• Title/Summary/Keyword: 과학 교육 과정

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Analysis of the Content Relevance of the 7th National Science Curriculum in Secondary Schools (제7차 중등학교 과학과 교육과정 내용의 적정성 분석)

  • Lee, Yang-Rak;Park, Jae-Keun;Lee, Bong-Woo
    • Journal of The Korean Association For Science Education
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    • v.26 no.7
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    • pp.775-789
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    • 2006
  • The purpose of this study was to analyze the relevance of the school science contents that have been implemented for the 7-10th grade students in Korea since 2001. To fulfill the purpose of the study, we 1) analyzed the 7th national science curriculum of Korea, California science standards, the national science curriculum of England, Japanese national science curriculum, and current Korean and Japanese science textbooks, 2) conducted a nationwide survey in order to gather opinions from students, teachers, and science specialists. The main findings of this research were as follows: First, the number of topics presented at each grade level should be reduced and similar topics and themes should be integrated for students' deeper understanding. Second, science contents were excessive compared to the allotted teaching time and to foreign countries. Thus, the excessive overlapping and repetition of science contents should be avoided among the primary, middle and high school level, and the number of science concepts and activities should be reduced to an appropriate level considering time allotment for science classes, teachers' workload, laboratory conditions, etc. Third, to cope with the decreasing students' understanding and interests in science as school level and school year goes up, the science curriculum and textbooks should be developed to allow for student to learn science concepts by solving problems confronted in their daily lives. Fourth, a differentiated curriculum such as in-depth and supplementary course should be described not in science contents, but in teaching and learning strategy.

The "Pan-National Scientification Movement" in Elementary Schools ('국민학교'로 들어온 '전(全) 국민의 과학화운동')

  • Kang, Eugene
    • Journal of Korean Elementary Science Education
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    • v.43 no.2
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    • pp.301-321
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    • 2024
  • This study aims to elucidate the historical origins of the long-term demand for the integration of "science subject classes" and "science-related events" within the context of science education for teachers. During the 1970s, science education in elementary schools faced a dual challenge marked by the tension between implementing the third curriculum, which emphasized fundamental science, and the "Pan-National Scientification Movement," which focused on technology education. The Ministry of Education was compelled to integrate the sudden demands of the Yushin regime into the ongoing third curriculum. As these demands emerged from dual policy directives, activities related to elementary science education were subsequently categorized into formal science subject classes and extracurricular science-related events. Although the movement did not directly alter the curriculum, it instigated modifications in personnel structure, activity spaces, and evaluation systems within schools. The introduction of the Pan-National Scientification Movement in elementary schools resulted in changes including the establishment of a new "science lead teacher system," the creation of a dedicated "science corner," and the implementation of a "science badge system." Although the movement was abruptly introduced, it ostensibly contributed to the advancement of the inquiry-oriented approach promoted by the third curriculum. Paradoxically, this advancement was facilitated by the integration of the consequences of the movement into schools' autonomous, extracurricular activities spearheaded by frontline education offices and schools. Although the movement represented a government-driven policy at a particular juncture in time, the manner in which science education practitioners responded to urgent governmental mandates, while preserving the integrity of the long-established third curriculum framework, involved dividing education activities into subject-specific classes and extracurricular science activities. Examining how science education practitioners in the 1970s proactively addressed these challenges offers valuable insights for the science education community in adapting to the current rapidly evolving educational landscape.

Development and Application of Elementary Science Curriculum to Enhance Creative Problem Solving Abilities (창의적 문제해결력 신장을 위한 초등과학교육과정 개발 및 적용)

  • Cho, Youn-Soon;Seong, Jin-Sook;Chae, Je-Sook;Koo, Seong-Hye
    • Journal of The Korean Association For Science Education
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    • v.20 no.2
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    • pp.307-328
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    • 2000
  • The purpose of this study is to develop and implement an alternative elementary science curriculum to enhance creative problem solving abilities. The curriculum consisting of three main elements was developed. The three elements are content knowledge, process knowledge and creative thinking skills. The curriculum was validated by more than 10 science educators, scientists, and curriculum specialists. In order to implement the curriculum, three lessons for 5th grade were developed and taught by a problem-based-learning(PBL) method in an experimental group during the second semester. For the comparison group the ordinary lesson based on the 6th national science curriculum was taught by the same science teacher during the same period. Performance assessment was developed and used for the pre and post test. Two-way ANOVA, and T-test were used to check whether there are any significant differences between the gains of scores(pre-post test) of the two groups. The results of the test showed that the experimental group increased significantly in the total creative thinking problem solving skills, but the comparision group did not.

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Study on the revision of mathematics curriculum of Korea Science Academy (한국과학영재학교 수학교과과정 개정 및 운영에 관한 연구)

  • Kim Hun;Park Eun-Young;Kim Jong-Duk
    • Communications of Mathematical Education
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    • v.20 no.1 s.25
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    • pp.75-86
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    • 2006
  • This study is partially supported Korea Science Foundation. In this paper we will introduce the result of project to revise mathematics curriculum of Korea Science Academy, and we will discuss the management of mathematics curriculum of Korea Science Academy. This study also analyze the pattern of taking mathematics course during year 2005. From this analyzing result, we will discuss about the development of mathematics curriculum of Korea Science Academy.

