• Title/Summary/Keyword: 차기 교육 과정

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The Features of Contents and Structures of Mathematics Curriculum of China (중국 수학 교육과정의 내용과 구성 방식의 특징)

  • 박경미
    • School Mathematics
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    • v.6 no.2
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    • pp.119-134
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    • 2004
  • China becomes more and more important for Koreans in political and social aspects as well as in educational aspect. However, there hasn't been any study regarding the mathematics curriculum of China. Thus, it is necessary to introduce the recent mathematics curriculum of China, compare the curriculum of China with that of Korea, and find the features of the curriculum. Several characteristics of the mathematics curriculum of China were identified; 1) mathematics strands were combined, 2) condensed and linear structure of contents, 3) providing examples for mathematics topics stated in the curriculum, and etc. Based on these characteristics, some implications were elicited for the next mathematics curriculum revision in Korea.

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A Analysis of Teachers' Perception of the Chemistry I & Chemistry II in the 7th National Curriculum and Their Demands on Curriculum Revising (제7차 고등학교 화학 선택 교육과정에 대한 교사들의 인식 및 요구 분석)

  • Hong, Mi-Yeong
    • Journal of the Korean Chemical Society
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    • v.50 no.5
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    • pp.394-403
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    • 2006
  • purpose of this study was to analyze high school chemistry teachers perception of the Chemistry I & Chemistry II in the 7th national curriculum and their demands on the revision of curriculum. A nationwide survey was administered to obtain the responses from 108 high school chemistry teachers. More than half of the participants thought the current curriculum of Chemistry I and Chemistry II needed revising. As the results, a major drawback of Chemistry I was a difficulty in explaining phenomena due to absence of basic concepts, and that of Chemistry II was an excess of the contents for high school science courses. Unfortunately, it was found out that inquiry activities existed only in name, especially in case of Chemistry II. Regarding the manner of content organization of Chemistry I in new curriculum, demand on a concept-based approach outnumbered theme-based approach. For revising Chemistry, the majority of participants demanded basic chemistry concepts to be introduced, without supplementation of quantitative approaches and deepening level of concepts. An urgent request for Chemistry II was reducing content by shifting relevant concepts to Chemistry I. Implications for high school chemistry education including revising curriculum were discussed.

A Survey on the Opinion of Teachers about the Content Relevance in the 7th Mathematics Curriculum (제7차 국민공통기본교육과정의 수학과 교육 내용 적정성에 관한 교사 의견 조사 연구)

  • Lee, Dae-Hyun;Yim, Jae-Hoon
    • Journal of the Korean School Mathematics Society
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    • v.8 no.2
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    • pp.223-248
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    • 2005
  • This study is to survey and analyze the opinion of teachers about the relevance of educational content in the 7th mathematics curriculum. For the purpose of this study, we analyze the result of the questionnaire survey which consists in the question about the relevance(Quantity, level, validity) of educational content in the 7th mathematics curriculum. 515 elementary school teachers, 314 middle school teachers, and 323 high school teachers are participated in this survey. 75 percent of elementary school teachers think that the educational quantity must be reduced for the relevance of educational content. So do 50 percent of secondary school teachers. Both of them think that the number of topic must be reduced for the relevance. In special, this study shows that the response rate about the object which is related with interest is very low compared with any other mathematics education objects. So, it is necessary to pay more attention to the object which is related with interest.

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The Relationship Analysis of the Korean Science Curriculum with the Physical Science Domains of the 4th Grade TIMSS 2019 (TIMSS 2019의 4학년 물상과학 영역과 우리나라 과학 교육과정의 비교 분석)

  • Kim, Sun-Kyoung;Kim, Hyun-Kyung
    • Journal of Science Education
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    • v.45 no.1
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    • pp.1-10
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    • 2021
  • In this study, we analyzed the relationship between the physical science domain of TIMSS 2019 and the Korean science curriculum. Twelve subjects are presented in the physical science domain of the TIMSS 2019 4th grade evaluation framework. Research group consisting of elementary and middle school teachers and science education experts, a total of 12, participated to analyze in which grade these subjects were included in the Korea 2009 revised and 2015 revised science curriculum. As a results of analyzing whether the achievement standards of the TIMSS 2019 evaluation framework and Korean science curriculum are consistent, the subjects pertinent to chemistry like 'chemical changes in everyday life,' 'heat transfer,' and 'electricity and simple electrical circuits' appeared not covered at all until the 4th grade curriculum in Korea. Given that the TIMSS 2019 evaluation framework is an international achievement standard, we are proposing to improve the Korean curriculum as follows: first, for the development of the next science curriculum, there is a need for science curriculum organized from the 1st grade of elementary school to connect the content and scope of chemistry in elementary, middle, and high schools as a whole including the Nuri curriculum. Second, as an alternative to the problem of suitability of learning volume and level of learning, it is possible to think of a method to readjust the grade of dealing with related concepts by lowering the difficulty or simplifying the concept. Third, it is necessary to discuss about introducing essential concepts and standard terms into Korea science curriculum according to international trends.

