• Title/Summary/Keyword: 7th science curriculum

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Characteristics and Tasks of the 7th Science Curriculum (제7차 과학과 교육과정의 특성과 과제)

  • Lee, Myeong-Je
    • Journal of the Korean earth science society
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    • v.22 no.3
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    • pp.248-257
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    • 2001
  • The 7th science curriculum has the characteristics of humanistic philosophy of education. The humanistic curriculum emphasized learner-centered education, which claims to stand for learners' experiences. This study searched for the significances of the 7th science curriculum, and discussed its tasks and perspectives based on the backgrounds, characteristics, and objectives mentioned in the history of reforming science curriculum. The 7th science curriculum emphasizes learners' experiences and everyday life materials are favored in teaching-learning activities. For the desirable effects related to this commitment, pre-service and in-service training programs are required about the social elements in the nature of science, and everyday life contexts should be examined in views of educational and cognitive perspectives, so the contextual differences between science and everyday life should be clarified.

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A Comparative Analysis of Analogies in Elementary Science Textbook by the 6th and 7th Curriculum (제6차와 7차 초등학교 과학 교과서에 제시된 비유 비교분석)

  • Choi Sun-Young
    • Journal of Korean Elementary Science Education
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    • v.25 no.2
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    • pp.149-158
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    • 2006
  • The purpose of this study was to analyze the analogies used in elementary science textbooks. For this, the analogies were classified into the following criteria : analogy-related contents included in elementary science text-books, types of representation style, and the role of analogy. The results of this study were as follows : the total of analogies was 154 in the 6th and 166 in the 7th curriculum. Most of them were expressed in textbooks and experimental texts. More structural/functional, verbal/pictorial, concrete/concrete, concrete/abstract, simple and enriched analogies were included in the science textbooks of the 7th than those of the 6th. Most of them took the role as an aid to understanding. According to the domain of science content, energy, material, life domains were increased in the 7th than the 6th, with the exception of the earth science domain. The ratio of used analogies in the life domain was higher than the others, and in the material domain it was the lowest. From these results, it can be said that, in order to help students' understanding, further research into the application of analogies is needed.

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A Survey on Science Field Study for Elementary School Science in 7th Korean School Curriculum (제7차 교육과정기의 초등 과학교과 현장학습 실태조사)

  • Kim, Eun-Jin;Lim, Chae-Seong
    • Journal of Korean Elementary Science Education
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    • v.22 no.2
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    • pp.173-180
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    • 2003
  • The purpose of this study was to investigate about current status of science field study in elementary schools. A total of 72 elementary teachers in Busan and Gyungnam districts were involved and the data from questionnaire was gathered. The questionnaire was comprised two parts: items on general level include the epistemological aspect and actual condition and items on concrete level according to chapters of elementary school science curriculum. The major findings are as follows: 1. Many teachers cognize the requirement of science field study in 7th Korean elementary school science curriculum is larger than 6th one. But they respond the actual number of science field study in 7th curriculum is nearly equal to 6th. 2. In analysis to grades, the actual number of field study decrease as grade is high. 3. In the science content aspects, the requirement of field study is the largest on biology domain and earth science domain. 4. Many teachers have pointed out “the difficulty of administration for field study” and “inappropriated surrounding of their school” as the problems of science field study in elementary school.

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The Organization and Tasks of 'Ecosystem & Environment' Subject In the 7th Curriculum for High School Students in Korea (제7차 교육과정의 고등학교 '생태와 환경'의 구성과 과제)

