• Title/Summary/Keyword: Secondary concepts

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Educational Needs Related to Clothing and Textiles Perceived by Secondary Students, Home Economics Teachers and Professors (중.고등학교 가정과목 의생활 분야 교육내용 연구 -학생, 교사, 전공 교수의 요구도 분석-)

  • 성화경
    • Journal of Korean Home Economics Education Association
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    • v.6 no.1
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    • pp.61-72
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    • 1994
  • The purpose of this research are (1) determining the basic concepts of clothing field which are included in the middle and high school home economics education curriculum ; (2) comparing the extent of need to those three groups; (3) classifying the basic concepts into units; (4) ana-lyzing the extent of need by units and providing basic data for curriculum revision. The data collecting methods of this research is questionair and the contents of this are the same. The subjects are 1085 students, 402 teachers and 80 professors. The data was analyzed by one-way ANOVA, scheffe test and factor analysis. The results were as follows: (1) 43 basic concepts were determined. (2) While the extent of need in the teachers and professors was high, that of students was me-dium or lower than the other two groups. (3)The extent of need to 40 concepts among three groups were significantly different. (4)According to the results from the factor analysis 7 units were formed. (5)‘Accurate dressing’was the most needed thing among three groups.

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Gifted Students Understanding of Science Concepts through Activities of Modifying of Scientific Conceptual Models

  • Kim, Jung-Kuk;Jeong, Seong-Oh;Kim, Young-Min
    • Journal of Gifted/Talented Education
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    • v.14 no.4
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    • pp.113-123
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    • 2004
  • The concern with scientific mode1s has been growing in science education, and schematic models are frequently used to teach science concepts in secondary schools. The aim of this study is to investigate how well the scientifically gifted students understand scientific concepts through activities of modifying scientific models which we developed. Thirty 8th-grade students participated in the study, 15 in a control group and 15 in an experimental group. For the students in the experimental group, teaching material with activities of modifying models, while for the students in the control group, the teaching material with traditional activities such as explanation, problem solving, and reading. The teaching contents in physics for both groups were linear momentum. We used multiple-choice test and essay-type test to evaluate students' achievements after lessons, and then compared their achievements of both groups. Through the research, we could find a clue that model-modifying activities are helpful for the gifted students to enhance their understanding of physics concepts, although the statistics does not show meaningful difference between experimental and control groups.

A Study on the Prospective Mathematics Secondary Teachers' Introduction of Concepts of Function (예비 중등 수학교사들의 함수 개념의 도입 방식 탐색)

  • Ma, Minyoung
    • Journal of the Korean School Mathematics Society
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    • v.25 no.3
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    • pp.225-241
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    • 2022
  • The purpose of this study is to analyze and present what aspects of the concept of function prospective mathematics secondary teachers emphasize when designing a class that introduces the concept of function using curriculum and textbooks. For this purpose, virtual instruction and reflections on virtual instruction were analyzed. The results are as follows. The prospective mathematics secondary teachers consider and introduce the concepts of function as correspondences and processes. Their conception of function was consistently observed during virtual instruction and reflections on virtual instruction. The prospective mathematics secondary teachers' conception of function was closely related to the form of expressing functions. These results provi e implications for prospective mathematics secondary teachers' education for introducing the concept of function based on the dependent relation between variables presented in the 2015 revision of the national mathematics curriculum.

A Study of the Validating Evaluation of Science Curriculum Sequence and Instructional Effectiveness with the Application and Hierarchical Analysis of Science Conceptions (과학개념의 위계적 분석 및 그 적용을 통한 교수 효과와 과학교육과정 계열성의 타당화 평가 연구)

