• 제목/요약/키워드: modeling-based inquiry

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초등학생들의 계절의 변화 단원의 학습에서 모델링 중심 과학 탐구 수업의 효과 (Effects of Modeling-Based Science Inquiry Instruction on Elementary Students' Learning in the Unit of Seasonal Changes)

  • 유연준;오필석
    • 한국초등과학교육학회지:초등과학교육
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    • 제35권2호
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    • pp.265-276
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    • 2016
  • In this study, modeling pedagogies were employed to re-design and teach the unit of Seasonal Changes in the $6^{th}$ grade science curriculum. The effects of the modeling-based program were investigated in both the conceptual and affective domains using an approach of mixing quantitative and qualitative techniques. The result showed that the students in the modeling-based science inquiry classroom gained a higher mean score in a conceptual achievement test than their counterparts in a traditional science classroom. The number of the conceptual resources activated to explain the causes of the seasons, as well as the types of student explanations developed through the combination of the resources activated, were greater in the modeling-based classroom. The modeling-based science inquiry was also effective in improving student attitudes toward science lessons. It was revealed, however, that the students experienced both positive and negative epistemic feelings during the modeling-based science inquiry. Implications of these findings for science education and relevant research were suggested and discussed.

초등 예비교사의 자기 모델 탐구 과정과 과학적 모델에 대한 이해 변화 (Pre-service Elementary Teachers' Inquiry on a Model of Magnetism and Changes in Their Views of Scientific Models)

  • 윤혜경
    • 한국초등과학교육학회지:초등과학교육
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    • 제30권3호
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    • pp.353-366
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    • 2011
  • An alternative vision for science inquiry that appears to be important and challenging is model-based inquiry in which students generate, evaluate and revise their explanatory model. Pre-service teachers should be given opportunities to develop and use their mechanistic explanatory models in order to participate in the practice of science and to have a sound understanding of science. With this view, this study described a case of pre-service elementary teachers' scientific modeling in magnetism. The aims of this study were to explore difficulties preservice elementary teachers encountered while they engaged in a model-based inquiry, and to examine how their understandings of the nature of scientific models changed after the model-based inquiry. The data analysis revealed that the pre-service teachers had difficulties in drawing and writing their own thinking because they had little experience of expressing their own science ideas. When asked to predict what would happen, they could not understand what it meant to make a prediction "based on their model". They did not know how to use or consider their model in making a prediction. At the end of the model-based inquiry they reached a final consensus of a best model. However, they were very anxious about whether the model was the "correct" answer. With respect to the nature of scientific models, almost all of the pre-service teachers initially viewed models only as a communication tool among scientists or students and teachers to help understand others' ideas. After the model-based inquiry, however, many of them understood that they could create, test, and revise their "own" models "by themselves". They also realized the key aspects of scientific models that a model can be changed as evidence is accumulated and a model is a knowledge production tool as well as a communication tool. The results indicated that pre-service elementary teachers' understandings of the nature of scientific models and their previous school science experiences could affect their performance on a model-based inquiry, and their experience of scientific modeling could help them enhance their understandings of the nature of scientific models.

귀추적 사고 과정에서 모델의 역할 -이론과 경험 연구를 통한 도식화- (Roles of Models in Abductive Reasoning: A Schematization through Theoretical and Empirical Studies)

  • 오필석
    • 한국과학교육학회지
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    • 제36권4호
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    • pp.551-561
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    • 2016
  • 본 연구의 목적은 과학 문제 해결을 위한 귀추적 사고 과정에서 모델의 역할을 이론 연구와 경험 연구를 통해 조사하는 것이었다. 이 연구는 지구과학 탐구 학습 프로그램을 개발하기 위한 설계 기반 연구의 맥락에서 이루어졌으며, 본 논문에서는 그 중 지질학 분야의 귀추적 탐구 활동을 재설계하는 과정을 중점적으로 다루었다. 이론 연구에서는 지구과학에 특징적인 연구 방법으로서 귀추와 모델링을 관련지어 연구한 대표적인 연구자들의 저작들을 집중적으로 고찰하였다. 그 결과로, 증거, 자원 모델, 설명 모델의 관계를 나타낸 모델링 중심의 귀추적 추론에 대한 잠정적인 도식을 제안하였다. 이 도식을 지질학 문제를 해결하는 전문가들의 사고 과정을 분석한 경험 연구를 통해 정교화 하였다. 새로운 도식에는 결정적 증거, 결정적 자원 모델, 과학적으로 타당한 설명 모델의 역할이 포함되었다. 이와 더불어 모델링 중심의 귀추적 탐구 수업에서 학생들의 사고 과정을 지원할 수 있는 교수법적인 시사점을 도출하였다.

