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Research Article

First Insights into Preschool Teachers’ Instructional Quality in Block Play and Its Associations with Children’s Knowledge, Interest, Academic Self-Concept and Cognitive Aspects

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References

  • Anders, Y. (2015). Literature review on pedagogy for a review of pedagogy in early childhood education and care (ECEC) in England (United Kingdom). In Proceedings of the 17th meeting of the OECD network on early childhood education and care (October), Paris.
  • Anders, Y., Grosse, C., Rossbach, H. G., Ebert, S., & Weinert, S. (2013). Preschool and primary school influences on the development of children’s early numeracy skills between the ages of 3 and 7 years in Germany. School Effectiveness and School Improvement, 24(2), 195–211. https://doi.org/10.1080/09243453.2012.749794
  • Andersson, U. (2008). Working memory as a predictor of written arithmetical skills in children: The importance of central executive functions. British Journal of Educational Psychology, 78(2), 181–203. https://doi.org/10.1348/000709907X209854
  • Birch, S. H., & Ladd, G. W. (1997). The teacher-child relationship and children’s early school adjustment. Journal of School Psychology, 35(1), 61–79. https://doi.org/10.1016/S0022-4405-96-00029-5
  • Bonawitz, E. B., van Schijndel, T. J., Friel, D., & Schulz, L. (2012). Children balance theories and evidence in exploration, explanation, and learning. Cognitive Psychology, 64(4), 215–234. https://doi.org/10.1016/j.cogpsych.2011.12.002
  • Borriello, G. A., & Liben, L. S. (2018). Encouraging maternal guidance of preschoolers’ spa-tial thinking during block play. Child Development, 89(4), 1209–1222. https://doi.org/10.1111/cdev.12779
  • Buehl, M. M., & Beck, J. S. (2015). The relationship between teachers’ beliefs and teachers’ practices. In H. Fives & M. G. Gill (Eds.), International handbook of research on teachers’ beliefs (pp. 67–84). Routledge.
  • Bull, R., Espy, K. A., & Wiebe, S. A. (2008). Short-term memory, working memory, and executive functioning in preschoolers: Longitudinal predictors of mathematical achievement at age 7 years. Developmental Neuropsychology, 33(3), 205–228. https://doi.org/10.1080/87565640801982312
  • Burchinal, M., Howes, C., Pianta, R., Bryant, D., Early, D., Clifford, R., & Barbarin, O. (2008). Predicting child outcomes at the end of kindergarten from the quality of pre-kindergarten teacher-child interactions and instruction. Applied Developmental Science, 12(3), 140–153. https://doi.org/10.1080/10888690802199418
  • Cabell, S. Q., DeCoster, J., LoCasale-Crouch, J., Hamre, B. K., & Pianta, R. C. (2013). Variation in the effectiveness of instructional interactions across preschool classroom settings and learning activities. Early Childhood Research Quarterly, 28(4), 820–830. https://doi.org/10.1016/j.ecresq.2013.07.007
  • Cannon, J., Levine, S., & Huttenlocher, J. (2007). A system for analyzing children and caregivers’ language about space in structured and unstructured contexts. Spatial Intelligence and Learning Center (SILC) Technical Report.
  • Casey, B. M., Andrews, N., Schindler, H., Kersh, J. E., Samper, A., & Copley, J. (2008). The development of spatial skills through interventions involving block building activities. Cognition and Instruction, 26(3), 269–309. https://doi.org/10.1080/07370000802177177
  • Cattell, R. B. (1987). Intelligence: It’s structure, growth and action. Elsevier.
  • Cerezci, B. (2020). Mining the gap: Analysis of early mathematics instructional quality in pre-kindergarten classrooms. Early Education and Development, 32(5), 653–676. https://doi.org/10.1080/10409289.2020.1775438
  • Cohen, J. (1988). Statistical power analysis for the behavioral sciences. Taylor and Francis.
