• Title/Summary/Keyword: 정규과정 교재

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An Analysis Study of Business Korean Textbook for Chinese (중국인을 위한 비즈니스 한국어 교재 분석 연구)

  • Xian, Xiang;Hu, Ji;Chen, Songzhe
    • Journal of Korean language education
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    • v.28 no.4
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    • pp.297-335
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    • 2017
  • Recently, Chinese universities have been putting their priority on cultivating industry-academia linked talents, catching up with social change and industrial demand. Accordingly, vocational purpose education is being emphasized even in Korean language education. When facing active trade between Korea and China, the importance of business Korean language education will be magnified, and therefore, the demand for business Korean textbooks will grow accordingly. To strengthen the basis for the development of future business Korean textbooks, this study conducted a general analysis of a business Korean textbook for Chinese learners. Specifically, the textbook was examined by largely dividing it into external and internal structures. After dividing the internal structure into "purpose of compilation", "composition of the textbook", "learning contents", and "learning activity", the composition of the textbook was once again divided into "overall composition" and "unit composition", and the learning contents was further divided into "subject", "language content", and "supplementary knowledge." Furthermore, an analysis was conducted. The status and directions for future development of business Korean textbooks for Chinese learners are delineated and suggestions for improvement are provided. This study has its significant in that a general analysis was conducted on a business Korean textbook for Chinese learners, and is expected to be used as basic research material for the future development of business Korean textbooks.

A Non-program Line Tracer Learning Model for Creative Learning Activities during Discretionary Activity Hours (재량활동시간에 창의성학습 활동을 위한 비프로그램형 라인트레이서 학습모형 - 교재 개발과 수행평가 중심 -)

  • Moon, Wae-Shik
    • Journal of The Korean Association of Information Education
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    • v.15 no.1
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    • pp.101-109
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    • 2011
  • Generally, learning tools like robots are being mainly used as teaching aids to enhance creativity of a group of students who are superior in their studies and have an excellent potential in private education. This study uses a relatively cheap line tracer as a teaching aid and connects it with regular subjects so that elementary school higher graders showing academic achievement lower than average can get robot learning. This research developed a line tracer learning curriculum and teaching materials for total 12 sessions and taught students showing academic achievement below average and evaluated them after. According to the result of evaluating their achievement levels based on their results of learning in each session, most of the students with low academic achievement was evaluated to understand most of the contents in the curriculum fully. Through its empirical implementation, this paper has found the possibilities of robot education connected with the regular curriculum for elementary students exhibiting relatively lower academic achievement.

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A Study of Curriculum Integration for Robot Education (로봇교육을 위한 교과 통합 내용 구성에 관한 연구)

  • Jin, Young-Bok;Lee, Jae-In
    • 한국정보교육학회:학술대회논문집
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    • 2008.01a
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    • pp.142-147
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    • 2008
  • 로봇 교육은 초등학생들의 논리적 사고와 문제해결력 향상을 위한 최적의 학습 도구이지만 교육과정이나 교재가 전통적 교과과정에 반영되어 개발되어 있지 않다. 그리고 현재 모든 초등학교에서 방과 후 교육이 아닌 정규 수업 시간에 값비싼 로봇교구들을 구입해서 모든 학생들에게 제공할 수 있는 재정적 여건은 마련되어 있지 않다. 따라서 본 연구는 제7차 교육과정의 로봇관련 교과 내용를 분석하여 관련내용을 교과 통합하여 로봇교육과정을 구성하고 정규교과 수업 시간에 초등학생들에게 로봇 교육을 하기 위한 방안을 제시하고자 한다.

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A Study to Improve the Extracurricular Activities in Elementary school Using WBI (WBI를 이용한 초등학교 재량활동의 개선에 관한 연구)

  • Jung Kyu-Cheol;Jang Hae-Suk;Lee Chung-Kook;Park Kihong
    • Proceedings of the Korea Information Processing Society Conference
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    • 2004.11a
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    • pp.669-672
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    • 2004
  • 인터넷과 웹의 급속한 성장은 전반적으로 우리사회에 영향을 미쳤고 교육 분야도 예외는 아니다. 정보화 사회에 대응하는 교육의 효율성을 높이고자 교육개혁을 추진하고 있다. 7차 교육과정에서는 정보화 사회에 대처할 수 있는 능력함양을 위해 정보화교육의 중요성을 강조하고 있으며, 국가 차원의 교육정보화 사업달성을 위해 노력하고 있다. 그러나 초등학교에서는 컴퓨터 교육에 대한 정확한 교육과정과 교육내용이 제시되어있지 않고 재량활동의 일부분으로 컴퓨터교육을 실시함에 따라 마땅한 컴퓨터 교재와 학생들의 수준별 학습이 이루어지지 못하여 체계적인 컴퓨터교육이 이루어지지 못하고 있는 실정이다. 본 연구는 웹 기반 교수-학습을 활용하여 학습자 중심의 자기 주도적 학습을 하고 학습자에게 학습과정에 대한 자기 평가의 기회를 제공함으로써 학습에 대한 인식과 주도성을 증진시키고, 수준별 학습을 할 수 있는 올바른 패러다임을 모색하였다.