집단중심 추세모형을 적용한 과학고등학교 학생들의 통합 탐구 기능 변화 분석 (Analyzing the Change of Science High School Students' Integrated Process Skills Using Group-based Trajectory Modeling)

  • 이기영;하민수;박재용
    • 한국지구과학회지
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    • 제41권1호
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    • pp.48-60
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    • 2020
  • 이 연구의 목적은 집단중심 추세모형을 적용하여 과학고 학생들이 탐구를 수행하는 과정에서 나타난 통합 탐구 기능 변화의 양상과 특징을 분석하는 것이다. 이를 위해 3개의 가설-연역적 탐구 과제를 이용하였으며, 이를 59명의 과학고 학생들에게 순차적으로 수행하게 하고 그 과정을 보고서로 작성하게 하였다. 작성된 보고서는 Lee and Park(2017)에 의해 개발된 평가 준거틀에 따라 통합 탐구 기능 4개 요소별로 평가하였으며, 이를 집단중심 추세모형에 적용하여 탐구 과제를 수행한 3개 시점에 따른 탐구 기능 수준의 변화 양상을 요소별로 분석하였다. 또한, 탐구 기능 변화에서 나타난 특징을 몇 가지 관점에서 분석하였다. 연구 결과는 다음과 같다: 첫째, 집단중심 추세모형을 적용하여 학생들의 통합 탐구 기능 변화 양상을 분석한 결과, 4개 요소 모두에서 2개 집단으로 분류되었으나 그 변화 양상은 요소별로 많은 차이가 있었다. 둘째, 학생들의 통합 탐구 기능 변화에서 나타난 특징을 분석한 결과, 탐구 기능의 맥락의존성, 탐구 기능 발달 경로의 변이성, 탐구 기능 요소별 수준의 들쭉날쭉성을 발견할 수 있었다. 연구 결과를 토대로 과학고 학생들의 통합 탐구 기능 발달을 위한 제언을 하였다.

Proposal of Electronic Engineering Exploration Learning Operation Using Computing Thinking Ability

  • LEE, Seung-Woo;LEE, Sangwon
    • International Journal of Advanced Culture Technology
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    • 제9권4호
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    • pp.110-117
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    • 2021
  • The purpose of the study is to develop effective teaching methods to strengthen the major learning capabilities of electronic engineering learners through inquiry learning using computing thinking ability. To this end, first, in the electronic engineering curriculum, we performed teaching-learning through an inquiry and learning model related to mathematics, probability, and statistics under the theme of various majors in electronic engineering, focusing on understanding computing thinking skills. Second, an efficient electronic engineering subject inquiry class operation using computing thinking ability was conducted, and electronic engineering-linked education contents based on the components of computer thinking were presented. Third, by conducting a case study on inquiry-style teaching using computing thinking skills in the electronic engineering curriculum, we identified the validity of the teaching method to strengthen major competency. In order to prepare for the 4th Industrial Revolution, by implementing mathematics, probability, statistics-related linkage, and convergence education to foster convergent talent, we tried to present effective electronic engineering major competency enhancement measures and cope with innovative technological changes.

교사학습공동체에 참여한 한 고등학교 교사의 과학적 모델링에 대한 이해 및 수업 실행 변화 탐색 -프레임 분석을 중심으로- (Exploring How a High School Science Teacher's Understanding and Facilitation of Scientific Modeling Shifted through Participation in a Professional Learning Community)

  • 심수연
    • 한국과학교육학회지
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    • 제40권1호
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    • pp.29-40
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    • 2020
  • 본 연구의 목적은 한 고등학교 과학 교사(E 교사)가 약 1년 3개월간 교사공동체 탐구에 참여하며 어떻게 과학적 모델링에 관한 이해와 실행을 변화시켜나갔는지를 탐색하는 것이었다. 상황 학습 관점을 기반으로 본 연구에서는 E 교사의 사회적 상호작용들로부터 모델링에 관한 그녀의 프레임들을 탐색하였다. E 교사는 1년 3개월간 총 6회의 "스튜디오"라는 교사 연수에 참여해 같은 학교의 과학 교사들과 연구자들, 코치들과 협력하였다. 매 스튜디오에서 참여자들은 함께 모델링 기반 수업을 계획하고, 실행하고, 그에 관해 반성하였다. 본 연구에서는 먼저 E 교사가 수업을 진행한 2회차, 6회차 스튜디오에 초점을 맞추어, E 교사의 교사공동체 및 교실 상호작용으로부터 드러난 모델링에 관한 그녀의 프레임들을 질적으로 탐색하고, 그로부터 E 교사의 이해와 실행에 변화가 있었는지 탐색하였다. 다음으로, 교사공동체 탐구가 E 교사의 이해와 실행 변화에 어떻게 영향을 미쳤는지 탐색하기 위하여, 1-6회차 스튜디오에서 진행된 교사공동체 탐구가 질적으로 분석되었다. 연구 결과, 2회차 스튜디오에서 E 교사는 과학적 모델링을 학생들이 활동지에 정답을 채워 넣는 활동으로 보고 있었다. 반면 6회차 스튜디오에서 E 교사가 드러낸 과학적 모델링에 관한 프레임들은 그녀가 모델링을 학생들이 협력을 통해 증거를 사용하여 자연현상에 관한 설명을 구성하는 과정으로 보고 있었음을 보여주었다. E 교사가 속한 교사공동체는 모델링 기반 교수를 발전시키고자 하는 목표를 바탕으로, 매 스튜디오에서 학생들의 모델링을 돕고, 학생들의 설명과 추론을 분석하였다. 또한 그들은 여러 스튜디오들에 걸쳐 탐구 초점들과 교수 실행들을 구체화시키고 발전시켜나갔다. 이러한 공동체 탐구의 초점들은 E 교사의 과학적 모델링에 관한 이해와 실행 변화에 반영되었다. 본 연구의 결과는 교사공동체 탐구나 교사 전문성 발달을 지원하고자 하는 연구자, 실행가들에게 유용한 정보를 제공할 수 있다.