  • Cohen, L. E., & Emmons, J. (2016). Block play: Spatial language with preschool and school-aged children. Early Child Development and Care, 187(5–6), 967–977. https://doi.org/10.1080/03004430.2016.1223064
  • Dickinson, D. K. (2011). Teachers’ language practices and academic outcomes of preschool children. Science: Advanced Materials and Devices, 333(6045), 964–967. https://doi.org/10.1126/science.1204526
  • Dickinson, D. K., & Porche, M. V. (2011). Relation between language experiences in preschool classrooms and children’s kindergarten and fourth‐grade language and reading abilities. Child Development, 82(3), 870–886. https://doi.org/10.1111/j.1467-8624.2011.01576.x
  • Downer, J., Sabol, T. J., & Hamre, B. (2010). Teacher–child interactions in the classroom: Toward a theory of within-and cross-domain links to children’s developmental outcomes. Early Education and Development, 21(5), 699–723. https://doi.org/10.1080/10409289.2010.497453
  • Duncan, G., Jenkins, J. M., Watts, T. W., Magnuson, K., Clements, D., Sarama, J., Wolfe, C. B., & Spitler, M. E. (2015). [Conference Paper]. SREE, Spring 2015, Washington D.C. Preventing preschool fadeout through instructional intervention in kindergarten and first grade. Graduate School of Education, University of California, Irvine.
  • Eccles, J. S., Adler, T. F., Futterman, R., Goff, S. B., Kaczala, C. M., Meece, J. L., & Midgley, C. (1983). Expectancies, values, and academic behaviors. In J. T. Spence (Ed.), Achievement and achievement motivation (pp. 75–146). W. H. Freeman.
  • Egeland, B. R., Erickson, M. F., Clemenhagen-Moon, J., Hiester, M. K., & Korfmacher, J. (1990). 24 months coding manual: Project STEEP - revised 1990 from mother-child project scales. University of Minnesota, Department of Psychology.
  • Emslander, V., & Scherer, R. (2022). The relation between executive functions and math intelligence in preschool children: A systematic review and meta-analysis. Psychological Bulletin, 148(5–6), 337–369. https://doi.org/10.1037/bul0000369
  • Endlich, D., Berger, N., Küspert, P., Lenhard, W., Marx, P., Schmitt, J., & Schneider, W. (2015). Würzburger Vorschultest (WVT) Erfassung schriftsprachlicher und mathematischer (Vorläufer‐)Fertigkeiten im letzten Kindergartenjahr. Hogrefe.
  • Fergusson, D. M., John Horwood, L., & Ridder, E. M. (2005). Show me the child at seven II: Childhood intelligence and later outcomes in adolescence and young adulthood. Journal of Child Psychology and Psychiatry, 46(8), 850–858. https://doi.org/10.1111/j.1469-7610.2005.01472.x
  • Ferrara, K., Hirsh-Pasek, K., Newcombe, N. S., Golinkoff, R. M., & Lam, W. S. (2011). Block talk: Spatial language during block play. Mind, Brain, and Education, 5(3), 143–151. https://doi.org/10.1111/j.1751-228X.2011.01122.x
  • Fisher, K. R., Hirsh‐Pasek, K., Newcombe, N., & Golinkoff, R. M. (2013). Taking shape: Supporting preschoolers’ acquisition of geometric knowledge through guided play. Child Development, 84(6), 1872–1878. https://doi.org/10.1111/cdev.12091
  • Fleck, J. I. (2008). Working memory demands in insight versus analytic problem solving. European Journal of Cognitive Psychology, 20(1), 139–176. https://doi.org/10.1080/09541440601016954
  • Fox, J., & Weisberg. (2019). An {R} companion to applied regression (3rd ed.). https://socialsciences.mcmaster.ca/jfox/Books/Companion
