ed.), Second handbook of research on mathematics teaching and learning (pp. 461–555). New York: Information Age Publishing.
  • Clements, D., & Sarama, J. (2011). Early childhood teacher education: the case of geometry. Mathematics Teacher Education, 14(2), 133–148. doi: 10.1007/s10857-011-9173-0
  • Clements, D., Wilson, D., & Sarama, J. (2004). Young children's composition of geometric figures: a learning trajectory. Mathematical Thinking and Learning, 6(2), 163–184. doi: 10.1207/s15327833mtl0602_5
  • Cross, C., Woods, T., & Schweingruber, H. (Eds.). (2009). Mathematics learning in Early Childhood. Committee on Early Childhood Mathematics; National Research Council. Washington, DC: The National Academic Press.
  • Dehaene, S. (1997). The number sense. How the mind creates mathematics. New York: Oxford University Press.
  • Doverborg, E., & Pramling Samuelsson, I. (2009). Grundläggande matematik. In S. Sheridan, I. Pramling Samuelsson & E. Johansson (Eds.), Barns tidiga lärande. En tvärsnittsstudie om förskolan som miljö för barns lärande [Children's early learning. A cross-sectional study of preschool as an environment for children's learning, in Swedish] (pp. 125–150). Gothenburg: Acta Universitatis Gothoburgensis.
  • Doverborg, E., & Pramling Samuelsson, I. (2011). Early mathematics in the preschool context. In N. Pramling & I. Pramling Samuelsson (Eds.), Educational Encounters: Nordic studies in early childhood didactics (pp. 37–64). New York: Springer.
  • Fuson, K. (1992). Relationships between counting and cardinality from age 2 to age 8. In J. Bideaud, C. Meljac & J-P. Fischer (Eds.), Pathways to number. Children's developing numerical abilities (pp127–149). Hillsdale, NJ: Lawrence Erlbaum Associates.
  • Garrick, R., Threlfall, J., & Orton, A. (1999). Pattern in the nursery. In A. Orton (Ed.), Pattern in the teaching and learning of mathematics (pp. 1–17). London: Cassell.
  • Gelman, R., & Gallistel, C. (1978). The child's understanding of number. Cambridge, MA: Harvard University Press.
  • Griffin, S. (2004). Building number sense with Number Worlds: A mathematics program for young children. Early Childhood Research Quarterly, 19(1), 173–180. doi: 10.1016/j.ecresq.2004.01.012
  • Hannula, M., & Lehtinen, E. (2005). Spontaneous focusing on numerosity and mathematical skills of young children. Learning and Instruction, 15(3), 237–256. doi: 10.1016/j.learninstruc.2005.04.005
  • van den Heuvel-Panhuizen, M., & Buys, K. (Eds.) (2005). Young children learn measurement and geometry: a learning-teaching trajectory with intermediate attainment targets for the lower grades in primary school. Utrecht: Freudenthal Institute, Utrecht University.
  • Hunting, R. P. (2003). Part-whole number knowledge in preschool children. Journal of Mathematical Behaviour, 22(3), 217–235. doi: 10.1016/S0732-3123(03)00021-X
  • Huttenlocher, J. (2008). Coding location: The view from toddler studies. American Psychologist, 63(8), 641–648. doi: 10.1037/0003-066X.63.8.641
  • Jordan, N. C., Kaplan, D., Nabors Oláh, L., & Locuniak, M. (2009). Number sense growth in kindergarten: A longitudinal investigation of children at risk for mathematics difficulties. Child Development, 77(1), 153–175. doi: 10.1111/j.1467-8624.2006.00862.x
  • Klein, P. (1991). Molar assessment and parental intervention in infancy and early childhood: new evidence. In R. Feuerstein, P. Klein & A. Tannenbaum (Eds.), Mediated learning experience (MLE): theoretical, psychological and learning implications (pp. 213–239). London: Freund Publishing House Ltd.
  • Krajewski, K., & Schneider, W. (2009). Early development of quantity to number-word linkage as a precursor of mathematical school achievement and mathematical difficulties: Findings from a four-year longitudinal study. Learning and Instruction, 19(6), 513–526. doi: 10.1016/j.learninstruc.2008.10.002
  • Lee, J. (2010). Exploring kindergarten teachers’ pedagogical content knowledge of mathematics. International Journal of Early Childhood, 42(1), 27–41. doi: 10.1007/s13158-010-0003-9
  • LeFevre, J-A., Fast, L., Skwarchuk, S-L., Smith-Chant, B., Bisanz, J., Kamawar, D., & Penner-Wilger, M. (2010). Pathways to mathematics: Longitudinal predictors of performance. Child Development, 81(6), 1753–1767. doi: 10.1111/j.1467-8624.2010.01508.x
  • Levine, S., Suriyakham, L. W., Rowe, M., Huttenlocher, J., & Gunderson, E. (2010). What counts in the development of young children's number knowledge? Developmental Psychology, 46(5), 1309–1319. doi: 10.1037/a0019671
  • Levine, S., Ratliff, K., Huttenlocher, J., & Cannon, J. (2011). Early puzzle play: A predictor of preschoolers’ spatial transformation skill. Developmental Psychology. doi:10.1037/a0025913
  • Mazzocco, M., Feigenson, L., & Halberda, J. (2011). Preschoolers’ precision of the approximate number system predicts later school mathematics performance. PLoS ONE, 6(9). e23749. doi:10.1371/journal.pone.0023749.
