Prospective teachers' development of meta-cognitive functions in solving mathematical-based programming problems with scratch

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Abstract

Transformations, including symmetry and rotations, are important in solving mathematical problems. Meta-cognitive functions are considered critical in solving mathematical problems. In the current study, we examined prospective teachers' use of meta-cognitive functions while solving mathematical-based programming problems in the Scratch environment. The study was conducted among 18 prospective teachers, who engaged in a sequence of mathematical problems that utilize Scratch. The data sources included video recordings and solution reports while they performed mathematical problems. The findings indicated that the participants developed their meta-cognitive functions as problem solvers related to both mathematics and programming aspects. The findings also indicated that the participants developed regulation meta-cognitive functions more than awareness and evaluation ones in mathematical and programming aspects.

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Shahbari, J. A., Daher, W., Baya’a, N., & Jaber, O. (2020). Prospective teachers’ development of meta-cognitive functions in solving mathematical-based programming problems with scratch. Symmetry, 12(9). https://doi.org/10.3390/SYM12091569

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