• 제목/요약/키워드: Instructional objectives

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공학중심의 융합프로젝트 교수학습모형의 교육적 효과 (Educational Effects of an Instructional Model for Engineering-Centered Convergence Project)

  • 최지은;진성희;김학일
    • 공학교육연구
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    • 제21권1호
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    • pp.3-13
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    • 2018
  • The purpose of this study is to propose a teaching and learning model that can effectively manage convergence education, which is one of the concerns of university education, at the level of course. The pre-collaborative instructional design stage is to prepare the operation of the convergence project course. It shares the common goal and establishes a team of relevant professors to set up the actual convergence project topic and establishes cooperation relationships with industry or community as needed. In the convergence project activity, students will be able to understand the learning objectives, learning activities, evaluation methods, and explain the subject of the convergence project by proceeding with the whole orientation. Students organize teams of interest and conduct learning and design activities on convergence technologies and present their results. In the educational improvement activities, professors will share the lesson process and results and discuss improvements through the improvement seminar. As a result of analyzing the effectiveness of the proposed convergence project based teaching and learning model, the convergence project experience has improved the cooperative self - efficacy for the learners and the results were confirmed that students perceived to achieve the expected learning goal and satisfied with their experience.

예비수학교사교육에서의 플립드 러닝(Flipped Learning) 교수·학습 설계에 관한 연구 (A Study on Developing Instructional Model for Flipped Learning on Pre-Service Math Teachers)

  • 허난
    • 한국수학교육학회지시리즈E:수학교육논문집
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    • 제29권2호
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    • pp.197-214
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    • 2015
  • 본 연구는 예비수학교사교육에 적용하기 위한 학습자 중심의 플립드 러닝(Flipped Learning) 수업을 설계하여 플립드 러닝 교수 학습 방법의 활용 가능성을 탐색하는 것을 목적으로 한다. 연구의 목적 달성을 위하여 플립드 러닝 교수 학습 모형을 탐구하여 수업 설계를 하였다. 수업 설계는 전형적인 교수설계 과정의 주요단계를 포함하고 있는 ADDIE 모형을 기반으로 설계하였다. 교사 양성을 위한 예비교사 교육의 주된 목적을 달성하기 위하여 예비수학교사 교육의 필수 교과목인 수학교재연구지도법 교과목에 대한 플립드 러닝 교수 학습 설계모형의 단계와 단계별 구성요소를 고려하여 수업을 설계하고 그 단계를 수업 전, 수업 중, 수업 후 3단계로 나누어 제시하였다.

중등학교 과학교과의 수업방법 개발에 관한 연구 (A Study on Development of Instructional Methods in Secondary School Science)

  • 조희형;이문원;조영신;강순희;박종윤;허명;김찬종;송진웅
    • 한국과학교육학회지
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    • 제14권1호
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    • pp.34-44
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    • 1994
  • The major objective of this study was to develop effective teaching methods for middle school science. To achieve the objective, general characteristics of science teaching methods were discussed and the 6th national science curriculum was analyzed in terms of epistemological backgrounds, cognitive demand and organizational characteristics. It was analyzed that epistemological background of the curriculum was based on the traditional philosophy of science. It was also indicated that modern Philosophy of science was only partially reflected the objectives of the past curricula. The cognitive demand of the curricula has also been higher than students' actual level of cognitive development. Based upon these results of the analysis, several exemplary instructional methods were developed.

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대학교육에서의 CHANGE 플립러닝(Flipped Learning) 수업모형 개발 -교육방법및교육공학교과를 중심으로- (The Development of CHANGE Flipped Learning Instructional Model in Higher Education - base on the 'educational method and technology')

  • 정주영
    • 수산해양교육연구
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    • 제28권6호
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    • pp.1834-1847
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    • 2016
  • Main objectives of the this study are: to develop a model of "Flipped Leaning" that is designed to enhance self-directed learning, learning motivation and self-control, and to verify its effectiveness-in higher education. The verification process initially concentrated on the feasibility study of the model with a thorough literature review and case analyses; then, its general and practical applicability were tested with a field study. As a result, first, the CHANGE Class Model, specifically designed for effective and efficient "Flipped Learning", was developed. It is thus named for the stages that the learning process takes place in the model-i.e., (1) Check ${\rightarrow}$ (2) Ask ${\rightarrow}$ (3) Notice ${\rightarrow}$ (4) Group presentation ${\rightarrow}$ (5) Evaluation, and it emphasizes the dynamic, questions centered (i.e. back and forth between the students and the instructor as well as between the students) learning process. Second, the Model was instrumental in enhancing self-directed learning, learning motivation and self-control; thus, as a result, it significantly improved the effectiveness, the level of concentration and the attractiveness of the learning process. The value of this study lies in pointing to a clear plan to allow a student in higher learning to set-up a self-directed learning plan, to be able to control it while being continuously motivated to complete it.

