A bridging study analyzing mathematical model construction through a quantities-oriented lens

Author:

Czocher Jennifer A.,Hardison Hamilton L.,Kularajan Sindura S.

Publisher

Springer Science and Business Media LLC

Subject

Education,General Mathematics

Reference56 articles.

1. Ärlebäck, J., & Bergsten, C. (2010). On the use of realistic fermi problems in introducing mathematical modelling in upper secondary mathematics. In R. Lesh, P. Galbraith, C. Haines, & A. Hurford (Eds.), Modeling students’ mathematical modeling competencies (pp. 597–609). Springer. https://doi.org/10.1007/978-1-4419-0561-1_52

2. Blomhøj, M., & Jensen, T. H. (2003). Developing mathematical modelling competence: Conceptual clarification and educational planning. Teaching Mathematics and Its Applications, 22(3), 123–139. https://doi.org/10.1093/teamat/22.3.123

3. Borromeo Ferri, R. (2006). Theoretical and empirical differentiations of phases in the modelling process. ZDM – Mathematics Education, 38(2), 86–95. https://doi.org/10.1007/BF02655883

4. Cai, J., Cirillo, M., Pelesko, J., Bommero Ferri, R., Borba, M., Geiger, V., Stillman, G., English, L., Wake, G., & Kaiser, G. (2014). Mathematical modeling in school education: Mathematical, cognitive, curricular, instructional and teacher educational perspectives. In P. Liljedahl, S. Oesterle, & C. Nicol (Eds.), Proceedings of the 38th Conference of the International Group for the Psychology of Mathematics Education and the 36th Conference of the North American Chapter of the Psychology of Mathematics Education (Vol. 1, pp. 145–172). Springer.

5. Carraher, T. N., Carraher, D. W., & Schliemann, A. D. (1985). Mathematics in the streets and in schools. British Journal of Developmental Psychology, 3, 21–29. https://doi.org/10.1111/j.2044-835X.1985.tb00951.x

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