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An Exploratory Look at the Relationships Among Math Skills, Motivational Factors and Activity Choice

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Abstract

This study of a preschool classroom of 4 year old children examines underlying skills of number sense such as counting and spatial skills and Spontaneous Focusing on Numerosity. It also investigates children’s patterns of engaging in spontaneous mathematical activities in free-play activity centers in relation to behaviors associated with classroom achievement such as attention/persistence, self-regulation, perceived math ability, and motivation. A mixed method design with structured empirical measures and naturalistic observations was used. Several data sources were analyzed, including videotaped interviews, systematic observational data, and teacher ratings. Findings indicate that children who spontaneously focus on numerosity are advanced in their counting skills. Teacher rating of motivation and interest is also correlated with counting skills and spatial skills. Teacher rating of persistence is correlated with counting skills and child self-reports of persistence in math correlated with spatial skills. Variability existed in free play activity time, with social or dramatic play the only activity observed for all children. The major math activities chosen were those involving block construction and some computer games. It was noted that students less skilled in math tended to choose less cognitively challenging activities involving small motor tasks rather than more cognitively challenging activities. Using a Vygotskian socio-cultural lens, several suggestions are made about how verbal interactions with teachers and other adults may contribute to children’s cognitive competence in math.

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References

  • Altermatt, E. R., Pomerantz, E. M., Ruble, D. N., Frey, K. S., & Greulich, F. K. (2002). Predicting changes in children’s self-perceptions of academic competence: A naturalistic examination of evaluative discourse among classmates. Developmental Psychology, 38(6), 903–917.

    Article  Google Scholar 

  • Arnold, D. H., Fisher, P. H., Doctoroff, G. L., & Dobbs, J. (2002). Accelerating math development in Head Start classrooms. Journal of Educational Psychology, 94(4), 762–770.

    Article  Google Scholar 

  • Baroody, A. J., Lai, M., & Mix, K. S. (2006). The development of young children’s early number and operation sense and its implications for early childhood education. In B. Spodek & O. Saracho (Eds.), Handbook of research on the education of young children (2nd ed., pp. 187–221). Mahwah, NJ: Lawrence Erlbaum.

    Google Scholar 

  • Bergin, D. A. (1999). Influences on classroom interest. Educational Psychologist, 34(2), 87–98.

    Article  Google Scholar 

  • Bodrova, E., & Leong, D. J. (2007). Tools of the mind: The Vygotskian approach to early childhood education (2nd ed.). Upper Saddle River, NJ: Prentice Hall.

    Google Scholar 

  • Butler, R. (2005). Competence assessment, competence, and motivation between early and middle childhood. In A. J. Elliot & C. S. Dweck (Eds.), Handbook of competence and motivation (pp. 202–221). New York, NY: Guilford.

    Google Scholar 

  • Claessens, A., Duncan, G., & Engel, M. (2009). Kindergarten skills and fifth-grade achievement: Evidence from the ECLS-K. Economics of Education Review, 28(4), 415–427.

    Article  Google Scholar 

  • Clements, D. H. (2004a). Geometric and spatial thinking in early childhood education. In D. H. Clements & J. Sarama (Eds.), Engaging young children in mathematics: Standards for early childhood mathematics education (pp. 267–297). Mahwah, NJ: Lawrence Erlbaum Associates.

    Google Scholar 

  • Clements, D. H. (2004b). Major themes and recommendations. In D. H. Clements & J. Sarama (Eds.), Engaging young children in mathematics: Standards for early childhood mathematics education (pp. 7–72). Mahwah, NJ: Lawrence Erlbaum Associates.

    Google Scholar 

  • Eder, R. A. (1990). Uncovering young children’s psychological selves: Individual and developmental differences. Child Development, 61(3), 849–863.

    Article  Google Scholar 

  • Ee, J., Wong, H. Y., & Aunio, P. (2006). Numeracy of young children in Singapore, Beijing, & Helsinki. Early Childhood Education Journal, 33(5), 325–332.

    Article  Google Scholar 

  • Ehrlich, S. B., & Levine, S. C. (2007). The impact of teacher “number talk” in low- and middle-SES preschool classrooms. Chicago, IL: Paper presented at the meeting of the American Educational Research Association.

    Google Scholar 

  • Fantuzzo, J., Perry, M. A., & McDermott, P. (2004). Preschool approaches to learning and their relationship to other relevant classroom competencies for low-income children. School Psychology Quarterly, 19(3), 212–230.

    Article  Google Scholar 

  • Hamm, J. V., & Perry, M. (2002). Learning mathematics in first-grade classrooms: On whose authority? Journal of Educational Psychology, 94(1), 126–137.

    Article  Google Scholar 

  • Hannula, M. M., & Lehtinen, E. (2005). Spontaneous focusing on numerosity and mathematical skills of young children. Learning and Instruction, 15(3), 237–256.

    Article  Google Scholar 

  • Hannula, M. M., Mattinen, A., & Lehtinen, E. (2005). Does social interaction influence 3-year-old children’s tendency to focus on numerosity? A quasi-experimental study in day care. In L. Verschaffel, E. De Corte, G. Kanselaar, & M. Valcke (Eds.), Powerful environments for promoting deep conceptual and strategic learning. Leuven, Belgium: Leuven University Press.

    Google Scholar 

  • Howes, C., & Smith, E. W. (1995). Relations among child care quality, teacher behavior, children’s play activities, emotional security, and cognitive activity in child care. Early Childhood Research Quarterly, 10(4), 381–404.

