Abstract

This study analyzes the procedural explanations written by remedial college mathematics students. Relevant literatures suggest that six communication activities might be key in effective procedural explanations in mathematics writing: (a) orienting the learner, (b) providing kernels or definitions of concepts and procedures, (c) using exemplars or worked examples, (d) providing descriptions of the process or procedure, (e) solidifying learner understanding, and (f) facilitating linguistic control of mathematical terms. Using this framework, 18 practices or types of difficulties were discovered in students' written explanations. Independent experts consistently evaluated student explanations more highly when the explanations contained arithmetic or algebraic exemplars, described specific actions and their meanings, linked new with prior knowledge, and used descriptive language; experts evaluated student explanations more negatively when students displayed difficulties reasoning with kernels, reasoning with exemplars, or with describing processes.

Journal
Written Communication
Published
2008-10-01
DOI
10.1177/0741088308322343
CompPile
Open Access
Closed
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Cited by in this index (1)

  1. Written Communication

References (40) · 2 in this index

  1. Explaining and arguing: The social organization of accounts
  2. 10.3102/00346543074001029
     ↗
  3. Bussi, M.G.B. (1998). Joint activity in mathematics classrooms: A Vygotskian analysis. In F. Seeger, J. Voigt…
     ↗
  4. 10.1111/j.1949-8594.1996.tb10235.x
     ↗
  5. 10.1007/BF01273863
     ↗
Show all 40 →
  1. 10.2307/749781
     ↗
  2. Cobb, P., Wood, T. & Yackel, E. (1993). Discourse, mathematical thinking, and classroom practice. In E. A. Fo…
     ↗
  3. Symbolizing and communication in mathematics classrooms: Perspectives on discourse, tools…
  4. Logic in teaching
  5. 10.1111/j.1949-8594.2000.tb17250.x
     ↗
  6. 10.1207/s1532690xci0404_2
     ↗
  7. Lerman, S. (2000). The social turn in mathematics educational research . In J. Boaler (Ed.), Multiple perspec…
     ↗
  8. 10.1037/0022-0663.88.1.64
     ↗
  9. 10.1037/0022-0663.86.3.389
     ↗
  10. Principles and standards for school mathematics
  11. 10.3102/00346543074002117
     ↗
  12. O'Keefe, B.J. & Delia, J.G. (1986). Psychological and interactional dimensions of communicative development. …
     ↗
  13. O'Keefe, B.J. & Delia, J.G. (1988). Communication tasks and communication practices: The development of audie…
  14. Communicating technical information: A guide for the electronic age
  15. Pirie, S. (1998). Crossing the gulf between thought and symbol: Language as (Slippery) stepping stones. In H.…
  16. Written Communication
  17. Written Communication
  18. Rowan, K.E. (1999). Explanatory skills. In A. L. Vangelisti, J. A. Daly, & G. W. Friedrich (Eds.), Teaching c…
  19. Rowan, K.E. (2003). Informing and explaining skills: Theory and research on informative communication. In J. …
  20. Rubin, D.L. (1988). Introduction: Four dimensions of social construction in written communication. In B. A. R…
  21. 10.1111/j.1468-2958.1994.tb00341.x
     ↗
  22. 10.1017/CBO9780511720406
     ↗
  23. Sfard, A. & Kieran, C. (2001). Preparing teachers for handling students' mathematical communication: Gatherin…
     ↗
  24. 10.1023/A:1003109819256
     ↗
  25. Language and communication in the mathematics classroom
  26. Stevens, R. & Hall, R. (1998). Disciplined perception: Learning to see in technoscience . In M. Lampert & M. …
     ↗
  27. 10.1111/j.1949-8594.2002.tb18216.x
     ↗
  28. 10.1037/0022-0663.80.1.54
     ↗
  29. Review of Educational Psychology
  30. van Dormolen, J. (1985). Textual analysis. In B. Christianson, A. G. Howson, & M. Otte (Eds.), Perspectives o…
     ↗
  31. 10.1080/0950069970190206
     ↗
  32. 10.1017/CBO9780511720406.008
     ↗
  33. 10.1017/CBO9780511605895
     ↗
  34. Procedure writing: Principles and practices
  35. Ohio Journal of School Mathematics