  • Garbett, D. (2003). Science education in early childhood teacher education: Putting forward a case to enhance student teachers’ confidence and competence. Research in Science Education, 33(4), 467–481. https://doi.org/10.1023/B:RISE.0000005251.20085.62
  • Goble, P., Sandilos, L. E., & Pianta, R. C. (2019). Gains in teacher-child interaction quality and children’s school readiness skills: Does it matter where teachers start? Journal of School Psychology, 73, 101–113. https://doi.org/10.1016/j.jsp.2019.03.006
  • Gold, Z. S., Elicker, J., & Beaulieu, B. A. (2020). Learning engineering through block play. Young Children, 75(2), 24–29. https://doi.org/10.2307/26979142
  • Gopnik, A., & Wellman, H. M. (2012). Reconstructing constructivism: Causal models, bayesian learning mechanisms, and the theory theory. Psychological Bulletin, 138(6), 1085–1108. https://doi.org/10.1037/a0028044
  • Gunderson, E. A., Ramirez, G., Beilock, S. L., & Levine, S. C. (2012). The relation between spatial skill and early number knowledge: The role of the linear number line. Developmental Psychology, 48(5), 1229–1241. https://doi.org/10.1037/a0027433
  • Guo, Y., Kaderavek, J. N., Piasta, S. B., Justice, L. M., & McGinty, A. (2011). Preschool teachers’ sense of community, instructional quality, and children’s language and literacy gains. Early Education and Development, 22(2), 206–233. https://doi.org/10.1080/10409281003641257
  • Guo, J., Marsh, H. W., Parker, P. D., Morin, A. J., & Yeung, A. S. (2015). Expectancy-value in mathematics, gender and socioeconomic background as predictors of achievement and aspirations: A multi-cohort study. Learning and Individual Differences, 37, 161–168. https://doi.org/10.1016/j.lindif.2015.01.008
  • Hall-Kenyon, K. M., Bingham, G. E., & Korth, B. B. (2009). How do linguistically diverse students fare in full-and half-day kindergarten? Examining academic achievement, instructional quality, and attendance. Early Education and Development, 20(1), 25–52. https://doi.org/10.1080/10409280802206593
  • Hamre, B., Hatfield, B., Pianta, R., & Jamil, F. (2014). Evidence for general and domain-specific elements of teacher–child interactions: Associations with preschool children’s development. Child Development, 85(3), 1257–1274. https://doi.org/10.1111/cdev.12184
  • Harms, T., Clifford, R. M., & Cryer, D. (1998). Early childhood environment rating scale. Teachers College Press, Columbia University.
  • Harter, S. (2015). The construction of the self: Developmental and sociocultural foundations (2nd ed.). Guilford Press.
  • Henschen, E., & Henschen, E. (2020). Bauspiel. In Bauspielen Mathematik entdecken: Aktivitäten von Kindern mathematikdidaktisch analysieren und verstehen. Springer. https://doi.org/10.1007/978-3-658-31741-6
  • Hornburg, C. B., Schmitt, S. A., & Purpura, D. J. (2018). Relations between preschoolers’ mathematical language understanding and specific numeracy skills. Journal of Experimental Child Psychology, 176, 84–100. https://doi.org/10.1016/j.jecp.2018.07.005
  • Jirout, J. J., & Newcombe, N. S. (2015). Building blocks for developing spatial skills: Evidence from a large, representative U.S. Sample. Psychological Science, 26(3), 302–310. https://doi.org/10.1177/0956797614563338
  • Johnston, K., & Degotardi, S. (2022). ‘More than ‘more’: Quantity and quality of mathematical language used by educators in mealtimes with infants. International Journal of Early Years Education, 30(4), 796–812. https://doi.org/10.1080/09669760.2020.1848529
