Digital Learning Environments to Support Autonomous Learning Processes of Mathematically Creative and Gifted Students

Author:

Brandl MatthiasORCID,Szabo AttilaORCID

Publisher

Springer Nature Switzerland

Reference33 articles.

1. Brandl, M., Szabo, A.: Overexcitability, iconoclasm and mathematical creativity & giftedness. In: Including the Highly Gifted and Creative Students—Current Ideas and Future Directions: Proceedings of the 11th International Conference on Mathematical Creativity and Giftedness. Conference Proceedings in Mathematics Education, 5, pp. 53–58. WTM (2019)

2. Klein, F.: Elementary mathematics from higher standpoint. Volume I: Arithmetic, Algebra, Analysis (G. Schubring, Trans.). Springer, [Original work published 1924] (2016)

3. Winsløw, C., Grønbæk, N.: Klein’s double discontinuity revisited: contemporary challenges for universities preparing teachers to teach calculus. Recherches en Didactique des Mathématiques 34(1), 59–86 (2014)

4. Hefendehl-Hebeker, L.: Doppelte Diskontinuität oder die Chance der Brückenschläge. In: Ableitinger, C., Kramer, J., Prediger, S. (eds.) Zur doppelten Diskontinuität in der Gymnasiallehrerbildung, pp. 1–15. Springer Spektrum (2013)

5. Datzmann, A., Przybilla, J., Brandl, M., Kaiser, T.: New teaching techniques aiming to connect school and university mathematics in geometry. In: Donevska-Todorova, A., et al. (eds.) Mathematics Education in the Digital Age (MEDA), pp. 37–44. HAL, Villeurbanne (2020)

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