• Title/Summary/Keyword: Inquiry

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The Effects on Science Process Skills and Environment-Friendly Attitudes by Environmental class Using Free Inquiry Method (자유탐구 방법을 활용한 환경수업이 과학탐구능력 및 환경친화적 태도에 미치는 효과)

  • Lee, Yong-Seob
    • Journal of Environmental Science International
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    • v.21 no.3
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    • pp.351-362
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    • 2012
  • The purpose of this study is to make a Result analysis on the free inquiry Method of elementary school student. also, this study investigates how free inquiry activities effect the science Process skills and environment-friendly attitudes of elementary school student For this study 150, sixth year, elementary school students from Busan city were selected. The inquiry examined the effectiveness of each of the following free inquiry methods: the PBL inquiry, the Project inquiry, the IIM inquiry, the small group inquiry and the science notebooks inquiry. The students were divided into groups in which they incorporated the respective methods into their practice. Test showed the following results: The environmental class which applies a free inquiry method(PBL inquiry, Project inquiry, IIM inquiry, small group inquiry and science notebooks) was effective in science process skills improvement. Second, The environmental class which applies a free inquiry method((PBL inquiry, Project inquiry, IIM inquiry, small group inquiry and science notebooks) was effective in environment-friendly attitude improvement.

Elementary Teachers' Perception of the Science Inquiry Activities and Essential Features of Science Inquiry (과학 탐구 활동의 유형과 과학 탐구의 특징에 대한 초등 교사의 인식)

  • Seong, Hyejin;Lim, Heejun
    • Journal of Korean Elementary Science Education
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    • v.38 no.2
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    • pp.163-172
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    • 2019
  • This study explored elementary teachers' perceptions on the essential features of science inquiry, the appropriateness of inquiry activities to science inquiry, and the essential features of inquiry by inquiry activities. 85 elementary teachers' perceptions were investigated using Likert scale survey, and 7 teachers were interviewed. The results are as follows. First, the features that elementary teachers perceived the most essential were 'Engaging students in evaluating their explanations in light of alternative explanations' and 'Engaging students in communicating and justifying their explanations'. Second, The inquiry activities that teachers thought the most appropriate to science inquiry were 'experiment' and 'project'. On the other hand, the perceptions on 'discussion' and 'field trip' were relatively low. Third, the inquiry activity that showed the highest mean score of five essential features of inquiry was 'experiment' while the mean score of 'field trip' was the lowest. Educational implications about the science inquiry were discussed.

An Analysis on the Relationship between Cognitive Levels and Science Inquiry Skills in High School Students (고등학생의인지수준과 과학탐구 능력과의 관계 분석)

  • Woo, Jong-Ok;Kim, Jong-Eal
    • Journal of The Korean Association For Science Education
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    • v.13 no.2
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    • pp.296-307
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    • 1993
  • The purpose of this study was to identify concretely how to improve inquiry learning. To put the purpose in detail : 1) to define the inquiry skills 2) to select the factors of inquiry skills appropriate to the content of Science I (earth science) textbook 3) to develop items which consist of experimental inquiry and concept inquiry in due proportion, to evalute inquiry skills 4) to analyze the relationship between high school students' cognitive levels and the achievement of science inquiry skills. To achieve these objectives, the investigator sampled 558 students in eleventh grade, living in Seoul, Chung-Ju and Kwang-Ju, and evaluated their cognitive levels and the achievement of science inquiry skills. The results of this study showed that the cognitive levels of students were lower than those identified in Piaget's work and that the achievement of science inquiry skills were low also. It may be thought that one of most important reasons to bring about those results is lacking in adaptation capability of science inquiry items and inquiry learning. So, it can be recommended as a way to heighten cognitive levels to make inquiry learning using the textbook content. In conclusion, the investigator make suggestions as follows : 1) to give inquiry learning which consist of experimental inquiry and concept inquiry in due proportion 2) to develop inquiry items to include content for evaluating inquiry learning, and test items for psycho-motor areas 3) to publish textbooks which motivate students' inquiry activities and develop their creative thinking, considering students' cognitive levels and inquiry skills.

