• Title/Summary/Keyword: Learning of Science

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탐색을 강조한 순환학습이 초등학생들의 과학학습 동기 및 과학적 태도에 미치는 영향 (The Influence of Learning Cycle Emphasized Exploration on Elementary School Students' Science Learning Motivation and Scientific Attitude)

  • 김순식
    • 대한지구과학교육학회지
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    • 제9권1호
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    • pp.54-64
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    • 2016
  • The purpose of this study was to see the influences of science class applying learning cycle emphasized exploration on science learning motivation and scientific attitude of elementary students. The results drawn from this analysis were as below. Firstly, positive relationship was found between science learning motivation and science class applying learning cycle emphasized exploration among the research group. This shows that science learning motivation was improved by science class applying learning cycle emphasized exploration. It indicates that science class applying learning cycle emphasized exploration is effective in improving science learning motivations. Secondly, positive relationship was found between scientific attitude and science class applying learning cycle emphasized exploration among the research group and this means that science class applying learning cycle that emphasizes exploration stimulates intellectual curiosity of elementary school students and improves their scientific attitude. Thirdly, students thought that science class applying learning cycle emphasized exploration was very effective to improve their satisfaction, interest, participation in their science classes. Above results show that science class applying learning cycle emphasized exploration is highly effective for elementary students. Thus, it is needed to utilize science class applying learning cycle emphasized exploration to current science class as it can promote wider scientific activities among elementary school students.

멀티미디어 과학 학습 프로그램의 개발과 과학 학업 성취, 학습에 대한 태도에 미치는 효과 연구 (Development of Computer Assisted Instruction Program in Multimedia Environment and its Effects on Science Achievement and Attitude towards Science Learning)

  • 임혜영;안희수
    • 한국과학교육학회지
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    • 제19권4호
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    • pp.595-603
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    • 1999
  • The purpose of this study was to develop the computer assisted instruction program in multimedia environment, to examine the relative effects of two types of multimedia learning on science achievement and attitude towards science learning and to investigate the effects of treatment and students' learning ability. The results of this study were summarized as follows: 1. On science achievement; The multimedia learnings were more effective than the traditional one. Difference between multimedia learning I (through individualistic learning) and multimedia learning II(through peer interaction) was not significant. There was not interaction effect of treatment and students' learning ability. 2. On attitude towards science learning; The multimedia learnings were more effective than the traditional one. The multimedia learning I (through individualistic learning) was more effective than the multimedia learning II (through peer interaction). There was no interaction of treatment and students' learning ability. 3. On students' perceptions on multimedia learning; The students in the multimedia classes showed the multimedia learning were good in causing interest. making students absorbed in studies, and giving many learning materials, but not good in a couple of points such as making students bored and not explaining in detail.

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초등과학교육에의 적용을 위한 뇌-기반 학습 연구의 교육적 의미 분석 (The Analysis of Researches on the Brain-based Teaching and Learning for Elementary Science Education)

  • 최혜영;신동훈
    • 한국초등과학교육학회지:초등과학교육
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    • 제33권1호
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    • pp.140-161
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    • 2014
  • The purpose of this study was to analyze 181 papers about brain-based learning appeared in domestic scientific journals from 1989 to May of 2012 and suggest application conditions in elementary science education. The results of this study summarizes as follows; First, learning activity suggested by brain-based learning study is mainly explained by working of brain function. Learning activity explained by brain-based learning study are divided into 'learning according to specialized brain function, learning according to brain function integration and learning beyond specialization and integration of hemispheres'. Second, it searched how increased knowledge of brain structure and function affects learning. Analysis from this point of view suggests that brain-based learning study affects learning in many ways especially emotion, creativity and learning motivation. Third, brain-based learning study suggests various possibilities of learning activity reflecting brain plasticity. Plasticity which is one of most important characteristics of brain supports the validity of learning activity as learning disorder treatment and explains the possibility of selective increment of brain function by leaning activity and the need of whole-brain approach to learning activity. Fourth, brain-based learning brought paradigm shifts in education field. It supports learning sophistication on the understanding of student's learning activity, guides learning method that reflects the characteristics of subject and demands reconstruction of curriculum. Fifth, there are many conditions to apply brain-based learning in elementary science education field, learning environment that fits brain-based learning, change of perspectives on teaching and learning of science educators and development of brain-based learning curriculum are needed.

