• 제목/요약/키워드: Creative Learning Process

검색결과 267건 처리시간 0.027초

드로잉 교육의 뇌과학적 기제 연구 - 애니메이션 드로잉을 중심으로 (A Study on the Brain Scientific Mechanism of Drawing Education - Focusing on the Animated Drawing)

  • 박성원
    • 만화애니메이션 연구
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    • 통권36호
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    • pp.217-236
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    • 2014
  • 본 연구는 애니메이션의 전문적인 특성을 고려한 드로잉 교수법을 연구하기위한 문헌분석 과정으로 뇌의 기능과 학습, 창작 기제를 고려한 교수법을 적용하면 애니메이션 드로잉능력이 효율적으로 신장될 것이라는 관점의 연구를 위한 원리분석 과정이다. 최근 들어 각 분야의 교육방법에 대한 대안적인 논의로 뇌기반 학습원리가 적용된 연구결과들이 발표되고 있다. 이는 미술과 드로잉 교육 뿐만 아니라, 예술전반적인 교육적 대안으로 적용 실시되고 있다. 반면, 애니메이션 드로잉은 미술적 소양을 필요로 함과 동시에 움직임에 대한 구조적 지식과 인지적 감각, 소통방식을 숙련할 수 있는 종합적인 교수법을 요하는 것에 비해 전문적인 교수법 개발 연구는 미진하다. 이에 효과적인 교육의 원리를 뇌의 기제로 바라보고 뇌가 학습하고 창의성을 발휘하게 되는 원리를 분석하여 본다. 또한 그림그리기와 뇌의 기능에 대한 원리관계를 통해 드로잉과 뇌의 관계를 알아본다. 그 결과 구조와 형태를 그릴 수 있는 인지적 정보를 관할하는 좌뇌 뿐만 아니라, 그리기와 직접적 관련이 있는 우뇌를 통합 발달시켜야 하며, 창의성이 발현되기 위해서는 물리적, 심리적 요소가 발현되는 통합적 뇌의 기제를 이해한 교수법이 개발되어야함이 드러났다. 애니메이션드로잉교육은 드로잉 능력에 필요한 예술적 창의 속성을 발휘하는 방법을 교육하는 것이기 때문이다. 이 과정은 기존의 애니메이션드로잉 교수법과의 차별성을 찾아내는 토대가 될 뿐만 아니라, 뇌기반-원리는 이후 교육의 전략과 방법 모형을 설계하는데 핵심적인 전략적 정의로 선정될 것이다.

이차함수와 타원의 문제해결 지도를 위한 멀티미디어 학습자료 개발 (Development of Instructional Models for Problem Solving in Quadratic Functions and Ellipses)

  • 김인수;고상숙;박승재;김영진
    • 대한수학교육학회지:수학교육학연구
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    • 제8권1호
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    • pp.59-71
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    • 1998
  • Recently, most classrooms in Korea are fully equipped with multimedia environments such as a powerful pentium pc, a 43″large sized TV, and so on through the third renovation of classroom environments. However, there is not much software teachers can use directly in their teaching. Even with existing software such as GSP, and Mathematica, it turns out that it doesn####t fit well in a large number of students in classrooms and with all written in English. The study is to analyze the characteristics of problem-solving process and to develop a computer program which integrates the instruction of problem solving into a regular math program in areas of quadratic functions and ellipses. Problem Solving in this study included two sessions: 1) Learning of basic facts, concepts, and principles; 2) problem solving with problem contexts. In the former, the program was constructed based on the definitions of concepts so that students can explore, conjecture, and discover such mathematical ideas as basic facts, concepts, and principles. In the latter, the Polya#s 4 phases of problem-solving process contributed to designing of the program. In understanding of a problem, the program enhanced students#### understanding with multiple, dynamic representations of the problem using visualization. The strategies used in making a plan were collecting data, using pictures, inductive, and deductive reasoning, and creative reasoning to develop abstract thinking. In carrying out the plan, students can solve the problem according to their strategies they planned in the previous phase. In looking back, the program is very useful to provide students an opportunity to reflect problem-solving process, generalize their solution and create a new in-depth problem. This program was well matched with the dynamic and oscillation Polya#s problem-solving process. Moreover, students can facilitate their motivation to solve a problem with dynamic, multiple representations of the problem and become a powerful problem solve with confidence within an interactive computer environment. As a follow-up study, it is recommended to research the effect of the program in classrooms.