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Elementary Teacher's Beliefs of Scientific Inquiry and Scientific Inquiry Teaching Method (초등학교 교사들의 과학적 탐구 및 지도방법에 관한 신념 연구)

  • Lee, Sang-Gyun
    • Journal of the Korean Society of Earth Science Education
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    • v.5 no.2
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    • pp.213-223
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    • 2012
  • This study explored practicing elementary school teacher's beliefs of scientific inquiry and scientific inquiry teaching methods. Defining teacher's beliefs as a broad construct, we tried to examine the teachers' understandings about the scientific inquiry and scientific inquiry teaching method. This study drew on interview data from 10 elementary teachers in busan and changwon area of korea. Conclusions of this study include; First, we found that elementary teacher's beliefs of inquiry were represented variously. And they considered that inquiry is the important goal of science education. They though that the goal of science education is development of Scientific inquiry skills, Scientific thinking skills, development of Creativity and problem solving ability, increasing interest about science, understanding of the basic concepts of science and apply of real-life. second, most of the teachers though that Scientific inquiry is scientists activities, they defined 'the process of creation of new knowledge', 'the process of deriving theory', 'solving process of intellectual curiosity', 'Problem-solving process'. third, they considered that teaching method of scientific inquiry is open inquiry activities. however, they thought that there are many difficulties to actually apply. Understanding teachers' beliefs has implications for both the enactment of inquiry teaching in the classroom as well as the uptake of new teaching behaviors during professional development, with enhanced outcomes for engaging students in Science.

Elementary Students' Perception of the Science Inquiry Activities and Essential Features of Science Inquiry (과학 탐구 활동의 유형과 과학 탐구의 특징에 대한 초등학생의 인식)

  • Seong, Hyejin;Lim, Heejun
    • Journal of Korean Elementary Science Education
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    • v.37 no.4
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    • pp.391-401
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    • 2018
  • This study investigated elementary students' perception of the suitability of inquiry activities related to the science inquiry, essential features of the inquiry and essential features of the inquiry by science inquiry activities. First, 5-6th grade elementary students' perception of the suitability of inquiry activities to the science inquiry was positive in this study and especially the score of experiment and field trip was high. The lowest score was on the discussion and elementary students thought that discussion might be wrong, because they just talked when they participated in the discussion. Second, perception of the essential features of science inquiry was positive. Especially, engaging students in evaluating their explanations in the light of alternative explanations was the highest. Students thought that explanation is important, but it is too hard to perform the science inquiry with only the explanation. Third, the score of research and experiment was high in essential features of science inquiry by science inquiry activities. The score of the field trip was low, so a more meaningful field trip should be carried out in the school.

Development of the Scientific Inquiry Process Model Based on Scientists' Practical Work

  • Yang, II-Ho;On, Chang-Ho;Cho, Hyun-Jun
    • Journal of The Korean Association For Science Education
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    • v.27 no.8
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    • pp.724-742
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    • 2007
  • The purpose of this study was to develop a scientific inquiry model that makes scientific inquiry accessible to science teachers as well as students. To develop a scientific inquiry model, we investigated the research process demonstrated by ten scientists who were working at academic research institutions or industrial research institutions. We collected data through scientists' journal articles, lab meetings and seminars, and observation of their inquiry process. After we analyzed the scientists' inquiry strategies and processes of inquiry, we finally developed the Scientist's Methodology of Investigation Process model named SMIP. The SMIP model consists of four domains, 15 stages, and link questions, such as "if, why", and "how". The SMIP model stressed that inquiry process is a selective process rather than a linear or a circular process. Overall, these findings can have implication science educators in their attempt to design instruction to improve the scientific inquiry process.

A Survey of Elementary School Students' Perception of Data-based Scientific Inquiry (데이터 기반 과학탐구에 대한 초등학생의 인식 조사)

  • Jeong, Eunju;Son, Jeongwoo
    • Journal of Science Education
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    • v.43 no.2
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    • pp.227-238
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    • 2019
  • In this study, we investigated the perception of elementary school students on inquiry activities and collaborative problem-solving ability in data-based scientific inquiry. For this purpose, 20 data-based scientific inquiry classes were conducted in 26 elementary school students in Gyeongnam City. After selecting the inquiry problem, students conducted an inquiry process to collect data using digital inquiry instruments. The following results were obtained through questionnaires and interviews after the classes: First, students perceived the step on 'inquiry design and execution' as the most useful in the data-based scientific inquiry. Second, students perceived that their scientific ability and cooperation improved through data-based scientific inquiry, with the selection of inquiry problems being the most difficult. Third, students perceived positively the improvement of cooperative problem-solving ability. From the above results, it was found that data-based scientific inquiry is necessary to improve the elementary school students' scientific inquiry ability and cooperative problem-solving ability. Based on this research, we hope that the development and research of various inquiry activities will provide opportunities for inquiry that can cultivate various abilities needed for students living in the future.

