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Keyword:  ARITHMETIC
Fuchs, L. S., Fuchs, D., Compton, D. L., Powell, S. R., Seethaler, P. M., & Capizzi, A. M., et al. (2006). The cognitive correlates of third-grade skill in arithmetic, algorithmic computation, and arithmetic word problems. Journal of educational psychology, 98(1), pp. 29–43. Dernièrement modifiée par: Sterenn Audo  V    Pop. 35.77%
García, A. I., Jiménez, J. E., & Hess, S. (2006). Solving arithmetic word problems: An analysis of classification as a function of difficulty in children with and without arithmetic ld. Journal of learning disabilities, 39(3), pp. 270–281. Dernièrement modifiée par: Sterenn Audo  V    Pop. 32.03%
Gelman, R. (2006). Young natural-number arithmeticians. Current Directions in Psychological Science, 15(4), pp. 193–197. Dernièrement modifiée par: Sterenn Audo  V    Pop. 31.66%
Jackson, N., & Coney, J. (2007). Simple arithmetic processing: Individual differences in automaticity. European Journal of Cognitive Psychology, 19(1), pp. 141–160. Dernièrement modifiée par: Sterenn Audo  v    Pop. 33.76%
Sophian, C., & McCorgray, P. (1994). Part-whole knowledge and early arithmetic problem solving. Cognition & Instruction, 12(1), p. p3. Dernièrement modifiée par: Lynda Taabane  V    Pop. 29.29%
Thevenot, C., Barrouillet, P., & Fayol, M. (2001). Algorithmic solution of arithmetic problems and operands–answer associations in long-term memory. Quarterly Journal of Experimental Psychology: Section A, 54(2), p. p599–611. Dernièrement modifiée par: Lynda Taabane  V    Pop. 33.12%
Thevenot, C., & Oakhill, J. (2006). Representations and strategies for solving dynamic and static arithmetic word problems: The role of working memory capacities. European Journal of Cognitive Psychology, 18(5), pp. 756–775. Ajoutée par: Sterenn Audo  V    Pop. 36.77%
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