1. Amado, N., & Carreira, S. (2018). Students’ attitudes in a mathematical problem solving competition. In N. Amado, S. Carreira, & K. Jones (Eds.), Broadening the scope of research on mathematical problem solving: A focus on technology, creativity and affect. Cham, CH: Springer.
2. Bokhove, C., & Jones, K. (2018). Stimulating mathematical creativity through constraints in problem solving. In N. Amado, S. Carreira, & K. Jones (Eds.), Broadening the scope of research on mathematical problem solving: A focus on technology, creativity and affect. Cham, CH: Springer.
3. Canavarro, A. P., & Reis, C. S. P. (2018). The interactive whiteboard and the development of dialogic interaction in the context of problem solving. In N. Amado, S. Carreira, & K. Jones (Eds.), Broadening the scope of research on mathematical problem solving: A focus on technology, creativity and affect. Cham, CH: Springer.
4. Carreira, S., Amado, N., Jones, K., & Jacinto, H. (Eds.). (2014). Proceedings of the Problem@ Web International Conference: technology, creativity and affect in mathematical problem solving. Faro, Portugal: Universidade do Algarve.
5. Carreira, S., & Amaral, N. (2018). Mathematical problem solving beyond school - a tool for highlighting creativity in children’s solutions. In N. Amado, S. Carreira, & K. Jones (Eds.), Broadening the scope of research on mathematical problem solving: A focus on technology, creativity and affect. Cham, CH: Springer.