• Title/Summary/Keyword: 2009 개정 교육 과정

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A Comparative Study on 2011 Reformed Elementary School Mathematics Curriculum Between Korea and China (2011년 발표된 한국과 중국의 초등학교 수학과 교육과정 비교 분석)

  • Suh, Bo Euk
    • Education of Primary School Mathematics
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    • v.18 no.1
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    • pp.1-16
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    • 2015
  • This study is a comparative study on the Korean and Chinese elementary school mathematics curriculum. Korea and China have announced a new mathematics curriculum in 2011, and have recently carried out in the whole school year. Korea and China are the countries to manage the national curriculum. The comparison with China is significant because of the similarity of our tradition and culture. In addition, the influence of Chinese education has been increasing gradually. Thus, the curriculum comparison between China and Korea has a significant value. Through this study, I extract the significant implications of mathematics education in Korea. This study can be summarized as the following. First, I have analyzed the elementary mathematics curriculum document systems in Korea and China. Second, I compared the goals of mathematics education in Korea and China. Third, this study compared the content areas and learning in elementary school mathematics curriculum in Korea and China. Fourth, I have analyzed the teaching and learning methods and the assessment of Korea and China. Finally, we compared and analyzed the proposed points for action set out in elementary school mathematics curriculum courses in Korea and China. The results of this study are expected to provide significant implications for the new curriculum document structure and mathematical contents of Korea.

Analysis of Textbooks of Chemistry I, II and Survey of Chemistry Education Major Pre-service Teachers' Perception Related to the Electron Transfer Model (전자 이동 모델에 대한 화학 I, 화학 II 교과서 분석 및 화학 교육 전공 예비교사들의 이그노런스 인식 조사)

  • Ryu, Eun-Ju;Jeon, Eun-Sun;Paik, Seoung-Hey
    • Journal of the Korean Chemical Society
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    • v.65 no.5
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    • pp.358-369
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    • 2021
  • In this study, the contents of the electron transfer model presented in the 4 chemistry I and the 4 chemistry II textbooks of 2009 revised curriculum and 9 chemistry I textbooks and 6 chemistry II textbooks of 2015 revised curriculum were analyzed in the viewpoint of model's Ignorance. In addition, 3 questions were developed to find out whether 24 pre-service teachers were perceived of the Ignorance of the electron transfer model. As a result, Most textbooks explain the redox reaction of covalent bond substances, which is an inconsistent context of the electron transfer model, with mixing oxidation number change and electron transfer or with electron transfer. In addition, the change to the development and use of the model emphasized in the 2015 revised curriculum was not clearly revealed in the curriculum comparison. Most pre-service teachers incompletely perceived or did not perceive Ignorance of the electron transfer model. Only 1 pre-service teacher perceived Ignorance of the model. In conclusion, the textbook description needs to be improved so that Ignorance of the model is revealed when the textbook describes the inconsistent situation of the electron transfer model. And through the education for pre-service teachers, it is necessary to provide an opportunity for pre-service teachers to perceive Ignorance of the electron transfer model.

Reconsideration of Teaching Mathematics Problem Solving in Elementary School (초등학교 수학과 문제해결 교육 재고)

  • Jeong, Eun-sil
    • Journal of Elementary Mathematics Education in Korea
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    • v.19 no.2
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    • pp.123-141
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    • 2015
  • The purpose of this study is to reconsider of teaching mathematics problem solving in Korea's elementary school through an analysis of mathematics curricula and mathematics textbooks of the elementary school. As a result, it is found that the problem solving had been emphasized continually from the 4th curriculum to the 2009 revised curriculum. However, contents in their textbooks did not reflect the intent of the mathematics curricula properly. And amount of contents related to teaching about problem solving in the textbooks reached the peak in the 6th mathematics curriculum. Then teaching about problem solving had been weakened gradually. And it is also revealed that there had been a movement to change to teaching for problem solving in the textbooks of the 2007 and 2009 revised curricula. Teaching via problem solving had not been carried out appropriately so far.

Concept Map Development of 'Eco-friendly Clothing Life and Reform Clothes' Unit in Middle School Technology·Home Economics Textbooks Based on 2009 Revised Curriculum (2009 개정 기술·가정 교과서 '친환경적 의생활과 옷 고쳐입기' 단원의 개념도 개발)

  • Yang, Ji Sun
    • Journal of Korean Home Economics Education Association
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    • v.29 no.3
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    • pp.161-183
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    • 2017
  • The purpose of this study is to develop a concept map in a visual instructional strategy so that meaningful learning can be done by structuring knowledge in the section of eco-friendly clothing life and reform clothes. For this purpose, ten textbooks for the 2009 revised were analyzed, and 10 sub-area were selected to develop the concept map. The development was done by using Cmap Tools V6.02 and the study process has progressed content analysis, concept extraction, and concept map development. The analysis process and results of this study are as follows. First, in the course of setting standards, the analytical standards were set for the 2007 revision and 2009 revision curriculum achievement standards. Second, in the process of content analysis and concept extracting, through the analysis of textbooks, 'clothing selection and purchase', 'clothing care and management' and 'clothing reuse and eco-friendly'. The concept was extracted by subdividing on the basis of general and comprehensive core concepts. Third, the development process of concept map was developed and revised based on the extracted concepts, and the concept map developed was the 'clothing purchase plan', 'points to consider when buying clothing' 'quality', 'handle with care', 'classify laundry', 'remove stain', 'water washing', 'repair clothing', 'reform clothing', 'eco-friendly clothing life'.

