• 제목/요약/키워드: science problem solving process

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초등 과학 영재의 과학 문제 해결 과정 분석 (Analysis on Science Problem Solving Process of the Elementary Science Gifted Students)

  • 임청환;임귀숙
    • 한국초등과학교육학회지:초등과학교육
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    • 제30권2호
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    • pp.213-231
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    • 2011
  • The purpose of this study was to investigate knowledge types which the elementary science gifted students would use when solving a science problem, and to examine characteristics and types that were shown in the science problem solving process. For this study, 39 fifth graders and 38 sixth graders from Institute of Education for the Gifted Science Class were sampled in one National University of Education. The results of this study were as follows. First, for science problem solving, the elementary science gifted students used procedural knowledge and declarative knowledge at the same time, and procedural knowledge was more frequently used than declarative knowledge. Second, as for the characteristics in the understanding step of solving science problems, students tend to exactly figure out questions' given conditions and what to seek. In planning and solving stage, most of them used 3~4 different problem solving methods and strategies for solving. In evaluating stage, they mostly re-examined problem solving process for once or twice. Also, they did not correct the answer and had high confidence in their answers. Third, good solvers had used more complete or partially applied procedural knowledge and proper declarative knowledge than poor solvers. In the problem solving process, good solvers had more accurate problem-understanding and successful problem solving strategies. From characteristics shown in the good solvers' problem solving process, it is confirmed that the education program for science gifted students needs both studying on process of acquiring declarative knowledge and studying procedural knowledge for interpreting new situation, solving problem and deducting. In addition, in problem-understanding stage, it is required to develop divided and gradual programs for interpreting and symbolizing the problem, and for increasing the understanding.

초등학교 3학년 '혼합물의 분리' 단원에서 문제해결 과정을 강조한 수업 전략 개발 및 적용 (Development and Application of Teaching Strategy Focused on Problem Solving Process in the 'Separation of Mixture' Unit of Third Grade Elementary School)

  • 이신현;최선영
    • 한국초등과학교육학회지:초등과학교육
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    • 제33권1호
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    • pp.105-114
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    • 2014
  • The purpose of this study was to develop a teaching strategy focused on problem solving process and explore its effects on science creative problem solving ability, science process skills, science academic achievements and scientific attitudes of students after applying it. Teaching strategy focused on problem solving process employed brainstorming and PMI thinking strategies. The participants were the third grade students of both an experimental class(26 students) and a comparative class(25 students) at the S elementary school located in Goyang-City, Kyonggi Province. The developed strategy was applied to the experimental class for 9 periods of 'Separation of mixture' unit. The results of the tests on the science creative problem solving ability, the science process skills, scientific achievement and scientific attitude were statistically higher in the experimental class.

초등 과학 문제 풀이 과정에서의 성별 특성 (Gender Characteristics in Elementary Science Problem Solving Process)

  • 신동희;박병태
    • 한국초등과학교육학회지:초등과학교육
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    • 제28권3호
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    • pp.229-244
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    • 2009
  • This study was initiated to investigate sixth graders' gender characteristics in science problem solving process and thus find out the proper learning and teaching strategies for each gender. A total of 14 students, each of seven male and female students, were selected through three tests, including items of science knowledge, science inquiry, and creativity. Students were required to solve 26 items and to think aloud for researchers help understand how they thought in their problem solving process. Males and females showed some similarity and difference in four steps of problem solving process, understanding, planning, solving, and reviewing. We found gender differences in self-confidence of their answer. This study is expected to help develop teachers' differential teaching strategy for male and female students' science problem solving.

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A New Approach to the Science Education Assessment Using Partial Credits to Different Science Inquiry Problem Solving Process Types

