• Title/Summary/Keyword: Students' Thinking

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An Analysis of High School Students' Systems Thinking and Understanding of the Earth Systems through their Science Writing (과학 글쓰기를 통한 고등학생의 지구 시스템에 대한 이해와 시스템 사고의 분석)

  • Lee, Hyundong;Kim, Taesu;Lee, Hyonyong
    • Journal of the Korean earth science society
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    • v.38 no.1
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    • pp.91-104
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    • 2017
  • The purposes of this study were to analyze high school students' understanding about the Earth system and systems thinking process, and to develop science writing programs designed to assess students' understanding about themes of Earth Science such as global warming, volcanoes, and desertification. A total of 8 $11^{th}$ grade students from general high schools participated in the writing program and draw the causal maps. The methods of this study are as follows. First, DAET-C was used to investigate the way of students' understanding about the Earth systems. What the students' best understood was the component of the Earth systems followed by the interaction of the Earth systems and the scientific literacy of Earth science. Second, feedback circulations on the causal maps were found in four students in global warming section, one student in volcanic eruption section, and four students in desertification section, which means that systems thinking was not largely employed by the students. Consequently, the student participants understood that the global change was happening in correlation with complex concepts and factors, but they were short of using systems thinking in their science study. Therefore, the result of this study suggests that more studies be conducted to develop systems thinking in Earth Science learning through science writing programs.

A Study on Information Education and School Library (정보교육과 학교도서관에 관한 연구)

  • Yoo So-Young
    • Journal of the Korean Society for Library and Information Science
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    • v.26
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    • pp.53-74
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    • 1994
  • Creative thinking in education is a common assumption to be accomplish in this information age. Information education can contribute to build the ability to think creatively. The Author explored how information education conduces the creative thinking ability that is necessary to the development of independent and competent study for students themselves. The writer also expressed the integrated education makes students think synthetically and synthetic educational experience derives creative thinking. She based her arguments upon the theory of the psychology of memory and the Piaget's cognitive structure. To increase the effects of information education, it is necessary to integrate the curriculums and learning method of the information education and those of other areas of learning, i,e., languages, literatures, social sciences, sciences, mathematics, etc. Here, author asserted that the teaching of information skill within classroom curriculums for all subject areas can make the integrated effects on various classroom curriculums. On the basis of the findings of this study, the author recommended that every school needs to prepare enough books and other media for the students to drill information skill. Consequently, to build creative thinking ability for He students, librarians, classroom teachers and school principals who have influence on the information education, have to cooperate to initiate integrated information education for the student.

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The effect of an engineering-technology program on Technological thinking disposition and Engineering attitude of high school student (공학기술캠프 참여 경험이 고등학생의 기술적 사고 성향과 공학태도에 미치는 영향 분석)

  • Lim, Nhayoung;Lee, Changhoon
    • Journal of Engineering Education Research
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    • v.20 no.3
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    • pp.50-57
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    • 2017
  • The purpose of this study was verify the effect of an engineering-technology program on high school students' technological thinking disposition and engineering attitude. To achieve this purpose, the question were as follows. 1) How does the engineering-technology program affect high school students' technological thinking disposition? 2) How does the engineering-technology program affect high school students' engineering attitude? For this study, the program was progressed from May to Aug in 2016. The data were collected from 138 D high school students which is located in Daejeon, Korea. For the statistical treatment of data, a Window SPSS-22 are used and significance level of .05 was established prior to data treatment. The results of this study were as follows: First, after participate in engineering-technology program was significant effect on the technological curiosity disposition, technological creativity and expression disposition, technological operating disposition, technological planning and reflecting disposition but no significant effect on the technological analyze disposition, technological problem identifying resolving disposition. Second, after participate in engineering-technology program, there was significant effect on the interests in engineering, the perceptions of creativity in engineering but no significant effect on the perceptions of importance in engineering.