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고등학생을 위한 공학 설계 기반 과학 교육 프로그램 개발 및 적용 (The Development and Application of a Science Education Program Based on Engineering Design Process for High School Students)

  • 한화정;심규철
    • 한국과학교육학회지
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    • 제43권3호
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    • pp.321-331
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    • 2023
  • 본 연구는 고등학교 학생을 위한 공학 설계 기반 과학 교육 프로그램을 개발하고, 이를 적용하여 고등학생의 과학 관련 태도와 공학 설계 능력에 미치는 효과를 알아보고자 하였다. 본 연구에서 개발한 공학 설계 기반 과학 교육 프로그램은 '바른 자세를 유지할 수 있는 건강 신발 만들기'이며 공학 설계 과정인 문제 정의, 정보 수집, 창안, 구현, 평가 및 반성 등의 과정을 거쳐 학생이 일상생활의 문제를 해결하기 위해 공학 설계 과정을 방법론적으로 사용하여 창의적인 해결방안을 창안할 수 있는 활동으로 구성하였다. 공학 설계 기반 과학 교육프로그램을 적용한 결과, 고등학생의 과학 관련 태도와 공학 설계 능력이 향상되었다. 따라서 본 연구에서 개발한 공학 설계 기반 과학 교육 프로그램은 고등학생의 과학 관련 태도와 공학 설계 능력 향상에 긍정적인 영향을 주고 있으며, 앞으로의 미래 과학 인재 양성을 위한 교수 학습 전략으로서 과학 교육에서 공학 설계 과정을 접목한 활동의 지속적인 운영과 확대가 필요함을 시사한다.

블렌디드 교육방식을 활용한 가상공간 디자인 적용에 관한 연구 -알 라 카르테 모델 (A La Carte) 인포그래픽 가상공간 제작을 중심으로- (A Study on the Application of Virtual Space Design Using the Blended Education Method - A La Carte Model Based on the Creation of Infographic -)

  • 조현경
    • 문화기술의 융합
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    • 제8권5호
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    • pp.279-284
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    • 2022
  • 블렌디드 러닝방식을 통해 디자인 교육에 대한 블렌디드 러닝 방식의 연구로서, 더 발전된 학습자 주도의 맞춤형 디자인 교육이 가능한 것을 제안하고자 한다. 대면 수업에서의 이해와 비대면에서의 장점을, 원격 수업에서 적절한 방식으로 보충할 수 있다. 발전한 인공지능과 빅데이터 기술은 디자인 분야 수업에서의 정량화된 데이터를 토대로 학습자의 수준과 관심에 맞는 개별화되고 세분화 된 맞춤형 학습 자료와 효과적인 학습 방법을 제공할 수 있다. 본론에서는 알 라 카르테 모델 (A La Carte) 제안을 통한 시·공간의 제약을 넘는 방식의 적용으로 수업의 효율을 극대화를 제안하였다. 언제 어디서나 들을 수 있는 원격 수업으로 소외 지역에 사는 학생들에게 제공되는 교육의 질과 교육 격차 해소에도 가능하다. 창의융합형 미래 인재를 양성하는 목표로서, 빠른 기술 발전 속도를 가지고 달라지고 있기에. 이에 발맞춘 학습 방법의 변화에 적응력을 지닐 필요가 있다. 알 라 카르테 모델 (A La Carte) 제안을 통한 인포그래픽 가상공간 디자인과 구축과정에 대한 분석을 제시하였다. 단순히 지식을 습득하는 것이 아니라, 지식을 선별하고, 구분하고, 학습하고, 자신만의 지식으로 손쉽게 재탄생시킬 수 있을 것으로 기대한다.

네트워크 구조와 조직학습문화, 지식경영참여가 개인창의성 및 성과에 미치는 영향에 관한 실증분석: SI제안팀과 R&D팀의 비교연구 (Exploring Influence of Network Structure, Organizational Learning Culture, and Knowledge Management Participation on Individual Creativity and Performance: Comparison of SI Proposal Team and R&D Team)