  • Jeong, Jin-Woo;Cho, Seon-Hyeng;Lim, Cheong-Hwan
    • Journal of The Korean Association For Science Education
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    • v.16 no.1
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    • pp.1-12
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    • 1996
  • The purpose of this study is to investigate the psychological hierarchy structure of science concepts and to determine the effective teaching order by comparing the teaching effects of the psychological hierarchy order with those of teaching order of the current text in order to inquire validating evaluation framework of science curriculum sequence. Key concepts were selected by tasks analysis in the seven units of elementary and secondary school curriculum. Concept formation tests were developed to evaluate each concepts achievement,. The test items were made according to each of the concepts based on 12 prototype tasks developed by Frayer(1969). To identify the students' psychological hierarchy the test items were administrated to elementary and secondary school students. Ordering theory was used to identify the students' psychological hierarchy. Nonequivalent control group pretest-posttest design was used in this study as an experimental design. Teaching with psychological hierarchy order was applied tp experimental group and teaching with concept order described in the current text was applied to control group. The major results of this study are as followings: 1. The students' psychological hierarchy structures are different from logical hierarchy structures. 2. The science teachers' psychological hierarchy structures are different from not only logical hierarchy structures but also students' psychological hierarchy structures. 3. The mean score of experimental group applied psychological hierarchy order is significantly higher(p<.05) than the control group in the concept achievement.

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Content Analysis of Secondary School Environmental Education Textbooks and 10th Grade Science Textbooks (중등 환경 교과서와 10학년 과학 교과서의 공통 내용 분석)

  • Shin, Dong-Hee;Son, Yeon-A;Park, June-Hee
    • Hwankyungkyoyuk
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    • v.21 no.3
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    • pp.26-40
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    • 2008
  • This study aims to analyze the science content in secondary school environmental education(EE) textbooks and the environment-related content in secondary school science text- books. Firstly, a total of 73 EE and science textbooks for secondary students were reviewed, which three kinds of textbooks, secondary school EE textbooks and the 10th grade "Science" textbooks, were finally selected for analysis. Three researchers separately analyzed the textbooks using NAAEE framework(1996) for the development of EE materials. In condition that there was a disagreement in their opinion, they had discussed until they came to an agreement. The results showed that secondary school EE textbooks contained more and deeper science concepts than the 10th grade "Science" textbooks, which were evaluated better in all perspectives of the analysis framework. The 10th grade "Science" textbooks had more various teaching and learning activities than EE textbooks. It it expected that the new EE textbook developers should consider the ultimate goal of EE which focused the affective perspectives rather than the cognitive perspectives.

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Perspective Primary Teachers' Explanations of Liquid-State Phenomena (액체 상태에서의 현상에 대한 예비 초등교사의 설명)

  • Noh, Suk-Goo
    • Journal of Korean Elementary Science Education
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    • v.27 no.4
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    • pp.371-384
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    • 2008
  • The purposes of this study were to investigate perspective teachers' conceptions of liquid-state and get implications for the direction of science curriculum or professional development. The instrument was composed of seven questions focusing on aspects of liquid-state phenomena. The results showed that the participants have various alternative concepts about liquid-state. The problem revealed in almost every question was their macroscopic explanations for the phenomena. In addition, it appeared that the participants seemed to understand phenomena in terminology level, but they didn't know basic reasons or fundamental concepts about the phenomena. It is required to change the curriculum or instructional methods in secondary school and teacher education programs to anchor the scientific concepts on molecular or microscopic level.

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The Influence of Gender Schema on Children's Memory and Preference for Gender Related Tasks (아동의 성 도식과 성관련 과제의 기억 및 선호)

  • Chung, Soon Hwa;Chung, Ock Boon
    • Korean Journal of Child Studies
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    • v.15 no.1
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    • pp.37-53
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    • 1994
  • The primary purpose of this study was to investigate the validity of a component model of gender role and differences in children's gender concepts with age and sex. The secondary purpose was to investigate the relationship between children's gender schema and memory as well as preference for gender related task. 181 children were interviewed about gender concepts and gender related tasks. Results indicated that three dimensions of the component model (i. e., gender label-component links, within-component links, between-component links) were significantly related to each other. The mean scores of gender role knowledge and attitude were different with age but not with sex. The results of the regression analysis showed that children's age, sex, and gender role attitude explained both memory and preference for gender related tasks. The component model had better explanatory power than the simple model. The findings of the present study suggest that children's gender concepts are better described in terms of the component model than the simple model and may contribute to a theoretical rationale for gender schema theory.

