Talking Sketches as Sites for Collective Spatial Visualization in STEM Teaching

Ainsworth, S., Prain, V., & Tytler, R. (2011). Drawing to learn in science. Science, 333, 1096–1097. https://doi.org/10.1126/science.1204153

Article  Google Scholar 

Astuti, N. H., Rusilowati, A., & Subali, B. (2021). STEM-based learning analysis to improve students’ problem solving abilities in science subject: A literature review. Journal of Innovative Science Education, 10(1), 79–86. 0.15294/JISE.V9I2.38505

Atit, K., Power, J. R., Veurink, N., Uttal, D. H., Sorby, S., Panther, G., Msall, C., Fiorella, L., & Carr, M. (2020). Examining the role of spatial skills and mathematics motivation on middle school mathematics achievement. International Journal of STEM Education, 7. https://doi.org/10.1186/s40594-020-00234-3

Cheng, Y.-L., & Mix, K. S. (2014). Spatial training improves children’s mathematics ability. Journal of Cognition and Development, 15(1), Article 1. https://doi.org/10.1080/15248372.2012.725186

Clark, C., & Jorde, D. (2004). Helping students revise disruptive experimentally supported ideas about thermodynamics and tactile models: Computer visualizations and tactile models. Journal of Research in Science Teaching, 41, 1-23. https://doi.org/10.1002/tea.10097

Article  Google Scholar 

Davis, B., & The Spatial Reasoning Group. (Eds.). (2015). Spatial reasoning in the early years: Principles, assertions, and speculations. New York: Routledge. https://doi.org/10.4324/9781315762371

de Freitas, E., & Sinclair, N. (2014). Mathematics and the body: Material entanglements in the classroom. Cambridge, MA: Cambridge University Press. https://doi.org/10.1017/CBO9781139600378

Book  Google Scholar 

Delaney, A., & Jurgenson, K. (2019). Building bridges: Connecting science and engineering with literacy and mathematics. Science and Children, 57(1), 82-88.

Article  Google Scholar 

English, L.D. (2019). Learning while designing in a fourth-grade integrated STEM problem. International Journal of Technology Design Education, 29, 1011-1032. https://doi.org/10.1007/s10798-018-9482-z

Article  Google Scholar 

Evagorou, M., Erduran, S., & Mäntylä, T. (2015). The role of visual representations in scientific practices: From conceptual understanding and knowledge generation to “seeing” how science works. International Journal of STEM Education, 2(11). https://doi.org/10.1186/s40594-015-0024-x

Fan, S. C., & Yu, K. C. (2017). How an integrative STEM curriculum can benefit students in engineering design practices. International Journal of Technology Design Education, 27, 107-129. https://doi.org/10.1007/s10798-015-9328-x

Article  Google Scholar 

Ferguson, E. S. (1994). Engineering and the mind’s eye. Cambridge, MA: The MIT Press.

Google Scholar 

Gilbert, J. K. (Ed.). (2005). Visualization in science education. Dordrecht: Springer-Verlag.

Google Scholar 

Gilbert, J. K., & Reiner, M. (2000). Thought experiments in science education: Potential and current realization. International Journal of Science Education, 22(3), 265-283. https://doi.org/10.1080/095006900289877

Article  Google Scholar 

Kim, M., & Roth, W.- M. (2016). Re/thinking the nature of technology in science classrooms. Interchange: A Quarterly Review of Education, 47(2), 169-187. https://doi.org/10.1007/s10780-015-9273-3.

Kim, M., & Jin, Q. (2022). Studies on visualisation in science classrooms: a systematic literature review. International Journal of Science Education, 44(17), 2613–2631. https://doi.org/10.1080/09500693.2022.2140020

King, D., & English, L. D. (2016). Engineering design in the primary school: Applying stem concepts to build an optical instrument. International Journal of Science Education, 38(18), 2762-2794. https://doi.org/10.1080/09500693.2016.1262567

Article  Google Scholar 

Langheinrich, J., & Bogner, F. X. (2015). Student conceptions about the DNA structure within a hierarchical organizational level: Improvement by experiment- and computer-based outreach learning. Biochemistry and Molecular Biology Education, 43(6), 393-402. https://doi.org/10.1002/bmb.20888

Article  Google Scholar 

Lowrie, T. (2020). The utility of diagrams in elementary problem solving. Cognitive Development, 55(100921).

Markle, J. (2021). Enactive hermeneutics as an interpretive framework in the mathematics classroom. Philosophy of Mathematics Education Journal, 37(August), 1-27.

