• Title/Summary/Keyword: Creative Problem Solving Capacity

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Creativity in medical education: concepts related to creative capacity

  • Kim, Yura;Lee, Young Hwan
    • Journal of Yeungnam Medical Science
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    • v.37 no.2
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    • pp.79-83
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    • 2020
  • In the 21st-century postmodernism era, which represents diversity and relativity, one of the most essential elements in the field of education is to strengthen individual human values. Accordingly, we must focus on developing capacity in order to adapt to change. It is clear that the medical field maximizes the need for new judgments to solve life-related problems constantly, and this problem-solving capacity is an essential skill for a physician. Problem-solving capacity can be achieved simultaneously with creativity to apply them in an appropriate manner based on standardized expertise and well-trained skills. Creativity is also a key element that medical education is currently pursuing. Many studies on creativity have resulted in confusion and misunderstandings on the concept of creativity due to similar terms and varied definitions, such as creation, innovation, etc. In this study, we attempt to identify the importance of creativity in medical education by comparing and organizing concepts related to creative capacity.

Development and Implementation Effect of a Learning Consulting Model Based on Creative Problem Solving for University Students (대학생을 위한 창의적 문제해결 기반 학습컨설팅 모형 개발 및 적용효과)

  • Jung, Se Young;Kim, Jungsub
    • (The) Korean Journal of Educational Psychology
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    • v.32 no.1
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    • pp.1-27
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    • 2018
  • The proposes of this study were to develop the learning consulting model based on creative problem solving and to verify the effects of its implementation. The model was developed based on ADDIE program developing model. In the analysis stage, literature review and needs survey were conducted for data collection on learning consulting at universities including the literature in related fields. Specific areas needed in the learning consulting model were selected from the results of this collected data. During the design and development stage, the learning consulting processes were established. These constituted the learning consulting model developed and it had been based on the Creative Problem Solving. To verify the validity of the learning consulting model based on the creative problem solving, a pilot study was implemented. The model was completed content a validity verification process performed by experts through focus group interviews. The aim this final model is to improve the self-directed learning ability and creative problem solving capacity of the university students. The study results showed that mean scores on self-directed learning ability of the experimental group increased significantly compared to the control group. Based on these findings, the learning consulting model seemed very effective in improving the university students' self-directed learning ability, as well as their creative problem solving capacity. Based on the results of this study, implications and limitations of the final model and its implementation were discussed.

Development and Effect of the Creative Problem Solving Capacity Education Program for University Freshmen Using Game component (게임적 요소를 활용한 대학 신입생의 창의적 문제해결 교육 프로그램 개발 및 효과)

  • Jeon, Shin-young;Park, Joo-Hee
    • Journal of Korea Game Society
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    • v.21 no.2
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    • pp.139-150
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    • 2021
  • This study analyzed the effectiveness by developing an online program to enhance collaborative problem-solving capabilities for college freshmen using gamification. According to the research results, the operational model of the online program for enhancing collaborative problem-solving capabilities using gamification was presented in five stages: 1 preparation, 2 team building, 3 assessment, 4 feedback, and 5 achievement sharing. The results of the "pre-test" and post T-test of creative problem-solving capabilities, the variables related to creative problem-solving skills, academic challenge, creative thinking ability, and convergence value creation have been significantly improved. What should be discussed in the future is the need to experience collaborative problem solving process online, and to develop game design and platform that can discuss and communicate.

A Study on Measuring the Improvement of Creative Problem-Solving Competency in Project-Based Courses (프로젝트수업 기반 창의적 문제해결역량 향상도 측정에 관한 연구)

  • Younghee Noh
    • Journal of the Korean Society for Library and Information Science
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    • v.57 no.3
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    • pp.143-161
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    • 2023
  • The purpose of this study was to investigate whether students' creative problem-solving skills improve through project-based courses. Rather than measuring overall competencies, the focus was specifically on measuring the improvement of problem-solving skills. The study involved a literature review, the design of project-based courses, and the assessment and analysis of students' competencies before and after the courses. The results of the study are as follows: Firstly, the measurement of students' creative problem-solving skills before and after the project-based courses indicated an overall improvement in the five dimensions of problem identification, analytical thinking, flexible thinking, alternative generation, and a proactive attitude. Secondly, significant correlations were found among these five dimensions, particularly strong correlations were observed between problem identification and alternative generation, problem identification and analytical thinking, and analytical thinking and alternative generation. To generalize the findings of this study, further research is needed to apply similar approaches in different types of courses and across various universities and departments.

The Effects of Writing Using Media on the Promotion of Creative Convergence Capacity (미디어를 활용한 글쓰기가 창의융합 역량 증진에 미치는 효과)

  • Bang, Sul-Yeong;Je, Nam-Joo
    • Journal of Digital Convergence
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    • v.18 no.12
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    • pp.353-362
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    • 2020
  • This was a single group pretest-protest pre-experimental study designed to find out whether writing using media enhances creative convergence capacity. Data were collected from 30 C university students in C city, from March 1st to July 15th, 2020. Analysis was done using IBM SPSS 25.0 for frequency, percentage, average, standard deviation, and paired t-test. Creative problem solving ability was enhanced by an average of 0,63 points (p<.001), critical thinking tendency by 1.06 points (p<.001), self-leadership by 0,53 points (p<.001), and self-control by an average of 0.51 points, so was statistically significant (p=.001). Writing using media had the effect of improving creativity and integration capabilities. The results of this study are expected to be used as basic data for the development of educational programs for creativity and integration enhancement at university-level. Also, follow-up studies on the effectiveness of writing education by utilizing web media as text and tools simultaneously and customized university-level writing education utilizing media are required.