  • Justice, L. M., Mashburn, A. J., Hamre, B. K., & Pianta, R. C. (2008). Quality of language and literacy instruction in preschool classrooms serving at-risk pupils. Early Childhood Research Quarterly, 23(1), 51–68. https://doi.org/10.1016/j.ecresq.2007.09.004
  • Kallery, M., & Psillos, D. (2001). Pre-school teachers’ content knowledge in science: Their understanding of elementary science concepts and of issues raised by children’s questions. International Journal of Early Years Education, 9(3), 165–179. https://doi.org/10.1080/09669760120086929
  • Klibanoff, R. S., Levine, S. C., Huttenlocher, J., Vasilyeva, M., & Hedges, L. V. (2006). Preschool children’s mathematical knowledge: The effect of teacher“math talk.”. Developmental Psychology, 42(1), 59–69. https://doi.org/10.1037/0012-1649.42.1.59
  • Kook, J. F., & Greenfield, D. B. (2021). Examining variation in the quality of instructional interaction across teacher-directed activities in head start classrooms. Journal of Early Childhood Research, 19(2), 128–144. https://doi.org/10.1177/1476718X20942956
  • Krippendorff, K. (2004). Reliability in content analysis: Some common misconceptions and recommendations. Human Communication Research, 30(3), 411–433. https://doi.org/10.1093/hcr/30.3.411
  • Krist, H. (2010). Development of intuitions about support beyond infancy. Developmental Psy-Chology, 46(1), 266–278. https://doi.org/10.1037/a0018040
  • Krist, H. (2013). Development of intuitive statics. Zeitschrift Für Entwicklungspsychologie Und Pädagogische Psychologie, 45(1), 27–33. https://doi.org/10.1026/0049-8637/a000078
  • Krist, H., Atlas, C., Fischer, H., & Wiese, C. (2018). Development of basic intuitions about physical support during early childhood: Evidence from a novel eye-tracking paradigm. Quarterly Journal of Experimental Psychology, 71(9), 1988–2004. https://doi.org/10.1177/1747021817737196
  • Krist, H., Horz, H., & Schönfeld, T. (2005). Children’s block balancing revisited: No evidence for representational redescription. Swiss Journal of Psychology/Schweizerische Zeitschrift für Psychologie/Revue Suisse de Psychologie, 64(3), 183–193. https://doi.org/10.1024/1421-0185.64.3.183
  • Lehrl, S., Kluczniok, K., & Rossbach, H. G. (2016). Longer-term associations of preschool education: The predictive role of preschool quality for the development of mathematical skills through elementary school. Early Childhood Research Quarterly, 36, 475–488. https://doi.org/10.1016/j.ecresq.2016.01.013
  • Lepper, M. R., Corpus, J. H., & Iyengar, S. S. (2005). Intrinsic and extrinsic motivational orientations in the classroom: Age differences and academic correlates. Journal of Educational Psychology, 97(2), 184. https://doi.org/10.1037/0022-0663.97.2.184
  • Leuchter, M., Saalbach, H., Studhalter, U., & Tettenborn, A. (2020). Teaching for conceptual change in preschool science: relations among teachers’ professional beliefs, knowledge, and instructional practice. International Journal of Science Education, 42(12), 1941–1967. https://doi.org/10.1080/09500693.2020.1805137
  • Leuchter, M., & Saalbach, H. (2014). Verbale Unterstützungsmaßnahmen im Rahmen eines naturwissenschaftlichen Lernangebots in Kindergarten und Grundschule. Unterrichtswissenschaft, 42(2), 117–131.
