• Title/Summary/Keyword: mathematics learning program

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An Analysis Study on Mathematics Learning Characteristics of Out-of-School Youth through STEAM Education with Mathematics and Music (수학과 음악의 융합인재교육으로 변화된 학교 밖 청소년의 수학학습 특성 분석)

  • Kim, Youngin;Suh, Boeuk
    • Communications of Mathematical Education
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    • v.36 no.3
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    • pp.313-334
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    • 2022
  • The purpose of this study is to analyze the changes in mathematical learning through applying STEAM education according to social needs for out-of-school youth. For this purpose, we developed a teaching and learning model and program for mathematics and music STEAM education, and we implemented and analyzed the changes of affective area and problem-solving strategies. The analysis results of characteristic in affective area are as follows: first, the activity-oriented class of mathematics and music STEAM education aroused interest in mathematics. Second, providing opportunities for mathematics and music STEAM education instilled a positive perception of the value of mathematics and STEAM education. Third, the autonomous communication-oriented learning environment of mathematics and music STEAM education improved confidence and motivation to learn in mathematics. The analysis results of the characteristic in problem-solving strategy are as follows: first, through the STEAM education with mathematics and music, a conceptual understanding of internally and externally dividing points was formed, and a given problem was expressed and solved in a formula. Second, the functional correspondence relationship was understood, and the given problem was described and solved with symbols associated with the function. The suggestions of the study are as follows: first, based on the teaching and learning model and results of this study, various STEAM education programs for out-of-school youth should be developed and expanded to foster future competencies and provide new changes for out-of-school youth. Second, it can be used for research on the development of teaching and learning materials for convergence elective subjects in the high school credit system by referring to the mathematics and music convergence STEAM program of this study. As the subjects and fields of STEAM education are diversified and organized, students in need of receiving educational opportunities will be reduced, and there will be a world where the name of out-of-school youth and alternative education will not be necessary. Therefore, it is expected that development of teaching and learning programs created by interest in education of out-of-school youth will be used as an innovative idea in school education to achieve a virtuous cycle.

A Study for Numeracy program Development of the elderly generation (후기성인학습자를 위한 수리문해 프로그램 개발)

  • Lee, Hyeung Ju;Ko, Ho Kyoung
    • Communications of Mathematical Education
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    • v.32 no.4
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    • pp.519-536
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    • 2018
  • This study is intended to develop a numeracy program for late-adult learners. For this study, firstly, characteristics of numeracy were analyzed and based on those characteristics, numeracy learning contents for late-adult learners were selected. Also, teaching and learning materials were developed by linking the mathematics contents selected to experience-based real lives of late-adult learners. When this numeracy program was applied to late-adult learners, it was observed that there was a change in the affective domain like interest at the early stage of learning and that as learning continued, mathematical elaboration occurred by way of mathematical formalization. In conclusion, this study has significance by re-defining arithmetic for late-adults from a perspective of numeracy, based on experience of late-adults, and making a contribution to mathematical elaboration of late-adult learners so non-formal problem-solving processes of lat-adult learners can be justified as elaborate mathematical problem-solving.

Analysis of Problem Posing Strategy of Mathematics Gifted Students in an Origami Program (종이접기 프로그램에서 수학영재학생들의 문제 만들기 전략 분석)

  • Yim, Geun-Gwang
    • Journal of Gifted/Talented Education
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    • v.20 no.2
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    • pp.461-486
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    • 2010
  • By learning math, constructing math problems helps us to improve analytical thinking ability and have a positive attitude and competency towards math leaning. Especially, gifted students should create math problems under certain circumstances beyond the level of solving given math problems. In this study, I examined the math problems made by the gifted students after the process of raising questions and discussing them for themselves by doing origami. I intended to get suggestions by analyzing of problem posing strategy and method facilitating the thinking of mathematics gifted students in an origami program.

A Study on Algebraic Knowledge of Mathematics Teachers on Solving Polynomials and Searching Possibility of Self Learning the Knowledge (다항식의 해법에 대한 수학교사의 대수 내용지식과 자립연수 가능성 탐색)

  • Shin, Hyunyong;Han, Inki
    • Communications of Mathematical Education
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    • v.29 no.4
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    • pp.661-685
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    • 2015
  • This study is to search for a program of professional development of mathematics teachers on the viewpoint of content knowledge of mathematics. To do this, we select algebraic subject as content knowledge for solution of polynomials and develop material for group study based on selected subject. We supply the developed material to teachers and discuss the possibility of application and the acceptability of it. For discussion, we collect data through tests and questionnaire. Through analysing the data, we obtain the positive result.

Digital typological analysis of AI courseware in mathematics education (수학교육에서 AI 코스웨어의 디지털 유형학적 분석)

  • Son, Taekwon;Kang, Dahye
    • Education of Primary School Mathematics
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    • v.27 no.3
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    • pp.261-279
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    • 2024
  • The purpose of this study is to examine the characteristics of AI courseware for mathematics learning based on Choppin et al.'s (2014) digital typology and to derive implications for directions for AI courseware development. For this purpose, 12 types of AI courseware actively used in domestic were selected for analysis, and the characteristics of these AI courseware in terms of program-student interaction, teacher' s lesson design, and evaluation system were analyzed. As a result, each AI courseware provided unique functional features for students, teachers, and evaluation, but the ability to modify and configure teaching and learning was limited. Based on these results, implications for the direction of development of AI courseware in mathematics education were presented.