Research and Implementation of U-Learning System Based on Experience API

  • Sun, Xinghua;Ye, Yongfei;Yang, Jie;Hao, Li;Ding, Lihua;Song, Haomin
    • Journal of Information Processing Systems
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    • 제16권3호
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    • pp.572-587
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    • 2020
  • Experience API provides a learner-centered model for learning data collection and learning process recording. In particular, it can record learning data from multiple data sources. Therefore, Experience API provides very good support for ubiquitous learning. In this paper, we put forward the architecture of ubiquitous learning system and the method of reading the learning record from the ubiquitous learning system. We analyze students' learning behavior from two aspects: horizontal and vertical, and give the analysis results. The system can provide personalized suggestions for learners according to the results of learning analysis. According to the feedback from learners, we can see that this u-learning system can greatly improve learning interest and quality of learners.

과학 학습에서 유발되는 과학상태호기심 및 과학상태불안 수준에 따른 학습효과 (Learning Effects According to the Level of Science State Curiosity and Science State Anxiety Evoked in Science Learning)

  • 강지훈;김지나
    • 한국과학교육학회지
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    • 제41권3호
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    • pp.221-235
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    • 2021
  • 본 연구는 초등학교 5~6 학년 학생을 대상으로 과학 학습 상황에서 과학상태호기심(Science State Curiosity; SSC) 및 과학상태불안(Science State Anxeity; SSA) 수준에 따른 학습효과를 구명하는데 목적이 있다. 이를 위해 과학 학습을 과학 문제 대면(I), 결과 확인(II), 과학 개념 학습(III)의 세 가지 상황으로 구분하여 각 학습 상황에서 SSC 및 SSA를 측정하여 분석하였다. SSC 및 SSA가 학습효과에 미치는 순 영향을 파악하기 위해 학습효과에 영향을 줄 것으로 예상되는 과학호기심, 인지욕구, 과학자아개념, 과학불안, 흥미를 통제하였다. 과학 문제 대면 상황에서의 SSC 및 SSA를 'SSCI' 및 'SSAI'으로, 결과 확인 상황에서의 SSC 및 SSA를 'SSCII' 및 'SSAII'로, 과학 개념 학습 상황에서의 SSC 및 SSA를 'SSCIII' 및 'SSAIII'로 정의하였다. 그리고 학습효과를 직후학습효과와 지연학습효과로 구분하여 사전검사 점수에 비하여 직후검사 또는 지연검사 점수가 향상된 정도를 산출하여 분석하였다. 분석결과, 직후학습효과는 SSCI·SSCII가 높을수록, SSAI·SSAII·SSAIII가 낮을수록 높았으며, 지연학습효과는 SSCI·SSCII가 높을수록, SSAIII가 낮을수록 높았다. SSC가 SSA보다 학습효과에 미치는 영향이 컸으며, 직후학습효과에는 SSCII가, 지연학습효과에는 SSCI이 가장 많은 영향을 미쳤다. 또한 SSCIII가 높을수록 추가적인 자발적 학습을 하는 경향이 나타났다. 본 연구의 결과는 과학 학습에서 학생의 정서적 상태에 대한 이해의 폭을 넓히고, 상태호기심 및 상태불안 연구에 대한 이론적 토대를 마련할 것으로 기대된다.

뇌-기반 학습 과학적 관점을 적용한 교수.학습 프로그램 분석 -초등학교 5학년 과학을 중심으로- (Analysis of Teaching-Learning Programs from the Perspective of Brain-Based Learning Science -Focused on 5th Grade Elementary Science-)

  • 이나연;신동훈
    • 한국초등과학교육학회지:초등과학교육
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    • 제30권4호
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    • pp.562-573
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    • 2011
  • The purpose of this study was to examine the effects of teaching-learning programs from the perspective of brain-based learning science. Four units in 5th grade elementary science programs of the Revised 2007 National Curriculum were selected as contents to study. As the brain-based learning science analysis method, equations of the brain compatibleness index (BCI) and contribution degree on the brain compatibleness index (BCICRE) were applied to them. This study showed that there were qualitative and quantitative differences among the analyzed teaching-learning programs through the unit and curriculum. The results showed that hands-on activities like experiments or open inquiry activities improved their evaluation of the teaching-learning programs. From the analyzing, teachers can judge whether each teaching-learning program made considered the brain of the learners. Furthermore, this study can provide useful information to consult of various science teaching-learning programs brain-based learning.