  • Levine, S. C., Ratliff, K. R., Huttenlocher, J., & Cannon, J. (2012). Early puzzle play: A predictor of preschoolers’ spatial transformation skill. Developmental Psychology, 48(2), 530–542. https://doi.org/10.1037/a0025913
  • Liao, S. F., Liu, J. C., Hsu, C. L., Chang, M. Y., Chang, T. M., & Cheng, H. (2015). Cognitive development in children with language impairment, and correlation between language and intelligence development in kindergarten children with developmental delay. Journal of Child Neurology, 30(1), 42–47. https://doi.org/10.1177/0883073814535486
  • Marsh, H. W., & Craven, R. G. (2006). Reciprocal effects of self-concept and performance from a multidimensional perspective: Beyond seductive pleasure and unidimensional perspectives. Perspectives on Psychological Science, 1(2), 133–163. https://doi.org/10.1111/j.1745-6916.2006.00010.x
  • Marsh, H. W., Ellis, L. A., & Craven, R. G. (2002). How do preschool children feel about themselves? Unraveling measurement and multidimensional self-concept structure. De-Velopmental Psychology, 38(3), 376–393. https://doi.org/10.1037/0012-1649.38.3.376
  • Marsh, H. W., Trautwein, U., Ludtke, O., Koller, O., & Baumert, J. (2005). Academic self-concept, interest, grades, and standardized test scores: Reciprocal effects models of causal ordering. Child Development, 76(2), 397–416. https://doi.org/10.1111/j.1467-8624.2005.00853.x
  • Marsh, H. W., Xu, M., & Martin, A. J. (2012). Self-concept: A synergy of theory, method, and application. In K. R. Harris, S. Graham, & T. Urdan (Eds.), APA educational psychology handbook: Vol. 1. Theories, constructs, and critical issues (pp. 427–458). American Psychological Association. https://doi.org/10.1037/13273-015
  • Mashburn, A. J., Pianta, R. C., Hamre, B. K., Downer, J. T., Barbarin, O. A., Bryant, D., Burchinal, M., Early, D., & Howes, C. (2008). Measures of classroom quality in prekindergarten and children’s development of academic, language, and social skills. Child Development, 79(3), 732–749. https://doi.org/10.1111/j.1467-8624.2008.01154.x
  • Mischo, C., & Fröhlich-Gildhoff, K. (2011). Professionalisierung und Professionsentwicklung im Bereich der frühen Bildung. Frühe Bildung, 4–12. https://doi.org/10.1026/21919186/a000001
  • Moehring, W., Ribner, A. D., Segerer, R., Libertus, M. E., Kahl, T., Troesch, L. M., & Grob, A. (2021). Developmental trajectories of children’s spatial skills: Influencing variables and associations with later mathematical thinking. Learning and Instruction, 75, 101515. https://doi.org/10.1016/j.learninstruc.2021.101515
  • Moffett, P., & Eaton, P. (2017). The impact of the promoting early number talk project on classroom mathematics talk. Early Child Development and Care, 189(11), 1763–1775. https://doi.org/10.1080/03004430.2017.1412954
  • Monteira, S. F., Jiménez-Aleixandre, M. P., & Siry, C. (2022). Scaffolding children’s production of representations along the three years of ECE: A longitudinal study. Research in Science Education, 52(1), 127–158. https://doi.org/10.1007/s11165-020-09931-z
  • Navarro, D. J. (2015). Learning statistics with R: A tutorial for psychology students and other beginners. (Version 0.6). University of New.
  • Park, B., Chae, J. L., & Boyd, B. F. (2008). Young children’s block play and mathematical learning. Journal of Research in Childhood Education, 23(2), 157–162. https://doi.org/10.1080/02568540809594652
  • Passolunghi, M. C., & Mammarella, I. C. (2012). Selective spatial working memory impairment in a group of children with mathematics learning disabilities and poor problem-solving skills. Journal of Learning Disabilities, 45(4), 341–350. https://doi.org/10.1177/0022219411400746
  • Petermann, F., & Daseking, M. (2018). Wechsler preschool and primary scale of intelligence – Fourth Edition. Hogrefe.