The Effect and Cognition of Open-Inquiry Lesson using Lubric on the Elementary Student's Open-Inquiry (루브릭을 활용한 자유탐구 지도가 초등학생의 자유탐구에 미치는 영향 및 인식 조사)

  • Jung, HyunJu;Lim, Sungman;Chun, Jaesun
    • Journal of Korean Elementary Science Education
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    • v.32 no.3
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    • pp.285-297
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    • 2013
  • The purpose of this research is to find the effect of the lesson using open-inquiry report Lubric on open-inquiry standard and science process skill; to find the change of cognition on open-inquiry for elementary school 5th grade students. Two classes (elementary school 5th grade) were selected which located in a small and medium-sized city for this research and they were separated as an experimental group and a comparative group. Open-inquiry lesson was done by referring teaching method which introduced through the curriculum. The procedure was understanding about open-inquiry, making open-inquiry subject, planning, and performing inquiry, mid-term, performing inquiry, making a report, presentation, and evaluation. Open-inquiry report Lubric which developed by Sook-Kyung Kim et al. (2010) was provided to the experimental group. Comparative group was instructed by using open-inquiry report which introduced to the elementary school 5th grade science text book. Interview paper was developed in order to check out the effect of the research by using a test paper of science process skill. The following could be found out through the research. After open-inquiry lesson, 10 open-inquiry reports(5 reports from experimental group, 5 reports from comparative group) have been drawn at random as samples from the total 62 sets (30 reports from experimental group, 32 reports from comparative group) and evaluated by a researcher and two elementary school teachers who have master degree. The reliability of the 3 scorers was 0.923 of mean correlation coefficient. And then the researcher evaluated all open-inquiry reports. The average score of open-inquiry report was 66.78 for experimental group, 54.27 for comparative group, respectively. And there was a significant difference at p<0.05 level as a result of the t-test. The experimental group rated high at p<0.05 level according to the analysis of post-science process skill test. According to the result of survey, both experimental group and comparative group had understood open-inquiry activity. It was especially rated high for experimental group on understanding scientific inquiry process, interest and satisfaction in open-inquiry and re-participation rate. By interviewing experimental group, it is recognized that the students utilized Lubric very well through the overall process. Finally, self-evaluation was done during open-inquiry activity and it was reported that the students gained more knowledge about science and changed to positive about science. As a result, the lesson using open-inquiry report Lubric was effective for students to improve writing skill of an open-inquiry report and science process skill and finally changed the cognition to positive about open-inquiry lesson.

Analysis of Characteristics of Scientific Inquiry Problem Finding Process in Small Group Free Inquiry (소집단 자유 탐구에서 과학적 탐구 문제 발견 과정의 특징 분석)

  • Cheon, Myeongki;Lee, Bongwoo
    • Journal of The Korean Association For Science Education
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    • v.38 no.6
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    • pp.865-874
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    • 2018
  • The purpose of this study is to explore the process of inquiry problem finding in high school students' small group free-inquiry. For this purpose, 91 second grade high school students took part in small group free-inquiry. We conducted interviews with students (48 students in 15 groups) who were relatively successful in the inquiry performed for one semester (about 4 months). Based on the results of the interviews, we analyzed the characteristics of the inquiry problem finding through the steps and strategies in the inquiry problem finding process. The main results are as follows: First, in the inquiry problem finding process, steps such as selecting keyword, presenting an inconvenience, presenting a question, and finding an inquiry problem were found, and in particular, the process of selecting the keyword that correspond to the subject of inquiry, such as the material and situation of inquiry, is very important step in inquiry problem finding. Second, the strategies that students used in the process of finding inquiry problem included searching information, review of prior research, sharing of knowledge and experience, linking and extension of knowledge and experience, environmental awareness, expert consultation, discussion of suitability, elaboration, etc. Third, finding an inquiry problem was relatively easy in the inquiry for finding out problems (i.e. inconvenience) in everyday life and investigating ways to solve them. Fourth, the review of prior researches through the internet was useful in the process of selecting keyword and elaboration. Fifth, the factors that students consider when selecting one of several candidate inquiry problems are feasibility, real-life applicability, and economic condition. Sixth, the current affairs had a positive impact on the inquiry problem finding. Based on the above results, we discussed some ways to increase students' inquiry problem finding ability.

Teaching Models for Scientific Inquiry Activity through the Nature of Science (NOS)

  • Park, Jong-Won
    • Journal of The Korean Association For Science Education
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    • v.28 no.7
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    • pp.759-767
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    • 2008
  • This article arose from the previous studies, which suggested a synthetic list for the nature of science (NOS), discussed the relationship between the NOS and scientific inquiry and the development of the NOS in the context of scientific inquiry. In this article, for teaching scientific inquiry through the NOS, I proposed three teaching models - reflection, interaction, and the direct model -. Within these teaching models, understanding the NOS is viewed as a prerequisite condition for the improved performance of scientific inquiry. In the reflection model, the NOS is embedded and reflected in scientific inquiry without explicit introduction or direct explanation of the NOS. In the interaction model, concrete interaction between scientific inquiry and the NOS is encouraged during the process of scientific inquiry. In the direct model, subsequent to directly comprehending the NOS at the first stage of activity, students conduct scientific inquiry based on their understanding of the NOS. The intention of this present article is to facilitate the use of these models to develop teaching materials for more authentic scientific inquiry.