The Study on the qualitative research paper and essay done in dental history class. (치의학 역사 수업의 질적 연구 논문과 수필에 관한 연구)

  • Lee, Jue Yeon
    • The Journal of the Korean dental association
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    • v.54 no.12
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    • pp.948-970
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    • 2016
  • For three years, from 2014 to 2016, in dental history class, 263 3rd grade students, attending postgraduate dental school had reviewed current problems of the dentistry and dental care system by adopting historical thinking, in forms of essays, editorials, and papers, The purpose of this study is to know whether writing has educational benefits on students. Analysis of the writings and Student course evaluation showed that it is beneficial. All of the students agreed on submitting a qualitative study project instead of taking midterms on 2016. The approval ratio has increased over the years, on 2014 being 82%, on 2015 being 98%, on 2016 being 100%. For that reason, it is not an assertion to deduce that the students have experienced benefits while developing their genuine thoughts on the current status or problems, exploring what their role is, and what they will face. The chronological thinking had been used throughout the researches to identify what Dentistry and Dentist is. Dentistry have encompassed knowledges of natural sciences, humanities and other fields when needed to perfect itself. In doing so, Dentist achieved independence from doctor or other cooperatives. Research on Korean Dental care system has involved in historical thinking, including historical analysis, inquisition, and historical imagination, insight. etc. If the in-depth evaluation consisting of history and writing is sustained, it would be very effective teaching method.

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Effects of Multi-mode Simulation Learning on Nursing Students' Critical Thinking Disposition, Problem Solving Process, and Clinical Competence

  • Ko, Eun;Kim, Hye Young
    • Korean Journal of Adult Nursing
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    • v.26 no.1
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    • pp.107-116
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    • 2014
  • Purpose: The purpose of this study was to identify the effects of multi-mode simulation learning on critical thinking disposition, on the problem solving process and on clinical competence of nursing students. Methods: A non-equivalent control group with pre-posttest was designed. The participants in this study were 65 students who were enrolled in an emergency and critical nursing course at N university. The treatment group consisted of 33 juniors in 2010 and the control group 32 juniors in 2011. Collected data were analyzed using chi-square, independent t-test, and ANCOVA with the SPSS/WIN 18.0 for Window Program. Results: There were significant increases in problem solving process and clinical competence in the treatment group who participated in the multi-mode simulation learning compared to the control group who did not (t=-2.39, p=.020; F=12.76, p=.001). However, there were no significant differences in critical thinking disposition between the treatment and control group (t=0.40, p=.692). Conclusion: Multi-mode simulation is an effective teaching and learning method to enhance the problem solving process and clinical competence of nursing students. Further exploration is needed to develop and utilize multi-mode simulation for diverse scenarios, depending on emergency nursing educational goals and environments and to develop a universal method to measure outcomes.

Effects of High-fidelity Simulator and Standardized Patient on Nursing Care for Children with Fever in Nursing Students (고충실도(High-fidelity) 시뮬레이터와 표준화 환자 (Standardized Patient)를 활용한 발열환아 간호 교육의 효과)

  • Ha, Young-Ok
    • Korean Parent-Child Health Journal
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    • v.20 no.1
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    • pp.10-17
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    • 2017
  • Purpose: This study was conducted to investigate the effects of simulation-based education using high-fidelity simulator and standardized patient in nursing care for children with fever on nursing students. Methods: A total of 166 senior nursing students who completed pediatric nursing practicum courses participated in this study. The single group study design with pretest and posttest was used. The simulation education was provided for 200mins including orientation, simulation preparation, simulation practicum, and debriefing. Pre and post surveys were performed using questionnaires on clinical performance competency, communication skills, critical thinking disposition and self-confidence. Results: The mean scores of clinical performance competency (t=-2.56, p<.05), communication skills (t=-6.39, p<.001), critical thinking disposition (t=-3.43, p<.001), and self-confidence (t=-3.72, p<.001) in posttest were significantly higher than those in pretest. Also, clinical performance competency in nursing care for children with fever has significant relationships with communication skills, critical thinking disposition and self-confidence. Conclusion: The results indicate that simulation-based education using high-fidelity simulator and standardized patient is an effective strategy for improving clinical performance competency, communication skills, critical thinking disposition and self-confidence in nursing students. Further study is needed to verify the effects.

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The Impact of Using Some Participatory E-learning Strategies in Developing Skills of Designing and Producing Electronic Courses for A sample of Umm Al-Qura University Students and their Innovative Thinking

  • Emad Mohammed Samra
    • International Journal of Computer Science & Network Security
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    • v.23 no.3
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    • pp.17-30
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    • 2023
  • The current research aims to reveal the impact of using some participatory e-learning strategies (participatory product - classroom web simulation) in developing cognitive achievement, electronic course design skills, and - skills list - Torrance test of innovative thinking). The tools of innovative thinking among a sample of Information Science students. To achieve the objectives of current research, the researcher designed an educational website to train students to produce electronic courses via the web, according to the two participatory e-learning strategies. The researcher used a set of tools represented in (achievement test research and experimental treatment were applied to a sample of the Faculty of Computer students at Umm Al-Qura University. The results found that both participatory product strategy and web simulation have an imact on developing learning aspects discussed in the research. As for which of the two strategies had a greater impact than the other, it turned out that the web simulation strategy had a greater impact than the participatory product strategy in developing these aspects.