  • Pianta, R. C., Mashburn, A. J., Downer, J. T., Hamre, B. K., & Justice, L. (2008). Effects of web-mediated professional development resources on teacher–child interactions in pre-kindergarten classrooms. Early Childhood Research Quarterly, 23(4), 431–451. https://doi.org/10.1016/j.ecresq.2008.02.001
  • Pianta, R. C., & Stuhlman, M. W. (2004). Teacher-child relationships and children’s success in the first years of school. School Psychology Review, 33(3), 444–458. https://doi.org/10.1080/02796015.2004.12086261
  • Pine, K. J., & Messer, D. (2003). The development of representations as children learn about balancing. British Journal of Developmental Psychology, 21(2), 285–301. https://doi.org/10.1348/026151003765264093
  • R Core Team. (2022). R: A language and environment for statistical computing. R Foundation for Statistical Computing (version 4.2.1) [computer software]. https://www.R-project.org/.R
  • Renninger, K. A., & Hidi, S. (2016). The power of interest for motivation and engagement. Routledge. https://doi.org/10.4324/9781315771045
  • Revelle, W. (2022). Psych: Procedures for personality and psychological research. Northwestern University. https://CRAN.R-roject.org/package=psychVersion=2.2.5
  • Rindermann, H., Flores-Mendoza, C., & Mansur-Alves, M. (2010). Reciprocal effects between fluid and crystallized intelligence and their dependence on parents’ socioeconomic status and education. Learning and Individual Differences, 20(5), 544–548. https://doi.org/10.1016/j.lindif.2010.07.002
  • Rittle-Johnson, B., Zippert, E. L., & Boice, K. L. (2019). The roles of patterning and spatial skills in early mathematics development. Early Childhood Research Quarterly, 46, 166–178. https://doi.org/10.1016/j.ecresq.2018.03.006
  • Rogers, D. L. (1985). Relationships between block play and the social development of young children. Early Child Development and Care, 20(4), 245–261. https://doi.org/10.1080/0300443850200403
  • Roßbach, H.-G., Natteford, R., Grenner, K., & Tietze, W. (2017). Kindergarten-Skala. Revidierte Fassung mit Zusatzmerkmalen (KES-RZ). Verlag das netz.
  • Rudd, L. C., Lambert, M. C., Satterwhite, M., & Zaier, A. (2008). Mathematical language in early childhood settings: What really counts? Early Childhood Education Journal, 36(1), 75–80. https://doi.org/10.1007/s10643-008-0246-3
  • Samuelsson, I., & Johansson, E. (2006). Play and learning—inseparable dimensions in preschool practice. Early Child Development and Care, 176(1), 47–65. https://doi.org/10.1080/0300443042000302654
  • Saracho, O. N. (1994). The relationship of preschool children’s cognitive style to their play preferences. Early Child Development and Care, 97(1), 21–33. https://doi.org/10.1080/0300443940970103
  • Scherer, R., & Nilsen, T. (2016). The relations among school climate, instructional quality, and achievement motivation in mathematics. Teacher Quality, Instructional Quality and Student Outcomes, 2, 51–80. https://doi.org/10.1007/978-3-319-41252-8_3
  • Schlesinger, L., & Jentsch, A. (2016). Theoretical and methodological challenges in measuring instructional quality in mathematics education using classroom observations. ZDM, 48(1), 29–40. https://doi.org/10.1007/s11858-016-0765-0
  • Schmitt, S. A., Korucu, I., Napoli, A. R., Bryant, L. M., & Purpura, D. J. (2018). Using block play to enhance preschool children’s mathematics and executive functioning: A randomized controlled trial. Early Childhood Research Quarterly, 44(3), 181–191. https://doi.org/10.1016/j.ecresq.2018.04.006
  • Schneider, M., & Preckel, F. (2017). Variables associated with achievement in higher education: A systematic review of meta-analyses. Psychological Bulletin, 143(6), 565–600. https://doi.org/10.1037/bul0000098
  • Senden, B., Nilsen, T., & Blömeke, S. (2022). Instructional quality: A review of conceptualizations, measurement approaches, and research findings. Ways of Analyzing Teaching Quality: Potentials and Pitfalls, 140–172. https://doi.org/10.18261/9788215045054-2021-05
  • Siraj-Blatchford, I., Sylva, K., Muttock, S., Gilden, R., & Bell, D. 2002. Researching effective pedagogy in the early years: Research report no 356. Department for Education and Skills (DfES).
