2021_Book_ConnectingMathematicsAndMathem.pdf

This open access book features a selection of articles written by Erich Ch. Wittmann between 1984 to 2019, which shows how the “design science conception” has been continuously developed over a number of decades. The articles not only describe this conception in general terms, but also demonstrate v...

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Γλώσσα:English
Έκδοση: Springer Nature 2020
Διαθέσιμο Online:https://www.springer.com/9783030615703
id oapen-20.500.12657-43294
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spelling oapen-20.500.12657-432942020-12-15T01:51:25Z Connecting Mathematics and Mathematics Education Wittmann, Erich Christian Mathematics Education Teaching and Teacher Education Curriculum Studies Mathematics, general Mathematics Relating Mathematics to Mathematics Education Mathematics Education as a Design Science Substantial Learning Environments Integrating Theory and Practice Curriculum Development Developing mathematics education courses Open Access Teaching of a specific subject Teacher training Curriculum planning & development bic Book Industry Communication::J Society & social sciences::JN Education::JNU Teaching of a specific subject bic Book Industry Communication::J Society & social sciences::JN Education::JNM Higher & further education, tertiary education::JNMT Teacher training bic Book Industry Communication::J Society & social sciences::JN Education::JNK Organization & management of education::JNKC Curriculum planning & development bic Book Industry Communication::P Mathematics & science::PB Mathematics This open access book features a selection of articles written by Erich Ch. Wittmann between 1984 to 2019, which shows how the “design science conception” has been continuously developed over a number of decades. The articles not only describe this conception in general terms, but also demonstrate various substantial learning environments that serve as typical examples. In terms of teacher education, the book provides clear information on how to combine (well-understood) mathematics and methods courses to benefit of teachers. The role of mathematics in mathematics education is often explicitly and implicitly reduced to the delivery of subject matter that then has to be selected and made palpable for students using methods imported from psychology, sociology, educational research and related disciplines. While these fields have made significant contributions to mathematics education in recent decades, it cannot be ignored that mathematics itself, if well understood, provides essential knowledge for teaching mathematics beyond the pure delivery of subject matter. For this purpose, mathematics has to be conceived of as an organism that is deeply rooted in elementary operations of the human mind, which can be seamlessly developed to higher and higher levels so that the full richness of problems of various degrees of difficulty, and different means of representation, problem-solving strategies, and forms of proof can be used in ways that are appropriate for the respective level. This view of mathematics is essential for designing learning environments and curricula, for conducting empirical studies on truly mathematical processes and also for implementing the findings of mathematics education in teacher education, where it is crucial to take systemic constraints into account. 2020-12-14T08:27:56Z 2020-12-14T08:27:56Z 2021 book ONIX_20201214_9783030615703_32 https://library.oapen.org/handle/20.500.12657/43294 eng application/pdf n/a 2021_Book_ConnectingMathematicsAndMathem.pdf https://www.springer.com/9783030615703 Springer Nature Springer International Publishing 10.1007/978-3-030-61570-3 10.1007/978-3-030-61570-3 6c6992af-b843-4f46-859c-f6e9998e40d5 Springer International Publishing 318 open access
institution OAPEN
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language English
description This open access book features a selection of articles written by Erich Ch. Wittmann between 1984 to 2019, which shows how the “design science conception” has been continuously developed over a number of decades. The articles not only describe this conception in general terms, but also demonstrate various substantial learning environments that serve as typical examples. In terms of teacher education, the book provides clear information on how to combine (well-understood) mathematics and methods courses to benefit of teachers. The role of mathematics in mathematics education is often explicitly and implicitly reduced to the delivery of subject matter that then has to be selected and made palpable for students using methods imported from psychology, sociology, educational research and related disciplines. While these fields have made significant contributions to mathematics education in recent decades, it cannot be ignored that mathematics itself, if well understood, provides essential knowledge for teaching mathematics beyond the pure delivery of subject matter. For this purpose, mathematics has to be conceived of as an organism that is deeply rooted in elementary operations of the human mind, which can be seamlessly developed to higher and higher levels so that the full richness of problems of various degrees of difficulty, and different means of representation, problem-solving strategies, and forms of proof can be used in ways that are appropriate for the respective level. This view of mathematics is essential for designing learning environments and curricula, for conducting empirical studies on truly mathematical processes and also for implementing the findings of mathematics education in teacher education, where it is crucial to take systemic constraints into account.
title 2021_Book_ConnectingMathematicsAndMathem.pdf
spellingShingle 2021_Book_ConnectingMathematicsAndMathem.pdf
title_short 2021_Book_ConnectingMathematicsAndMathem.pdf
title_full 2021_Book_ConnectingMathematicsAndMathem.pdf
title_fullStr 2021_Book_ConnectingMathematicsAndMathem.pdf
title_full_unstemmed 2021_Book_ConnectingMathematicsAndMathem.pdf
title_sort 2021_book_connectingmathematicsandmathem.pdf
publisher Springer Nature
publishDate 2020
url https://www.springer.com/9783030615703
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