• Title/Summary/Keyword: Inquiry-Based Learning

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Elementary School Teachers' Recognition for the Implementation of 2009 Revised National Science Curriculum (2009 개정 과학과 교육과정의 실행에 대한 초등학교 교사의 인식)

  • Ahn, Ju-Song;Park, Jae-Keun
    • Journal of Korean Elementary Science Education
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    • v.36 no.1
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    • pp.61-72
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    • 2017
  • The purpose of this study was to analyze elementary school teachers' implementation for the emphasis on the revision, major contents, teaching and learning method, and evaluation in the 2009 revised national science curriculum. To fulfill the purpose of this study we carried out a survey with 222 elementary school teachers. Main findings of this research were as follows: First, they highly agreed to the increase in class hours and the application of subject classroom, but they had a lower recognition for setting the subject groups. Second, the degree of necessity in discussion and STS was relatively high, but the degree of implementation in science writing, discussion and STEAM was low. Third, in teaching and learning method, they showed a high performance for mutual cooperation, student-led activities and communication, but, a low implementation for open inquiry and instruction considering individual differences. Fourth, in the evaluation of science learning, they showed a high implementation for evaluation based on achievement standards and one based on the understanding and application of basic concepts, but, a low implementation for the development of common evaluation tools. Fifth, it seemed that their recognition for amount, level and interest of science contents and inquiry activities was appropriate and positive.

A Study on the Restructuring of Appreciative inquiry process based on Systems theory : Finding a way for a sustainable school community (시스템 이론에 기반 한 긍정탐색(appreciative inquiry)프로세스 재구조화 : 지속가능한 학교공동체 형성을 위한 방법론으로)

  • Park, Su-Hong;Kim, Hyo-Jeong;Park, Jin-Yeong
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.16 no.5
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    • pp.3180-3187
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    • 2015
  • Appreciative inquiry is applicable to schools to minimize the resistance of the members, and the subject of the school community Forming is suitable for the introduction of an AI program. But to become a way for a sustainable school community we must reconstruct the 4D modes of appreciative inquiry that the members can be applied as needed. In this paper, we propose the process of seven steps core learning activities based on systems theory. Seven steps are selecting a theme, interviewing for finding success story, analyzing an organization's success stories and deriving the core values, deriving future of the organization, sharing future of the organization, designing the ideal future of the organization consist of a practice. Since the proposed seven steps process is based on the literature it is necessary to apply follow-up study is to verify the result, and a variety of research methods for process improvement in AI.

Science Educators' Perceptions About the Learning Situation of Visually Impaired Students through Scientific Inquiry in the Darkroom (암실 속 과학탐구를 경험한 과학교육자들의 시각장애학생의 학습상황에 대한 인식)

  • Kim, Hak Bum;Pak, Sung Jae;Cha, Jeongho
    • Journal of The Korean Association For Science Education
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    • v.35 no.4
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    • pp.609-618
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    • 2015
  • The purpose of this study is to investigate the perspectives of science educators on the learning situations of visually impaired students through scientific inquiry in a darkroom. Twenty-four science educators who came to the annual conference of the Korean Association for Science Education volunteered to participate in 'the scientific inquiry in the darkroom' activities. They were encouraged to touch models of 'the molecular structure of ice' and 'the structure of eyes' and to discuss with participants during the activities. Surveys were done before and after darkroom activities, and the discussions during and after the activities were recorded and analyzed. As a result, participants recognized that science education for visually impaired students is both very feasible and necessary. Also, some of them, who have had an experience of teaching blind students and thought that they fully understood the learning situation of the visually impaired, were especially surprised by the fact that they did not actually understand how it was like to be a visually impaired and responded that they were able to more deeply comprehend the learning situation of visually impaired students through these activities. Through this experience, participants also became resolute to try more deeply to understand not only the visually impaired students, but also sighted students with learning disabilities. Based on these results, educational implications of scientific inquiry in the darkroom were discussed.

Construction of a Structural Equation Model on Attitudes to Science Using LISREL (LISREL을 이용한 과학에서의 태도에 관한 구조방정식모델의 구축)

