• Title/Summary/Keyword: the 6th middle school science curriculum

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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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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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Comparison with the 6th and 7th Science Curricular for Inquiry Skill Elements in the Elementary and Secondary School (초.중.고등학교 탐구 기능 요소에 대한 6차와 7차 과학 교육 과정의 비교)

  • Ha, So-Hyun;Kwack, Dae-Oh;Sung, Min-Wung
    • Journal of The Korean Association For Science Education
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    • v.21 no.1
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    • pp.102-113
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    • 2001
  • In order to compare with the 6th and 7th science curricular for the inquiry skill elements in the elementary and secondary school, we divided skill domains into five classes which were process skill, step skill for inquiry instruction, inquiry activity skill, manipulative skill and breeding-farming skill. And then we investigated the kinds and frequencies for the inquiry skill elements of the 6th and 7th curricular in the elementary and secondary school. The results were as follows: 1. The total kinds of inquiry skill element showed 17 kinds in the 6th curriculum and 23 kinds in the 7th. Therefore, the 7th curriculum was higher 1.4 times than the 6th curriculum in the kinds of skill elements. 2. The total frequencies for the inquiry skill elements of the 6th curriculum were 408 and those of the 7th were 729. Therefore, the 7th curriculum was about 1.8 times as many as the 6th. 3. In the kinds of inquiry skill elements according to the school levels, the course of the elementary school showed 14 kinds in the 6th curriculum and 18 kinds in the 7th. The course of middle school showed 7 kinds in 6th and 16 kinds in 7th. The integrated science course of high school was 10 kinds in the 6th and 10 kinds in the 7th. The skill elements in four science curricular of the high school course showed total 11 kinds in the 6th and 21 kinds in the 7th. And then the kinds of inquiry skill elements of the 7th curriculum in the middle and high school course showed about 2 times as many as the 6th curriculum. In the school level, the increase of skill elements showed the highest in the middle school course, and then in the high school course. 4. The total skill elements from the elementary school to the high school in the 6th science curriculum showed 17 kinds and in the order from the highest to the lowest rates, such as experimenting 20%, observing 15%, interpreting and analyzing data 13%, investigating 9%, measuring 7%, drawing a conclusion and assessment 7%, discussion 6%, communicating 5%, classifying 4%, recognizing problems and formulating hypothesis 4%, predicting 3%, designing and carrying out an experiment 3%, collecting and treating data 2%, manipulating skill 1%, modeling 0.5%, breeding and farming 0.3% and inferring 0.2%. 5. The total skill elements from the elementary school to the high school in the 7th curriculum appeared 23 kinds and in the order from the highest to the lowest rates, such as drawing a conclusion and assessment 31%, investigating 14%, collecting and treating data 8%, observing 7%, experimenting 7%, recognizing problems and formulating hypothesis 6%, interpreting and analyzing data 4%, measuring 3%, discussion 3%, manipulating skill 3%, modeling 3%, classifying 2%, project 2%, educational visits 1%, controlling variables 1%, predicting 1%, inferring 1%, operational definition 1%, communicating 1%, designing and carrying out an experiment 0.3%, breeding and farming 0.3%, applicating a number 0.2% and relating with time and space 0.2%. In the conclusion, the 7th curriculum was added 6 kinds of skill elements to the 6th curriculum, such as operational definition, applicating a number, relating with time and space, controlling variables, educational visits and project.

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Analysis of Concepts Related to Explanations of Evaporation and Boiling in Secondary School Science Textbooks (중등 과학교과서에서 증발, 끓음의 설명에 제시된 개념간의 관련 정도 분석)

  • Paik, Seong-Hey;Jeong, Ae-Kyung;Ko, Young-Hwan
    • Journal of The Korean Association For Science Education
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    • v.24 no.3
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    • pp.429-441
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    • 2004
  • This study was to examine the concepts using to explain evaporation and boiling in secondary school science textbooks developed in 6th and 7th science curriculum. The types of explanations were compared with maps represented the concepts relationships divided into middle and high schools, 6th and 7th curriculum, and subjects and chapters to find explanation diversity. The difference of explanations related to evaporation and boiling concepts was found in the school levels and subjects. There were few relationships between the main concepts of evaporation phenomena and those of boiling phenomena.