  • Smidt, W., & Embacher, E. M. (2020). How do activity settings, preschool teachers’ activities, and children’s activities relate to the quality of children’s interactions in preschool? Findings from Austria. European Early Childhood Education Research Journal, 28(6), 864–883. https://doi.org/10.1080/1350293X.2020.1836586
  • Spektor-Levy, O., Baruch, Y. K., & Mevarech, Z. (2013). Science and scientific curiosity in pre-school—The teacher’s point of view. International Journal of Science Education, 35(13), 2226–2253. https://doi.org/10.1080/09500693.2011.631608
  • Stanley, D. (2021). apaTables: Create American Psychological Association (APA) style tables_. R package version 2.0.8. https://CRAN.R-project.org/package=apaTables
  • St Clair-Thompson, H. L., & Gathercole, S. E. (2006). Executive functions and achievements in school: Shifting, updating, inhibition, and working memory. Quarterly Journal of Experimental Psychology, 59(4), 745–759. https://doi.org/10.1080/17470210500162854
  • Stipek, D., & Chiatovich, T. (2017). The effect of instructional quality on low‐and high‐performing students. Psychology in the Schools, 54(8), 773–791. https://doi.org/10.1002/pits.22034
  • Stipek, D., Feiler, R., Daniels, D., & Milburn, S. (1995). Effects of different instructional approaches on young children’s achievement and motivation. Child Development, 66(1), 209–223. https://doi.org/10.2307/1131201
  • Swanson, H. L. (2008). Working memory and intelligence in children: What develops? Journal of Educational Psychology, 100(3), 581–602. https://doi.org/10.1037/0022-0663.100.3.581
  • Swanson, H. L., Jerman, O., & Zheng, X. (2008). Growth in working memory and mathematical problem solving in children at risk and not at risk for serious math difficulties. Journal of Educational Psychology, 100(2), 343–379. https://doi.org/10.1037/0022-0663.100.2.343
  • Thorsen, C., Gustafsson, J.-E., & Cliffordson, C. (2014). The influence of fluid and crystallized intelligence on the development of knowledge and skills. British Journal of Educational Psychology, 84(4), 556–570. https://doi.org/10.1111/bjep.12041
  • Titz, C., & Karbach, J. (2014). Working memory and executive functions: Effects of training on academic achievement. Psychological Research, 78(6), 852–868. https://doi.org/10.1007/s00426-013-0537-1
  • Trawick-Smith, J., Swaminathan, S., Baton, B., Danieluk, C., Marsh, S., & Szarwacki, M. (2017). Block play and mathematics learning in preschool: The effects of building complexity, peer and teacher interactions in the block area, and replica play materials. Journal of Early Childhood Research, 15(4), 433–448. https://doi.org/10.1177/1476718X16664557
  • Trundle, K. C., & Saçkes, M. (Eds.). (2015). Research in early childhood science education. Springer.
  • Uttal, D. H., & Cohen, C. A. (2012). Spatial thinking and STEM education: When, why, and how? In Psychology of learning and motivation (Vol. 57, pp. 147–181). Academic Press. https://doi.org/10.1016/B978-0-12-394293-7.00004-2.
  • Uttal, D. H., Meadow, N. G., Tipton, E., Hand, L. L., Alden, A. R., Warren, C., & Newcombe, N. S. (2013). The malleability of spatial skills: A meta-analysis of training studies. Psychological Bulletin, 139(2), 352–402. https://doi.org/10.1037/a0028446
  • van de Pol, J., Volman, M., & Beishuizen, J. (2010). Scaffolding in teacher–student interaction: A decade of research. Educational Psychology Review, 22(3), 271–296. https://doi.org/10.1007/s10648-010-9127-6
  • van den Bos, I., Van der Ven, S. H., Kroesbergen, E. H., & Van Luit, J. E. (2013). Working memory and mathematics in primary school children: A meta-analysis. Educational Research Review, 10, 29–44. https://doi.org/10.1016/j.edurev.2013.05.003
  • Verdine, B. N., Golinkoff, R. M., Hirsh‐Pasek, K., Newcombe, N. S., Filipowicz, A. T., & Chang, A. (2014). Deconstructing building blocks: Preschoolers’ spatial assembly performance relates to early mathematical skills. Child Development, 85(3), 1062–1076. https://doi.org/10.1111/cdev.12165