  • 이건창;서영욱;채성욱;송석우
    • Asia pacific journal of information systems
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    • 제20권4호
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    • pp.101-123
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    • 2010
  • Recently, firms are operating a number of teams to accomplish organizational performance. Especially, ad hoc teams like proposal preparation team are quite different from permanent teams like R&D team in the sense of how the team forms network structure and deals with organizational learning culture and knowledge management participation efforts. Moreover, depending on the team characteristics, individual creativity will differ from each other, which will lead to organizational performance eventually. Previous studies in the field of creativity are lacking in this issue. So main objectives of this study are organized as follows. First, the issue of how to improve individual creativity and organizational performance will be analyzed empirically. This issue will be performed depending on team characteristics such as ad hoc team and permanent team. Antecedents adopted for this research objective are cultural and knowledge factors such as organizational learning culture, and knowledge management participation. Second, the network structure such as degree centrality, and structural hole is used to analyze its influence on individual creativity and organizational performance. SI (System Integration) companies are facing severely tough requirements from clients to submit very creative proposals. Also, R&D teams are widely accepted as relatively creative teams because their responsibilities are focused on suggesting innovative techniques to make their companies remain competitive in the market. SI teams are usually ad hoc, while R&D teams are permanent on an average. By taking advantage of these characteristics of the two kinds of teams, we will prove the validity of the proposed research questions. To obtain the survey data, we accessed 7 SI teams (74 members), and 6 R&D teams (63 members), collecting 137 valid questionnaires. PLS technique was applied to analyze the survey data. Results are as follows. First, in case of SI teams, organizational learning culture affects individual creativity significantly. Meanwhile, knowledge management participation has a significant influence on Individual creativity for the permanent teams. Second, degree centrality Influences individual creativity significantly in case of SI teams. This is comparable with the fact that structural hole has a significant impact on individual creativity for the R&D teams. Practical implications can be summarized as follows: First, network structure of ad hoc team should be designed differently from one of permanent team. Ad hoc team is supposed to show a high creativity in a rather short period, implying that network density among team members should be improved, and those members with high degree centrality should be encouraged to show their Individual creativity and take a leading role by allowing them to get heavily engaged in knowledge sharing and diffusion. In contrast, permanent team should be designed to take advantage of structural hole instead of focusing on network density. Since structural hole can be utilized very effectively in the permanent team, strong arbitrators' merits in the permanent team will increase and therefore helps increase both network efficiency and effectiveness too. In this way, individual creativity in the permanent team is likely to lead to organizational creativity in a seamless way. Second, way of Increasing individual creativity should be sought from the perspective of organizational culture and knowledge management. Organization is supposed to provide a cultural atmosphere in which Innovative idea suggestions and active discussion among team members are encouraged. In this way, trust builds up among team members, facilitating the formation of organizational learning culture. Third, in the ad hoc team, organizational looming culture should be built such a way that individual creativity can grow up fast in a rather short period. Since time is tight, reasonable compensation policy, leader's Initiatives, and learning culture formation should be done In a short period so that mutual trust is built among members quickly, and necessary knowledge and information can be learnt rapidly. Fourth, in the permanent team, it should be kept in mind that the degree of participation in knowledge management determines level of Individual creativity. Therefore, the team ought to facilitate knowledge circulation process such as knowledge creation, storage, sharing, utilization, and learning among team members, which will lead to team performance. In this way, firms must control knowledge networks in permanent team and ad hoc team in a way mentioned above so that individual creativity as well as team performance can be maximized.

증강현실을 이용한 아동교육프로그램 모델제안 (Using Augmented Reality Programs For Children Proposed Research Model)

  • 권미란;김정일
    • 한국산학기술학회논문지
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    • 제13권2호
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    • pp.866-871
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    • 2012
  • 대부분의 증강현실은 컴퓨터로 구현하는 3차원, 혹은 그래픽이나 영상을 통한 가상공간을 의미한다. 증강현실은 참여자를 가상현실에 몰입시키고 가상현실 세계를 변화시키는 과정으로 진행된다. 특히, 아동 게임분야는 증강현실 기술적 특성과 잘 부합하여 아동들에게 더욱 흥미와 창의성을 유발할 수 있는 분야로 지목된다. 본 연구에서는 아동게임 학습효과를 극대화하기 위해 보드게임의 효과와 증강현실기술의 특성에 대해 살펴보고 아동교육프로그램의 새로운 모델 제안을 제시하고자 한다.