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An Analysis on the Mathematics Curriculum of Gifted High School - Focusing on Content Area and Subject Competency- (영재학교 수학과 교육과정 분석 -내용 영역과 교과 역량을 중심으로-)

  • Lee, Eungyeong;Jeon, Youngju
    • Journal of the Korean School Mathematics Society
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    • v.21 no.1
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    • pp.1-18
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    • 2018
  • This study aims to analyze the mathematics curriculum in the gifted school and obtain the understanding of the current situation of education for the math-gifted children in Korea, therefore providing a point of view for the improvements. In order to attain these purposes, the study examined the subject competency for the mathematics set by regular mathematics curriculum system and 2015 revision curriculum, and extracted the analytical standards, based on which the education plan documents of each gifted school were analyzed. The conclusion that has been made based on the analysis results is as follows. First of all, the curriculum of mathematics in the gifted schools in korea is heavily concentrated on analytics and algebra. Secondly, in mathematics curriculum for gifted children in Korea puts the most emphasis on the problem solving competency. Third, geometry subject in the mathematics curriculum of Korean gifted schools deals with the given content only at the level of regular high school curriculum. Fourth, learning materials in most gifted schools are not the ones especially revised and adapted for the gifted students but usually the ones for the college students. Lastly, gifted schools are running the curriculum featured with curriculum compacting and advance learning focusing on acceleration.

Curriculum Development for Nuclear Power and Radiation Education in Elementary, Middle, and High Schools (원자력 및 방사선에 대한 초, 중, 고등학교 교육과정 개발)

  • Lee, Seung Koo;Choi, Yoon Seok;Han, Eun Ok
    • Journal of Radiation Protection and Research
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    • v.39 no.4
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    • pp.187-198
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    • 2014
  • I developed a curriculum reflecting the perspectives of students, science teachers, and professionals in order to carry out standardized, fundamental nuclear power and radiation education in schools. Among elementary, middle, and high schools, 78.4%, 78.6%, and 93.1% respectively exhibited (with high frequency) a need for nuclear power and radiation education. The proposed elementary and middle/high school course titles are "Radiation and Life" and "Nuclear Power and Radiation" respectively. The courses are offered at every grade level and span one semester each year. The duration of each weekly class varies; at the elementary, middle, and high school levels classes meet for 40, 45, and 50 minutes respectively. Thin textbooks containing an abundance of cartoons and photos were requested. The starting points for education were fixed at the sixth grade, second year of middle school, and the first year of high school. It was stipulated that the education be separate from the regular curriculum, and encompass a creative and experimental field study based on the principal and science teachers' needs. Similar trends were observable according to grade levels regarding class hours, textbook format, form of education, and educational necessity. A simulation of the devised curriculum revealed an overall goodness of fit totaling $3.88{\pm}0.60$, $3.89{\pm}0.60$, and $3.66{\pm}0.63$ out of five for elementary, middle school, and high school students respectively, which are scores equivalent to 70 and above (out of 100). The significance of this study is that it is the first to propose a curriculum designed to cultivate value judgment based on understanding nuclear power and radiation. However, the realization of nuclear power and radiation education requires that follow-up measures be taken regarding textbook development, amendments to related laws, and the providing of teaching plans.

A Study on Development of Computer Teaching -Learning Model through Analysising Other Subject Teaching-Learning Model (타교과 수업모형 분석을 통한 컴퓨터교과 수업 모형의 개발에 관한 연구)

  • Lee, Kwang-Woo;Han, Sun-Kwan
    • 한국정보교육학회:학술대회논문집
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    • 2004.08a
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    • pp.102-110
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    • 2004
  • 현행 7차 교육과정에서는 정보통신기술을 재량활동 시간을 이용하여 필수적으로 36시간 이상의 수업을 하도록 전장하고 있다. 이에 각 시 도에서는 자체적으로 교재를 개발하고 그에 따른 교사용 지도서도 나와 있다. 그러나 컴퓨터 내용학에 관한 교수 모형은 타 교과에서 만들어진 것을 차용하거나 컴퓨터 교과에 무리하게 적용한 것이 대부분이라 하겠다. 또한 컴퓨터 내용학보다는 소프트웨어를 다루는 기능 위주의 교육 내용 편성이 대부분이라 내용학을 다루는 것은 극히 일부라 하겠다. 이에 본 연구는 컴퓨터 내용학의 교수 모형을 제시하여 초등학교에서의 컴퓨터 내용학을 가르치는데 도움이 되고자 한다. 또한 현재 응용 소프트웨어 활용에 연연하고 있는 재량 활동 시간의 정보통신교육보다는 앞으로 정규교과목으로 지정될 것을 전제로 컴퓨터 내용학을 중심으로 한 교수 모형을 제안하고자 한다.