  • von Spreckelsen, M., Dove, E., Coolen, I., Mills, A., Dowker, A., Sylva, K., Ansari, D., Merkley, R., Murphy, V., & Scerif, G. (2019). Let’s talk about maths: The role of observed “maths‐talk” and maths provisions in preschoolers’ numeracy. Mind, Brain, and Education, 13(4), 326–340. https://doi.org/10.1111/mbe.12221
  • von Suchodoletz, A., Fäsche, A., Gunzenhauser, C., & Hamre, B. K. (2014). A typical morning in preschool: Observations of teacher–child interactions in German preschools. Early Childhood Research Quarterly, 29(4), 509–519. https://doi.org/10.1016/j.ecresq.2014.05.010
  • Weber, A. M., & Leuchter, M. (2020). Measuring preschool children’s knowledge of the principle of static equilibrium in the context of building blocks: Validation of a test instrument. British Journal of Educational Psychology, 90, 50–74. https://doi.org/10.1111/bjep.12304
  • Weber, A. M., & Leuchter, M. (2022). Fostering children’s block building self-concepts and stability knowledge through construction play. Journal of Applied Developmental Psychology, 80, 101400. https://doi.org/10.1016/j.appdev.2022.101400
  • Weber, A. M., Reuter, T., & Leuchter, M. (2020). The impact of a construction play on 5-to 6- year-old children’s reasoning about stability. Frontiers in Psychology, 11, 1737. https://doi.org/10.3389/fpsyg.2020.01737
  • Weiland, C., Ulvestad, K., Sachs, J., & Yoshikawa, H. (2013). Associations between classroom quality and children’s vocabulary and executive function skills in an urban public prekindergarten program. Early Childhood Research Quarterly, 28(2), 199–209. https://doi.org/10.1016/j.ecresq.2012.12.002
  • Weisberg, D. S., Hirsh-Pasek, K., Golinkoff, R. M., Kittredge, A. K., & Klahr, D. (2016). Guided play. Current Directions in Psychological Science, 25(3), 177–182. https://doi.org/10.1177/0963721416645512
  • Wickham, H., François, R., Henry, L., & Müller, K. (2022). Dplyr: A grammar of data manipulation_. R package version 1.0.9. https://CRAN.R-project.org/package=dplyr
  • Wigfield, A., Eccles, J. S., Yoon, K. S., Harold, R. D., Arbreton, A. J. A., Freedman-Doan, C., & Blumenfeld, P. (1997). Change in children’s competence beliefs and subjective task values across the elementary school years: A 3-year study. Journal of Educational Psychology, 89(3), 451–469. https://doi.org/10.1037/0022-0663.89.3.451
  • Wolfgang, C. H., Stannard, L. L., & Jones, I. (2001). Block play performance among preschoolers as a predictor of later school achievement in mathematics. Journal of Research in Childhood Education, 15(2), 173–180. https://doi.org/10.1080/02568540109594958
  • Wullschleger, A., Lindmeier, A., Heinze, A., Meier-Wyder, A., Leuchter, M., Vogt, F., & Moser Opitz, E. (2022). Improving the quality of adaptive learning support provided by kindergarten teachers in play-based mathematical learning situations. European Early Childhood Education Research Journal, 31(2), 1–18. https://doi.org/10.1080/1350293X.2022.2081348
  • Yang, X., & Pan, Y. (2021). Spatial language of young children during block play in kindergartens in urban China. Frontiers in Psychology, 12, 568638. https://doi.org/10.3389/fpsyg.2021.568638
  • Yıldırım, B. (2021). Preschool STEM activities: Preschool teachers’ preparation and views. Early Childhood Education Journal, 49(2), 149–162. https://doi.org/10.1007/s10643-020-01056-2
  • Zhang, X., & Lin, D. (2017). Does growth rate in spatial ability matter in predicting early arithmetic competence? Learning and Instruction, 49, 232–241. https://doi.org/10.1016/j.learninstruc.2017.02.003
  • Zosh, J. M., Hirsh-Pasek, K., Hopkins, E. J., Jensen, H., Liu, C., Neale, D., Solis, S. L., & Whitebread, D. (2018). Accessing the inaccessible: Redefining play as a spectrum. Frontiers in Psychology, 9, 1124. https://doi.org/10.3389/fpsyg.2018.01124