중등학교 과학교육의 내실화 방안에 대한 연구:과학교육과정 (A study on the Program for Substantial Science Education In Secondary schools:Science Curriculum)

  • 조희형;이문원;조영신;한인숙
    • 한국과학교육학회지
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    • 제8권2호
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    • pp.1-16
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    • 1988
  • Secondary schools in Korea have been faced with several critical problems in their science education. Among them the most fundamental are the problems which involve the development and operation of science curricula. This study had, therefore, its objective to develop the suggestions for sabstantial science curricula of secondary schools. Actually the objectives are trifold as following specific description. ${\circ}$Analysis of the rationale and theory of science curricula. ${\circ}$Status survey of secondary science curricula and identification of the problems in development and operation of the curriculum in foreign and Korean secondary schools. ${\circ}$Development of suggestions for substantial science curriculam of secondary school. In order to attain these objectives the methods of literauare survey. questionaire and interview were used. Through these methods several problems are found and identified. The major findings and problems identified in this study are: ${\circ}$aims, goals, and objectives of science education are not dfferentiated. ${\circ}$the curricula show discipline-centered seleetion and organization of the content:neglect the relationship of science-technology-society and life-world context. ${\circ}$shortage of weekly instructional hours for science subjects. Other findings and problems are described and the descriptions of the suggestions for substantial curricula are followed at the end of this paper.

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과학의 본성의 측면에서 10학년 과학의 탐구 단원 분석 (Analysis of Inquiry Unit of Science 10 in Terms of Nature of Science)

  • 조정일
    • 한국과학교육학회지
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    • 제28권6호
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    • pp.685-695
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    • 2008
  • 과학의 본성의 관점에서 과학의 탐구 단원의 내용 분석을 실시하였다. 10종의 10학년 과학 교과서 탐구단원 속에 있는 학습 목표, 활동, 문장에서 과학의 본성에 대한 내용, 관점, 제시방법을 분석하였다. 10종 교과서의 학습 목표들은 과학의 정의, 과학자의 특성, 과학적 방법, STS로 대분류되었다. 한편 과학 지식의 특성과 모델 형성 등과 같은 구체적인 과학 지식의 본성에 대한 관점은 학습목표에 포함되지 않았다. 활동 총 38개 중 17개가 어떤 정보도 주지 않은 과제형으로 제시되었다. 21개는 기본 자료를 제공하고 그것을 기초로 활동하는 형식이었다. 어느 경우이든 그 활동을 통해 배워야할 NOS 요소와 그에 대한 타당한 관점에 대한 명시적 언급이 없거나 부족했다. 과학 교과서 문장도 4영역으로 분류될 수 있었으며 현대적 관점과 고전적 관점이 혼재되어 있었다. 특히 과학의 정의는 귀납주의적 진술이 많았고, 과학 지식의 생성은 이론 형성보다는 법칙의 발견으로 표현되었다. 교사 수준에서 NOS에 대한 학습 목표와 학습 내용 제시와 함께 분명한 관점이 반영된 읽을거리를 제공해야만 효과적인 과학의 본성 수업이 가능함을 제시하였다.

학업 성취도 평가도구의 내용 타당도 분석 - 수학과 3-가를 중심으로- (An Analysis of Content Validity of Third-Grade Mathematics Achievement Tests)

