• Title/Summary/Keyword: Creative Problem Solving Potential

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

  • Lee, Sang-Gyun;Lee, Ha-Lyong
    • Journal of the Korean Society of Earth Science Education
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    • v.6 no.1
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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.

The Effects of a Robot Based Programming Learning on Learners' Creative Problem Solving Potential (로봇 활용 프로그래밍 학습이 창의적 문제해결성향에 미치는 영향)

  • Lee, EunKyoung;Lee, YoungJun
    • 대한공업교육학회지
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    • v.33 no.2
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    • pp.120-136
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    • 2008
  • Using the tangible programming tools, which combines physical objects (e.g. robot) and educational programming language, may help to encourage learners' creative thinking as well as to enhance problem solving ability. That is, learners can have opportunities to simulate problem solving processes through the physical objects, such as robots. Therefore, they can minimize an fixation about problem solving process. These experience is effective to induce creative thinking that is useful to find new solutions and change environment actively. Therefore, we developed a robot based programming teaching and learning curriculum and implemented it in college level introductory programming courses. The result shows that the robot based programming learning has a positive effect in all three factors of learners' creative problem solving potential, especially in a cognitive factor. The cognitive factor includes general problem solving abilities as well as factors that explain creativity, such as divergent thinking, problem recognition, problem representation. These result means that the developed robot based programming teaching and learning curriculum give positive effect to creative problem solving abilities.

An Exploration of Creativity Education Model (창의성 교육 모델의 탐색)

  • Kang, Choong-Youl
    • Journal of Gifted/Talented Education
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    • v.10 no.1
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    • pp.1-32
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    • 2000
  • Although it is widely acknowledged that enhancing creativity is an important educational theme on which schools should depend and embody their educational goal and activities, how to do it can be characterized as 'piecemeal' without a whole picture of it. Thus, school practices of creativity education has been disoriented, discontinuous, short-term, and peripheral in nature. In this practical context, a theoretical model of creativity education was developed in ways in which several theoretical concepts based on research findings on a variety of aspects of creativity education were compiled and organized. The core of the model was creative problem solving process to which the goals and the mediating variables of creativity education were connected in relational fashion. By giving repetitive opportunities for creative problem solving geared to producing the results that are novel and useful for the individual as well as the socity, it was conceptualized that two educational goals could be achieved: a short-term goal of developing creative potential of the individual and the long-term goals of self-actualization of the individual and contribution to the society. It is also conceptualized that creative problem solving can be influenced in positive manner by several mediating variables: content knowledge and skills, creative cognition, creative motivation and attitudes, and creative environment. The creative environment is composed of psychological and physical conditions and provides a basis for creativity education. The former three variables are conceptualized as necessary conditions for the effectiveness and efficiency of creative problem solving, when provided appropriately. The four mediating variables ware conceptualized as mutually affecting so that the development of one variable influences positively that of the other, and vice versa. In terms of practical perspective of teaching creativity, developing creative potential, self-actualization, and contribution to society are the goals; creative problem solving process is the methodology; content knowledge and skills, creative cognition, and creative motivation and attitudes are the content; and creative environment is the condition of creativity education. The model is not yet perfect but needs further explorations to make it more detailed in clarifying various relationships. For instance, how the creative problem solving process can be differentiated in teaching various subject matters is yet to be explored. Thus, the model proposed in this study should be regarded as a general model of creativity education, and is relatively sound to be adopted in school practices since it is based on the theoretical as well as empirical study findings on creativity. However, the proposed model needs to be validated through empirical researches in real teaching settings.