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

  • 이경훈
    • 한국과학교육학회지
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    • 제17권3호
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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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Review on Application of Biosystem Modeling: Introducing 3 Model-based Approaches in Studying Ca Metabolism

  • Lee, Wang-Hee;Cho, Byoung-Kwan
    • Journal of Biosystems Engineering
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    • 제37권4호
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    • pp.258-264
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    • 2012
  • Purpose: This review aims at introducing 3 modeling approaches classified into 3 categories based on the purpose (estimation or prediction), structure (linear or non-linear) and phase (steady-state or dynamic-state); 1) statistical approaches, 2) kinetic modeling and 3) mechanistic modeling. We hope that this review can be a useful guide in the model-based approach of calcium metabolism as well as illustrates an application of engineering tools in studying biosystems. Background: The meaning of biosystems has been expanded, including agricultural/food system as well as biological systems like genes, cells and metabolisms. This expansion has required a useful tool for assessing the biosystems and modeling has arisen as a method that satisfies the current inquiry. To suit for the flow of the era, examining the system which is a little bit far from the traditional biosystems may be interesting issue, which can enlarge our insights and provide new ideas for prospective biosystem-researches. Herein, calcium metabolic models reviewed as an example of application of modeling approaches into the biosystems. Review: Calcium is an essential nutrient widely involved in animal and human metabolism including bone mineralization and signaling pathways. For this reason, the calcium metabolic system has been studied in various research fields of academia and industries. To study calcium metabolism, model-based system analyses have been utilized according to the purpose, subject characteristics, metabolic sites of interest, and experimental design. Either individual metabolic pathways or a whole homeostasis has been modeled in a number of studies.

'먹이 그물과 먹이 피라미드' 모형 구성에서 나타난 초등학생의 추론 유형 (Elementary Student's Reasoning Patterns Represented in Constructing Models of 'Food Web and Food Pyramid')

  • 한문현;김희백
    • 한국초등과학교육학회지:초등과학교육
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    • 제31권1호
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    • pp.71-83
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    • 2012
  • The purpose of this study was to explore ecological concepts, epistemological reasoning and reasoning processes through constructing 'food web and food pyramid' in ecology. We conducted classes which involved a 'food web and food pyramid' for $6^{th}$ grade students. Each class is constructed of small groups to do modeling and epistemological reasoning through communication. The researcher had videotaped and recorded each class and have made transcription about classes. We analysed patterns of 'food web and food pyramid models' and reasoning processes according to scientific epistemology using transcription data and student outputs. As a result, students represented phenomenon-based reasoning, relation-based reasoning and model-based reasoning in scientific epistemology from their modeling. Students usually did relation-based reasoning and model-based reasoning in food web which explains ecological phenonenon, while they usually did model-based reasoning in food pyramid which expects ecological phenomenon. Student's reasoning can be limited when they have misconception of scientific knowledge and are limited by fragmentary knowledge. This represents that students has to do relation-based reasoning and model-based reasoning is beneficial in their ecological model. It also suggests that students need to define correct-conception related to ecological modeling(food web, food pyramid).

수학적 모델링에서 집단창의성 발현사례 (Manifestation examples of group creativity in mathematical modeling)

  • 정혜윤;이경화
    • 한국수학교육학회지시리즈A:수학교육
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    • 제57권4호
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    • pp.371-391
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    • 2018
  • The purpose of this study is to analyze manifestation examples and effects of group creativity in mathematical modeling and to discuss teaching and learning methods for group creativity. The following two points were examined from the theoretical background. First, we examined the possibility of group activity in mathematical modeling. Second, we examined the meaning and characteristics of group creativity. Six students in the second grade of high school participated in this study in two groups of three each. Mathematical modeling task was "What are your own strategies to prevent or cope with blackouts?". Unit of analysis was the observed types of interaction at each stage of mathematical modeling. Especially, it was confirmed that group creativity can be developed through repetitive occurrences of mutually complementary, conflict-based, metacognitive interactions. The conclusion is as follows. First, examples of mutually complementary interaction, conflict-based interaction, and metacognitive interaction were observed in the real-world inquiry and the factor-finding stage, the simplification stage, and the mathematical model derivation stage, respectively. And the positive effect of group creativity on mathematical modeling were confirmed. Second, example of non interaction was observed, and it was confirmed that there were limitations on students' interaction object and interaction participation, and teacher's failure on appropriate intervention. Third, as teaching learning methods for group creativity, we proposed students' role play and teachers' questioning in the direction of promoting interaction.