Learning Mathematics in the Context of 3D Printing Learning Mathematics in the Context of 3D Printing
MINTUS – Beiträge zur mathematisch-naturwissenschaftlichen Bildung

Learning Mathematics in the Context of 3D Printing

Proceedings of the International Symposium on 3D Printing in Mathematics Education

Frederik Dilling والمزيد
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وصف الناشر

The volume presents a collection of articles on the use of 3D printing technology in mathematics education and in mathematics teacher training. It contains both basic research-oriented contributions as well as reflected descriptions of concrete developments for teaching. The authors of this compilation share a positive attitude towards the possibilities that the use of 3D printing technology (understood as an interplay of software and hardware) can unfold for mathematics education, but critically evaluate from a mathematics education research perspective when, where and how an application can enable an added value for the learning of a mathematical content.The EditorsDr. Frederik Dilling is a research associate at the department of mathematics at the University of Siegen. His research focuses on digital technologies and interdisciplinarity in mathematics education and mathematics teacher training. Dr. Felicitas Pielsticker worksat the University of Siegen in the department of mathematics as a lecturer and researcher. Her research focuses on a holistic cognitive and neurofunctional description and analysis of mathematical knowledge development processes with digital technologies.Prof. Dr. Ingo Witzke is professor for mathematics education at the University of Siegen. His research group investigates mathematical knowledge development processes of learners interacting with (digital) tools and resources.

النوع
علم وطبيعة
تاريخ النشر
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١ مارس
اللغة
EN
الإنجليزية
عدد الصفحات
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الناشر
Springer Fachmedien Wiesbaden
البائع
Springer Nature B.V.
الحجم
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‫م.ب.‬
Volume 2: Cases and Perspectives Volume 2: Cases and Perspectives
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Research on Technology and the Teaching and Learning of Mathematics: Volume 1 Research on Technology and the Teaching and Learning of Mathematics: Volume 1
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MULTIFACETED NATURE OF CREATIVITY IN THE TEACH GEOMETRY MULTIFACETED NATURE OF CREATIVITY IN THE TEACH GEOMETRY
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Interdisciplinarity, Creativity, and Learning Interdisciplinarity, Creativity, and Learning
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Visualization in Science Education Visualization in Science Education
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Semiotic Approaches in Science Didactics Semiotic Approaches in Science Didactics
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Interdisziplinäres Forschen und Lehren in den MINT-Didaktiken Interdisziplinäres Forschen und Lehren in den MINT-Didaktiken
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Comparison of Mathematics and Physics Education II Comparison of Mathematics and Physics Education II
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Neue Perspektiven auf mathematische Lehr-Lernprozesse mit digitalen Medien Neue Perspektiven auf mathematische Lehr-Lernprozesse mit digitalen Medien
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Begründungsprozesse im Kontext von (digitalen) Medien im Mathematikunterricht Begründungsprozesse im Kontext von (digitalen) Medien im Mathematikunterricht
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Interdisziplinäres Forschen und Lehren in den MINT-Didaktiken Interdisziplinäres Forschen und Lehren in den MINT-Didaktiken
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Zeit und das Potential ihrer Darstellungsformen Zeit und das Potential ihrer Darstellungsformen
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Empirisches mathematisches Wissen in der Grundschule Empirisches mathematisches Wissen in der Grundschule
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Comparison of Mathematics and Physics Education II Comparison of Mathematics and Physics Education II
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Digitale Mathematik-Lernplattformen in Deutschland Digitale Mathematik-Lernplattformen in Deutschland
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Neue Perspektiven auf mathematische Lehr-Lernprozesse mit digitalen Medien Neue Perspektiven auf mathematische Lehr-Lernprozesse mit digitalen Medien
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