    Article  Google Scholar 

  • Jordan, N. C., Kaplan, D., Olah, L. N., & Locuniak, M. N. (2006). Number sense growth in kindergarten: A longitudinal investigation of children at risk for mathematics difficulties. Child Development, 77(1), 153–175.

    Article  Google Scholar 

  • Jordan, N. C., Kaplan, D., Ramineni, C., & Locuniak, M. N. (2009). Early math matters: Kindergarten number competence and later mathematics outcomes. Developmental Psychology, 45(3), 850–867.

    Article  Google Scholar 

  • Klibanoff, R. S., Levine, S. C., Huttenlocher, J., Hedges, L., & Vasilyeva, M. (2006). Preschool children’s mathematical knowledge: The effect of teacher “math talk”. Developmental Psychology, 42(1), 59–69.

    Article  Google Scholar 

  • Kontos, S., & Wilcox-Herzog, A. (1997). Influences on children’s competence in early childhood classrooms. Early Childhood Research Quarterly, 12(3), 247–262.

    Article  Google Scholar 

  • Lindahl, M., & Samuelsson, I. P. (2002). Imitation and variation: Reflections on toddlers’ strategies for learning. Scandinavian Journal of Educational Research, 46(1), 25–45.

    Article  Google Scholar 

  • Malofeeva, E., Day, J., Saco, X., Young, L., & Ciancio, D. (2004). Construction and evaluation of a number sense test with Head Start children. Journal of Educational Psychology, 96(4), 648–659.

    Article  Google Scholar 

  • Measelle, J. R., Ablow, J. C., Cowan, P. A., & Cowan, C. P. (1998). Assessing young children’s views of their academic, social, and emotional lives: An evaluation of the self-perception scales of the Berkeley puppet interview. Child Development, 69(6), 1556–1576.

    Google Scholar 

  • Morgan, G. A., Maslin-Cole, C., Harmon, R. J., Busch-Rossnagel, N., Jennings, K. D., Hauser-Cram, P., et al. (1993). Parent and teacher perceptions of young children’s mastery motivation: Assessment and review of research. In D. J. Messer (Ed.), Mastery motivation in early childhood: Development, measurement, and social processes (pp. 109–131). New York, NY: Routledge.

    Google Scholar 

  • Nash, C., & Paul, K. (1997). Young children’s exposure to mathematics: The child care context. Early Childhood Education Journal, 25(1), 31–38.

    Article  Google Scholar 

  • National Council of Teachers of Mathematics. (2000). Principles and standards for school mathematics. Reston, VA: National Council of Teachers of Mathematics.

    Google Scholar 

  • Perry, N. E. (1998). Young children’s self-regulated learning and contexts that support it. Journal of Educational Psychology, 90(4), 715–729.

    Article  Google Scholar 

  • Pressick-Kilborn, K., & Walker, R. (2002). The social construction of interest in a learning community. In D. McInerney & S. Van Etten (Eds.), Research on sociocultural influences on motivation and learning (pp. 153–182). Greenwich, CT: Information Age Publishers.

    Google Scholar 

  • Sakai, L. M., Whitebook, M., Wishard, A., & Howes, C. (2003). Evaluating the Early Childhood Environment Rating Scale (ECERS): Assessing differences between the first and revised edition. Early Childhood Research Quarterly, 18(4), 427–445.

    Article  Google Scholar 

  • Starkey, P., Klein, A., & Wakeley, A. (2004). Enhancing young children’s mathematical knowledge through a pre-kindergarten mathematics intervention. Early Childhood Research Quarterly, 19(1), 99–120.

    Article  Google Scholar 

  • Stiles, J., & Stern, C. (2001). Developmental change in spatial cognitive processing: Complexity effects and block construction performance in preschool children. Journal of Cognition and Development, 2(2), 157–187.

    Article  Google Scholar 

  • Stipek, D., Recchia, S., & McClintic, S. (1992). Self-evaluation in young children. Monographs of the Society for Research in Child Development, 57(1, Serial No. 226).

  • Sylva, K., Roy, C., & Painter, M. (1980). Child watching at playgroup and nursery school. Ypsilanti, MI: High/Scope Press.

    Google Scholar 

  • Tonyan, H., & Howes, C. (2003). Exploring patterns in time children spend in a variety of child care activities: Associations with environmental quality, ethnicity, and gender. Early Childhood Research Quarterly, 18(1), 121–142.

    Article  Google Scholar 

  • Tudge, J. R. H., Odero, D. A., Hogan, D. M., & Etz, K. E. (2003). Relations between the everyday activities of preschoolers and their teachers’ perceptions of their competence in the first years of school. Early Childhood Research Quarterly, 18(1), 42–64.

    Article  Google Scholar 

  • Valeski, T. N., & Stipek, D. J. (2001). Young children’s feelings about school. Child Development, 72(4), 1198–1213.

    Article  Google Scholar 

  • Vygotsky, L. S. (1987). Thinking and speech (N. Minick, Trans.). In: R. Rieber & A. Carton (Eds.) Collected works (Vol. 1, pp.39–285). New York, NY: Plenum.

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Correspondence to Kellah M. Edens.

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Edens, K.M., Potter, E.F. An Exploratory Look at the Relationships Among Math Skills, Motivational Factors and Activity Choice. Early Childhood Educ J 41, 235–243 (2013). https://doi.org/10.1007/s10643-012-0540-y

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