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Three Strategies for Integrated Science Teaching of "Energy" Applying Knowledge, Social Problem, and Individual Interest Centered Approaches (지식내용, 사회문제, 개인흥미 중심의 통합과학교육 접근법을 적용한 '에너지' 주제의 교수.학습 전략 모색(I))

  • Lee, Mi-Hye;Son, Yeon-A;Pottenger III, Francis M.;Choi, Don-Hyung
    • Journal of The Korean Association For Science Education
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    • v.21 no.2
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    • pp.342-356
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    • 2001
  • Integrated science for high school is required in the present Korean National Sixth Curriculum and the Seventh Curriculum which will be effective in 2002. Currently, most science teachers in secondary school have concerns about teaching integrated science subjects and this continues to raise a significant problem for practical implementation of integrated science education in schools. In this paper, we discuss two reasons for these concerns that our analysis revealed: 1) Science teachers do not understand how to implement integrated science education and 2) there are insufficient teaching-learning materials supporting integrated science. Three different approaches to integration that have been suggested to overcome the problem of implementation are outlined here. They are the knowledge centered, social problem centered, and individual interest centered approaches. Reported here are the first two steps we undertook in preparation for testing the relative effectiveness of these approaches. First, we analyzed the content of the Korean Sixth and Seventh National Science Curricula, seven Korean integrated science text books, the American National Science Education Standards, and the American Association for the Advancement of Science Benchmarks looking for common themes. We identified in the analyzed materials the common themes: energy conservation, energy transformation, energy transport, energy degradation. We then used their energy related content to organize sets of concept structures, one set for each of the three approaches. These concept structures will provide the foundations for the development of integrated teaching-learning energy plans to be used in our research into the effectiveness of the approaches.

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An Analysis of Observation and Measurement Standards in Foreign National Science Curriculums (외국 과학교육과정의 관찰과 측정 기준 분석)

  • Lee, Bong-Woo;Kim, Hee-Kyong
    • Journal of Korean Elementary Science Education
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    • v.26 no.1
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    • pp.87-96
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    • 2007
  • The purpose of this study was to examine the features of the standards of observation and measurement in foreign national science curriculums. For the purpose of this study, we analyzed the science standards of the USA (National Science Education Standards, the Science Standards of the State of California, Massachusetts, Colorado, Nebraska, Virginia and Florida), the United Kingdom (England), Singapore, Canada (the State of Alberta), Australia (the State of Victoria) and New Zealand. The results of the study indicated that foreign national science curriculums put an emphasis on accurate and systematical observation, usage of the five senses, usage of observation tools, and an understanding of observation. Regarding the 'measurement' factors, foreign national science curriculums emphasized systematic and accurate measurement. Measurement targets and tools were presented for each grade. The usage of appropriate units was also included in the foreign national curriculums which we examined.

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An Exploration of the Direction of Development of the Integrated Curriculum for Gifted: The Applicability of the Drake Model (영재를 위한 통합교육과정 개발의 방향: Drake 모형의 적용 가능성 탐색)

  • Lee, Kyungjin;Roh, IlSoon
    • Journal of Gifted/Talented Education
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    • v.24 no.2
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    • pp.217-241
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    • 2014
  • This study aimed to explore the direction and possibility of development of the integrated curriculum for the Gifted students in the discipline-centered curriculum perspective. To this end, the study analysed the Ontario interdisciplinary curriculum based on a Drake's Integration Model which is typical model of the discipline-centered curriculum and explored the applicability to Science Gifted Academy in Korea. Through showing the possibility of enrichment on the selected majors, integration with other disciplines and solving the future problems by the integrated curriculum centered on 'Big Idea', the Ontario interdisciplinary curriculum gave suggestions of curriculum integration within or through individual research and integrated curriculum for the Gifted. The application of the Ontario's "Introduction to Information studies" to "Information Science" in Science Gifted Academy in Korea could be obtained the conclusion that the Drake's Integration model is applied to the Gifted by the individualization of the navigation network, KDB(Knowledge-Do-Be) umbrella, and the final interdisciplinary task. From this result, we could suggest that the development of integrated curriculum for the Gifted should be considered the clarity of learning objectives for the Gifted, the plan of evaluation to demonstrate big understanding and big idea, the integration with other disciplines or real-world problem, as well as the need of teachers council for the integrated curriculum. This study is expected to be contribute to development of the integrated curriculum model for the gifted based on the their characteristics and to be utilized in Science Gifted Academy.

Development of a High School Level Physics Curriculum for the Gifted in Science (델파이 조사 방법을 이용한 물리 영재교육과정 구성)

  • Kim, Young-Min;Lee, Sung-Yi;Jeong, Seong-Oh
    • Journal of Gifted/Talented Education
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    • v.12 no.4
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    • pp.46-71
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    • 2002
  • The purpose of this study was to develope a high school level physics curriculum for the gifted in science. The research method for this study was Delphi Survey, which is appropriate for social agreement of experts in a certain area. For the Delphi survey, 11 experts of gifted education in physics field, who consist of 4 physics professors, 3 physics education professors, and 2 science high school teachers, and 2 experts in other institutes, were sampled intendedly. In first survey, free description questions about objectives, contents, teaching methods, and achievement test methods were asked, and their answers were analyzed by frequency. And then, frequent answers were adopted and elaborated. In second survey, they were asked to write numbers according to priority(degree of agreement) for the adopted and elaborated answers in each area. Finally, by analyzing the results of second survey, the physics curriculum for the gifted was developed.