• Title/Summary/Keyword: 과학 본성 인식

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Elementary Science-gifted Teachers' Views and Attitudes Toward Teaching on Nature of Science (초등 과학영재 지도교사의 과학의 본성에 대한 인식 및 교수태도 분석)

  • Lim, Sung-Man;Cheong, Woon-Young;Yang, Il-Ho
    • Journal of Science Education
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    • v.34 no.2
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    • pp.396-404
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    • 2010
  • This study aimed to investigate a perception of teachers engaged in special education for scientifically gifted regarding nature of science and identify attitudes toward teaching nature of science. The sample of this study consists of 122 science teachers who are teaching or taught students attending gifted classes of any primary school in Korea and any gifted education center of every District Office of Education. We made a partial amendment of a VOSE that was developed by Chen(2006) and then used. We tested their perception and attitudes in regard to nature of science. In terms of nature of science, we devide it into 7 sub-areas to analyse. For attitudes toward teaching nature of science, we investigate and analyse following 5 sub-areas; tentativeness of scientific knowledge, nature of observation, scientific methods, theories and laws and subjectivity and objectivity. The result showed that the generally teachers have a desirable recognitions about a nature of science. For attitudes toward teaching nature of science, the teachers showed that they have positive attitudes. However between degrees of teachers' recognition about a nature of science and attitudes toward teaching nature of science showed a low correlation. To increase their understanding of nature of science and develop attitudes toward teaching nature of science, there should be more training time for the teachers and training contents also should be changed. In addition, we hope that this study contribute to develop contents and direction of training for the teachers as a basic reference.

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What Do Scientists Think about the Nature of Science? - Exploring Views of the Nature of Science of Korean Scientists Related with Life Science Area (우리나라 생명과학 관련 분야 재미 과학자들은 어떻게 과학의 본성을 이해하고 있는가?)

  • Lee, Young Hee
    • Journal of The Korean Association For Science Education
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    • v.34 no.7
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    • pp.677-691
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    • 2014
  • Understanding of the nature of science (NOS) has been a consistent topic as one of the most important goals in science education for the past several decades. Even though there is a variety of research related with the NOS conducted in science education, few researches has been conducted for the conception of scientists regards to the nature of science (Bayir et al., 2014; Taylor et al., 2008; Wong & Hudson, 2008). Recently, researchers in science education turned their attention to identifying views of scientists about the nature of science since they recognized the importance of participation of scientists in science education (Southerland et al., 2003; Taylor et al., 2008). This study was conducted to examine the Korean scientists' views of the nature of science. Through the use of semi-structured questionnaire and in-depth interview the views of 35 scientists who belong to the Korean-American Scientists and Engineers Association (KSEA) regards to the nature of science were explored. Findings show that while the scientists have more informed views with respect to the tentativeness of scientific knowledge, cultural and social influence embedded in science, the limitation of science, and the collaboration of science with others, the scientists have more na${\ddot{i}}$ve views about the distinction between laws and theories, the existence of a universal scientific method, and the importance of imagination and creativity. As such, it can be assumed that the scientists cannot conceptualize their notion in a philosophical sense even though they are engaged in scientific work in reality (Bayir et al., 2014).

The Relation of High School Students' Epistemological belief, Acceptance of Evolutionary Theory and Evolutionary Knowledge (고등학생의 인식론적 신념과 진화수용 및 진화지식과의 관련성)

  • Kim, Sun Young
    • Journal of The Korean Association For Science Education
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    • v.35 no.2
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    • pp.259-265
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    • 2015
  • This study examined high school students' acceptance of evolutionary theory, evolutionary knowledge, and epistemological belief. The Christian and non-Christian students' acceptance of evolutionary theory and evolution content knowledge were compared in relation to their 'scientific epistemological views' (domain-specific) and 'evolution in relation to nature of science' (context-specific). The Christian students' evolutionary knowledge was most predicted by the theory-laden exploration of science, while the non-Christian students' scores on evolutionary knowledge were most predicted by the scientific epistemological views. In addition, the Christian students' scores on scientific epistemological views and evolution in relation to evolution were not significantly related to each other, while the non-Christian students' scores on both variables were significantly related. Furthermore, 'evolution in relation to nature of science' is the strongest predictor of both Christian and non-Christian students' acceptance of evolution.