A Study on the 6th Middle School Science Curriculum and Its Implementation (제 6차 중학교 과학 교육과정과 그 운영에 대한 조사 연구)

  • Choe, Seung-Urn;Han, In-Ok;Oh, Phil-Seok;Pak, Sung-Jae
    • Journal of The Korean Association For Science Education
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    • v.19 no.4
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    • pp.622-634
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    • 1999
  • We have investigated the 6th middle school science curriculum and its implementation based upon the results of middle school science teachers' and professors' ratings and self-reportings. The national-wide survey was administrated to obtain the data from 213 teachers of 112 middle schools and 43 professors of colleges of education. The survey items correspond to four stages of science curriculum. In the stage of the planned science curriculum, 'goals', 'framework of contents' and 'contents' are relevant to the basic guideline for curriculum revision, 'the more emphasis on inquiry activities'. However, the amount of contents is not appropriate, and 'methods' are difficult to attain. In the stage of the written science curriculum, 'goals', 'framework of contents', 'contents', 'methods' and 'evaluations' are not useful for teachers to teach science. In the stage of the implemented science curriculum, a small number of teachers use the issues of local community, organize the different group activities, develop assessment tools cooperatively, and conduct a lesson and a program considering students' diversities. This is partially because of the large amount of learning contents, the lack of materials and the weakness of supporting system. Finally, in the stage of the attained science curriculum, the students' achievements under the 6th curriculum is not higher than those under the other curricula.

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An Analysis of Science Process Skills for K-12 Science Curriculum Articulation : Focused on the Concept of the State and the State Change of Matter (유치원, 초등, 중등 과학 교재의 연계성을 위한 탐구능력 분석 -물질의 상태 및 상태 변화 개념을 중심으로 -)

  • 백성혜;박진옥;박재원;임명혁;고영미;김효남;조부경
    • Journal of Korean Elementary Science Education
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    • v.20 no.1
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    • pp.91-105
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    • 2001
  • This study was to analyze science process skills related to 'state of matter' and 'state change of matter' in the kindergarten, elementary and middle school science textbooks. On the base of articulation, we analyzed science textbooks of the 5th kindergarten curriculum, the 6th elementary school science curriculum and the 6th middle school science curriculum. The findings indicated that the scientific inquiry abilities of predicting, classifying, hypothesizing and designing investigations are not enough in all grade science textbooks. Also, while young children have measuring ability theoretically, it was represented only in high grade textbooks. We concluded that these were inappropriate from the viewpoint of articulation which is related to scientific inquiry ability.

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A Study on a Lesson Plan for Middle School Chemistry by the Curriculum Differentiation on the Basis of Students’ Academic Characteristics in the 7th National Curriculum) (제 7차 교육과정에 따른 중학교 화학분야의 수준별 학습지도안 연구)

  • Eom, U Yong;Lee, Jang Hyeon;Kim, Jeong Seong;Yun, Mun Yeong
    • Journal of the Korean Chemical Society
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    • v.45 no.6
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    • pp.595-602
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    • 2001
  • The basic tenet of science education by the 7th national curriculum for middle school students is teaching by learner's academic levels. It is a kind of new approach to both of teachers and students, but there has been little preparation in school fields for the new approach. Therefore, this study reviewed the characteristics and constraints of the approach, and suggested the types of learning methods for the approach. And then this study explored the guidelines for writing a lesson plan for the science education by the 7th national curriculum. Specifically, this study presented an example of lesson plan for a unit of middle school chemistry.

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The Analysis of the Korean Middle School Students' Responses to Chemistry Problems Under the 6th National Curriculum in the Third International Mathematics and Science Study-Repeat (TIMSS-R) (제3차 수학 · 과학 성취도 국제 비교 반복 연구(TIMSS-R) 중 제6차 교육과정상의 화학 문항에 대한 우리 나라 중학생의 응답 분석)

  • Hong, Mi Yeong;Jeon, Gyeong Mun
    • Journal of the Korean Chemical Society
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    • v.46 no.2
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    • pp.169-176
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    • 2002
  • In this study, the chemistry achievement of the Korean 8th grade students in the Third Inter-national Mathematics and Science Study-Repeat(TIMSS-R), which was administered internationally in 1999,was analyzed. By the 6th national curriculum, 31 chemistry problems were selected from the categories of 'classification of matter', 'structure of matter', 'chemical reactivity and transformations', 'physical properties and physical changes of matter', 'heat and temperature', 'subatomic particles', 'pollution', 'scientific method',and 'scientific measurements' among the total 143 problems. Based on the analysis of the percentage of cor-rectness on each problem, the weak and strong points of the 6th curriculum were discussed. The implications for the development of national curriculum and textbook are suggested.

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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An Analysis of Problems Related to Cloud Making Experiments in School Science Textbooks and Development of an Experiment Based on the Thermodynamic Theories (열역학적 관점에 근거한 구름발생 실험의 문제점 분석 및 개선방안에 대한 고찰)

  • Park, Dong-Joe;Paik, Seoung-Hey;Kang, Seong-Joo
    • Journal of The Korean Association For Science Education
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    • v.21 no.3
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    • pp.547-557
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    • 2001
  • In this study, we compared the contents of cloud making experiments in middle school science textbooks of 5th and 6th science curriculum from the viewpoint of methods and apparatus. And we analyzed the problems of the experimental methods and apparatus based on the thermodynamic theories. A new experiment was developed to solve the problems, and the effects of new experiment were compared with those of the experiments in the textbooks.

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