Conclusion: Mathematics Problem Posing and Problem Solving: Some Reflections on Recent Advances and New Opportunities

Author:

Silver Edward A.

Publisher

Springer Nature Singapore

Reference51 articles.

1. Akay, H., & Boz, N. (2010). The effect of problem posing oriented analyses-II course on the attitudes toward mathematics and mathematics self-efficacy of elementary prospective mathematics teachers. Australian Journal of Teacher Education, 35(1), 59–65.

2. Australian Education Council, Curriculum Corporation (Australia). (1991). A national statement on mathematics for Australian schools: A joint project of the states, territories and the Commonwealth of Australia/initiated by the Australian Education Council. Curriculum Corporation for the Australian Education Council.

3. Bicer, A., Lee, Y., Perihan, C., Capraro, M., & Capraro, R. (2020). Considering mathematical creative self-efficacy with problem posing as a measure of mathematical creativity. Educational Studies in Mathematics, 105, 457–485.

4. Brown, S. I., & Walter, M. I. (1983). The art of problem posing. Franklin Institute Press.

5. Burkhardt, H., Groves, S., Schoenfeld, A., & Stacey, K. (Eds.). (1988). Problem solving—A world view. In Proceedings of the Problem Solving Theme Group (ICME5). Shell Centre for Mathematical Education.

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