Investigation of 'Group Scientific Creativity' Factors in Gifted Students' Creative Project Solving Context (영재학생들의 창의적 문제해결상황에서 집단 과학창의성 영향요인 탐색)

  • Hong, Eunjeong;Heo, Namyoung;Lee, Bongwoo
    • Journal of The Korean Association For Science Education
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    • v.36 no.4
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    • pp.527-538
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    • 2016
  • The purpose of this study is to select the factors of 'Group scientific creativity' and to find out how 'Group scientific creativity' turns out in the creative problem-solving process of students. To select the factors that affect 'Group scientific creativity', this research extracted 27 influencing factors on the group creativity from the prior study and organized them according to opinions of education experts. To select factors that affect 'Group scientific creativity' in the creative problem-solving process of students, this research analyzed the group problem-solving process that has been done on 72 gifted students for two days. Main results of the study is as follows: First, nine elements such as scientific thinking, scientific knowledge, scientific information-processing capacity, motivation, challenge, age and gender, existence of diversity, creativity educational experience, and the group cohesiveness were selected as human factors. Four elements such as scientific communication skills, scientific inquiry process, autonomy, and leadership were selected as the combining factors. Also, three elements such as the learning environment, teacher types, and compensation were selected as the Environmental factors. Second, it was possible to find that the group scientific creativity influence factors affecting the creative process by analyzing the gifted students in creative-problem solving process. Based on these results, this study described additional points on the factors improving 'Group scientific-creativity.'

A Study on Instructional Design and Effectiveness for Solving Real Life Problems based on Design Thinking (디자인 사고 기반 실생활 문제 해결을 위한 수업 설계 및 효과성 연구)

  • Bo Kyung Park
    • The Journal of the Convergence on Culture Technology
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    • v.9 no.1
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    • pp.471-478
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    • 2023
  • Teaching and learning research is essential to prepare for the era of the 4th industrial revolution. We must strengthen the creative educational capabilities of prospective teachers by improving the curriculum and teaching-learning model of teacher training colleges. Future education should foster creative thinking based on communication and collaboration. In this study, we improved the future teaching and learning model and applied it to actual classes. In addition, we verified the effectiveness by conducting pre- and post-surveys on the capabilities of future creative teachers. The survey consists of common satisfaction questions and questions about future creative teacher capabilities. As a result of the analysis, we confirmed that the capacity of future creative teachers increased.

Analysis of Achievement Standards, Activities, and Assessment Items in the 2015 Revised Science Curriculum and Grade 7 Science Textbooks: Focusing on Science Core Competencies (2015 개정 과학과 교육과정에 제시된 중학교 1학년 성취기준과 과학 1 교과서에 포함된 활동과 평가 문항 분석: 과학과 핵심역량 중심으로)

  • Yun, Doun;Choi, Aeran
    • Journal of the Korean Chemical Society
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    • v.63 no.3
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    • pp.196-208
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    • 2019
  • This study analyzed achievement standards in the 2015 revised Science Education Standards as well as activities and assessment items in grade 7 science textbooks using science core competencies and subcomponents. Scientific participation and lifelong learning capacity was not involved in the achievement standards. Logical thinking of scientific thinking capacity, planning and carrying out investigation, analyzing and interpreting data, developing and using models, and constructing explanation of scientific inquiry capacity, collecting and selecting information of scientific problem solving capacity, and using various communication methods of scientific communication capacity were involved in the achievement standards. All five scientific core competencies including all subcomponents except rational decision making of scientific problem solving capacity and understanding and coordinating diverse thoughts of scientific communication capacity were involved in activities of science textbooks. All five scientific core competencies were involved in assessment items of science textbooks. Logical thinking and creative thinking of scientific thinking capacity, planning and carrying out investigation and constructing explanation of scientific inquiry capacity, identifying problems, collecting and selecting information, suggesting solutions, and performing of scientific problem solving capacity, using various communication methods, arguing based on evidence of scientific communication capacity, and being interested in science technology and society issues of scientific participation and lifelong learning capacity.

Through an effort to advance computer technology, studying aspects of developing formal and unformal education (컴퓨터 응용기술을 이용한 통합교육의 창의력개발에 관한 연구)

  • Han, Kyung-Don;Choi, Gil-Dong
    • Journal of the Korea Society of Computer and Information
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    • v.12 no.1 s.45
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    • pp.99-106
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    • 2007
  • In order to make new productions; first of all, a creative idea is necessary and significance. For developing new production, a creative thinking must be a first step. In other words, a creative thinking can be a solving a problem. Better education for the formal and unformal education, various information and using space are able to develop ability of problems. Group study can students can find their talents, capacity, gifts, and ability. Also, students help to develop ideas of an individual. Therefore, through an effort to advance computer technology, developing food models in creative ideas for formal and informal education. As a result. good efforts and aspects can be produced.

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Effectiveness of Designing and Applying SW Classes Using Havruta (하브루타를 활용한 SW 수업 설계 및 적용의 효과성)

  • Kim, Changhee
    • Journal of Korea Society of Digital Industry and Information Management
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    • v.15 no.4
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    • pp.137-148
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    • 2019
  • This paper is designed to examine the effectiveness of Computational Thinking and programming awareness by designing and applying programming classes using Havruta. In the present society, where the Fourth Industrial Revolution was in full swing, the capacity to be equipped has changed, and the education has been changed accordingly. Programming education is logically capable of thinking and improves comprehensive problem solving skills. This direction of programming education allows us to get ideas for solving problems based on computing thoughts and to create our own creative results. However, because they require the grammar of the programming language and many additional abilities, they are not easy for learners, and individual differences in competencies make learning less immersive and interesting. In this paper, to solve the problems of the uniform programming class, this study is designed and applied to the class applying the Jewish traditional teaching method, Havruta's teaching method, to find out the effect of computing thinking and programming perception.