Analysis of Teacher Perceptions on Establishing Information Subjects in Elementary Schools (초등학교의 정보 교과 신설에 관한 교사 인식 분석)

  • Lee, Jaeho;Hur, Kyeong;Sohn, Wonsung;Kim, Kapsu;Kim, ChongWoo;Kim, Hongrae;Ma, DaiSung;Park, SunJu;Ann, SungHun
    • Journal of The Korean Association of Information Education
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    • v.25 no.2
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    • pp.227-237
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    • 2021
  • In this thesis, a survey was conducted on elementary school teachers about the establishment of information subjects in elementary schools. As a result, the opinion that information subjects should be newly established for ICT literacy education and SW/AI education in elementary schools was very high. In addition, if it is difficult to establish a new information subject, opinions in favor of the organization of the information subject as an autonomous subject using the discretionary time of the principal were high. In light of the results of this analysis, it is judged that it is necessary to establish a new information subject for ICT literacy education and SW/AI education in the next elementary school curriculum. However, if it is difficult to establish a new information course, it is necessary to come up with a plan that can be operated in the form of autonomous subject for students wishing to learn SW/AI. And it is judged that the number of class hours should be secured for at least 1 hour or 2 hours per week in the 3rd grade and above.

A critical review on middle school mathematics curriculum revised in 2011 focused on geometry (2011 중학교 수학과 교육과정의 비판적 고찰: 기하 영역을 중심으로)

  • Park, Kyo-Sik;Kwon, Seok-Il
    • Journal of Educational Research in Mathematics
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    • v.22 no.2
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    • pp.261-275
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    • 2012
  • There are some geometry achievement standards presented indistinctly in middle school mathematics curriculum revised in 2011. In this study, indistinctness of some geometric topics presented indistinctly such as symbol $\overline{AB}{\perp}\overline{CD}$ simple construction, properties of congruent plane figures, solid of revolution, determination condition of the triangle, justification, center of similarity, position of similarity, middle point connection theorem in triangle, Pythagorean theorem, properties of inscribed angle are discussed. The following three agenda is suggested as conclusions for the development of next middle school mathematics curriculum. First is a resolving unclarity of curriculum. Second is an issuing an authoritative commentary for mathematics curriculum. Third is a developing curriculum based on the accumulation of sufficient researches.

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The plan for development of subsequent curriculum based on the section 'family life' of practical arts(technology·home economics) from elementary and secondary courses and key competence (초·중등 연계와 핵심역량을 중심으로 한 실과(기술·가정)교과의 '가정생활' 영역 차기 교육과정 개발 방안)

  • Jeon, Sekyung
    • Journal of Korean Home Economics Education Association
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    • v.26 no.4
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    • pp.35-50
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    • 2014
  • This study is a discussion about specific directions and strategies for development of subsequent curriculum of practical arts(technology ome economics) based on two issues ; developing curriculum which is 'connecting elementary-secondary course' and 'based on key competence'. Specific Study is as in the following. First, in the aspect of home economics, this study explored the meaning of connection between elementary-secondary courses, and in the process of curriculum development, we explored implicit problems through strategies that come out from elementary-secondary courses. Second, we search what the key competence is in terms of home economics, and the meaning of developing curriculum based on the key competence. For this, we examine the meaning of development of subject matters curriculum based on key competence and the conditions and tasks for developing curriculum for home economics based on key competence. Third, on the basis of discussion we explore the way to realize these two issues, already mentioned, into development of subsequent curriculum for home economics. For this, this study examines the academic interaction between home economics of elementary and secondary courses unifying the names of the subject, systematic understanding about development of curriculum based on key competence, finding strategies for appealing the subject, and practical instances. Through this study, we expect more active interaction between home economics from elementary and secondary courses and academic discussion for development of curriculum.

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Changes and Issues Regarding the Elementary Science Curriculum: Focusing on Physics (초등 과학 교육과정의 변화와 쟁점 - 물리 영역을 중심으로 -)

  • Byun, Taejin
    • Journal of Korean Elementary Science Education
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    • v.41 no.2
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    • pp.217-235
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    • 2022
  • This study aimed to analyze the changes in the physics curriculum of elementary schools over the past years and to discuss the issues faced by the science curriculum for elementary education prior to the next curriculum revision. We analyzed changes in the elements of the contents from the 7th curriculum to the 2015 revised curriculum and reviewed studies conducted after the revision in 2015. Additionally, three professors majoring in physics education discussed the results of the curriculum analysis. The result indicates that content of the physics curriculum for elementary education was generally reduced after the 7th curriculum. Specifically, difficult concepts were omitted or designated to a higher school level. Concerns related to the science curriculum pertain to the content adequacy and difficulty of the current curriculum, its relationship with mathematics, connection between the Nuri curriculum and the integrated curriculum for the 1st and 2nd grades, and the achievement standard predicate problem.

An Analysis on Contents Related to Problem Solving in the 7th Elementary Mathematics Curriculum and Instructional Materials (문제해결과 관련된 제7차 초등학교 수학과 교육과정 및 교과용 도서 분석)

  • Pang, Jeong-Suk;Kim, Sang-Hwa
    • School Mathematics
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    • v.8 no.3
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    • pp.341-364
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    • 2006
  • This paper analyzed contents related to problem solving in the 7th elementary mathematics curriculum in conjunction with main changes in the next curriculum under discussion. This paper then provided detailed analyses of textbooks and workbooks in terms of principal contents, problem solving strategies, content areas, and problem types in order to look closely at how such instructional materials would put the vision of the curriculum into action. It is expected that many issues and suggestions stemming from the analyses will serve basic information to develop next curriculum and its concomitant instructional materials in a way to fostering students' problem solving ability.

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