• Title/Summary/Keyword: 초등 수학교과서 분석

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An Analysis of Sixth Graders' Understanding on Double Scale Model: Focusing on Fraction Division (이중 척도 모델에 대한 초등학교 6학년 학생들의 이해 분석: 분수의 나눗셈을 중심으로)

  • Pang, JeongSuk;Kwak, Giwoo;Kim, SoHyeon
    • Communications of Mathematical Education
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    • v.37 no.2
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    • pp.135-157
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    • 2023
  • Double scale models have been introduced in elementary mathematics textbooks under the 2015 revised mathematics curriculum. However, few studies have examined in detail how students understand or utilize such models. In this study, we analyzed how 154 sixth-grade students who had learned the division of fractions from textbooks containing double scale models understood such models. The results showed that the students tended to identify the components of the model relatively well, but had difficulties exploring the unit or the meaning of the bottom number line of a model. They also had a lot of difficulties using the double scale model to complete the computation process and explain the computation principle. Based on these findings, we discuss the implications of teaching double scale models.

Analysis of the linkage between the three categories of content system according to the 2022 revised mathematics curriculum and the lesson titles of mathematics textbooks for the first and second-grade elementary school (2022 개정 수학과 교육과정에 따른 내용 체계의 세 범주와 초등학교 1~2학년 수학 교과서 차시명의 연계성 분석)

  • Kim, Sung Joon;Kim, Eun kyung;Kwon, Mi sun
    • Communications of Mathematical Education
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    • v.38 no.2
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    • pp.167-186
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    • 2024
  • Since the 5th mathematics curriculum, the goals of mathematics education have been presented in three categories: cognitive, process, and affective goals. In the 2022 revised mathematics curriculum, the content system was also presented as knowledge-understanding, process-skill, and value-attitude. Therefore, in order to present lesson goals to students, it is necessary to present all three aspects that are the goals of mathematics education. Currently, the lesson titles presented in mathematics textbooks are directly linked to lesson goals and are the first source of information for students during class. Accordingly, this study analyzed how the three categories of lesson titles and content system presented in the 2015 revised 1st and 2nd grade mathematics textbook are connected. As a result, most lesson titles presented two of the three categories, but the reflected elements showed a tendency to focus on the categories of knowledge-understanding and process-skill. Some cases of lesson titles reflected content elements of the value-attitude category, but this showed significant differences depending on the mathematics content area. Considering the goals of mathematics lessons, it will be necessary to look at ways to present lesson titles that reflect the content elements of the value-attitude categories and also explore ways to present them in a balanced way. In particular, considering the fact that students can accurately understand the goals of the knowledge-understanding categories even without presenting them, descriptions that specifically reflect the content elements of the process-skill and value-attitude categories seem necessary. Through this, we attempted to suggest the method of presenting the lesson titles needed when developing the 2022 revised mathematics textbook and help present effective lesson goals using this.

A study to analyze the adequacy of elementary school mathematics textbooks - Based on the unit structure and vocabulary - (초등학교 수학 교과서 내용 적정성 분석 - 단원 구성 및 어휘 사용을 중심으로 -)

  • Kwon, Jeom Rae
    • The Mathematical Education
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    • v.55 no.3
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    • pp.281-297
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    • 2016
  • There has being developed elementary mathematics textbooks currently based on the 2015 revised mathematics curriculum. Vocabularies used in mathematics textbooks are mainly determined by the authors to develop textbooks. The purpose of this study was to investigate the adequacy of elementary school mathematics textbooks based on the unit structure and vocabulary, and to provide implications for elementary mathematics textbooks which is currently in development, in accordance with the 2015 revised curriculum. As a result, there were found some problems in the unit structure and vocabulary of elementary mathematics textbooks.

Domestic Research Trends and Tasks on Early Algebra Education : Focused on the Elementary School Mathematics (국내 초기 대수 교육 연구의 동향과 과제 : 초등 수학을 중심으로)

  • Han, Chaereen;Kwon, Oh Nam
    • Journal of Elementary Mathematics Education in Korea
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    • v.22 no.2
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    • pp.115-142
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    • 2018
  • This research analyzed domestic researches on early algebra education which are published in six major mathematics education journals in Korea. The purpose of this work is to grasp trends of early algebra education in Korea and to draw up future tasks. From 2000 to 2017, 89 papers which are related to early algebra education published in 6 journals. The 89 papers were categorized by research period, academic journals, research topics, and research subjects. As a result, the number of researches on early algebra education in Korea has increased since 2000. Although early algebra education belongs to the field of elementary mathematics education, lots of papers were published in other math education journals than in the math education journals for elementary school mathematics. Most research focused on proportional reasoning across the algebraic content area. The majority of the research subjects were students, especially upper-grade students of elementary school. Based on the results of this study, some implications for early algebra education in Korea were suggested.

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An Analysis Study of SW·AI elements of Primary Textbooks based on the 2015 Revised National Curriculum (2015 개정교육과정에 따른 초등학교 교과서의 SW·AI 요소 분석 연구)

  • Park, SunJu
    • Journal of The Korean Association of Information Education
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    • v.25 no.2
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    • pp.317-325
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    • 2021
  • In this paper, the degree of reflection of SW·AI elements and CT elements was investigated and analyzed for a total of 44 textbooks of Korean, social, moral, mathematics and science textbooks based on the 2015 revised curriculum. As a result of the analysis, most of the activities of data collection, data analysis, and data presentation, which are ICT elements, were not reflected, and algorithm and programming elements were not reflected among SW·AI content elements, and there were no abstraction, automation, and generalization elements among CT elements. Therefore, in order to effectively implement SW·AI convergence education in elementary school subjects, we will expand ICT utilization activities to SW·AI utilization activities. Training on the understanding of SW·AI convergence education and improvement of teaching and learning methods using SW·AI is needed for teachers. In addition, it is necessary to establish an information curriculum and secure separate class hours for substantial SW·AI education.