Analyzing Science-gifted Middle School Students' Understandings of Nature of Science (NOS) (중학교 과학영재들의 과학의 본성에 대한 인식 분석)

  • Park, Eun-I;Hong, Hun-Gi
    • Journal of Gifted/Talented Education
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    • v.21 no.2
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    • pp.391-405
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    • 2011
  • The nature of science has been recognized in a great deal in the field of science education. However, only few innovative programs are offered for science-gifted students to improve their recognition of the nature of science. The current study describes and analyzes science-gifted students' understandings of the nature of science (NOS). In addition, the study looks into contradictory views among the aspects of NOS, which are fundamental data in constructing target programs on NOS for science gifted students. Data used in this study were collected from 73 middle school science-gifted students using an open-ended questionnaire, VNOS. The results of this study showed that the participants' understanding of NOS was significantly distributed on naive or transition view except for 'tentative NOS', and the results revealed inconsistent view among the aspects of NOS. This study proposes two suggestions to enhance the recognition of science-gifted on NOS of science to informed state and to have consistent perspectives with other areas. First, the role of experiment has to be changed-it should be the process in constructing scientific knowledge rather than an instrument to check scientific knowledge to transform perspective on experimental data and scientific knowledge. Second, various opportunities must be provided to science-gifted students, so they can experience the culture and community of scientists and science to gain a wider insight of science.

Pre-service Science Teachers' Understanding of the Nature of Science (예비 과학교사의 과학의 본성에 대한 인식)

  • Mayer, V.J.;Choi, Joon-Hwan;Lim, Jae-Hang;Nam, Jeong-Hee
    • Journal of The Korean Association For Science Education
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    • v.27 no.3
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    • pp.253-262
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    • 2007
  • This study is an investigation regarding the understanding of the nature of science among pre-service science teachers majoring in science education. We interviewed 22 senior students in science education who finished their internship courses. Students were interviewed individually for approximately 20 minutes each. Data from semi-structured interview were audio-recorded and transcribed for the analysis. Findings indicated that participants held more complete understanding of the nature of scientific knowledge than the nature of scientific enterprise. Their understandings of the nature of scientific method was that hypothetical-deductive method is more scientific than descriptive-narrative method and there is a single stepwise scientific method to solve problems. These results showed that they have a narrow view of the nature of science. Thus, teacher education programs need to integrate the understanding of the nature of science throughout.

Suggesting The NOS Flow Map for an Instruction of Nature of Science (과학의 본성 교육을 위한 NOS Flow Map 제안)

  • Oh, Jun-Young
    • Journal of Korean Elementary Science Education
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    • v.33 no.1
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    • pp.44-56
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    • 2014
  • 이 연구의 목적은 인지적 전략인, 갈등도(Oh, 2011)를 기반으로 학생들이 명시적으로 과학의 본성(NOS)의 교육을 돕기 위하여 과학의 본성요소뿐만 아니라 과학의 역사를 담은 NOS Flow Map을 개발 제안하는 것이다. 예비적으로 과학의 본성의 교육을 위해 제안한 NOS Flow Map을 사용에 대한 이해를 탐색하기 위하여, 자신들의 NOS 이해를 강화하기 위해 우리가 제안한 NOS Flow Map의 유용성에 대한 예비 초등교사들의 인식를 조사하였다. 과학의 본성에 대한 중요한 관점들은 Kuhn의 과학철학과 역사가 아주 잘 일치된다. 즉 Kuhn의 과학혁명의 예로 가장 중요한 Copernicus의 혁명과정이 과학의 본성 중요한 요소들과 잘 일치됨을 보여준다. 따라서 이 연구에서 인지갈등을 통한 NOS 흐름도는 과학의 소양교육을 강화하는데 명시적이고 반성적인 도구이며 유망한 방법이라고 조심스럽게 제안한다.

The effectiveness of the change in perspective of the nature of science depending on subjects of the history of science-role play -The atomic model transition and the Mendeleev's periodic table - (과학사 주제에 따른 과학사-역할놀이가 대학생의 과학의 본성의 변화에 미치는 효과 -원자모형의 변천과 멘델레프의 주기율표의 변천 주제를 중심으로-)

  • Kim, Do Wook
    • Journal of Science Education
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    • v.39 no.1
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    • pp.15-27
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    • 2015
  • This study investigated whether there was a difference of the change in perspective of the nature of science depending on subjects of the history of science, after designing for two kinds of topics of role play programs based on the history of science to be transformed into a modern perspective. Before the history of science-role plays, the degree of the modern perspective was statistically no difference between group I(the atomic model transition-role play) and group II(the Mendeleev's periodic table-role play). However after treatment of the history of science-role plays for the each group, the degree of group I was higher than the degree of group II in the modern perspective. The results of this study indicate that the degree of changes into modern perspective of the nature of science by performing a history of science-role play may be depend on the subject of the history of science combined with the role play, and suggest the possibility that may be more effective to change the nature of science into the modern perspective, in case of performing of role play based on the history of science that includes the scientific knowledge established by a number of scientists with time series.

