• Title/Summary/Keyword: 7차 교육 과정

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중등수학 교과 재량활동의 효율적 운영을 위한 연구 - 7학년 중심 -

  • Park, Eun-Ok;Yu, Won-Seok
    • Communications of Mathematical Education
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    • v.15
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    • pp.135-140
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    • 2003
  • 제7차 교육과정은 재량활동을 확대 ${\cdot}$ 신설하여 학교와 지역의 여건에 따라 선택적으로 편성 ${\cdot}$ 운영하도록 하고 있다. 그러나 일선 학교에서는 수학교과 재량활동에 대한 교수 ${\cdot}$ 학습 활동의 내용이나 지도자료 등이 명확히 제시되지 않았기 때문에 많은 어려움이 있다. 이에 본 연구에서는 일선 중학교에서 현재 실시하고 있는 수학교과 재량활동의 운영 실태와 문제점을 조사하고 중등수학교과 재량활동 학습 과정안을 개발 ${\cdot}$ 적용하여 그 성과를 분석함으로써 수학교과 재량활동 교육의 목적을 달성하고 다른 학교에 편성 ${\cdot}$ 운영의 모델을 제시하고자 한다.

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The nature of practical problem focused Family and Consumer Sciences curriculum (실천적 문제 중심 가정과 교육과정의 이해)

  • Yoo, Tae-Myung
    • Journal of Korean Home Economics Education Association
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    • v.18 no.4 s.42
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    • pp.193-206
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    • 2006
  • The national level curriculum revision is underway in Korea. A proposed model of family and consumer sciences curriculum was proposed for a public hearing, which was held in December 15, 2005. In the model curriculum, practical problem focused curriculum development approach is partially adopted. However, there is lack of understanding for the practical problem focused curriculum, therefore correct understanding of it is needed. This study tried to promote understanding of the nature of perennial practical problem that FCS deals with and of a conceptual framework of practical problem focused curriculum development. Seven competing topics related with practical problem focused curriculum are discussed for resolving misunderstandings and prejudice on it. From the discussion, it is concluded that practical problem focused curriculum is meeting the needs of students' present and future individual and family life.

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A Study on the IoT-based Blockchain Education Model (사물인터넷 기반 블록체인 교육모델에 관한 연구)

  • Lee, Keun-Ho
    • Journal of Internet of Things and Convergence
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    • v.7 no.4
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    • pp.77-83
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    • 2021
  • In the 4th industrial revolution, research on various new technologies is being actively conducted. Among the new technologies of the 4th industrial revolution, interest in blockchain is very high. A lot of research on this kind of block chain is being actively conducted, centered on graduate schools. It is not easy for a university to operate a dedicated blockchain curriculum centered on undergraduate students. In such a situation, a variety of new blockchain ecosystems have been created to revitalize the blockchain-related industry, and many developments are being made with a lot of interest and effort. In this research, we intend to propose a university curriculum model for blockchain, which is important in the 4th industrial revolution. Regarding the blockchain education model, we propose a related blockchain education model focusing on the contents of operating an industry-oriented education course through the human resource nurturing process, and various blockchain education will be activated to achieve the blockchain industry development.

미분교육을 위한 비쥬얼베이직 프로그램 설계

  • Han, Hui-Dong;Lee, Gyu-Bong
    • Communications of Mathematical Education
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    • v.12
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    • pp.303-315
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    • 2001
  • 본 논문에서는 고등학교 수학교과 7차 교육과정중 미분 단원의 교수 학습을 위한 프로그램을 Visual Basic 프로그램으로 설계한 과정과 그 기능을 기술하였다. 함수의 미분을 위한 초기의 좌표와 미분할 점의 좌표, 실행회수 등의 데이터를 입력 ${\cdot}$ 실행하여 그 결과(접근과정)를 화면에 도표와 그래프로 나타나게 하였고 미분단원의 ‘학습내용’과 ‘사용설명’의 기능을 추가하였다. 보조계산이나 함수의 입력을 위해 “함수값 계산”, “극한값 계산”, “함수입력판” 등의 창(폼)을 설치하였다. 이 프로그램은 일선 학교 교육 현장에서 수학 교수-학습을 위한 효율적인 시청각 자료로 활용 될 수 있을 것이다.

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A Study on the Planning Science Laboratory of Middle and High School Considering the 7th Education Curriculum -Focusing on Analysing Educational Curriculum- (7차 교육 과정에 따른 중·고등학교 과학실 구성에 관한 연구 - 교과 과정 분석을 중심으로 -)

  • Chung, Ho-Keun;Lee, Ho-Chin
    • The Journal of Sustainable Design and Educational Environment Research
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    • v.3 no.2
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    • pp.1-21
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    • 2003
  • This study will focus on analysing changes in subject content, teaching and learning methods, teaching model, and evaluation which have been brought about by the introduction of the 7th education curriculum, and on considering how many kinds of science labs are needed, and on proposing the desirable direction of building them. Methods for studying the goals above are as follows: First, considerations were given on how science labs must be structured and on which equipment are needed, which were done by analysing change of science education for future society, science subjects in the 7th educational curriculum, current situation of science labs, and science educational materials. Second, based on the need of students, it was examined how many science classes were needed, and through this the number of labs needed and users' requirement were analysed. Third, on the basis of the analysis above, existing conditions in planning science labs and the example of existing labs were examined.

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