The Analysis of Research Trends on STEAM Instructional Program and the Development of Mathematics-Centered STEAM Instructional Program (STEAM 교수-학습 프로그램의 개발 동향 분석 및 수학교과 중심의 STEAM 교수-학습 프로그램의 개발)

  • Han, Hyesook
    • Communications of Mathematical Education
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    • v.27 no.4
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    • pp.523-545
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    • 2013
  • The purposes of the study were to analyze STEAM instructional materials to find research trends on STEAM instructional program and to develop mathematics-centered STEAM instructional program for middle school second graders. To conduct this study, the researcher collected total 123 research papers and thesis focused on the development of STEAM instructional material and deduced implications for the development of mathematics-centered STEAM instrucational materials from the findings. The researcher found that important components of such as 'context for learning', 'internalization-mmersion', 'new challenge', and 'self-assessment' in STEAM education were not reflected properly in 19 mathematics-centered STEAM instructional programs. Therefore, the researcher put more emphasis on those components in the process of developing mathematics-centered STEAM program.

A Study on the Development and Application of Cryptography Teaching Program for Vocational High School Mathematics (상업 정보 계열 고등학교 암호 교육 프로그램 개발 및 적용에 관한 연구)

  • Park, Joong-Soo;Chung, Sang-Cho
    • Journal of the Korean School Mathematics Society
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    • v.12 no.3
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    • pp.231-245
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    • 2009
  • The purpose of this study is to develop a contents when we are going to introduce cryptography and information security for vocational high school students. For this we do a survey of the students' level for understanding of information security and the 7th curriculum for school mathematics, 2007 revised curriculum for school mathematics, the curriculum for vocational high school, and we search for the material that connects between mathematics subjects and vocational subjects. We develop a text book that introduces information security and cryptography. After we teach vocational high school students by using this developed book, we get the result that learning cryptography with computer programming makes a good motivation of learning mathematics and roles a parameter between mathematics curriculum and vocational curriculum. As a result we propose that the developed contents can be used in 'Practical Mathematics' in the 7th curriculum for school mathematics or 'Application of Mathematics' in 2007 revised curriculum for school mathematics.

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A Study of Development and Implementation of Teaching-Learning Materials for Integrated Education of Mathematics and Biological Science - Focused on Probability in Calculus and Basic Statistics Curriculum - (수학과 생명과학 통합 교수-학습 자료 개발 및 적용 -미적분과 통계 기본의 확률의 뜻과 활용 단원을 중심으로-)

  • Shin, Bo Mi;Ju, Eun Hwa
    • Journal of the Korean School Mathematics Society
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    • v.17 no.4
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    • pp.629-656
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    • 2014
  • This study developed teaching and learning materials for an integrated education program of probability and genetics in the light of connections between mathematics and biological science. It also analysed characteristics of high school students' mathematical activities which appeared while the students took part in lessons where the developed materials were contributed in order to teach them. To achieve the aim, this study firstly specified five details for the development of the materials based on the results of previous research and extracted contents of probability and genetics which had the possibility of being taught in the integrated education program by examining the text books. After embodying the teaching materials according to the five details and the extracted contents, the researchers implemented 10 lessons by using the materials. This study elaborated some implications for a succeeding integrated education of mathematics and biological science in term of anlaysis results of features from the students' mathematical understanding and attitudes emerging in the lessons.

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Learning Program of Calculus Related Courses for Training of Mathematics Teacher of Secondary Schools (중등 교사 양성을 위한 미적분학 강좌 운영방안)

  • 강미광
    • The Mathematical Education
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    • v.42 no.4
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    • pp.523-540
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    • 2003
  • The main purpose of this work is to propose programs of calculus for the department of mathematics education of teacher training universities. There is a description of the characteristics, goal and contents of calculus course for pre-service teacher, followed by principles for teaching the subject. We suggest the constituents and something being kept in mind for each part in calculus.

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Meanings and Characteristics of Laboratory class in Mathematics Education (수학 교육에서 실험 수업의 의의와 특성)

  • Ko, Ho-Kyoung
    • Journal of the Korean School Mathematics Society
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    • v.8 no.1
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    • pp.77-87
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    • 2005
  • Smith(2001) calls for practice-based professional development for teachers of mathematics. This paper discusses laboratory class as a model for conducting professional development program for a group f elementary school mathematics teachers. The laboratory class seeks to promote teachers' generative growth (Carpenter & Levi, 1999) and all the core and structural features (Garet, Porter, Desimone, Birman & Kwang, 2001) of a professional development are also engaged in this program and the ultimate goal is for teachers to be reflective in their practices to be generative (Carpenter & Leher, 1999) in their teaching and learning. This paper also discusses the design of the laboratory class based on the principles of reflective thinking and psychological observation by Dewey to connect theory with practice.

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