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The Formation and Curriculum Development of Geomatics/Geoinformatics (지오매틱스/지오인포매틱스의 형성과 교과과정 개발연구)

  • 고준환
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.16 no.2
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    • pp.259-270
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    • 1998
  • The purpose of this study is to develop the model curriculum for Geomatics/Geoinformatics. Geomatics/Geoinformatics are emerging discipline for spatial data acquisition and processing. They have multidisciplinary characteristics which include surveying, computer sciences, spatial data processing-related disciplines. This study carried out with the in-depth study to the related department's the academic characteristics and curriculums. Generally, the curriculum consists of surveying and information technology. They basically require mathematics, physics as prerequisites. The related-departments belong to the engineering or science part. So, We can conclude that the academic characteristics have to belong In engineering sides. Modern disciplines usually require balanced knowledge, and Geomatics/Geoinformatics have to the multidisciplinary approaches. This study shows 1) the model curriculum of Geomatics/Geoinformatics for the 21st century by analyzing the related departments' curriculum, it consist of surveying, computer/information sciences, sustainable urban management and related laws, etc., 2) the needs of the good cooperation among the related disciplines and industry for the development of standardized texts and curriculums, 3) the needs of new certification for Geomatics/Geoinformatics, etc.

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Korean tertiary mathematics and curriculum in early 20th century (한국 근대 고등수학 도입과 교과과정 연구)

  • Lee, Sang-Gu;Ham, Yoon-Mee
    • Journal for History of Mathematics
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    • v.22 no.3
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    • pp.207-254
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    • 2009
  • We would like to give an introduction about Korean Tertiary Mathematics and curriculum in the early 20th centuryan Ttails like, when tertiary mathematics was introduced in Korea, who adiated it, and how it appeared in curriculum for college education were presented. From the late 19th century, the royal circle of the dynasty, officers, socd. Felites, intellectu. sculum in tand many foreatn my mionaries, who entered Korea, began to establish educational ulstitutions begulnearlfrom the nt80s. Kearl GoJongtannounced thescript for general education icentur. Most of the new schoo scadiated western mathematics as tcompulsory course in their curriculumiese introduced tertiary mathematics in most of the curriculumurse end curriculum in, lfrom nt85 to 1960. Since then, tertiary mathematics was tautit at most of the new private and public schools of each level and in colleges. We have investigated the history of Korean tertiary mathematics with its curriculum from 1895 to 1960.

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College-bound Curriculum Developement for Training of Atomic Industry Technician (원자력산업 중견전문인력 양성을 위한 전문대학 교육과정 개발)

  • Lyu, Kwang-Yeul;Kim, Sung-Soo;Ahn, Sung-Min
    • Journal of radiological science and technology
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    • v.28 no.1
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    • pp.33-44
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    • 2005
  • The objective of this study is to supply the good quality of experts the radiation industries in Korea and develop the major subject matter needed in the radiation industries and the curriculum in order to execute it for the variation of fields of employment at the department of radiation in the junior college and the development of the percentage of employment. In addition, this study is to improve the level of radiation experts engaged in the industries in quality, and it is to improve the social recognition of radiation rather negative now because of the development of radiation industry. As for the core results of this research, it was to suggest the detailed choice method curriculum proper to the service fields of radiation industries, but it may be subject to change due to each college's property and the educational objectives. From the result of this research above, it may be summed up as follows. First, as for the detailed curriculum by the service field, this study was to organize two subject matters: 1. the subject matter proper to the field of using the radiation, and 2. the subject matters proper to the safety control field of radiation. Second, as for the detailed curriculum by the pattern of industries, this study was to organize the four subject matters: 1. the subject matter needed in the manufactures, 2. the subject matter needed in the nondestructive testing industries, 3. the subject matter needed in the sales agencies, and 4. the subject matter needed in the laboratories. This study was to suggest the operational model about the curriculum in order to execute these subject matters. It could be executed as two methods below. First, one method is to execute the major systems by the medical field and industrial field in the third course at the department of radiation in the junior college now. Second, the other method is to make them specialize the industrial radiation in the Advanced Course(one year course) after the graduation of junior college. To operate these curricula successively it needs to assume the deeper research and the development of materials about the subject matters related to the nuclear radiation industries hereafter. In addition, it needs to solve the security of finance like the manpower of professor, space for practice, and the educational appliances, etc. needed in the operation of subject matters. Finally, the effect and result from the development or revision of college curriculum did not come out in a short time. It will require considerable time until the undergraduates at the department in the junior college finish a set of curriculum newly developed, and graduate the university, and can get the results while they engage in their works in the industrial sites. Accordingly, all the interested parties have to anticipate the results of this research with the patience in long-standing point of view. Also, this researcher considers it as it is willing to give them the continuous interest and support.

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