• Title/Summary/Keyword: NCTM

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The Case Study of Using GrafEq, by Pre-service Mathematics Teachers for Exploring Secondary School Mathematics (중등수학 탐구를 위한 예비수학교사의 수학프로그램(GrafEq.) 활용 사례)

  • Kim Nam Dee
    • The Mathematical Education
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    • v.43 no.4
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    • pp.405-417
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    • 2004
  • This study is on the use of mathematics program for School Mathematics Education. According to the ‘technology principle’ by NCTM and teaching-learning methods by the 7th curriculum, we developed mathematics learning activities with mathematics program. This activity is to construct designs with graphs by using mathematics program(GrafEq.). In this study, we practiced these learning activities with pre-service mathematics teachers. The mathematics educational effects of these learning activities in this study are analyzed as follows; active & spontaneous search for mathematical knowledge, the experience of problem solving, affirmative view-point of mathematics, understanding of practical use of mathematics, acquisition an interest & motivation of learning mathematics etc. When students learn graphs of function, the concept of inequality in secondary school mathematics class., mathematics teachers can make a good use of constructing designs by mathematics program(GrafEq.). This will help to practice of teaching-learning methods by the 7th curriculum.

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Mental Counting Strategies for Early Arithmetic Learning

  • Koh, Sang-Sook
    • Research in Mathematical Education
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    • v.1 no.2
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    • pp.127-137
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    • 1997
  • 수세기는 초등 수학교육의 기초로서 보통 유치원 과정 이전부터 시작된다. 그러나, 서수와 기수의 구별된 사용의 중요성은 미국의 "학교 수학의 교과 과정과 평가 기준" (NCTM 1989)에서 뿐만 아니라 학교 교육의 현장에서도 많이 간과되고 있는 실정이다. 일반적으로 사용되는 수직선 (Number line)과 다르게 구조적으로 개발된 Hasse's structured number line을 사용하여 학생들에게 수세기의 의미와 기술을 가르친다면 구체적 경험을 통해 수학적 사고 능력을 키우고 개발하는데 도움이 된다. 만약 Hasse 의 9가지 수준에 따라 다양한 학습 활동을 개발하여 수업 계획을 세워서 학습을 진행한다면 수업은 역동적이며 매우 흥미로워 질 것이다. 학생들은 말로 나타내기(Verbalization)와 상상(Imagination)의 충분한 경험을 바탕으로 정신적 표현(Mental representation)을 개발하여 수세기 기초를 확립하고 나아가 연산을 쉽게 수행할 수 있을 것이다. 여기에 소개된 교구들과 학습 활동들은 초등 수학 교육이 암기 위주의 문답식이 아니며 얼마나 역동적이고 흥미로울 수 있나를 보여준다.

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Comparison of Teaching Geometry Between China and USA-From an Oriental Perspective

  • Wang, Linquan;Wu, Yuezhong
    • Research in Mathematical Education
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    • v.6 no.2
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    • pp.107-116
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    • 2002
  • Geometry is one of the important parts of Chinese school mathematics. There is a large difference in teaching and contents (standards, curriculum) between the US and China. Many mathematics educators in both countries are trying to reform the instruction of geometry and have made some progress. Close attention has been given to the Principles and Standards for School Mathematics (NCTM 2000), in which we have found many good ideas. In this paper, we introduce new developments of school geometry in China and have made some comparisons between the US and China. The new technology is becoming popular step by step in Chinese high schools. We believe we should learn from each other and exchange the ideas. In doing this mathematics teaching will be improved.