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High School of Arts students' Understanding of the Nature of Science and Nature of Art (과학과 예술의 본성에 대한 예술고 학생들의 인식)

  • Kim, Hee-Jung;Kim, Sung-Won
    • Journal of The Korean Association For Science Education
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    • v.32 no.4
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    • pp.586-603
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    • 2012
  • This study is a survey conducted to explore what art high school students specifically see as nature of science. Third-year students of a high school of arts in Gyeonggi-do participated in the survey. The questionnaire was classified into three categories - the formative arts in the fine arts, the sound arts in music, the performing arts in dance, and drama and play. The study analyzed what they think of as similar aspects of science and art respectively according to their majors, with focus on the extracts. As a result, they mentioned 'creative imagination', 'correlation with technology', 'social and cultural relation', 'subjectivity', 'variability', and 'inquiring attitude' as similarities between science and art. The results are almost the same as the elements of the nature of science as agreed on by scientists. From the result, we can assume that students majoring in art, indeed, need an education on the nature of science. Also, while the fine arts students have more tendency to perceive inquiring attitude than others, music students are more likely to perceive variability than others. Therefore, teaching strategy in experimental inquiring context for the former is more helpful in understanding the nature of science, and teaching strategy in the context of scientific history for the latter.

An Analysis on Views of Nature of Science and Science Inquiry of Science Gifted Students (과학 영재의 과학 본성과 탐구 관점 분석)

  • Lee, Hang-Ro
    • Journal of Gifted/Talented Education
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    • v.21 no.2
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    • pp.511-530
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    • 2011
  • This study aims to find out science talented students' percentage of cognition about the views of nature of science and science inquiry which are essential for having a good understanding with science concepts. Each group of 40 science gifted students and 35 ordinary students was tested with a test of views of nature of science and science inquiry which consisted of 19 items with index of content validity 97% and reliability index 0.86, then its results being compared and analyzed. A group of science gifted students' percentage of cognition about the views of nature of science ranges from 20% to 97.5% -although it differs according to detailed views-showing its mean of 67% (50% in a group of ordinary students). Especially, the percentage of cognition about the sub view that there can be different opinions among scientists was high among woman science gifted students. A group of science gifted students' percentage of cognition about the views of science inquiry ranges from 27.5% to 77.5% -although it differs according to detailed views- showing 53% in their mean (41.8% in a group of ordinary students). Especially, the percentage of cognition about the sub view that scientists can have different research methods was high among woman science gifted students. The percentage of mistaken cognition by science gifted students about views of nature of science and about views of science inquiry was 33%, 47% respectively.

Suggesting Conceptual Framework on the Nature of Technology (NOT) and Investigating College Students' Perceptions Regarding the Nature of Technology(NOT) (기술의 본성(NOT) 개념 틀 제안 및 이공계 대학생들의 기술의 본성(NOT)에 대한 인식 탐구)

  • Baek, Yujin;Lee, Young Hee
    • Journal of Science Education
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    • v.43 no.3
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    • pp.363-381
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    • 2019
  • This study aims to suggest an inclusive conceptual framework for the Nature of Technology (NOT) by examining literature and researches regarding NOT and then to analyze the conceptions of the students in Science and Engineering Department of a college based on the NOT framework. Findings are as follows: First, the conceptual framework of the NOT developed from the study has the five domains of NOT, which are Technology as Artifacts, Technology as Knowledge, Technology as Practice, Technology as History, and Technology as a part of Society. Second, the participants' conceptions of the NOT emphasize on three domains of the Technology as Practice (26.4%), Technology as a part of Society (25.8%), and Technology as Knowledge (24.3%) among the five domains of the NOT. Third, according to the microanalysis of the students' conceptions regarding NOT, students in Science and Engineering Department of a college possess concrete and various views of the NOT even though NOT is abstract and complex ideas. Specifically, they seem to recognize the NOT as a product of process and ability to utilize the technology for convenience of life.