• Title/Summary/Keyword: Inquiry Context

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Students Opportunities to Develop Scientific Argumentation in the Context of Scientific Inquiry: A Review of Literature

  • Flick, Larry;Park, Young-Shin
    • Journal of the Korean earth science society
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    • v.25 no.3
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    • pp.194-204
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    • 2004
  • The purpose of this literature review is to investigate what kinds of research have been done about scientific inquiry in terms of scientific argumentation in the classroom context from the upper elementary to the high school levels. First, science educators argued that there had not been differentiation between authentic scientific inquiry by scientists and school scientific inquiry by students in the classroom. This uncertainty of goals or definition of scientific inquiry has led to the problem or limitation of implementing scientific inquiry in the classroom. It was also pointed out that students' learning science as inquiry has been done without opportunities of argumentation to understand how scientific knowledge is constructed. Second, what is scientific argumentation, then? Researchers stated that scientific inquiry in the classroom cannot be guaranteed only through hands-on experimentation. Students can understand how scientific knowledge is constructed through their reasoning skills using opportunities of argumentation based on their procedural skills using opportunities of experimentation. Third, many researchers emphasized the social practices of small or whole group work for enhancing students' scientific reasoning skills through argumentations. Different role of leadership in groups and existence of teachers' roles are found to have potential in enhancing students' scientific reasoning skills to understand science as inquiry. Fourth, what is scientific reasoning? Scientific reasoning is defined as an ability to differentiate evidence or data from theory and coordinate them to construct their scientific knowledge based on their collection of data (Kuhn, 1989, 1992; Dunbar & Klahr, 1988, 1989; Reif & Larkin, 1991). Those researchers found that students skills in scientific reasoning are different from scientists. Fifth, for the purpose of enhancing students' scientific reasoning skills to understand how scientific knowledge is constructed, other researchers suggested that teachers' roles in scaffolding could help students develop those skills. Based on this literature review, it is important to find what kinds of generalizable teaching strategies teachers use for students scientific reasoning skills through scientific argumentation and investigate teachers' knowledge of scientific argumentation in the context of scientific inquiry. The relationship between teachers' knowledge and their teaching strategies and between teachers teaching strategies and students scientific reasoning skills can be found out if there is any.

An Analysis on Inquiry Elements of Environmental Units in the 10th Grade Science Textbooks, the 7th Curriculum (제 7차 교육과정 10학년 과학 교과에 포함된 환경단원의 탐구요소 분석)

  • Oh, Kang-Ho;Koh, Yeong-Koo
    • Hwankyungkyoyuk
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    • v.17 no.1
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    • pp.77-89
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    • 2004
  • This study aims to consider interrelations and reasonability to inquiry elements of environment units in 10th Science textbooks of 7th curriculum on the basis of their inquiry contexts, processes and activities. Frequency of inquiry contexts is 59.9% of the highest value in natural environment context but is 4.0% of the lowest one in techno-industrial context. Measurements, inferences, predictions, experiments, data-interpretations, correlations, conclusionreveals in inquiries are in all the textbooks, but observations and classifications, hypothesis generations, controlling variables, experimental designs and generalizations are not in some textbooks. Discussions, experiments, investigations in inquiry activities are included in all the textbooks. However, inspections are not appeared in the all the books. Based on the above results, social and techno-industrial inquiry contexts in the varied scopes are necessary in the environment curricula with a unified direction. Inquiry processes with pro-environmental behaviors as a last goal might be given into the curricula, having tasks that could be understand unified inquiries. In addition, inspections with effectiveness might be thrown into the scene of education.

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The Analysis of Inquiry Activities in High School Chemistry II Textbooks on the Revised 2009 Curriculum (2009 개정 교육과정 화학II 교과서의 탐구 활동 분석)

  • Kim, Jiyoung;Han, Jae-Eun;Park, Jongseok
    • Journal of The Korean Association For Science Education
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    • v.32 no.5
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    • pp.928-937
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    • 2012
  • The purpose of this study was to analyze inquiry activities in high school chemistry II textbooks on the revised 2009 curriculum. It also compared them to the textbooks based on the 7th curriculum, which were published by the same companies. The results in this study turned out to be as follows: First, the number of the activities and rate of inquiry activities per total pages were quite different from each publisher, and all of them decreased. Second, there were too many activities for specific inquiry process elements. Third, the types of inquiry activities differ slightly between each publisher. Experimenting and thinking were the most used while practicing was the least. Fourth, in the inquiry context, activities in scientific context were prevalent and activities in usual context were the second most common. Comparing to the text book on the 7th curriculum, the use of technical-social context increased, however, the technical-social context as well as the natural-environmental context were not used enough, as they constitute less than 10% of the activities. From these results, chemistry teachers should introduce a variety inquiry activities in chemistry curriculum for resolving those problems. Also, textbook developer should accommodate the results of research about science textbooks.

Reflective Inquiry Disposition: Students' Responses to Different Class Types of Inquiry-based High School Earth Science (고등학교 지구과학 탐구활동에서 수업유형에 따른 학생들의 반성적 탐구의 특성)

  • Jeong, Jin-Woo;Park, Mi-Ra;Cheong, Cheol
    • Journal of the Korean earth science society
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    • v.28 no.1
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    • pp.1-13
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    • 2007
  • The purpose of this study was to understand characteristics of students' reflective inquiry disposition in the contexts of classroom and to find educational implications for the promotion of the reflective inquiry activity in the inquiry-based class. In this study, we determined a characteristic of the reflection inquiry by examining students' responses showed in response to the different class types in high school earth science inquiry class. The result of the study indicated that the difference between the newly developed class type to promote the reflective inquiry and the existing inquiry class type was found significant. The newly developed reflective inquiry class had a multitude of reflective inquiry statements related to various elements of data context in terms of the quantity and diversity of the reflective inquiry. In conclusion, we found that the newly developed class type had a positive impact on the students' reflective inquiry activity. We believe that the development of the inquiry activity to promote students' reflective inquiry is critical.