An Analytical Study on Drawbacks Related to Contents Handled in Elementary Mathematics Textbooks in Korea (우리나라 초등학교 수학 교과서에서 취급하는 내용과 관련한 문제점 분석)

  • Park, Kyo Sik
    • School Mathematics
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    • v.18 no.1
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    • pp.1-14
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    • 2016
  • In this paper, in order to lay the foundation for clearly determining the scope of contents handled in elementary math textbooks in Korea, what may be issues are discussed with respect to the contents handled in the current math textbooks. First of all, handling of percent point, concave polygons, and possibilities of event that will happen are discussed, the handling of them can be a issue in the sense of inconsistencies to the curriculum. Next, handling of fractions attaching units of discrete quantities and fractions attaching 'times' are discussed, the handling of them can be a issue in the sense of gap between everyday life and definition in math textbooks. Finally, handling of representing natural numbers into fractions and the positional relationship of geometrical figures are discussed, the handling of them can be a issue in the sense of a logical jump. The following three implications obtained from these discussions are presented as conclusions. First, it is necessary to establish clearly the relationship of textbooks and curriculum. Second, it is necessary to give attention to using the way to define or deal with concepts in math textbooks mixed with the way to use them in everyday life. Third, it is necessary to identify and eliminate the logical jumps in math textbooks.

An Analysis of Mathematics Textbook's Contents Based on Davydov's Activity Theory (Davydov의 활동이론에 기반한 초등학교 수학교과서의 내용 분석)

  • Han, Inki
    • East Asian mathematical journal
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    • v.29 no.2
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    • pp.137-168
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    • 2013
  • In this paper we study activity theory and Davydov's learning activity theory. We analyze brief history of activity theory in Russia, structure of human activity, and Davydov's studies in activity theory. Especially we analyze Davydov's 1st grade mathematics textbook, and try to investigate embodiment of Davydov's learning activity theory in his mathematics textbook.

Textbook analysis on the application of concave polygons in congruence and symmetrical teaching and learning (합동과 대칭의 교수학습에서 오목다각형의 활용에 대한 교과서 분석)

  • Kang, Yunji
    • Communications of Mathematical Education
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    • v.38 no.2
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    • pp.215-230
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    • 2024
  • Congruences and symmetry are familiar concepts that can be encountered in everyday life. In order to effectively understand and acquire these concepts, the role of appropriate visual examples is important. This analysis examined various visual examples used in the process of learning the concepts of congruence and symmetry in elementary mathematics textbooks and focused on the use of convex polygons and concave polygons. As a result of the analysis, various types of polygons were used as visual examples for teaching and learning of congruence and symmetry in textbooks. The frequency of use of concave polygons was higher in the order of congruence, line symmetry, and point symmetry, and it was confirmed that it was used more frequently in the process of exploring properties than in the introduction of the concept. Based on these results, a plan to utilize concave polygons in teaching and learning of congruence and symmetry was sought.

Different Views of the US and Korea about Mathematical Terminologies, 'Ratio' and 'Rate' (수학용어에 대한 논쟁을 통해 본 비(比)에 대한 미국과 한국의 관점차)

  • Kim, Soo Mi
    • Journal of Educational Research in Mathematics
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    • v.25 no.3
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    • pp.431-448
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    • 2015
  • This study is conducted to understand the real shape of confusion surrounding mathematical terminologies, 'ratio' and 'rate' in both the US and Korea and to get some implications for Korean education. For this, various materials including textbooks and materials for kids and teachers, dictionaries, educational internet web sites, the past Korean elementary mathematics curriculums and etc are reviewed with respect to the terminologies related to 'ratio' and 'rate'. As a result, the findings are as follows. Firstly, the US and Korea have different views with ratio and rate. Secondly, Korean terminologies related to ratio and rate are not enough to treat the essentials of the concept of ratio and rate.

The Origin and Instruction of Computational Errors with Zero (0처리 오류의 기원 및 0의 지도)

  • Kim, Soo-Mi
    • School Mathematics
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    • v.8 no.4
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    • pp.397-415
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    • 2006
  • This paper is to find out the reason why students often make mistakes with 0 during computation and to get some instructional implication. For this, history of 0 is reviewed and mathematics textbook and workbook are analyzed. History of 0 tells us that the ancients had almost the same problem with 0 as we have. So we can guess children's problems with 0 have a kind of epistemological obstacles. And textbook analysis tells us that there are some instructional problems with 0 in textbooks: method and time of introducing 0, method of introducing computational algorithms, implicit teaching of the number facts with 0, ignoring the problems which can give rise to errors with 0. Finally, As a reult of analysis of Japanese and German textbooks, three instructional implications are induced:(i) emphasis of role of 0 as a place holder in decimal numeration system (ii) explicit and systematic teaching of the process and product of calculation with 0 (iii) giving practice of problems which can give rise to errors with 0 for prevention of systematical errors with 0.

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