SUBJECT «NUMBER SYSTEMS» IN TWO-LEVELED FORMAT PREPARATION TEACHERS OF MATHEMATICS

The aim of this article is to analyze the format of a two-leveled training – bachelor and master – future teachers of mathematics from the point of view of the content of mathematical material, which is to develop prospective teachers of mathematics at those two levels, shaping their professional co...

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Main Author: V. I. Igoshin
Format: Article
Language:Russian
Published: Russian State Vocational Pedagogical University 2017-02-01
Series:Образование и наука
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Online Access:https://www.edscience.ru/jour/article/view/747
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author V. I. Igoshin
author_facet V. I. Igoshin
author_sort V. I. Igoshin
collection DOAJ
description The aim of this article is to analyze the format of a two-leveled training – bachelor and master – future teachers of mathematics from the point of view of the content of mathematical material, which is to develop prospective teachers of mathematics at those two levels, shaping their professional competence.Methods. The study involves the theoretical methods: the analysis of pedagogical and methodical literature, normative documents; historical, comparative and logical analysis of the content of pedagogical mathematical education; forecasting, planning and designing of two-leveled methodical system of training of future teachers of mathematics.Results and scientific novelty. The level differentiation of the higher education system requires developing the appropriate curricula for undergraduate and graduate programs. The fundamental principle must be the principle of continuity – the magister must continue to deepen and broaden knowledge and skills, along with competences acquired, developed and formed on the undergraduate level. From these positions, this paper examines the course «Number Systems» – the most important in terms of methodology course for future mathematics teachers, and shows what content should be filled with this course at the undergraduate level and the graduate level. At the undergraduate level it is proposed to study classical number systems – natural, integer, rational, real and complex. Further extensions of the number systems are studied at the graduate level. The theory of numeric systems is presented as a theory of algebraic systems, arising at the intersection of algebra and mathematical logic. Here we study algebras over a field, division algebra over a field, an alternative algebra with division over the field, Jordan algebra, Lie algebra. Comprehension of bases of the theory of algebras by the master of the «mathematical education» profile will promote more conscious understanding of an axiomatic method, a structure of axiomatic theories in mathematics, development mechanisms of mathematical science; at the same time it will help to develop to complete vision of mathematics as a single science. As a result, the educational level of the master will be above the educational level of the bachelor of pedagogical mathematical education.Practical significance. The article can be useful to heads of departments and graduate programs, faculties of classical and pedagogical universities, carrying out preparation of masters in the direction «Pedagogical Education (Mathematics)».
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spelling doaj-art-83b10a5983a640e6ac45892774873d922025-02-03T11:51:51ZrusRussian State Vocational Pedagogical UniversityОбразование и наука1994-56392310-58282017-02-01018110210.17853/1994-5639-2017-1-81-102584SUBJECT «NUMBER SYSTEMS» IN TWO-LEVELED FORMAT PREPARATION TEACHERS OF MATHEMATICSV. I. Igoshin0Saratov National Research State UniversityThe aim of this article is to analyze the format of a two-leveled training – bachelor and master – future teachers of mathematics from the point of view of the content of mathematical material, which is to develop prospective teachers of mathematics at those two levels, shaping their professional competence.Methods. The study involves the theoretical methods: the analysis of pedagogical and methodical literature, normative documents; historical, comparative and logical analysis of the content of pedagogical mathematical education; forecasting, planning and designing of two-leveled methodical system of training of future teachers of mathematics.Results and scientific novelty. The level differentiation of the higher education system requires developing the appropriate curricula for undergraduate and graduate programs. The fundamental principle must be the principle of continuity – the magister must continue to deepen and broaden knowledge and skills, along with competences acquired, developed and formed on the undergraduate level. From these positions, this paper examines the course «Number Systems» – the most important in terms of methodology course for future mathematics teachers, and shows what content should be filled with this course at the undergraduate level and the graduate level. At the undergraduate level it is proposed to study classical number systems – natural, integer, rational, real and complex. Further extensions of the number systems are studied at the graduate level. The theory of numeric systems is presented as a theory of algebraic systems, arising at the intersection of algebra and mathematical logic. Here we study algebras over a field, division algebra over a field, an alternative algebra with division over the field, Jordan algebra, Lie algebra. Comprehension of bases of the theory of algebras by the master of the «mathematical education» profile will promote more conscious understanding of an axiomatic method, a structure of axiomatic theories in mathematics, development mechanisms of mathematical science; at the same time it will help to develop to complete vision of mathematics as a single science. As a result, the educational level of the master will be above the educational level of the bachelor of pedagogical mathematical education.Practical significance. The article can be useful to heads of departments and graduate programs, faculties of classical and pedagogical universities, carrying out preparation of masters in the direction «Pedagogical Education (Mathematics)».https://www.edscience.ru/jour/article/view/747number systems – natural, integer, rational, real, complex, double and dual numbersthe body of quaternionsalgebras with a division over a fieldfrobenius theoremalternative algebra with divisionalgebra of octavessystems of hypercomplex numbersjordan algebralee algebraaxiomatic theory of number systems.
spellingShingle V. I. Igoshin
SUBJECT «NUMBER SYSTEMS» IN TWO-LEVELED FORMAT PREPARATION TEACHERS OF MATHEMATICS
Образование и наука
number systems – natural, integer, rational, real, complex, double and dual numbers
the body of quaternions
algebras with a division over a field
frobenius theorem
alternative algebra with division
algebra of octaves
systems of hypercomplex numbers
jordan algebra
lee algebra
axiomatic theory of number systems.
title SUBJECT «NUMBER SYSTEMS» IN TWO-LEVELED FORMAT PREPARATION TEACHERS OF MATHEMATICS
title_full SUBJECT «NUMBER SYSTEMS» IN TWO-LEVELED FORMAT PREPARATION TEACHERS OF MATHEMATICS
title_fullStr SUBJECT «NUMBER SYSTEMS» IN TWO-LEVELED FORMAT PREPARATION TEACHERS OF MATHEMATICS
title_full_unstemmed SUBJECT «NUMBER SYSTEMS» IN TWO-LEVELED FORMAT PREPARATION TEACHERS OF MATHEMATICS
title_short SUBJECT «NUMBER SYSTEMS» IN TWO-LEVELED FORMAT PREPARATION TEACHERS OF MATHEMATICS
title_sort subject number systems in two leveled format preparation teachers of mathematics
topic number systems – natural, integer, rational, real, complex, double and dual numbers
the body of quaternions
algebras with a division over a field
frobenius theorem
alternative algebra with division
algebra of octaves
systems of hypercomplex numbers
jordan algebra
lee algebra
axiomatic theory of number systems.
url https://www.edscience.ru/jour/article/view/747
work_keys_str_mv AT viigoshin subjectnumbersystemsintwoleveledformatpreparationteachersofmathematics