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The Effect of Creative Potential on Innovation Behavior: focusing on Design Thinking

  • KIM, Taehyung
    • Journal of Distribution Science
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    • v.18 no.8
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    • pp.65-74
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    • 2020
  • Purpose: The purpose of study is to examine the effects of design thinking-based programs on creative potential, creativity and innovation behavior, as well as the mediating effect of creative potential and creativity. Research design, data and methodology: The study was conducted through a four-step process. First, the previous studies were investigated. Second, a total of three experts were reviewed to improve and supplement the program. Third, a workshop-based design thinking program was conducted four times. Fourth, the effectiveness of the program was reviewed through data analysis. Results: The design thinking-based program was found to have a statistically positive effect on creative potential, creativity, and innovation behavior. As another hypothesis of this study, by applying the design thinking-based program, it was statistically confirmed that creative potential has a direct, indirect effect, and a mediating effect on innovation behavior. Conclusions: These results provide usability for design thinking in terms of direction for creativity-based creative problem solving and innovation. Finally, design thinking can be used to develop and utilize new services and discover new ideas, especially improve the competitiveness of the company. In addition, it means that the level of innovation action can vary depending on the level of the individual's creative potential.

A Study on the Effectiveness of Smart Education Based on Learning Ability

  • Song, JeongBeom
    • Journal of the Korea Society of Computer and Information
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    • v.21 no.9
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    • pp.165-176
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    • 2016
  • This study developed the learning ability-based smart education program. The effectiveness of the developed materials was investigated using the quantitative-qualitative mixed method, and the process and results of the investigation are as follows. The quantitative investigation was conducted using the non-equivalent pretest-posttest design, in which the smart education method was applied to the experimental group, while the conventional education method was applied to the control group to analyze students' creative problem-solving potential, task concentration, and the variables required for the learning activity. The results showed significantly higher performance in the experimental group over the control group. Regarding data collection in the qualitative investigation, an analysis of the class from the instructor and class consultation logs from the class analyst were collected; the comments on the experience of each class period were collected from students. The results of the analysis of the data suggest that the perception of smart education improved for the instructor, class analyst, and learners as the course progressed.

An Algorithm Learning Program with Robot (로봇 활용 알고리즘 학습 프로그램)

  • Lee, YoungJun;Lee, EunKyoung
    • The Journal of Korean Association of Computer Education
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    • v.12 no.1
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    • pp.33-44
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    • 2009
  • In this study, we selected an educational robot as a suitable tool to support algorithm learning for middle school learners through comparative analysis of various tools. Educational robot can provide tangible experiences for abstract concepts of algorithms. Therefore, we developed an algorithm learning program with educational robots to enhance intrinsic motivation and creative problem solving ability for middle school learners. Also, we implemented the developed program in middle schools and analysed the educational effects of the program. We found that the algorithm learning program with robots was helpful in enhancing learners' intrinsic motivation about algorithm learning and creative problem solving potential. These findings may offer useful direction for designing teaching and learning program for algorithm education. These results can be used as a basis for study on designing and developing algorithm learning program.

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What are the Differences Between Scientifically Gifted and Normal Students in the Aspects of Creativity? (과학 영재 학생과 일반 학생은 창의성에서 어떻게 다른가? - 서울대학교 과학영재교육센터 학생들을 중심으로 -)

  • Shin, Ji-Eun;Han, Ki-Soon;Jung, Hyun-Chul;Park, Byung-Gun;Choe, Seung-Urn
    • Journal of The Korean Association For Science Education
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    • v.22 no.1
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    • pp.158-175
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    • 2002
  • In the present study we have compared and analyzed three different measures of creativity in 135 gifted and 161 normal students to understand the nature of creativity and to propose the guideline for measuring creativity. The instruments used to measure creativity in this study are the Torrance Test of Creativity Thinking (TTCT), the Test of Creative Problem solving and Finding in Science (CPFS), and the Creative Behavior Checklist in Science (CBCS). The TTCT is the most widely used divergent thinking test and measures creativity in the aspect of domain-generality. The CPFS and the CBCS were developed for the purpose of this study and measure domain-specific creativity in the area of Science. The findings of this study revealed that gifted students are significantly more creative compared to normal students in all measures of creativity used in the study. The biggest difference between the gifted and normal students was found in the aspect of CPFS. This study implies that creativity, which is considered less useful to identify gifted students compared to achievement or IQ scores, is the important factor to consider for judging giftedness. The low correlations revealed among the TTCT, CPFS, and CBCS imply that the three measures of creativity address relatively different aspects of creativity. The results also suggest that it is essential to consider multiple criteria of creativity not to overlook potential creative students in the area of science. Implications of the study in connection with the identification and educational practices for gifted education program is discussed.