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A New Curriculum for Structural Understanding of Algebra

  • Kirshner David
    • Research in Mathematical Education
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    • v.10 no.3 s.27
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    • pp.169-187
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    • 2006
  • Ubiquitous errors in algebra like $(x+y)^2=x^2+y^2$ are a constant reminder that most students' manipulation of algebraic symbols has become detached from structural principles. The U.S. mathematics education community (NCTM, 2000) has responded by shying away from algebra as a structural study, preferring instead to ground meaning in empirical domains of reference. A new analysis of such errors shows that students' detachment from structural meaning stems from an inadequate structural curriculum, not from the inherent difficulty of adopting an abstract perspective on expressions and equations. A structural curriculum is outlined that preserves the possibility of students' engaging fully with algebra as both an empirical and a structural study.

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수학과 협동 학습에서 협동적 문제 해결의 평가

  • Kim, Nam-Gyun;Lee, Gi-Seok
    • Communications of Mathematical Education
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    • v.9
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    • pp.31-40
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    • 1999
  • 요즈음 수학 수업에서 협동 학습을 활용하여 문제 해결을 하는 경우가 많이 늘었다. 학생들이 소집단에서 함께 활동하면 더 나은 문제 해결자가 된다는 것을 알기 때문이다. 그러나 학생들에게 협동적인 상황에서 문제 해결을 하게 하면서 그 평가는 개인 평가나 전통적인 평가에 그치는 경우가 많다. 소집단 협동 학습은 소집단의 구성원이 협동을 할 때 그 효과가 큰 것이며, 소집단 협동 학습에서의 평가는 소집단에 있는 학생들이 수행한 것을 참되게(Authentic) 평가하여야 문제 해결에 대한 올바른 정보를 얻을 수 있고 각 학생들로 하여금 협동 학습에 적극적으로 참여하여 문제를 해결하게 할 수 있다. 만일 협동적인 문제 해결을 하였는데 개인 평가를 실시한다면 학생들은 집단에서 협동할 필요성을 적게 느끼게 되어, 학생들은 협동 학습에 적극적으로 참여하지 않으려 할 것이다. 1990년대 수학교육에 많은 영향을 끼치고 있는 NCTM의 Curriculum and Evaluation Standard for School Mathematics에서도 수학 지도 방법과 평가 방법이 일치하여야 한다고 강조하고 있다. 본고에서는 이와 같은 필요성에 의거하여 수학과 소집단 협동 학습의 유형을 알아보고, 협동적 문제 해결의 평가 방법을 알아보고자 한다.

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Socrates's dialogue and a history of mathematical dialogues in classrooms (소크라데스의 대화법과 수업에서의 수학적 대화의 역사)

  • Han, Gil-Jun
    • Journal for History of Mathematics
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    • v.21 no.1
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    • pp.157-166
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    • 2008
  • Mathematical communication is an important goal of recent educational reform. The NCTM's Principle and Standards for School Mathematics, consulting an emphasis on mathematical discourse from 1991 Professional Standards for Teaching Mathematics, has a Communication Standard at each grade level. This paper examines Socrates's educational philosophy and the mathematical dialogue in Plato's. Further it examines mathematical dialogues between teachers and students from antiquity through the nineteenth century.

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Lesson Planning: How Do Pre-service Teachers Benefit from Examining Lesson Plans with Mathematics Teaching Practices as an Analytical Lens? (수업설계와 예비교사의 학습: 수학교수관행을 분석틀로 사용한 예비교사의 수업지도안 검토 활동이 어떤 도움이 되는지에 관한 고찰)

  • Lee, Ji-Eun;Lim, Woong;Kim, Hee-Jeong
    • Education of Primary School Mathematics
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    • v.19 no.3
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    • pp.211-222
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    • 2016
  • This article examines K-8 pre-service teachers' (PSTs) engagement in lesson plan modification using the eight Mathematics Teaching Practices (MTPs) in Principles to Actions, the most recent landmark publication of framework by National Council of Teachers of Mathematics (NCTM) in the U.S. The activity consisted of four phases that involved the analysis and modification of an existing lesson plan. Fifty-seven PSTs participated in the activity throughout the semester, and data from each phase was analyzed using the inductive content analysis approach. PSTs' initial conceptions of lesson planning reflected little on teaching practices (i.e., the MTPs) with more emphasis placed on the form - rather than function - of lesson elements. With the opportunity to interpret MTPs and analyze lesson plans using MTPs as an analytical lens, PSTs demonstrated various interpretations of MTPs, made efforts to incorporate MTPs into lessons, and attended to the interwoven nature of MTPs. This article also shares the challenges, conflicts, and tensions reported by PSTs during their participation of lesson plan modification; as such, the results from this study will inform the research examining the pedagogical (im)possibilities for utilizing MTPs in mathematics teacher training programs.