  • 이선경;최석진
    • Hwankyungkyoyuk
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    • v.11 no.2
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    • pp.26-39
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    • 1998
  • The ‘Ecosystem St Environment’ subject is included in the 7th revised curriculum for high schools in Korea, which ‘Environmental Science’ subject in the 6th curriculum was changed to. The 6th curriculum was announced in 1992 and has been applied till now, and the 7th revised curriculum was announced in the late of 1997 and will start to be applied in school education from 2001. The ‘Ecosystem & Environment’ subject is an integrated subject for liberal arts and science, which deals with environmental problems with approaches of natural science and social science. Its significance lies in understanding and solving environmental problems, and thus improving the quality of human life. And it is aimed to achieve the goal of environmental education in connection with ‘Environment’ subject in middle schools, which is one of the three optional subjects. This subject consists of six domains: human being and environment, ecosystem and environment, environmental pollution, global environmental problems & their measures, environment and society, and environmental preservation. Compared with ‘Environmental Science’ in the 6th curriculum, in this subject less emphasis is put on environmental technological approach and more emphasis is put on environmental ethics and environmental social approach. On the contrary, one unsatisfactory point is as the following: locally integrated solutions of environmental problems are omitted: the organization of the textbook is more or less sporadical and sometimes overlapping; practical solutions are not concrete in writing the textbook and teaching it. The ‘Ecosystem & Environment’ subject which has been organized with new contents according to the 7th revised curriculum for high schools will be successful in achieving the given goal only when a lot of high schools select this subject and are taught effectively.

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The Comparison of the Amount of Chemistry Learning in the Elementary School Science Textbooks Developed under the 6th and 7th National Curricula (제6, 7차 교육과정에 의한 초등학교 과학 교과서에서 화학 학습량 비교)

  • 전경문;홍미영;이범홍
    • Journal of Korean Elementary Science Education
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    • v.22 no.1
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    • pp.29-36
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    • 2003
  • The purposes of this study are to analyze the elementary school science textbooks (chemistry part) developed under the 7th national curriculum and to compare with those under the 6th national curriculum. The lesson hour, the number of pages, contents at each grade, deleted or newly introduced contents were analyzed. Some features of the 'Separation of mixtures' chapter were also analyzed. Educational implications were discussed in the aspect of whether the intention of revised curriculum was reflected, especially whether the amount of teaming was decreased.

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An Analysis of Health Education Contents of the 7th Elementary Curriculum (제7차 초등학교 교육과정의 보건교육 내용 분석)

  • Moon, Young Im;Kim, Myeong Wha
    • Journal of the Korean Society of School Health
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    • v.15 no.1
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    • pp.107-121
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    • 2002
  • In this study we analysed time allotment and the contents of a health textbook and its teacher's guide book of the 7th elementary curriculum. We intended to offer the basic data needed to establish the single health education. So the analysed results are as follows according to the health education model developed by the korean nursing association and health teachers' meeting and the teaching time allotment presented by the teacher's guide book. It's goal is practice in regular class time of the subjects for the time and contents of health education in the 7th elementary curriculum. The total class periods of health education of the 7th elementary curriculum are 229 hours and annual periods of health education per year are an average of 38 hours. The health education of the 7th elementary curriculum is separated into the 9 following subjects: Wise life, Pleasant life, Righteous life, We are 1st grade, Physical education, Science, Social studies, moral education and Practical course. The health education of the 6th elementary curriculum was combined with the units of physical education, but in the 7th curriculum it must be separated by a single, required health subject. The contents of health education of the 7th elementary curriculum is mostly dominated by units of community and environmental health with a total of 55 hours (24%). Therefore, the units of home health and social health, development of physical strength are fairly insignificant. The newly added contents in the 7th curriculum are "pregnancy and child birth, the protection and counterplan from rape, the reasons and prevention of stress, the reasons and the treatment of obesity, the damage of smoking and drinking, etc. According to the result above, we must establish the criteria for each year's health education in the 8th elementary curriculum. The contents of mental health, home health and social health should be revised and added new items. The health education that is separated in some subjects now must be established as a systematically integrated health education.

Comparison of Sexuality Education of Home Economics and Technology .Home Economics in 6th, 7th Middle School Curriculum (6, 7차 교육과정 중 가정과 기술.가정 교과서의 성교육의 비교)

  • 조숙자
    • The Korean Journal of Community Living Science
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    • v.14 no.1
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    • pp.97-105
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    • 2003
  • This study was to examine the contents of sexuality education in the 6th Home Economics 1 and in the 7th Technology.Home Economics 1 of Middle school curriculum by comparing those two text books. The result of the study was that: 1) the 7th TechnologyㆍHome Economics 1 has more sexuality education contents than in the 6th; 2) the 7th TechnologyㆍHome Economics 1 used much more vivid and realistic pictures to catch students' attention and bring educational effect; 3) the 7th Technology \ulcornerHome Economics 1 included more detailed information for the young students such as pregnancy, birth control, masturbation, artificial abortion, and prevention of sexual violence than the 6th; 4) although the 7th TechnologyㆍHome Economics 1 showed more developed contents for the sexuality education, it had still only theory based information that lost students' attention on this important issue.