A Note on the revise ICT curriculum (초.중등학교정보통신기술교육운영지침의 개정방안)

  • Kim, Chong-Woo
    • 한국정보교육학회:학술대회논문집
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    • 2011.01a
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    • pp.159-166
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    • 2011
  • This study was performed to compare and to analyze the contents validity on the unit related in computer of practical arts education text of the 7th national curriculum, to look deep into the problem on contents and to propose the strategy of reformation, to suggest in strategies for development of subject for the 8th national curriculum in our society on current IT-based. And this thesis suggests the revised operating guide of ICT education according to 2009 curriculum and new IT-environment.

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건강교육의 어제와 오늘 그리고 내일

  • Han, Sang-Yun
    • RED RIBBON
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    • s.82
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    • pp.12-13
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    • 2009
  • 지난해 개정된 학교보건법 및 교과부 보건교육과정 고시에 따라 오는 3월부터 전국 초등학교 $5{\sim}6$학년, 중고등학교에서 1개 학년씩 17시간 이상 보건교육이 실시된다. 개정된 법에 따라 2010년부터 중고등학교는 보건과목을 선택과목으로 도입해야 한다. 이는 50년 만에 보건교과가 부활됨을 의미한다. 이러한 변화의 배경과 전망에 대한 시평을 의뢰하였다.

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A Study on the Reflection Status of Curriculum in the High School Mathematics Paper-Based Assessment Items - Focused on the Limit of Sequences - (고등학교 수학과 지필평가 문항의 교육과정 반영 실태 연구: 수열의 극한을 중심으로)

  • Yang, Seong Hyun
    • School Mathematics
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    • v.19 no.1
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    • pp.43-58
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    • 2017
  • According to the degree of teacher's understanding for the curriculum, There are a lot of differences in teaching-learning methods and assessment items are one of the representative products reflecting these differences. Therefore we need to investigate how the understanding degree of the teacher for curriculum is reflected in the paper-based assessment items through analyzing them. In this study, we analyzed midterm and final 219 exam papers of 'Calculus I' which was based on the 2009 revised mathematics curriculum and focused on items of 'the Limit of Sequences' which content area is among total 4,632 questions. We investigated how the changed curriculum is reflected in the high school evaluation. Based on the results of the analysis, we confirmed the problems derived from the paper-based assessment. Through this, we sought to draw implications for the educational policy that should be accompanied necessarily in order to stabilize the new curriculum after the revision of the curriculum.

Middle School Students' Understanding about Earth Systems to Implement the 2009 Revised National Science Curriculum Effectively (2009 개정 과학과 교육과정의 효과적인 실행을 위한 중학생들의 지구계에 대한 이해)

  • Lee, Hyo-Nyong
    • Journal of the Korean earth science society
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    • v.32 no.7
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    • pp.798-808
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    • 2011
  • The purpose of this study was to explore middle school students' perceptions about earth systems in order to implement the 2009 revised national science curriculum effectively. A total of 1219 students participated in the survey and asked to determine their basic understandings about earth systems, self-reported knowledge level, and perceived significance level of the 23 earth systems concepts (contents). In relation to students' basic understandings about earth system, approximately 67% students reported that they didn't know about the term of the earth system. Atmosphere and hydrosphere were highly perceived as major component of earth system. However, cryoshere was perceived to be least familiar by the subjects. The findings also showed that students' self-reported knowledge level and significance level about major ESU#4, #5, #6 related concepts (contents) were significantly different by gender. Most of male students were more knowledgeable and perceived more significant than female students. Regarding the difference of the perceived significance level by grade, 10 out of 23 concepts were significantly different. Some implications for implementing the revised curriculum and school fields were discussed.

Exploring the level of nature of science and its degree of revising curriculums: The case of the 7th and 2009 revised curriculums (교육과정 개정에 따른 과학의 본성 수준 및 반영정도 탐색 : 7차 및 2009 개정교육과정사례 분석)

  • Lee, Jeong-Won;Park, Young-Shin;Jeong, Da-Hye
    • Journal of the Korean Society of Earth Science Education
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    • v.9 no.2
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    • pp.217-232
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    • 2016
  • In line with the emphasis on the importance of nature of science recently, this paper examines the degree and level at which the 2009-revised convergence science textbook, developed from the common science under the 7th curriculum in South Korea, reflected nature of science according to the development of curriculum. 'Nature of science' was classified according to scientific view - which represents scientists' view - and naive view - which represents general thinking and scientific error concepts. Also, 'Nature of science' was classified according to the explicit method and implicit method in terms of teaching method. The level of nature of science was defined using the four occasions of scientific view, naive view, explicit teaching and implicit teaching. In order to identify the components and level of nature of science reflected in the textbook, using the 10 items which refer to Lederman(2001)'s 7 definitions, NOSAT (Nature of Science Analyzing Tool) was developed and used. The results are that, since the educational curriculum is changed from common science under 7th curriculum to 2009-revised convergence science, the degree of reflection was rather a withdrawal. On parts of theories of 7th common science curriculum except research parts, it was difficult to find explicit nature of science. Also on 2009-revised curriculum, nature of science, which is seen on 2007 curriculum, disappeared. It is suggested that the future curriculum emphasizes the importance of nature of science, and bolster the reflection of nature of science according to the changing curriculum. Nature of science should not be expressed limitedly, but instead, should be more positively reflected, and the reflection method should be not implicit but explicit, allowing direct teaching. Towards that end, writers of the textbook should have an accurate understanding of nature of science. And, for the right teaching, teachers' capabilities are important and it is necessary to train teachers to understand and act for nature of science.