Design of Artificial Intelligence Education Program for Elementary School Students based on Localized Public Data (지역화 공공데이터 기반 초등학생 인공지능 교육 프로그램 설계)

  • Ko, EunJung;Kim, BomSol;Oh, JeongCheol;Kim, JungHoon
    • 한국정보교육학회:학술대회논문집
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    • 2021.08a
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    • pp.1-6
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    • 2021
  • This study designed an artificial intelligence education program using localized public data as an educational method for improving computational thinking in elementary school students. Program design and development was carried out based on the results of pre-requisite analysis on elementary school students according to the ADDIE model. Based on localized public data, the program was organized to learn the principles of artificial intelligence by utilizing "Machine Learning for Kids" and "Scratch" and to solve problems and improve computational thinking skills through abstracting public data for purpose.Through subsequent research, it is necessary to put this education program into the field and verify the change in students' computational thinking as a result.

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Effects of Systems Thinking on High School Students' Science Self-Efficacy (시스템 사고가 고등학생의 과학 자기 효능감에 미치는 영향)

  • Lee, Hyundong;Lee, Hyonyong
    • Journal of the Korean earth science society
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    • v.37 no.3
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    • pp.173-185
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    • 2016
  • The purpose of this study is to investigate the effects of systems thinking on high school students' self-regulatory efficacy and self-confidence that constitute science self-efficacy. We set self-regulatory efficacy as a factor of students' systems thinking affects their self-confidence on science through self-regulatory efficacy. A total of 210 students were sampled from general high schools and 188 valid cases were analyzed. The instrument has 39 items that consist of 20 items measuring systems thinking and 19 items of science self-efficacy. The result of the exploratory factor analysis indicated that 20 items for systems thinking, 8 items for self-regulatory efficacy, 4 items for self-confidence are reasonable. Testing the goodness of fit of a structural equation model, it turn out to be appropriate (${\chi}^2$=344.498, df=242, TLI= .921, RMSEA= .044) using 24 items (mental model, personal mastery, systems analysis, self-regulatory efficacy, and self-confidence were constructed). In addition, the mental model, which is one factor of systems thinking, is mediated by self-regulatory efficacy that affects self-confidence directly and/or indirectly. The results suggest that systems thinking affects science self-efficacy directly and indirectly. Utilizing systems thinking in science education can produce a theoretical basis in improving students' confidence and self-efficacy about science.

Effects of the Variable Activities in the 'Thinking Science' Program on the Ability of Variable-Controlling of Elementary School Students ('생각하는 과학' 프로그램의 변인활동이 초등학생의 변인통제 능력에 미치는 효과)

  • Han, Hyo-Soon;Choi, Byung-Soon;Kang, Soon-Min;Park, Jong-Yoon
    • Journal of The Korean Association For Science Education
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    • v.22 no.3
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    • pp.571-585
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    • 2002
  • This is one of the basic research for inspecting the possibility of the development of logical thinking capability to make possible formal thinking. The 5th grade students (n=306) in the elementary school were participated in this study. Performing the 6 variable-controlling activities in the 'Thinking Science' program for one semester, the SRT II test and the Variable-Controlling test were operated to examine the effects on the development of the variable-controlling ability by treatments, gender, and cognitive levels. Performing of the variable-controlling activities was highly successive on the development of students' variable-controlling ability. Although learning effect on the ability of identifying causal variable was moderate, the abilities of controlling experimental condition, measurement of variable, and identifying result variable were significantly developed. There was statistically significant difference by gender. Girls showed better performance all the time in both groups. Boys in the experimental group were getting better gradually, so the difference by gender was somewhat decreased. Examining the variable-controlling ability by cognitive levels, students in the experimental group show significant increase in all levels, especially the students in early, mid, and mature concrete level show substantial learning effects. The results of this study implied that the variable-controlling activities in the 'Thinking Science' could be effective for learning of variable-controlling and eventually for the development of logical thinking capability to make possible formal thinking.