Markle J., Matthews, E., Kim, M., & McFeetors, P. J. (2025). The role of spatial visualization in primary mathematics and science: A content analysis of Alberta’s curriculum. Delta-K: Journal of the Mathematics Council of the Alberta Teachers’ Association, 59(1), 20-28.

Mason, J. (2002). Researching your own practice: The discipline of noticing. Routledge.

Nathan, M. (2022). Foundations of embodied learning: A paradigm for education. New York: Routledge. https://doi.org/10.4324/9780429329098

Book  Google Scholar 

Olson, J. K. (2013). Education rather than training: Cognitive pluralism and preservice science teacher education. In K. B. Finson, & J. E. Pederson (Eds.), Visual data and their use in science education (pp. 95-124). Charlotte, NC: Information Age Publishing.

Google Scholar 

Parzysz, B. (1991). Representation of space and students’ conceptions at high school level. Education Studies in Mathematics, 22, 575-593. https://doi.org/10.1007/BF00312716

Article  Google Scholar 

Reiner, M. (2008). Seeing through touch: The role of haptic information in visualization. In J. K. Gilbert, M. Reiner, & M. Nakhleh (Eds.), Visualization: Theory and practice in science education (pp. 73-84). New York: Springer.

Chapter  Google Scholar 

Rellensmann, J., Schukajlow, S., Blomberg, J., & Leopold, C. (2022). Effects of drawing instructions and strategic knowledge on mathematical modeling performance: Mediated by the use of the drawing strategy. Applied Cognitive Psychology, 36(2), 402-417. https://doi.org/10.1002/acp.3930

Article  Google Scholar 

Roberts, T., Maiorca, C., Jackson, C., & Mohr-Schroeder, M. (2022). Integrated STEM as problem-solving practices. Investigations in Mathematics Learning, 14(1), 1–13. 10.1080–19477503.2021.2024721

Ryoo, K., & Bedell, K. (2017). The effects of visualizations on linguistically diverse students’ understanding of energy and matter in life science. Journal of Research in Science Teaching, 54(10), 1274-1301. https://doi.org/10.1002/tea.21405

Article  Google Scholar 

Schoenherr, J., & Schukajlow, S. (2023). Characterizing external visualization in mathematics education research: A scoping review. ZDM Mathematics Education, 56, 73-85. https://doi.org/10.1007/s11858-023-01494-3

Article  Google Scholar 

Sinclair, N., Moss, J., Hawes, Z., & Stephenson, C. (2018). Learning through and from drawing in early years geometry. In K. S. Mix & M. T. Battista (Eds.), Visualizing mathematics: The role of spatial reasoning in mathematical thought. Springer.

Thom, J. S., & McGarvey, L. M. (2015). The act and artifact of drawing(s): Observing geometric thinking with, in, and through children’s drawings. ZDM Mathematics Education, 47, 465-481. https://doi.org/10.1007/s11858-015-0697-0

Article  Google Scholar 

Tortop, H. S. (2016). Why thought experiments should be used as an educational tool to develop problem-solving skills and creativity of the gifted students? Journal of Gifted Education and Creativity, 3(3), 35-48.

Google Scholar 

Tytler, R., Prain V., Aranda G., Ferguson J., & Gorur, R. (2020). Drawing to reason and learn in science. Journal of Research in Science Teaching, 57(2), 209-231. https://doi.org/10.1002/tea.21590

Article  Google Scholar 

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

Article  Google Scholar 

van Es, E. A. (2011). A framework for learning to notice student thinking. In M. Sherin, V. Jacobs, & R. Philipp (Eds.), Mathematics teacher noticing: Seeing through teachers’ eyes (pp. 134-151). Routledge.

Google Scholar 

Van Meter, P., & Garner, J. (2005). The promise and practice of learner-generated drawing: Literature review and synthesis. Education Psychology Review, 17, 285-325. https://doi.org/10.1007/s10648-005-8136-3

Article  Google Scholar 

Vavra, K., Janjic-Watrich, V., Loerke, K., Phillips, L., Norris, S., & Macnab, J. (2011). Visualization in science education. Alberta Journal of Science Education, 41(1), 22-30.

Google Scholar 

Yoon, H.-G., Kim, M., & Lee, E.A. (2021). Visual Representation Construction for Collective Reasoning in Elementary Science Classrooms. Education Sciences, 11, 246. https://doi.org/10.3390/educsci11050246

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