  • 김은아;강완
    • 한국초등수학교육학회지
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    • 제14권2호
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    • pp.177-196
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    • 2010
  • 본 연구의 목적은 한국교육과정평가원(KICE) 제작 학업 성취도 평가 도구와 교사 제작 학업 성취도 평가 도구의 내용타당도를 분석 비교하는데 있으며, 학교 현장에서 실시되는 학업 성취도 평가 도구의 개선을 위한 기초 자료를 제시하는데 그 의의가 있다. 학업 성취도 평가 도구의 내용 타당도를 검증하기 위하여 행동차원별, 내용차원별로 수업목표와 평가목표의 비율차 검증을 하였다. 그 결과 교사 제작 수학과 3-가 학업 성취도 평가도구와 한국교육과정평가원(KICE)에서 제작한 3학년 국가수준 기초진단 학업 성취도 평가도구는 행동차원과 내용차원에서 모두 내용타당도가 높은 것으로 나타났다. 이 연구는 교사 제작 학업 성취도 평가도구는 내용타당도는 높으나 평가 문항이 지식, 이해력, 적용력을 평가하는데 집중된 경향을 보여 창의력 신장을 위한 고등정신기능을 기르는 평가가 이루어지도록 평가 방법 개선 방안과 평가 도구 개발에 힘써야 할 것이며 각 학교간의 편차를 해소하기 위하여 많은 교사들의 상호 교류도 활발히 진행되어야 할 것임을 제언한다.

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중학생들의 인지수준과 과학교과 내용과의 관계 분석 (Relationships Between the Cognitive Levels of Students and Understanding of Concrete and Formal Science Content)

  • 최병순;허명
    • 한국과학교육학회지
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    • 제7권1호
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    • pp.19-32
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    • 1987
  • The primary purpose of this study was to assess understanding of concrete and formal operational science content by concrete and formal operational students in secondary school physical science classes. To carry out this study subjects were selected from junior high schools of over 2500 students, and they were identified as concrete, transitional, or formal operational using GALT(Group Assessment of Logical Thinking) developed by Roadrangka, Yeany and Padilla(1983). Instructional objectives were extracted from the science content taught during the second term of the academic year in the 7th, 8th and 9th grade, and they were classified as concrete or formal operational. Written test involving those objectives were constructed and administered. The results of this study suggested that formal operational thought brought deeper understanding to concrete science content as well as formal science content. Differential effects by sex on understanding of both concrete and formal science content were contradictory through the grade levels. Results of multiple comparison tests suggested that students categorized as formal operational demonstrated no better understanding of concrete science content than those categorized as transitional. However, they demonstrated better understanding of formal science content.

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초등 과학 포트폴리오 평가 도구 개발 연구 (Planning and Preparing for Portfolio Assessment in Elementary Science Classes)

  • 김찬종;윤선아;최승희;홍은석;김명수;여원미;김미숙;김순영;이주슬
    • 한국초등과학교육학회지:초등과학교육
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    • 제17권1호
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    • pp.11-21
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    • 1998
  • Portfolio assessment provides many opportunities to foster children's creativity and to increase their responsibility for learning. few research study has been conducted in this area, and this assessment method has scarcely been administered in primary science class, Proper and effective use of portfolio assessment in our primary science class requires basic research on how to design and administer the method. Based on the earlier study on typical structures and components of portfolio assessment, the assessment instrument was developed on various primary science topics, The development team was consisted of one science education specialist and nine pre-service elementary school teachers. It takes ten months to develop instruments for 27 class hours. The development process was reciprocal in that development and revision cycle was repeated more than 7 times. The portfolio assessment instruments consist of instructional objectives, developers' evidence for the objectives, and assessment criteria. Adopting a new way of assessment into science class inevitably causes lots of confusions to teachers and children. The absence of basic research studies must be a critical barrier for successful administration of a new assessment method such as portfolio assessment. further research is required in the preparation and administration of portfolio assessment in our primary science classroom.

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협동학습법을 적용한 가정과 학습지도안 모형 개발 : 중학교 가정의 인간발달과 가족관계 영역을 중심으로 (Home Economics Lesson Plan Model Development Based on Cooperative Learning Stategy : Focusing on Human Development and Family Relations Area)

  • 김수현
    • 대한가정학회지
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    • 제36권5호
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    • pp.59-74
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    • 1998
  • Home economics lesson plan model was developed based on cooperative learning stategy focusing on human development and family relations area. The cooperative learning is an instructional strategy that meets the challenge of helping students master home economics content objectives by acquiring and practicing the social skills that are essential in life for satisfactory relationships with peers, families, coworkers, and others in society. Through cooperative learning, students can satisfy their needs for friendship, power, belongs, and fun. Practical problems were selected in human development and family relations area for middle school students assuming that home economics is critical science. Lesson plans were developed according to the practical problems, "what should we do regarding the effective communication between family members\ulcorner".ner".uot;.

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