  • Lee, Kyung-Hoon
    • Journal of The Korean Association For Science Education
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    • v.17 no.3
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    • pp.301-311
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    • 1997
  • The purpose of this study is to construct a structural equation model and to analyze causal relationships among variables related to attitudes to science using structural equation modeling(SEM) with LISREL VII. The sample consisted of 483 10th grade boys from a general high school in Pusan, Korea. The questionnaires (ABC-attitude scale: affection, behavioral intention, cognition scale of attitude towards science) were developed by the researcher through a pilot study. And other instruments have modified previous ones. Five instruments were used in this study: GALT(group assessment of logical thinking), MTSlS(modified test of science inquiry skill), ABC-attitude scale, MSAS(modified scientific attitude scale), CSAT(common science achievement test). Structural equation modeling with LISREL VII($J\ddot{o}reskog$ & $S\ddot{o}rbom,$ 1993) was employed to estimate the causal inferences about hypothesized relationships among observed data sets. Three competing models consisted of five latent variable(scientific thinking ability, science inquiry skill, attitude towards science, scientific attitude, science achievement) - lP(inquiry preceding) model, AP(attitude preceding) model and AM(attitude mediating) model - were developed. Among these competing models, IP model satisfied the observed data sets. The causal relationships among "attitudes to science" and other latent variables were reliably identified. According to the results of the present study, science inquiry skill was the most significant variable that can predict science achievement. But scientific thinking ability has not directly influenced science achievement. This study suggests that inquiry based teaching-learning processes should be offered to students for improvement of science achievement. At the same time, it seems to be important to develop positive attitude towards science. Understanding of relationships among variables related to attitudes to science will be helpful to the development of science curriculum and to the design of science teaching and learning process. LISREL has been recognized as a useful approach in testing a SEM. However, in this study, LISREL approach was estimated as much more useful method for research design.

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The Instructional Effects and Students' and a Teacher's Perceptions of MBL Programs in Elementary Science Classes (초등 과학 수업에 적용한 MBL 수업의 효과와 학생 및 교사의 인식 조사)

  • Lim, Hee-Jun;Choi, Sun-Mi;Kang, Suk-Jin;Yeo, Sang-Ihn
    • Journal of Korean Elementary Science Education
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    • v.29 no.1
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    • pp.102-111
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    • 2010
  • This study examined the instructional influences of MBL programs on elementary school students' science achievement, scientific inquiry skills, and science learning motivation. The perceptions of students and their teacher toward science classes using MBL programs were also examined. The subject of this study was sixty four 4th grade students from two classes. The experimental group engaged in science classes that applied MBL and the control group engaged in traditional science classes based on the textbook and experiment workbook. As results, there was no significant difference in academic achievement, scientific inquiry skills, however, were significantly higher for the experiment group compared to the control group. There was also significant difference in the relevance and confidence, the sub-categories of science learning motivation. In the analyses of students' perceptions toward science classes using MBL, students showed positive perceptions in aspects of interests of science classes, content comprehension, and convenience of experiments. The teacher also showed positive perceptions using MBL in elementary science classes. Educational implications of appling MBL in elementary science classes were discussed.

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The Specification of Evaluative Objectives and Selection of Behavioral Elements for Measuring Science Inquiry Skills of University Competency Tests (대학(大學) 수학(修學) 용력(龍力) 의험(議驗)의 자연과학(自然科學) 탐구(探究) 능력(能力) 평가(評價)를 위(爲)한 행동(行動) 요소(要素)의 추출(抽出)과 평가(評價) 목표(目標)의 상세화(詳細化) 연구(硏究) II)

  • Woo, Jong-Ok;Lee, Kyung-Hoon;Lee, Hang-Ro
    • Journal of The Korean Association For Science Education
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    • v.12 no.2
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    • pp.81-95
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    • 1992
  • The purpose of the study is to specify the evaluative objectives of science process skills and to serve as an evaluative criterion for the development of university competency test. The followings are the results of this study. (l) Five steps as a teaching and learning model of science are suggested for the improvement of science inquiry skills. (2) Three dimensional taxomony was presented to evaluate the science process skills of university competency test. (3) Sixteen behavioral elements were selected from the science process model and defined operationally. (4) 146 evaluative objectives were specified according to each behavioral element based on the results presented above, the science inquiry model and the evaluative objectives wilt be contributed to teaching and learning strategies for the improvement of science process skills including basic concepts and contents, and problematic situation in science.

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The Effect of Process Oriented Guided Inquiry Learning Using Mobile Augmented Reality on Science Achievement, Science Learning Motivation, and Learning Flow in Chemical bond (화학 결합에서 모바일 증강현실을 이용한 과정기반 안내탐구학습이 과학 학업 성취도, 과학 학습 동기, 학습 몰입감에 미치는 영향)