  • Lee, Hang-Ro;Lim, Cheong-Hwan
    • 한국지구과학회지
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    • 제23권2호
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    • pp.147-153
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    • 2002
  • Reasonable and reliable assessment method is one of the most important issues in science education, Partial credits method is an effective tool for assessing students' science inquiry problem solving. The purposes of this study were to classify the Problem solving types based on the analysis of the thinking Process, and how much the related science concept and the science process skills were used in solving science inquiry problems, and to describe the possibility and rationality of the assessment method that gives partial credit 128 high school seniors were selected and their answers were analyzed to identify science concepts they used to solve each problem, and the result was used as the criterion in the scientific concept test development. Also, to study the science inquiry problem solving type, 152 high school seniors were selected, and protocols were made from audio-taped data of their problem solving process through a think-aloud method and retrospective interviews. In order to get a raw data needed in statistical comparison of reliability, discrimination and the difficulty of the test and the production of the regression equation that determines the ratio of partial credit, 640 students were selected and they were given a science inquiry problem test, a science process skills test, and a scientific concept test. Research result suggested it is more reasonable and reliable to switch to the assessment method that applies partial credit to different problem solving types based on the analysis of the thinking process in problem solving process, instead of the dichotomous credit method.

프로젝트 기반 STEAM 프로그램 개발 및 적용 효과 (The Effects and Development of Project-Based STEAM Program)

  • 이상균;이하룡
    • 대한지구과학교육학회지
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    • 제6권1호
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    • pp.78-86
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    • 2013
  • The purpose of this study is to analyze the effects of the Project based STEAM program on primary students' Problem solving process and creative personality. Based on the concept of project based learning and STEAM derived from a literature review, a learning program has been developed and applied to 28 elementary 4-6th students. Problem Solving Process and Creative personality tests were conducted before and after Project based STEAM program lessons. The results of this study are as follows. (1)Project-based STEAM was affected all components of problem solving process. (2) Project-based STEAM was affected all eight components of creative personality positively, (3) after using Project-based STEAM was good reaction by students. As a result, the elementary science class with Project-based STEAM had problem solving process for positive educational effect and creative personality. it means the science class with creative personality has potential possibilities and value to develop problem solving process and creative personality.

문제발견 중심의 과학토론수업이 초등학생들의 과학 창의적 문제해결력과 과학탐구능력에 미치는 영향 (The Effect of Scientific Discussion Classes Focusing Problem Finding on the Primary School Students' Scientific Creative Problem Solving Ability and Science Process Skills)

  • 김순식;이용섭
    • 대한지구과학교육학회지
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    • 제7권1호
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    • pp.133-143
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    • 2014
  • The purpose of this study was to examine the effect of scientific discussion classes focusing problem finding on the primary school students' scientific creative problem solving ability, science process skills and attitude toward science class. To verify this research problem, the subject of this study was fifth-grade students selected from four classes of M elementary school located in Busan city. For four months, the experimental group of 51 students was taught using the "scientific discussion classes focusing problem finding". The control group also of 53 students was taught in normal classes which used a text-book. All students were given pre and post test to verify the effects of scientific discussion classes focusing problem finding on the primary school students' scientific creative problem solving ability, science process skills and attitude toward science class. The results from this study are as the following. First, the scientific discussion classes focusing problem finding were effective in scientific creative problem solving ability among the primary school students. It is possibly because in the process where one student compare his/her own thoughts with the others' ones and discuss them. Second, the scientific discussion classes focusing problem finding were effective in science process skills among the primary school students. Third, the scientific discussion classes focusing problem finding were effective in attitude toward science class. In conclusion, the scientific discussion classes focusing problem finding had positive effects on improvement of primary school students' scientific creative problem solving ability, science process skills and also could lead to a change in students' cognition about science class to a positive way. Therefore, the scientific discussion class focusing problem finding is hopefully to be provided as an effective instructive strategy of science class in school in the future.

과학 영재들의 성별에 따른 지구과학 영역 문제해결과정에 대한 비교 (Comparison on Problem Solving of Earth Science Area by Science Gifted Children's Gender)

  • 박병태;권치순
    • 대한지구과학교육학회지
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    • 제2권1호
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    • pp.55-61
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    • 2009
  • This study was designed to explore problem solving process to earth science area by elementary science gifted children, which compared and analyzed the questionnaires and problem solving to earth science area by gifted Science education center, Seoul National University Of Education, The analyzed results showed difference by gender that in the science study level at the time of entrance to the gifted Science education center, male students was the highest in the middle school as 37.5%, and female students in the elementary 6th grade as 61.5%. And male students were investigated to do more precedent study than female students. Secondly, in the problem solving process of earth science related problems, males made most use of problem solving process area(30.3%), and females symbolizing (27.5%) area. Thirdly, comparison of reasoning technology in problem solving process by gender indicated that both sexes made the most use of analytical reasoning (male 62.0%, female 53.6%) to solve problems.

