• Title/Summary/Keyword: 교육과정 제안

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초등학생의 논리적 사고력 및 문제해결 능력 향상을 위한 컴퓨터 프로그래밍 교육과정 모델 제안 - 재량.특별활동시간에 비주얼베이직언어를 중심으로 -

  • Mun, Oe-Sik
    • Journal of The Korean Association of Information Education
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    • v.9 no.4
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    • pp.595-606
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    • 2005
  • 7차교육과정에서의 초등 컴퓨터교육은 재량활동시간 또는 특별활동시간에 단순한 응용프로그램(워드프로세서, 엑셀, 파워포인트 등)을 활용하거나 인터넷을 이용한 정보검색 수준이다. 따라서, 문제해결 능력이나 논리적 사고력을 향상시키는데는 미흡하다. 인지능력이 뛰어난 초등학교 5, 6학년에는 이러한 컴퓨터 활용방법 교육보다 컴퓨터 기초원리 또는 프로그래밍교육이 필요하다. 본 논문은 프로그래밍교육을 재량 특별활동 시간에 학년별(5, 6학년) 또는 통합학년으로 학습할 수 있게 프로그래밍교육과정 60차시 분을 개발하여 제안하였다. 개발한 교육과정은 교수 및 학습자의 요구사항을 최대한 반영하기 위해 설문조사 등을 통해 얻은 기초자료를 참조하였다. 제안한 교육과정이 초등학교 5, 6학년에 적합하고 우수한지를 검토하기 위해 일부 차시의 교육과정으로 5, 6학년을 대상으로 재량활동시간에 직접 교수 학습한 후 자기평가, 설문조사를 실시하였다. 결과로 제안한 교육과정이 적합성과 우수성이 있다고 판단되었다.

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A Study on the Improvement Proposition of Commercial High Schools' Computer Curriculum (상업계 고등학교 컴퓨터 교육과정 개선방안에 관한 연구)

  • 안성림;김창수
    • Proceedings of the Korea Multimedia Society Conference
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    • 2002.11b
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    • pp.755-758
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    • 2002
  • 제 7차 교육과정에서 상업계 고등학교 컴퓨터 교육은 정보 처리에 관한 기초 전문 지식과 기술을 습득하게 하여 정보화 시대에 대처할 수 있는 능력을 개발하여 우수한 직업인이 될 수 있는 소양을 기르는데 초점을 두고 있으나 현재의 컴퓨터 관련 교육과정은 이를 따라가지 못하고 있다. 따라서 본 논문에서는 시대가 요구하는 방향에 따라 정보통신 관련 교과목을 필수로 하여 멀티미디어, 웹 프로그래밍, 데이터베이스 등의 다양한 교과목을 추가하는 교육과정을 제안한다. 제안된 교육과정은 현재 상업계 교육과정을 향후 교과목별 단원 및 학년별 단위 시수 편성과 조정 등의 개선 방안을 제공하는데 있다.

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A Modular Integrated Curriculum Model for the Gifted Information Children (초등정보영재아들을 위한 모듈형 교육과정 모델)

  • Kim, Kapsu
    • Journal of The Korean Association of Information Education
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    • v.16 no.3
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    • pp.299-307
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    • 2012
  • Even though there are many models for educational curriculum of giftedness for children, there is little model for educational methodology and curriculum of information science giftedness of children. A curriculum model for information science giftedness of children is proposed on this study. This model's characteristics is a modular integrated curriculum model combined the mathematics, natural science, and information science. Because there is no regular curriculums of information science at elementary school. this model is valided. Also, There is also need to train multiple areas in the field of information science to expose information science giftedness of the children, This model is to minimize the relationship between modules, and to maximize the cohesion in the each module. As for result of statistics analysis for 60 giftedness students during three years, we know the effectiveness of this model.

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Improving the 2022 Revised Science Curriculum: Elementary School "Earth and Universe" Units (2022 개정 과학과 교육과정 개선 방향 고찰 - 초등학교 '지구와 우주' 영역을 중심으로 -)

  • Yu, Eun-Jeong;Park, Jae Yong;Lee, Hyundong
    • Journal of Korean Elementary Science Education
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    • v.41 no.2
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    • pp.173-185
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    • 2022
  • The purpose of this study is to present a reflective review of the earth and universe units from the revised elementary curriculum of 2007-2015 and suggest changes in the 2022 revised curriculum. For this purpose, we conducted an FGI with earth science educators and elementary school teachers regarding the content elements and system, the achievement standards and inquiry activity composition, and the vertical and horizontal curriculum connectivity. Free response and weighted hierarchical analysis items were incorporated into the FGI to ensure logical consistency of the inductively derived improvement. This analysis revealed that the composition of units by grade group had been unevenly distributed among each of the "earth systems" until the 2015 revised curriculum was finalized. Furthermore, the basic concept was still insufficient. We suggest that achievement standards centered on the learning content and skills must state specific scientific core competencies, and inquiry activities should include rigorous critical thinking, student written responses, and student inquiry and analysis. In the hierarchical analysis items, FGI emphasized the inclusion of essential content elements rather than reduction of content elements, understanding-oriented concept learning rather than interest-centered phenomenon learning, basic concept division learning before integration between subjects, and expanding vertical-horizontal connectivity rather than repeating and advancing learning. There is a limit to the generalizing the suggestions proposed in this study to the common opinion of elementary earth science experts. However, since the main vision of the 2022 revised curriculum is to gather opinions through educational entities' participation in a variety of educational subjects, it is suggested that our results should be incorporated as one of the opinions proposed for the 2022 curriculum revision.

