• 제목/요약/키워드: science learning environment

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문화적 관점에서 학습환경 검사 도구 재해석하기 - 과학 교실문화 이해를 위한 활용가능성 탐색 - (Reinterpretation of Learning Environment Instruments from Cultural Perspectives - Exploring the Applicability for Understanding Science Classroom Cultures -)

  • 장진아;나지연;송진웅
    • 한국초등과학교육학회지:초등과학교육
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    • 제34권2호
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    • pp.238-251
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    • 2015
  • This study, based on literature review and theoretical discussion, reinterprets the learning environment instruments from cultural perspectives and suggests the applicability of learning environment instruments for understanding science classroom cultures. To do this, the existing learning environment instruments are first investigated and compared in terms of their features and utilizations appeared in previous studies. The learning environment instruments are then reinterpreted in the light of culture. Finally, we suggest the possibilities to use the learning environment instruments to understand science classroom cultures. The results of this study can be summarized as follows. First, the learning environment instruments, by interpreting them culturally, could be interpreted in cultural ways and used as the alternative ways to explore science classroom cultures. Second, the learning environment instruments, such as WIHIC and CLEQ, could be interpreted both along the dimension of phenomena in classrooms and the dimension of students' psychology in order to investigate science classroom cultures. Third, the instrument items could be interpreted culturally in different ways according to the description types of instrument items. Thus, when learning environment instruments are used in culture research, the description types should be sufficiently taken into account. Based on the results of this study, educational implications are discussed in terms of exploring classroom cultures and of culture research.

온-오프라인 혼합 학습환경에서 중등과학교사의 학습환경 특이적인 PCK 요소 및 하위요소 (Secondary Science Teachers' PCK Components and Subcomponents Specific to the Learning Environment in an Online-offline Mixed Learning Environment)

  • 김지수;최애란
    • 대한화학회지
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    • 제66권6호
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    • pp.472-492
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    • 2022
  • 본 연구는 온-오프라인 혼합 학습환경에서 중등과학교사의 학습환경 특이적인 PCK 요소 및 하위요소 탐색을 목적으로 하였다. 중등과학교사 12명을 대상으로 설문, 개별 면담, 수업 관찰 자료를 수집하여 PCK 이론적 틀을 기반으로 연역적으로 분석하고 다시 귀납적 분석을 통해 그 범주를 정교화하였다. 온-오프라인 혼합 학습환경에서 본 연구 교사들의 PCK는 요소별로 학습환경 특이성이 다르고 학습환경 특이성에 따라 PCK 요소별 하위요소가 다른 것으로 나타났다. 온라인 학습환경 특이적인 과학 교수 지향으로 '과학 개념 학습' 목표 지향과 '강의식 수업'의 과학 교수-학습 지향이 있었다. 온-오프라인 혼합 학습환경 특이적인 교육과정에 관한 지식에는 '교육과정 재구성'이 있었으며, 온라인 학습환경 특이적인 교육과정에 관한 지식에는 '학습 목표 선정', '교육과정 자료'가 있었다. 온라인 학습환경 특이적인 과학 교수전략에 관한 지식에는 '과학 주제 특이적 전략', '과학 교과 특이적 전략', '상호작용 전략'이 있었다. 코로나 19 이후 오프라인 학습환경 특이적인 과학 교수전략에 관한 지식에는 '과학 주제 특이적 전략', '상호작용 전략'이 있었다. 온라인 학습환경 특이적인 학생의 과학 학습에 관한 지식에는 '학습을 위한 선지식', '학습 어려움', '학습 동기 및 흥미', '학습 다양성'이 있었으며, 코로나 19 이후 오프라인 학습환경 특이적인 학생의 과학 학습에 관한 지식에는 '학습 어려움'만 있었다. 과학 학습 평가에 관한 지식은 온-오프라인 혼합 학습환경 특이적인 지식과 온라인 학습환경 특이적인 지식이 있었으며, 각각 '평가 내용'과 '평가 방법'이 있었다.