Analysis of Inquiry Activities Presented in the 7th Grade Life Science Textbooks based on the 7th Curriculum (제 7차 교육과정 7학년 과학 교과 생명 영역의 탐구 분석)

  • Shim, Kew-Cheol;Kim, Hyun-Sup;Park, Young-Chul
    • Journal of The Korean Association For Science Education
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    • v.22 no.3
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    • pp.550-559
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    • 2002
  • This study is to investigate the type, process and context of inquiry activities in life science textbooks based on the seventh curriculum. Six kinds of science textbooks were analysed. Three units of life science were analysed; 'the structure of living things', 'digestion and circulation' and 'respiration and excretion', As result of analysis, types, processes and skills, and context of inquiry were not balanced, it is suggested that learners be educated with complementary of this aspects. To develope the science textbook on the basis of aims and objectives of curriculum, it is proposed that the inquiry activities presented in science textbooks be examined, and the framework to evaluate inquiry activities be reflected on the standard of science textbook authorization

An Analysis of Inquiry Activities of the High School Common Science Textbook(Materials Part) By Using 3-Dimensional Analysis Framework (3차원 분석틀을 이용한 고등학교 공통과학(물질 부분) 교과서의 탐구 활동 분석)

  • Kim, Yun-Hi;Moon, Seong-Bae
    • Journal of The Korean Association For Science Education
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    • v.20 no.2
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    • pp.274-287
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    • 2000
  • This study was performed the analysis of four kinds of common science textbooks based on the 6th curriculum. Particularly, inquiry activity part was analyzed by the three dimension framework which consists of inquiry content dimension, inquiry process dimension and inquiry context dimension. In the analysis of the inquiry content dimension of inquiry activities, the contents revised by 6th curriculum of common science textbook was accomplished through various inquiry activities. The number of inquiry activity in four textbooks was similar as about 16. The For the analysis of inquiry process dimension, 'interpreting data and formulating generalizations' category (39.1%) was most emphasized and the categories of 'observation and measuring'(30.8%), and 'building, testing and revising the theoretical model' (16.5 %), 'seeing a problem and seeking ways to solve it' (13.5%) follow in order. As for the analysis of the inquiry context dimension, the proportion of STS related contents in inquiry activities was only 18%. So, we propose that STS related contents would increase the proportion for the following textbook.

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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.

Exploring Korean Pre-service Elementary Teachers' Scientific Inquiry Using the Science Writing Heuristic Template

  • Shin, Myeong-Kyeong
    • Journal of the Korean earth science society
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    • v.33 no.5
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    • pp.459-466
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    • 2012
  • This study aimed to investigate the characteristics of pre-service elementary teachers' understanding about scientific inquiry in terms of designing exploration and reasoning that is used to formulate explanations based on evidence. The research context was an open inquiry with using the Science Writing Heuristic (SWH) template in which participant students were not provided with inquiry questions. As data, lab. 39 pre-service elementary teachers participated in this study while taking their science methods course. Analyses of the reports were framed by the cognitive processes of inquiry (Chinn and Malhotra, 2002) and each report was coded and analyzed by the framework of inquiry (Tytler and Peterson, 2004). Results showed that groups' works that utilized the SWH template encouraged the participants to interact each other about scientific inquiry. They came up with more relevant and testable questions for their scientific inquiry. It implicates that children will be able to have chances of testing their own questions more properly by using the SWH template in science classes just as the participants did in this study. The use of the SWH template would help pre-service teachers to teach appropriately how to test inquiry questions to their students in the future. Discussion was made to figure out the characteristics or Korean pre-service elementary teachers' understanding about scientific inquiry.

A model of Worksheets with Various Levels Considering Contexts and Inquiry of the Learning Tasks for Elementary Science Classes (학습 과제의 맥락과 탐구의 수준을 고려한 자연과 학습지 모형)

  • Lee, Myeong-Je;Lee, Je-Yong
    • Journal of The Korean Association For Science Education
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    • v.19 no.3
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    • pp.448-460
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    • 1999
  • Worksheets with various levels are major instructional material in open classroom, but sometimes they have been arbitrarily developed in elementaryschools. Especially, pedagogical elements of science course seem to have been neglected in developing science learning papers. To solve these problems, a model of worksheets was developed considering the contextual nature of science knowledge and educational constructivism. The frame of this model is composed of inquiry skill and context, which are two dimensions of each learning task. The level of each worksheet was determined by the level of inquiry skills and the familiarity of contexts.

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Analysis of Inquiry Activity of the 7th Grade Science Textbook Based on the 7th Curriculum (7차 교육과정에 따른 7학년 교과서의 탐구활동 분석 -물질 영역을 중심으로-)

  • Jongseok Park;Jaehyun Kim;Haiil Ryu
    • Journal of the Korean Chemical Society
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    • v.47 no.1
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    • pp.67-71
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    • 2003
  • The present study examined the inquiry type, process, and context of activities presented in the matter field of the 7th grade science textbook based on the 7th curriculum. It was to investigate for educational suggestions in instruction and development of science textbook. Three units of ‘three states of matter', ‘motion of molecule', ‘the state change and energy' were analyzed. The result indicated that the types, processes and skills, and context of inquiry were not balanced, and learners should be educated with complementary inquiry activities. It is proposed that the inquiry activities presented in science textbooks be examined, and the framework to evaluate inquiry activities be reflected on the standard of science textbook authorization for development of the science textbook to accord with aims and objectives of curriculum.