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Changes in High School Student Views on the Nature of Science according to Curriculum Change (교육 과정의 변화에 따른 과학의 본성에 대한 고등학생의 관점 변화)

  • Moon, Seong-Sook;Kwon, Jae-Sool
    • Journal of The Korean Association For Science Education
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    • v.26 no.1
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    • pp.58-67
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    • 2006
  • Student understanding of the nature of science is necessary not only because it is helpful for solving everyday problems with growing science literacy, but also because it influences students' science learning. Therefore, it was necessary to investigate student views on the nature of science under the 7th national curriculum and compare with those before the 7th national curriculum in order to probe the elements which contribute to changes in student views on the nature of science. A significant number of differences were found between subdimensions of views on the nature of science through the comparison. High school students under the 7th national curriculum had more relativistic, instrumental, and deductive but less process-oriented views than high school students before the 7th national curriculum. The differences between mean values which showed high school student views on the nature of science under and before the 7th national curriculum were significant, except for the subdimension of instrumentanlism/realism. In particular, high school students under the 7th national curriculum possessed a contextual view, whereas those before the 7th national curriculum possessed a decontextual view. Although other factors might be the cause for differences found in this study, we argued by discussion that differences among textbook contents seemed to be the major factor.

A Study on the Planning Science Laboratory of Middle and High School Considering the 7th Education Curriculum -Focusing on Analysing Educational Curriculum- (7차 교육 과정에 따른 중·고등학교 과학실 구성에 관한 연구 - 교과 과정 분석을 중심으로 -)

  • Chung, Ho-Keun;Lee, Ho-Chin
    • The Journal of Sustainable Design and Educational Environment Research
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    • v.3 no.2
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    • pp.1-21
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    • 2003
  • This study will focus on analysing changes in subject content, teaching and learning methods, teaching model, and evaluation which have been brought about by the introduction of the 7th education curriculum, and on considering how many kinds of science labs are needed, and on proposing the desirable direction of building them. Methods for studying the goals above are as follows: First, considerations were given on how science labs must be structured and on which equipment are needed, which were done by analysing change of science education for future society, science subjects in the 7th educational curriculum, current situation of science labs, and science educational materials. Second, based on the need of students, it was examined how many science classes were needed, and through this the number of labs needed and users' requirement were analysed. Third, on the basis of the analysis above, existing conditions in planning science labs and the example of existing labs were examined.

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Analyses and Comparison of Science Content on Education for Sustainable Development in Middle School Science Curriculum (중학교 과학과 교육과정에 제시된 지속가능발전교육 내용 분석 및 비교)

  • Oh, Yoon-Jeong;Choi, Kyung-Hee
    • Hwankyungkyoyuk
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    • v.25 no.1
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    • pp.89-104
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    • 2012
  • This study analyzed content on education for sustainable development in middle school science curriculum of $6^{th}$, $7^{th}$, 2007-revised and 2009-revised. Analyses criteria were developed based on literature reviews. This study developed 8 criteria such as health, climate change, urbanization and rural development, water, biodiversity and ecosystem, energy, disaster reduction and management. The results showed that 6th middle school science curriculum has 4 criteria, $7^{th}$ has 2 criteria, 2007-revised has 8 criteria, and 2009-revised has 7 criteria. This study suggests the need for developing systemized teaching material on education for sustainable development that can be integrated in the science curriculum by pursuing the following tasks: First, the goal of education for sustainable development and its need should be stated in the science curriculum. Second, the class content, themes, objectives, teaching-learning programs on education for sustainable development should be produced. Third, within science curriculum, the content should deal with perspectives and topics, and learning goal must pursue value education.

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