과학교사에 의해 조성되는 심리적 학습환경이 학생들의 과학 성취도에 미치는 효과 (The Effects of the Psychological Learning Environment by Science Teachers on Students' Science Achievement)

  • 이재천;김범기
    • 한국과학교육학회지
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    • 제19권2호
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    • pp.315-328
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    • 1999
  • 과학 및 과학교과에 대한 학생들의 정의적 인식이 어떻게 하면 긍정적인 방향으로 행동변화를 가져올 수 있는가?에 연구의 목적을 가지고서, 과학수업 과정에서 교사에 의한 학습환경의 분위기나 풍토를 조성하는 심리적 측면이 학생들의 성취도에 미치는 영향을 조사하였다. 1년간 동일한 교사로부터 과학수업을 받은 중 고등학교 2, 3학년학생들이 가지고 있는 교사인식을 바탕으로 심리적 학습환경을 측정하고, 이 환경인식에 따른 과학불안 인식, 과학에 대한 태도, 과학 탐구능력, 과학성취도와의 관계 및 효과를 조사하였다. 이를 토대로 밝혀진 결과는 심리적 학습 환경은 학생들의 정의적 인식 성향과 인지적 학습결과에 직 간접적인 효과를 주며, 유의한 정적 상관을 보였다. 즉, 교사가 조성하는 수업태도, 인성특성, 학습분위기, 수업행동, 지원적 행동 등은 학생들의 과학에 대한 정의적인 행동특성을 변화시킬 수 있는 수업의 사태로써 유의하게 작용할 수 있으며, 과학 성취에도 의미있게 작용한다는 점을 시사해주고 있다.

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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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The Effect of Changes of Learning Systems on Learning Outcomes in COVID-19 Pandemic Conditions

  • HUTAHAYAN, Benny
    • The Journal of Asian Finance, Economics and Business
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    • 제8권3호
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    • pp.695-704
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    • 2021
  • This study aims to determine the effect of changes in learning systems and its effects on students' learning outcomes amid the Covid-19 pandemic. The sample of this study are the students who are in Jakarta, Indonesia. "Non-probability random sampling" technique has been used to select the samples while the sampling method used is "purposive sampling", where criteria are used to select samples. The samples in this study are 200 people taken randomly using Google Form. Concentration ability and learning interest can affect learning outcomes with the mediation of learning comfort and a good learning environment. As well as physical distancing can moderate the effect of concentration ability and learning interest on learning outcomes. The ability to concentrate on improving learning outcomes requires psychomotor improvement. Whereas interest in learning with indicators of learning awareness can improve learning outcomes. A clean environment is a strength in the learning comfort and the community environment can be recommended in the learning environment. The implementation of the restriction of gathering becomes an important point of physical distancing. The other novelties are the learning comfort and the learning environment as mediating variables and physical distancing as moderating variables in one study at a time.

교육대학교 학생의 구성주의 과학 학습 환경에 대한 인식 조사 (A Constructivist Science Learning Environment Survey for Korean Pre-service Elementary School Teachers)

  • 권성기
    • 한국초등과학교육학회지:초등과학교육
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    • 제32권2호
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    • pp.198-205
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    • 2013
  • For assessing classroom environment, numerous instruments were developed and reported the survey results for science students in science education. In this study I translated Constructivist Learning Environment Scales (CLES) were into Korean versions for elementary school teachers, and measured the reliability. The subjects were randomly selected from three departments of an University of Education in a metropolitan city. All of them were 110 students, who would be elementary school teachers. According to the survey results, pre-service teachers for elementary school have recognized constructivistly for learning environments in an actual forms. In a scale of student negotiation they have most constructivistly recognized learning environment, and moderately in scales of relevance, uncertainty and critical view while they have seldom constructivistly recognized in a scale of shared control. Also Korean version CLES would be an reliable instruments for constructivist assessing learning environments.