The Effects of Programming Learning Using Robot Based on Schoolwide Enrichment Model on Elementary School Students' Creative Potential (학교전체 심화학습 모형에 기반한 로봇활용 프로그래밍 학습이 초등학생의 창의적 잠재력에 미치는 영향)

  • Lee, YoungJun;Seo, YoungMin
    • The Journal of Korean Association of Computer Education
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    • v.16 no.4
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    • pp.47-54
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    • 2013
  • Currently, the robot is widely utilized in various educational settings such as after-school classes, and special classes for gifted students. The robot is widely recognized as a useful tool for helping students solve problems. The core activities of programming learning with robot need to provide various problem contexts to the students and guide students' problem solving process. Students gain cognitive and affective benefits when they solve problems with robots. This paper describes the impact of programming learning using robot based on schoolwide enrichment model on elementary school students' creative potential. As a result, the students of experimental group than the students of the control group improved creative personality and ideational behavior, and the gifted students of experimental group than the gifted students of control group improved ideational behavior.

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Using Calculators in Mathematics Education in Koran Elementary Schools

  • Ahn, Byoung-Gon
    • Research in Mathematical Education
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    • v.5 no.2
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    • pp.107-118
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    • 2001
  • Mathematics subject of the seventh national curriculum in Korea, which has been effective since 2000, strongly encourages the use of calculators and computers to help children gain a better understanding of basic mathematical concepts and develop creative thinking and problem-solving skills without spending too much time and effort on making mechanical computations. Despite the recommendation by the national curriculum, however, only a small segment of elementary school teachers have been using calculators because of the fear that children\\`s dependence on calculators might bring about negative consequences. As a result, little research has been conducted in this area as well. This study has been conducted on the assumption that calculators have the potential for being a useful instructional tool in certain areas of elementary school mathematics education. To investigate the usefulness of calculators, a review was made of the scanty literature in the area. The literature review indicated that calculators are effective when they are used for the following purposes: understanding concepts and properties in numbers and operations, deducing mathematical rules, and solving problems. In view of the available research finding, we will give some concrete learning and teaching models of such uses of calculators. The teaching-learning models are organized around three categories: concept formation, discovery of principles and rules, and problem solving. Such organization is intended to help teachers use the models with ease.

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Identification and Selection the Mathematically Gifted on the Elementary School (초등 수학 영재의 판별과 선발)

  • Song Sang-Hun
    • Proceedings of the Korean Society for the Gifted Conference
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    • 2001.05a
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    • pp.43-72
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    • 2001
  • Identification and discrimination the mathematical giftedness must be based on it's definition and factors. So, there must be considered not only IQ or high ability in mathematical problem solving, but also mathematical creativity and mathematical task commitment. Furthermore, we must relate our ideas with the programs to develop each student's hidden potential not to settle only. This study is focused on the discrimination of the recipients who would like to enter the elementary school level mathematical gifted education program. To fulfill this purpose, I considered the criteria, principles, methods, tools and their application. In this study, I considered three kinds of testing tools. The first was KEDI - WISC personal IQ test, the second is mathematical problem solving ability written test(1st type), and the third was mathematical creativity test(2nd type) which were giving out divergent products. The number of the participant of these tests were 95(5-6 grade). According to the test, students who had ever a prize in the level of national mathematical contest got more statistically significant higher scores on 1st and 2nd type than who had ever not, but they were not prominent on the phases of attitude, creative ability or interest and willing to study from the information of the behavior characteristics test. Using creativity test together with the behavior characteristics test will be more effective and lessen the possibility of exclusion the superior.

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