  • Jeon, Young-Eun;Ji, Joon-Yong;Hong, Hun-Gi
    • Journal of The Korean Association For Science Education
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    • v.42 no.3
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    • pp.357-370
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    • 2022
  • In this paper, we developed an augmented reality learning tool suitable for chemical bond learning and proposed a process-oriented guided inquiry learning using mobile augmented reality (POGIL-MAR) to find out how it affects science achievement, science learning motivation and learning flow. Participants were 139 10th-grade students from a coeducational high school in Gyeonggi-do, and they were randomly assigned to the control group (TL), the treatment group 1 (POGIL), and the treatment group 2 (POGIL-MAR). They learned the concept of the chemical bond from the Integrated Science subject for four class periods. Results of two-way ANCOVA revealed that the POGIL-MAR group scored significantly higher than the other groups in a science achievement test, science learning motivation test, and learning flow test, regardless of their prior science achievement. In addition, in the case of the low-level group, the POGIL-MAR group showed a statistically significant improvement in achievement compared to the TL and POGIL groups. The MANCOVA analysis for sub-factors of science learning motivation show that the POGIL-MAR group had significantly higher scores in intrinsic motivation, career motivation, self-determination, self-efficacy, and grade motivation. In particular, the interaction effect between the teaching and learning method and the level of prior achievement was significant in the intrinsic motivation. Meanwhile, the MANCOVA analysis for sub-factors of learning flow show that the POGIL-MAR group had significantly higher scores in clear goals, unambiguous feedback, action-awareness merging, sense of control, and autotelic experience. Based on the results, educational implications for effective teaching and learning strategy using mobile augmented reality are discussed.

A Study on the Teaching/Learning Strategies and Materials for the Enhancement of Scientific Inquiry Skills of High School Students (고등학교의 과학적 탐구력 신장을 위한 과학 학습지도 방법과 자료의 개발에 관한 연구 I)

  • Cho, Hee-Hyung;Lee, Moon-Won;Cho, Yung-Shin;Jee, Chan-Soo;Kang, Soon-Hee;Park, Jong-Yoon;Hur, Myung;Kim, Chan-Jong
    • Journal of The Korean Association For Science Education
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    • v.15 no.1
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    • pp.54-67
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    • 1995
  • This study has been performed in order to achieve three objectives. They are as follows: To analyze, based on the research literatures, the nature of scientific inquiry ability and the characteristics of its constitutive elements. To identify inquiry skills and techniques essential to such areas as physics, chemistry, biology, and earth science. To develop instructional models and materials for enhancing inquiry ability on the part of high school students. It was found in the study that the scientific inquiry was interpreted in terms of different meanings according to the viewpoint of the person who are interested in the nature of science. The scientific inquiry has been viewed as the process of knowledge formation, scientific method, inquiry process or process skills depending on the epistemological, methodological, educational perspectives, respectively. It was also identified that certain kind of skills or techniques would be used for inquiry in only one specific area of the science. The skills and techniques are effectively learned when those are taught with specific knowledge in each area of the science. The model and materials for fostering scientific inquiry skills will be presented on the second part of the report.

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Development of an Authoring System for Scientific Inquiry Learning Virtual Environments (과학적 탐구학습용 가상환경 저작 시스템 개발)

  • Kim, Minyoung;Im, Jaewon;Park, Kyoung Shin;Cho, Yongjoo
    • Annual Conference of KIPS
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    • 2009.11a
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    • pp.413-414
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    • 2009
  • 본 논문은 스크립팅 기반의 탐구학습을 위한 가상현실 저작용 시스템인 SASILE을 보완하여 프로그래밍 경험이 없는 일반 사용자들이 손쉽게 탐구 학습을 위한 교육용 가상현실 환경을 구현하고 활용할 수 있도록 개발한 드로잉 인터페이스 기반의 DEVISE(Drawing Environment for VR-based Inquiry-learning Science Education)에 대해 설명한다. 그리고 간단한 사용성 평가를 통해 DEVISE의 효용성에 대해서 논한다.

Analysis on Actual Condition of Chemistry Teachers' Scientific Competency Assessment Based on Inquiry Report (탐구보고서에 기반한 화학교사의 과학 역량 평가 실태 분석)

  • Kim, Hyunjung;Kim, Sungki
    • Journal of the Korean Chemical Society
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    • v.65 no.3
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    • pp.209-218
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    • 2021
  • This study investigated the condition of chemistry teacher's student competency assessment based on the inquiry report. To this end, an inquiry report was collected for chemistry teachers who took the training at two universities that conducted the 2020 first-class chemistry teacher training. The science subject competencies presented in NAEA analysis framework was used to analyze what kind of competencies teachers assess students through inquiry reports. A total of 63 chemistry teachers submitted inquiry reports, which were analyzed by competency, sub-element of each competency, and detail element to analyze the actual situation. As a result of the study, most chemistry teachers reflected their 'scientific inquiry and problem-solving ability' in their evaluation through inquiry reports. 'Ability to understand and apply scientific principles', which is mainly evaluated through paper-based evaluation, was partially used as confirmation of prerequisite learning at the beginning of the inquiry and the weight of evaluating 'scientific communication skill' was not large. In 'scientific inquiry and problem-solving ability' through inquiry report, 'design and conduct explorations', 'data analysis and interpretation' and 'drawing conclusion and suggesting solution' were mainly assessed. However, 'discover and recognize problems' and 'development and use of model' were hardly assessed.