Development of an e-Learning Environment for Blended Learning

  • Ahn, Jeong-Yong
    • Journal of the Korean Data and Information Science Society
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    • 제17권2호
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    • pp.345-353
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    • 2006
  • Over the past few years, training professionals have become more pragmatic in their approach to technology-based media by using it to augment traditional forms of training delivery, such as classroom instruction and text-based materials. This trend has led to the rise of the term blended learning. Blended learning, an environment of e-learning, is a powerful learning solution created through a mixture of face-to-face and online learning delivered through a mix of media and superior learning experiences. In this article we design and implement an e-learning environment for blended learning. The environment focused on following factors: learning activity and participation of learners, and real time feedback of instructor.

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과학과교육 강의에서 예비 초등교사들의 학습환경에 대한 인식과 과학 교수효능감 (The Perceptions of Pre-service Elementary Teachers in Regards to the Learning Environment in Science Education Courses and Their Science Teaching Efficacy Belief)

  • 전경문
    • 한국초등과학교육학회지:초등과학교육
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    • 제25권1호
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    • pp.8-14
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    • 2006
  • This study examined how pre-service elementary teachers' perceptions regarding the learning environment (learning focus/ability-meritocracy/cooperative climate) and achievement goals (mastery/performance-approach/performance-avoidance) in science education courses jointly contributed to their science teaching efficacy beliefs (personal science teaching efficacy belief/science teaching outcome expectancy). A path analysis supported a causal model in which the perception of the learning focus influenced the mastery goal, which in turn influenced the personal science teaching efficacy belief and science teaching outcome expectancy. The perception of learning focus also had a direct effect on science teaching outcome expectancy. The perception of ability-meritocracy influenced personal science teaching efficacy belief via the performance-approach (positively) or, conversely, the performance-avoidance goal (negatively). No link .was deduced from the perception of cooperative climate. The educational implications of these findings were also discussed.

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Design and Implementation of Scratch-based Science Learning Environment Using Non-formal Learning Experience

  • Ko, Hye-Kyeong
    • International journal of advanced smart convergence
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    • 제8권2호
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    • pp.170-182
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    • 2019
  • In this paper, we use scratch to design and develop non-formal learning experiences that are linked with contents of secondary science textbook to educational programs. The goal of this paper is to develop a convenient and interesting program for non-formal learning in a learning environment using various smart device. Theoretical approaches to mobile education, such as smartphones, and smart education support policies continue to lead to various research efforts. Although most of the smart education systems developed for students who have difficulty in academic performance are utilized, they are limited to general students. To solve the problem, the learning environment was implanted by combining the scratch, which is an educational programming that can be easily written. The science education program proposed in this paper shows the result of process of programming using ICT device using scratch programming. In the evaluation stage, we were able to display the creations and evaluate each other, so that we could refine them more by sharing the completed ideas.

과학 교사의 과학 및 학교 과학에 대한 신념과 실험실 환경에 대한 인식 (Science Teachers' Beliefs about Science and School Science and Their Perceptions of Science Laboratory Learning Environment)

  • 김희백;이선경
    • 한국과학교육학회지
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    • 제17권4호
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    • pp.501-510
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    • 1997
  • Science teachers' beliefs about science and school science and their perceptions of the science laboratory learning environment were investigated with an assumption that science laboratory teaching would be affected by science teachers' beliefs. Likert-scale questionnaires of BASSSQ and SLEI were used in this study. The major findings were as follows: 1. Science teachers showed inconsistent beliefs about science and school science. Their responses reflected a patch-like view of postmodern epistemology and objectivism They also showed somewhat different views about science and school science. It was found that science teachers had strong objectivist views about science in some parts. but they had moderate constructivist views about school science in other parts; 2. The mean scores of student cohesiveness, integration. and rule clarity on the actual version in SLEl were relatively high, but those of open-endedness and physical environment were very low; 3. There was no association between teachers' beliefs about science and their perceptions of the science laboratory learning environment. But some associations were found between teachers' beliefs about school science and their perception on student cohesiveness, integration, and rule clarity of the actual science laboratory learning environment. Teachers' beliefs about school science had some statistically significant correlations with their perceptions on all scales of the preferred version of SLEI. We could not show a causal relationship between teachers' beliefs and their science laboratory learning environment through these results. But it can be suggested that teachers' beliefs about school science do have a role in constructing a desirable science laboratory learning environment, as we found that there were statistically significant correlations between them.

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