중학교 과학에서 탐구자료 활용 수업의 효과 (The Effects of Inquiry Instruction Utilizing Materials in Middle School Science)

  • 김상달;김찬기;김희정;주국영
    • 대한지구과학교육학회지
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    • 제1권1호
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    • pp.63-71
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    • 2008
  • The purpose for this study is to check if research activities can make positive effects on inquiry instruction utilizing materials when compared to traditional instruction utilizing the textbook. The effects of the class should be measured both in cognitive domain and in affective domain. The cognitive domain was measured by the change in achievements in learning science, and the affective domain was measured by the change in learning attitudes of science. The assumptions to be verified in this study were as follows. First, achievements in learning science are higher in the learner oriented inquiry instruction utilizing materials than in the learner oriented traditional instruction utilizing the textbook. Second, learning attitudes of science are higher in the learner oriented inquiry instruction utilizing materials than in the learner oriented traditional instruction utilizing the textbook.The results of the research are as follows. In the cognitive domain, achievements in learning science showed significant change(p=.045) measured by verifying the score for the difference among the averages for each sub-scale, in 5% of meaningful probability, and were higher in the inquiry instruction utilizing materials study. In the affective domain, learning attitudes of science showed significant change(p=.019) measured by verifying the score for the difference among the averages for each sub-scale, in 5% of meaningful probability, and were higher in the inquiry instruction utilizing materials study. In learning attitudes of science, 2 items(self-conception of science, attitudes of learning science) out of 3 items(self-conception of science, attitudes of learning science, learning habits of science) showed significant changes (p=.045, p=.001). But the difference(learning-habits of science) was not significant(p=.914).

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A Study on the Change in Science Grades and the Influence of Science Grades by Level according to Non-face-to-face and Face-to-face Teaching-Learning

  • Koo, Min Ju;Jung, Woong Jae;Park, Jong Keun
    • International Journal of Advanced Culture Technology
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    • 제10권3호
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    • pp.226-236
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    • 2022
  • We compared and analyzed the changes in students' science grades and their effects on science grades by level (upper, middle, and lower) according to non-face-to-face and face-to-face teaching-learning. 66 students from A Middle School in Gyeongsangnam-do were selected for the study. As a result of analyzing the change in science grades according to the teaching-learning type, the average score of science grades by non-face-to-face teaching-learning was lower than the corresponding score of science grades of face-to-face teaching-learning. As a result of comparing the level of understanding of learning content according to the evaluation type (paper-written, study-paper) in non-face-to-face and face-to-face teaching-learning, the average scores of science grades by paper-written and study-paper evaluations in non-face-to-face teaching-learning were significantly low. In addition, as a result of comparing the effect on science grades by level according to the teaching-learning type, the average score of science grades of lower-ranked students in non-face-to-face teaching-learning was relatively low.

과학수업 참여에 따른 초등학생의 학습과 정체성의 변화 - '계절의 변화' 단원을 중심으로 - (The Changes of Students' Learning and Identity through Science Class Participations - Focused on 'Seasonal Change' Unit -)

  • 이정아
    • 한국초등과학교육학회지:초등과학교육
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    • 제35권1호
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    • pp.39-53
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    • 2016
  • This study aimed to understand students' learning in elementary science classes in terms of participatory perspective. Participatory perspective is based on the participationist views on learning. Based on the participatory perspective, this study used two concepts of participationism: 'the changes of learning on commognition' of Sfard (2007) and 'the identity' of Wenger (1998/2007). Based on these concepts, four episodes of an elementary science class were analyzed. The results showed that students carried out their learning from objective-level learning to meta-level learning. And students defined who they are by identifying and negotiating scientific meaning during the learning. These results showed students become members of science community through their participations in science class.

중학교 과학 ‘지질’ 영역에서 e-Learning 활용 수업이 장·단기 파지에 미치는 효과 (The Effects of Instruction using the e-Learning in ‘Geological’ Unit of Middle School Science on Long and Short Term Retention)

  • 이재응;이용섭;김상달
    • 한국지구과학회지
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    • 제26권6호
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    • pp.469-476
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    • 2005
  • 본 연구에서는 7차 교육과정에서 크게 대두되고 있는 새로운 형태의 교수?학습방법의 한 형태인 e-Learning이 학습자의 파지에 어떠한 영향을 주는지 알아보고자 e-Learning을 이용하여 중학생들이 ‘지각의 물질’ 단원에서 장?단기 파지에 미치는 영향에 대해 알아보았다. 이를 위하여 경상남도 양산시의 중학교 1학년 2개 학급 72명을 대상으로 e-Learning을 활용한 수업 전-후에서 과학 학업 성취도와 e-Learning에 대한 인식을 조사해 본 결과는 다음과 같다. 첫째, e-learning 활용수업은 학습자의 단기파지에 효과를 나타내지 못하였다. 둘째, 장기파지에 미치는 효과는 유의수준 .05에서 유의미한 차이가 있는 것으로 나타났다. 셋째, e-Learning을 활용한 수업이 장기파지에 긍정적인 반응을 하는 것으로 나타났다.