핵심역량과 과학과 교과역량에 대한 초등 교사의 인식 분석 (Analysis of Awareness of Teachers for Core Competencies and Scientific Core Competencies)

  • 하지훈;신영준
    • 한국초등과학교육학회지:초등과학교육
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    • 제35권4호
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    • pp.426-441
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    • 2016
  • The purpose of this study was getting the information for successful application to the national curriculum and students' core competencies enhancement, through investigation about competencies discussed in 2015 revised national curriculum development process and analysis about perception of 150 elementary school teachers in study. The results were as follows : Communication skill is considered to be the most important. Thinking ability what has been important traditionally is the middle of the rankings. Elementary school teachers think that a competency is specific to a subject. From this point of view, Creative/Scientific Problem-Solving Ability is the most important in science. They think that the enhancing of the ability of inquiry performance is highlighted in current science class. On elementary school teachers' awareness, inquiry model is the most effective in enhancing of scientific thinking and the ability of inquiry performance. And STS instruction model is in the other. PBL learning model and experimental inquiry model is the most effective in enhancing a competency has the highest feasibility like scientific thinking or the ability of inquiry performance.

실습능력 향상을 위한 전자 설계교육에 대한 연구 (A Study on the Improving Practical Education for Electronic Design Ability)

  • 이원석;안태원
    • 전자공학회논문지
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    • 제51권9호
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    • pp.223-228
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    • 2014
  • 본 논문에서는 학과 교과과정의 이론을 바탕으로 하여, 개선된 트레이닝 키트를 기반으로 한 전자 설계 실습능력 향상교육에 대하여 다룬다. 학생들은 개선된 전자 설계 프로젝트 실습교육을 통하여 회로의 이해력 및 분석력을 키우고, 전자부품의 조립 및 측정 등으로 실무와 밀접한 프로세스를 익히게 된다. 본 논문에서 제시하는 실습교육 방안은 회로의 분석력과 이해력 증대 및 회로 제작의 성취감과 자신감을 증대시킬 수 있을 것으로 생각되며, 학생들의 창의적 전자 설계 프로젝트 실습교육에 효과적으로 활용될 수 있을 것으로 기대된다.

간호전문직 자율성(Professional Nurse Autonomy)의 개념분석 (Concept Analysis of Professional Nurse Autonomy)

  • 지성애;유형숙
    • 대한간호학회지
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    • 제31권5호
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    • pp.781-792
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    • 2001
  • Professional nurse Autonomy is an essential attribute of a discipline striving for full professional status. Purpose: This study was to clarify the concept of professional nurse autonomy to provide basic data needed for development of professional autonomy enhancing strategies. Method: This study use the process of Walker & Avante's concept analysis based on Wade's research (1999), and field data of 21 nurses. Results: Professional nurse autonomy is defined as competency and creative performance of the professional nurse in practice, to decide independently or interdependently nursing activities and to be had accountable for results of decisions, that reflect advocacy and caring. It was identified that critical attributes include responsible discretionary decision making, collegial interdependence, initiative, creativity, and caring, advocacy, cooperative relationship with clients, receptive capacity to others, activeness, self confidence, and devotion and responsibility to their profession. Antecedents include personal characteristics, educational background, experience and structural characteristics that enhance professional nurse autonomy. Consequences of professional nurse autonomy are feelings of self-efficacy, empowerment, job satisfaction, reduction of intention to leave their job. Conclusion: According to these results, it is recommended that the curriculum provides an environment for learning professional nurse autonomy, and that is used as basic data to develope strategies to enhance professional autonomy of nurse in practice and it's effects

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Development and application of a STEAM program using classroom wall gardens

  • Kwack, Hye Ran;Jang, Eu Jean
    • 인간식물환경학회지
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    • 제24권4호
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    • pp.365-376
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    • 2021
  • Background and objective: This study aims to develop and apply programs in agriculture and life sciences for promoting divergent thinking in STEAM using classroom wall gardens. The process of the STEAM program such as presentation of the situation, creative design, and success experience is proposed to utilize STEAM education as a distinguished program. Methods: Four types of classroom wall gardens were used in this program, such as the 'plaster pot wall garden', 'attachable LED wall garden'. 'coffee pack wall garden', and 'hanging wall garden' for each classroom. For this purpose, official letters were sent to relevant institutions (elementary schools) specified by the research institute, and classes were conducted on the selected elementary school students. Results: A satisfaction survey and effect analysis were conducted on the students participating in the program. The program was designed to take a total of 11 hours, comprised of teaching plans including the topics, purpose of production, subject outlines, learning goals, and elements of STEAM subjects and stages. Conclusion: According to the survey on student satisfaction and understanding, it was found that students participating in the program have a high level of understanding and participation, as well as increased interest in science. Also, the program helped the students to connect with other subject areas. The level of student satisfaction was especially high in the upper grades. It is believed that the results of this research contribute to the development of STEAM education programs in agriculture and life sciences as well as other subject areas.