The Development of a Tool and Its Application to High Schools for the Assessment in Trigonometry (삼각함수 단원의 수행평가 도구 개발 및 적용)

  • 고상숙;백정환
    • School Mathematics
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    • v.6 no.1
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    • pp.21-35
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    • 2004
  • This article was to develop a tool and apply it to the high school classrooms for the performance assessment in trigonometry Bloom(1956)'s cognitive domain and holistic rubric and analytic rubric(NCTM, 1999) were used to guide the development of 12 problems. To find validity and credibility of this developed tool, Cronbach n and Rasch's BIGSTEPS were used with the samples of high students, 208, using SPSS 10.0K. The results from the investigation, indicated that the tool was very worth assessing students' achievement and there was no difference between the areas where students lived, but were differences between genders as well as between a specialized high school and preparatory high schools.

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Mathematical Knowledge Construction in Computer Based Learing

  • Lee, Joong-Kwoen
    • Research in Mathematical Education
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    • v.5 no.1
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    • pp.13-24
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    • 2001
  • Using computer technology in teaching school mathematics creates new instructional environments. The emphases on the use of computer technology in the classrooms and in particular the use of computer-based exploration as a context of mathematics instruction have been reflected in the recommendation of the NCTM (Curriculum and Evaluation Standards for School Mathematics, 1989). Although the power of using computer technology in the exploration of mathematical problems has been recognized and stressed by many educators, we do not have many research studies on mathematics in computer-based explorations. Especially research has failed to clarify how computer technology can contribute to the construction of procedural and conceptual knowledge of mathematics. Up to now most researches on procedural and conceptual knowledge in computer environments have only focused on classifying programming languages which program language has more random access and rich interrelationship characteristic in relation to conceptual knowledge in humans, and which computer language has more characteristic flavor of procedural knowledge. How computer-based explorations affect the knowledge construction of mathematics, therefore, emerges as an issue of research on teacher education program for theoretical framework. This situation leads to do research on the effectiveness of using computer explorations in pre-service teacher education in terms of procedural and conceptual knowledge construction.

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Open mathematics education and Modelling (열린수학과 모델링)

  • 조완영;권성룡
    • Journal of Educational Research in Mathematics
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    • v.8 no.2
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    • pp.663-677
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    • 1998
  • The development of Science and Technology and the social change require new paradigm in Education. In a traditional paradigm, learners have been regarded as a passive being and knowledge could be transmitted to learner. But within this paradigm, it is difficult to confront the social change and to develop problem solving skills in various context. This results in a new, alternative perspective, Constructive paradigm. As an alternative to the traditional settings, Constructive paradigm emphasizes the learner centered instruction. The reform movement in mathematics education including NCTM's standards revolves around this paradigm and the open education movement in our educational system is based on it. Open education values learner's interest, autonomy and internal motivation in learning. However, open education has been misunderstood by most of the teachers. It should be understood as the change of paradigm. In this study, as a way of helping students connect mathematics to their everyday lives and construct meaningful mathematical knowledge and concept, mathematical modelling is suggested. It consists of posing and specifying the real problem, formulation and constructing a mathematical model, analyzing and solving a mathematical problem. interpreting the solution and comparing with reality and communicating results. In this process, technology like computer can be a powerful tool. It can help students explore various problems more easily and concretely.

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