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An analysis of strand map for instructional objectives on the 7th curriculum in elementary and secondary biology (제 7차 교육과정의 초.중등 생물 수업 목표의 연계성 지도 분석)

  • Kim, Young-Shin;Kim, Hu-Ja;Sonn, Jong-Kyung;Jeng, Jae-Hoon
    • Journal of The Korean Association For Science Education
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    • v.29 no.6
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    • pp.693-711
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    • 2009
  • One of the most important objectives in science education is to develop students' science literacy. The purpose of this study is to analyze the relevance between biology instructional objectives in the 7th curriculum taught in elementary and secondary schools. For this study, 7 major parts in each grade were analyzed including cell, the form and function of plants, the form and function of animals, genetics, diversity, evolution, ecology, and environment. The strand map of instructional objectives is completed that represents the relation between the objectives. The summary of the results from this study is as follows. First, the concept about cells is not fully covered in lower grades including elementary schools. While the concept of energy metabolism is repeatedly covered, there is no concept of energy covered in learning the concept of energy metabolism in elementary schools. Second, the textbooks in elementary and middle schools have main concepts about the form and function of plants while those in high schools don't. The concept related to the part of the form and function of animals is repeatedly involved in the curriculum throughout the elementary, middle, and high schools. Third, the concepts such as genetics and evolution are involved in higher grades since these concepts are abstract ones. The part of genetics and evolution as well as diversity has no connection between grades in schools, so the development of "notion between" is necessary to relate these concepts with each other. Fourth, the 4 parts of diversity, ecology and environment, evolution, and the form and function of plants are covered in limited grade levels. The results of the relevance of gene in lesson goals will play an important rein as the primary material in developing the connection between textbooks in which lesson goals are closely related to each other throughout all grade levels in elementary, middle and high schools.

THE PRE-SERVICE SECONDARY TEACHERS' PRESCRIPTION FOR THE MIDDLE SCHOOL STUDENTS' ERRORS IN LINEAR FUNCTIONS

  • KIM, HUIJIN;PYO, SUNG-SOO;KWON, JONGKYUM
    • East Asian mathematical journal
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    • v.31 no.4
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    • pp.609-625
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    • 2015
  • This study was subjected to 9th graders after making a conformity analysis about errors in function from a selected linear function domain learned in 8th grade, and using this we analyzed some errors learners have in the linear function domain. Learners showed the most deficiency in mastery of prerequisite facts concepts out of errors in linear functions and lack of skill in interpreting the content of the questions and technical errors occurred often as well. How the pre-service secondary school teachers prescribed these errors of linear function was analyzed from the point of problem solving strategies, accessing methods and whether or not the learner's error was used. Looking into the pre-service secondary teachers' prescription of the learners' errors in 3 fields, for the problem solving strategy a procedural strategy was used more than a conceptual strategy, and as for the accessing methods over 90% gave teacher led type explanations to the students. Also over 90% of pre-service secondary teachers did not use the learner's errors that turned up in problems.

An Analysis on Surge Voltage Transfer Phenomena of Transformers by Minor Network (Minor netowrk에 의한 변압기의 충격전압파의 이행현상해석)

  • 이승원
    • 전기의세계
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    • v.20 no.6
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    • pp.7-18
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    • 1971
  • Secondary-side transfer phenomena of primary-side surge voltage in concentric-cylindrical transformers of a high turn-ratio still present a problem in transformer insulation design even in the case of a neutral solid-grounding type. The conventional methods of analyzing them so far are much complicated for practical applications. Therefore, this paper describes a new approach to the analysis of secondary-side transfer phenomena of surge in concentric-cylindrical transformers of high turn-ratio and solid-grounding type. This generalized approach is thought to be more simple with the use of minor network concepts than the conventional one by major network only. The result shows that the secondary-side transfer phenomena of surge voltage could not be neglected even in concentric-cylindrical transformer of high turn-ratio and solid-grounding type, and will be satisfactorily applicable to the design of neutral-solid-grounding type transformers.

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