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SEM-CT: 과학(S), 공학(E), 수학(M)적 문제해결과정과 컴퓨팅 사고(CT) (SEM-CT: Comparison of Problem Solving Processes in Science(S), Engineering(E), Mathematic(M), and Computational Thinking(CT))

  • 남윤경;윤진아;한금주;정주훈
    • 컴퓨터교육학회논문지
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    • 제22권3호
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    • pp.37-54
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    • 2019
  • STEM 융합교육의 중요한 목적은 서로 다른 학문이 가지는 탐구의 방법을 이해함으로써 융합적 문제해결력을 기르는 것이다. 이를 위해 우선적으로 각 학문에서 중요하게 다루어지는 문제해결과정을 이해해야 한다. 본 연구는 과학(S), 공학(E), 수학(M) 각각의 분야에서 어떻게 문제해결과정을 정의하고 있는지 비교분석하고, 이를 근거로 SEM 문제해결과 CT 문제해결의 관련성을 파악하고자 하였다. 이를 위해 먼저 SEM 각 학문의 문제해결과정을 비교 분석하여 그 공통점과 차이점을 기술하였다. 다음으로 CT를 도구적 측면과 사고적 측면으로 구분하고 문제해결과정으로서 CT가 SEM 각각의 학문에서 문제해결과 어떤 차이가 있는지 기술하였다. 마지막으로, SEM 문제해결 프로세스와 CT와의 관계를 모형으로 제시하였다. 본 연구는 문제해결과정으로써 CT와 SEM이 융합할 수 있는 방향을 제시한다는 점에서 그 의미가 있다.

간호 시뮬레이션 교육이 간호대학생의 문제해결과정과 자기효능감에 미치는 효과 (Effects of Nursing Simulation-Based Education on Problem Solving Process and Self-efficacy of Nursing College Students)

  • 오혜경;한영인
    • 보건의료산업학회지
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    • 제6권4호
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    • pp.245-254
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    • 2012
  • The purpose of this study was to approve the effects of nursing simulation-based education on problem solving process and self-efficacy for nursing students. The nursing students of 244 participated the nursing simulation-based education of 60 hours. The questionnaire survey on problem solving process and self-efficacy were conducted 2 time(before education, after education) to the nursing students. The data were analyzed by the SPSS 12.0 program. The results were as follows; There was a statistically significant increase in problem solving process(t=2.637, p=.012) but no statistically significants self-efficacy(t=0.135, p=.743) effects of nursing simulation-based training in nursing college students. There was a significant positive correlation between problem solving process and self-efficacy(r=0.737, p=.017). In conclusion, the study found that nursing simulation-based education for nursing students may increase problem solving process but no effective self-efficacy.

초등 과학 우수 학생의 일상적 맥락의 과학 문제 해결 과정: 서답형 문항에 대한 응답 분석 (Everyday science problem solving processes of high ability elementary students in science: Analysis of written responses)

  • 김찬종
    • 한국초등과학교육학회지:초등과학교육
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    • 제17권1호
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    • pp.75-87
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    • 1998
  • The problem solving processes of elementary school children who are talented in science have been seldom studied. Researchers often resort to thinking aloud method to collect data of problem solving processes. The major purpose of the study is investigating high ability elementary school students' problem solving processes through the analysis of written responses to science problems in everyday context. 67 elementary students were participated Chungcheongbuk-do Elementary Science Contest held on October, 1997. The written responses of the contest participants to science problems in everyday context were analyzed in terms of problem solving processes. The findings of the research are as follows. (1) High ability elementary students use various concepts about air and water in the process of problem solving. (2) High ability elementary students use content specific problem solving strategies. (3) The problem solving processes of the high ability elementary students consist of problem representation, problem solution, and answer stages. Problem representation stage is further divided into translation and integration phases. Problem solving stage is composed of deciding relevant knowledge, strategy, and info..ins phases. (4) High ability elementary students' problem solving processes could be categorized into 11 qualitatively different groups. (5) Students failures in problem solving are explained by many phases of problem solving processes. Deciding relevant knowledge and inferring phases play major roles in problem solving. (6) The analysis of students' written responses, although has some limitations, could provide plenty of information about high ability elementary students' problem solving precesses.

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