  • Marton, F., & Tsui, A. (Eds.). (2004). Classroom discourse and the space of learning. Mahwah, NJ: Lawrence Erlbaum.
  • Mertens, D. (1998). Research methods in education and psychology. Integrating diversity with quantitative & qualitative approaches. London: Sage Publications.
  • Mosenthal, J., & Ball Loewenberg, D. (1992). Constructing new forms of teaching: Subject matter knowledge in in-service teacher education. Journal of Teacher Education, 43(5), 347–356. doi: 10.1177/0022487192043005004
  • Mosvold, R., Bjuland, R., Fauskanger, J., & Jakobsen, A. (2011). Similar but different – investigating the use of MKT in a Norwegian kindergarten setting. Paper presented at CERME, 9–13 February, 2011, Rzeszów, Poland.
  • Mulligan, J., & Mitchelmore, M. (2013). Early awareness of mathematical pattern and structure. In L. D. English & J. T. Mulligan (Eds.), Reconceptualizing Early Mathematics Learning, Advances in Mathematics Education (pp. 29–45). Dordrecht: Springer. doi:10.1007/978-94-007-6440-8_3
  • NCTM. (2006). Curriculum focal points for prekindergarten through grade 8 mathematics: A quest for coherence. Reston, VA: National Council of Teachers of Mathematics.
  • van Oers, B. (2013). Challenges in the innovation of mathematics education for young children. Educational Studies in Mathematics, 84(2), 267–272. doi: 10.1007/s10649-013-9509-z
  • Pramling Samuelsson, I., & Asplund Carlsson, M. (2008). The playing learning child: Towards a pedagogy of early childhood. Scandinavian Journal of Educational Research, 52(6), 623–641. doi: 10.1080/00313830802497265
  • Pramling Samuelsson, I. & Pramling, N. (2013). Orchestrating and Studying Children's and Teachers’ Learning: Reflections on Developmental Research Approaches. Education Inquiry, 4(3), 519–536.
  • Pruden, S., Levine, S., & Huttenlocher, J. (2011). Children's spatial thinking: does talk about the spatial world matter? Developmental Science, 14(6), 1417–1430. doi: 10.1111/j.1467-7687.2011.01088.x
  • Resnick, L. (1983). A developmental theory of number understanding. In H. Ginsburg (Ed.), The development of mathematical thinking (pp. 109–151). New York: Academic Press.
  • Sarama, J., & Clements, D. (2009). Early childhood mathematics education research. Learning trajectories for young children. New York: Routledge.
  • SFS 2010:800. Education act. Stockholm: Ministry of Education and Research.
  • Sheridan, S. (2009). Förskolornas pedagogiska kvalitet. In S. Sheridan, I. Pramling Samuelsson & E. Johansson (Eds.), Barns tidiga lärande. En tvärsnittsstudie om förskolan som miljö för barns lärande [Children's early learning. A cross-sectional study of preschool as an environment for children's learning, in Swedish] (pp. 75–92). Gothenburg: Acta Universitatis Gothoburgensis.
  • Sheridan, S., Williams, P., Sandberg, A., & Vuorinen, T. (2011). Preschool teaching in Sweden: A profession in change. Educational Research, 53(4), 415–437. doi: 10.1080/00131881.2011.625153
  • Shulman, L. (1986). Those who understand: Knowledge growth in teaching. Educational Researcher, 15(2), 4–14. doi: 10.3102/0013189X015002004
  • Siegler, R., & Ramani, G. (2009). Playing linear number board games – but not circular ones – improves low-income preschoolers’ numerical understanding. Journal of Educational Psychology, 101(3), 545–560. doi: 10.1037/a0014239
  • Swedish National Agency for Education. (2011a). Curriculum for the preschool Lpfö 98. Revised 2010. Retrieved from www.skolverket.se
  • Swedish National Agency for Education. (2011b). Curriculum for the compulsory school, preschool class and the recreation centre, 2011. Retrieved from www.skolverket.se
  • Sylva, K., Siraj-Blatchford, I., Taggart, B., Sammons, P., Melhuish, E., Elliot, K., & Totsika, V. (2006). Capturing quality in early childhood through environmental rating scales. Early Childhood Research Quarterly, 21(1), 76–92. doi: 10.1016/j.ecresq.2006.01.003
  • Thiel, O. (2010). Teachers’ attitudes towards mathematics in early childhood education. European Early Childhood Education Research Journal, 18(1), 105–115. doi: 10.1080/13502930903520090
  • Tsamir, P., Tirosh, D., & Levenson, E. (2008). Intuitive nonexamples: the case of triangles. Educational Studies in Mathematics, 69(2), 81–95. doi: 10.1007/s10649-008-9133-5
  • Tsamir, P., Tirosh, D., & Levenson, E. (2011). Windows to early childhood mathematics teacher education. Journal of Mathematics Teacher Education, 14(2), 89–92. doi: 10.1007/s10857-011-9174-z
  • Van Hiele, P., & van Hiele-Geldof, D. (1958). A method of initiation into geometry at secondary schools. In H. Freudental (Ed.), Report on methods of initiation into geometry (pp. 1–31). Groningen, the Netherlands: J.B. Wolters.
  • Wynn, K. (1998). Psychological foundations of number: numerical competence in human infants. Trends in Ognitive Sciences, 2(8), 296–303.
  • Zur, O., & Gelman, R. (2004). Young children can add and subtract by predicting and checking. Early Childhood Research Quarterly, 19(1), 121–137.

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