Development of a Curriculum for the Cultivating the Creative Gifted and Talented Children of Informatics (창의적 정보과학영재 양성을 위한 교육과정 개발)

  • Kim, Sung Yul;Lee, Jong Yun
    • The Journal of Korean Association of Computer Education
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    • v.17 no.3
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    • pp.25-39
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    • 2014
  • Existing curricula for the gifted and talented of informatics are inapplicable directly to the current educational fields because its educational objectives are abstract and impractical. In particular, after the gifted and talented of informatics was defined by korean educational development institute in 2005 and other institutes, there is not a clear standard definition. Curriculum for the gifted and talented of informatics also varies and is different in accordance with research institutes. Therefore, we propose the definition of the gifted and talented of informatics and then suggest seven educational goals and a curriculum for the gifted and talented as well as its detailed learning contents. Finally, for proving the validity for those suggestions, this paper is verified by conducting the construct validity with a content validity and a confirmatory factor analysis using SPSS 18.0 and AMOS 21.

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Instructional Methodology for Video Editing in Image Content Production (영상콘텐츠 제작에서의 영상편집 교육 방법론)

  • Park, Sung-Dae;Park, Sung-Hun
    • Journal of the Korea Society of Computer and Information
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    • v.19 no.12
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    • pp.39-48
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    • 2014
  • This thesis suggests a methodology of video editing education that is a part of post-production process. The methodology is educating students on contents, theories, technology in phases according to the characteristics of each process. It is based on the training results from the class 'Understanding of Video Contents Production Technology' conducted for high school students between December, 2013 and August, 2014. The result of the satisfaction survey by enrolled students indicated that high educational satisfaction can be obtained by the education methodology.

Proposing the informatics standard curriculum scheduled to be revised in 2022 (2022년 개정을 위한 정보과 표준 교육과정 제안)

  • Kim, JaMee;Woo, HoSung;Yang, HyeJi;Kim, MinJeong;Kim, SungHee;Yi, SoYul;Kim, BoSeon;Kim, YoungAe;Gwak, JiHye;Choe, HyunJong;Jeong, InKee;Lee, YoungJun;Lee, WonGyu
    • The Journal of Korean Association of Computer Education
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    • v.23 no.1
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    • pp.1-28
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    • 2020
  • The purpose of this study is to establish the standard curriculum for informatics by reflecting the changing information technology and social needs and based on the competencies that school at each level must have. To accomplish the purpose, the informatics curriculums of 8 countries were analyzed, and the learning elements of the curriculum were extracted with the body of knowledge of the higher-level informatics standard curriculum being the frame. To establish the standard curriculum, 51 experts reviewed it and their opinions were collected 10 times. As a result of this study, the competencies that need to be fostered through the informatics curriculum were defined, and the competency-centered curriculum, including the learning elements required to acquire the competencies, and the competencies that can be manifested through the learning element, was proposed. The implication is that the informatics standard curriculum, proposed in this study, laid down the foundation for establishing the informatics curriculum scheduled to be revised in 2022.

Development of PBL based Elementary Robot Programming Curriculum (PBL 기반 초등 로봇 프로그래밍 교육과정 개발)

  • Hur, Kyeong
    • Journal of The Korean Association of Information Education
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    • v.15 no.4
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    • pp.543-550
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    • 2011
  • STEAM education is a topic-based curriculum to integrate the concepts into other subjects such as science, technology, engineering, art and mathematics in order to improve the students' interesting, understanding, integrated thinking and problem solving ability. In this paper, we designed STEAM curriculum in the form of Project-based Learning and developed the material for elementary students. We also developed the android-based application through searching for a utilization of IT simulation for enhancement the students' Project-based Learning effect.

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A Study on Digital Forensic Human Training Method (디지털 포렌식 전문인력양성 방안에 관한 연구)

  • Shin, Jun Woo
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.18 no.4
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    • pp.779-789
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    • 2014
  • A number of universities around the world provide various undergraduate and graduate programs for digital forensic. In this paper, we propose a cross-layer program suitable for senior students in the IT and law departments to learn multi-disciplinary convergence subjects. We have first analyzed the key ingredients of digital forensic and then the current programs in several universities. After describing the qualifications anticipated for digital forensic specialists, we have critically analyzed the courses currently offered in the IT and law departments. Based on the analysis and discussions, we have proposed an IT+law program and two flexible operation schemes of the program for securing the desired level of convergence education.

Study on Continuity of Elementary Mathematics Curriculum and Nuri Curriculum (유치원 교육과정과 초등수학 교육과정의 내용 연계성 분석 -누리과정과 2009 개정 수학과 교육과정을 대상으로-)

  • Chang, Hyewon;Lee, Hwayoung;Lim, Miin
    • Journal of Educational Research in Mathematics
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    • v.25 no.2
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    • pp.207-223
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    • 2015
  • This study aims to find ways for securing continuity of elementary mathematics curriculum and kindergarten curriculum. To do this, we considered the status of 'mathematical exploration' in Nuri curriculum and analysed the correspondence of content-domains and the continuity between Nuri curriculum for ages three to five and 2009 revised national elementary mathematics curriculum, based on the reconstructed achievement criteria. The result of these analyses reveals that the classification of five content-domains both for 'mathematical exploration' of Nuri curriculum and for 2009 revised national elementary mathematics curriculum coincides. We also recognized the reconstructed achievement criteria which are considered as reverse continuity or as discontinuity of Nuri curriculum and 2009 revised national elementary mathematics curriculum in all the five content domains. The former means being lower in levels or reduction in ranges from Nuri curriculum to elementary one. The latter means that some reconstructed achievement criteria are included in only one of the two curriculum. Based on these results, we suggested several ways to secure the continuity between Nuri curriculum and 2009 revised national elementary mathematics curriculum in the perspective of mathematics education.