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Kortenkamp, U. (2000).  Foundations of Dynamic Geometry. Journal für Mathematikdidaktik. 21, 161–162.
Kortenkamp, U., Dohrmann C., Kreis Y., & Dording C. (2009).  Using the Intergeo Platform for Teaching and Research. (Bardini, C., Fortin C., Oldknow A., & Vagost D., Ed.).Proceedings of the 9th International Conference on Technology in Mathematics Teaching. PDF icon KortenkampDohrmann-UIPTR-2009a.pdf (114.34 KB)
Kortenkamp, U., & Kreis Y. (2008).  Intergeo – Interoperable Interactive Geometry for Europe. Beiträge zum Mathematikunterricht. Vorträge auf der 42. Tagung für Didaktik der Mathematik in Budapest.
Kortenkamp, U. (2007).  CAS und DGS im Dialog – oder: Wieviel CAS braucht der Mensch?. Beiträge zum Mathematikunterricht. Vorträge auf der 41. Tagung für Didaktik der Mathematik in Berlin. PDF icon Kortenkamp-WCASBDM-2007.pdf (138.89 KB)
Kortenkamp, U. (2005).  Visage – Visualisierung von Graphenalgorithmen. Beiträge zum Mathematikunterricht. Vorträge auf der 39. Tagung für Didaktik der Mathematik. PDF icon Kortenkamp-VVG-2005.pdf (1.65 MB)
Kortenkamp, U., & Richter-Gebert J. (2009).  Blended Experimentation with DGS. Proceedings of CADGME 2009. PDF icon KortenkampRichter-Gebert-BEW-cadgme2009.pdf (4.56 MB)
Kortenkamp, U., & Materlik D. (2004).  Geometry teaching in wireless classroom environments using Java and J2ME. Science of Computer Programming. 53, 71–85.PDF icon KortenkampMaterlik-GTWCEUJJ-2004a.pdf (820.01 KB)
Kortenkamp, U., & Richter-Gebert J. (2008).  Cinderella.2 – Geometrie und Physik im Dialog. Computeralgebra-Rundbrief.
Kortenkamp, U. (2011).  Interoperable Interactive Geometry for Europe. The Electronic Journal of Mathematics and Technology. 5, PDF icon Kortenkamp-IIGE-2011c.pdf (1.83 MB)
Kuzle, A., Pavlekovic M., Kolar-Begovic Z.., & Kolar-Super R.. (2013).  The interrelations of the cognitive, and metacognitive factors with the affective factors during problem solving. Mathematics teaching for the future . 250–260.
Kuzle, A., & Dohrmann C. (2014).  Unpacking Children's Angle "Grundvorstellungen”: The Case of Distance “Grundvorstellung” of 1° Angle. (Liljedahl, P., & Sinclare N., Ed.).PME 38. PDF icon RR_Kuzle-Dohrmann-submitted.pdf (683.57 KB)
Kuzle, A. (2012).  Preservice teachers’ patterns of metacognitive behavior during mathematics problem solving in a dynamic geometry environment. (Ludwig, M., & Kleine M., Ed.).46. Jahrestagung der Gesellschaft für Didaktik der Mathematik. 2, 513–516.
Kuzle, A. (Submitted).  Problem solving as an instructional method: The case of strategy-open problem “The treasure island problem”. LUMAT – Research and Practice in Math, Science and Technology Education.
Kuzle, A., & Artigue M. (2012).  Characterization of preservice teachers’ patterns of metacognitive behavior and the use of Geometer’s Sketchpad. The didactics of mathematics: Approaches and issues. A Hommage to Michèle Artigue.
Kuzle, A. (Submitted).  Unpacking the nature of problem solving processes in a dynamic geometry environment: Different technological effects. Journal für Mathematik-Didaktik.
Kuzle, A. (2012).  Investigating and communicating technology mathematics problem solving experience of two preservice teachers. Acta Didactica Napocensia. 5(1), 1–10.
Kuzle, A. (Submitted).  Nature of metacognition in a dynamic geometry environment. LUMAT – Research and Practice in Math, Science and Technology Education.
Kuzle, A. (2013).  Patterns of metacognitive behavior during mathematics problem-solving in a dynamic geometry environment. International Electronic Journal of Mathematics Education. 8(1), 20–40.
Kuzle, A. (2011).  Preservice teachers’ patterns of metacognitive behavior during mathematics problem solving in a dynamic geometry environment.

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