• Title/Summary/Keyword: Science-gifted Student

Search Result 276, Processing Time 0.034 seconds

Comparison of Career Awareness, the Preference for Science and Stereotypic Image of the Scientist Between the Gifted Students and Non-gifted Students in Elementary School (초등 영재학생과 일반학생의 진로인식, 과학 선호도 및 과학자의 정형화된 이미지 비교)

  • Ahn, Mi-Jung;Yoo, Mi-Hyun
    • Journal of Gifted/Talented Education
    • /
    • v.22 no.3
    • /
    • pp.527-550
    • /
    • 2012
  • The purpose of this study was to investigate the career awareness, the preference for science and stereotypic image of the scientist between the gifted students and non-gifted students in elementary school. For this study, 52 gifted students and 80 non-gifted students were participated. The results were as follows: First, the career awareness of gifted students was significantly higher than that of non-gifted students. Second, the preference for science of gifted students was significantly higher in all sub-domains than non-gifted students. There was a significant interaction effect between group and gender in the scientific interest and the intention of solving problems. Third, analyzing stereotypic image test for scientist between the gifted students and non-gifted students, it proved that non-gifted students had more stereotypic image comparing with the gifted students. Forth, carrying out the correlation analysis on the career awareness and the preference for science, the career awareness and the stereotypic image of the scientist, it proved that there were significant correlations with each other. It revealed that the career awareness affected the preference for science significantly through multiple regression analysis.

Effects of Forensic Science Program on Scientific Creative Problem-Solving Abilities of Gifted Students in Elementary School (과학수사 프로그램이 초등 영재의 과학 창의적 문제해결력에 미치는 효과)

  • Kang, A-Rah;Lee, Kil-Jae
    • Journal of Korean Elementary Science Education
    • /
    • v.34 no.3
    • /
    • pp.265-275
    • /
    • 2015
  • The purpose of this study was to develop forensic science program for the improvement of scientific creative problem-solving abilities in gifted elementary-school students. A program that consists of six sessions (18 hours) is developed in accordance with the CPS model, which has been already proven effective for the improvement of creative problem-solving abilities. This program was applied to sixth-grade 18 gifted students in an elementary school in Gyeonggi province. Examinations of scientific creative problem-solving abilities were performed before and after applying the program in order to determine its effect on gifted elementary students. A qualitative analysis of students' activity sheets, peer assessment and teacher's class journal was made in order to examine the process of improvement of students' scientific creative problem-solving abilities. The results of this study are as follows: First, forensic science program to enhance the scientific creative problem-solving abilities of gifted students was developed. Second, forensic science program is significantly effective in the improvement of scientific creative problem-solving abilities of gifted children of elementary school (p<.05). Third, in early stage of the class, a student, who showed the highest range of change in pre and post tests, revealed the trend of responding in a short answer type. In the late stage of the class, he revealed the capability of producing various creative ideas promptly. On the other hand, students belonging to the upper group of both pre and post test revealed the improvement of divergent thinking skills such as fluency, flexibility, and originality. Fourth, after class, the students responded that the forensic science program developed in this study intrigued the interests and curiosities, and helped them break away from fixed ideas.

Differences among Sciences and Mathematics Gifted Students: Multiple Intelligence, Self-regulated Learning Ability, and Personal Traits (과학·수학 영재의 다중지능, 자기조절학습능력 및 개인성향의 차이)

  • Park, Mijin;Seo, Hae-Ae;Kim, Donghwa;Kim, Jina;Nam, Jeonghee;Lee, Sangwon;Kim, Sujin
    • Journal of Gifted/Talented Education
    • /
    • v.23 no.5
    • /
    • pp.697-713
    • /
    • 2013
  • The research aimed to investigate characteristics of middle school students enrolled in a science gifted education center affiliated with university in terms of multiple intelligence, self-regulated learning and personality traits. The 89 subjects in the study responded to questionnaires of multiple intelligence, self-regulated learning ability and a personality trait in October, 2011. It was found that both science and math gifted students presented intrapersonal intelligence as strength and logical-mathematical intelligence as weakness. While physics and earth science gifted ones showed spatial intelligence as strength, chemistry and biology gifted ones did intrapersonal intelligence. For self-regulated learning ability, both science and mathematics gifted students tend to show higher levels than general students, in particular, cognitive and motivation strategies comparatively higher than meta-cognition and environment condition strategies. Characteristics of personal traits widely distributed across science and mathematics gifted students, showing that each gifted student presented distinct characteristics individually. Those gifted students showing certain intelligence such as spatial, intrapersonal, or natural intelligences as strength also showed different characteristics of self-regulated learning ability and personal traits among students showing same intelligence as strength. It was concluded that science and mathematics gifted students showed various characteristics of multiple intelligences, self-regulated learning ability, and personal traits across science and mathematics areas.

An Analysis of the Interpersonal Competence of Science-Gifted Students in School and Science-Gifted Education Institute (학교와 과학영재교육원에서의 과학영재들의 대인관계역량 분석)

  • Noh, Hyeonah;Choi, Jaehyeok
    • Journal of The Korean Association For Science Education
    • /
    • v.37 no.2
    • /
    • pp.383-393
    • /
    • 2017
  • The purpose of this study is to examine the interpersonal competence of science-gifted students in groups of people with different characteristics. We examined the interpersonal competence and characteristics of students in school and in science-gifted education institute. The subjects of this study were 72 students in a university-based science-gifted education institute. We used a mixed method of both qualitative and quantitative research. The questionnaires were used for quantitative research and the narrative contents and interviews were analyzed for qualitative research. We compared their competence in school with those of gifted education institute students through questionnaire, narrative contents, and interviews. The interpersonal competence questionnaire consisted of 46 questions and their own descriptions about interpersonal experiences in school and in science-gifted education institute. In an interview, they explained their answers on the questionnaires with more details. As a result, generally, the science-gifted students evaluated their interpersonal competence higher in school than those in gifted education institute. They showed different interpersonal characteristics in schools and in science-gifted education institutes. This implies implications for the social meaning of the science-gifted education institutes.

A Mentorship Model based on KIGES' Mentorship program (KIGES의 사사교육 프로그램에 기초한 사사교육 모형 개발)

  • Sunk, Hyun-Sook;Lee, Sang-Chun;Heo, Jung-Yun;Woo, Jeong-Soo
    • Journal of Gifted/Talented Education
    • /
    • v.14 no.4
    • /
    • pp.93-112
    • /
    • 2004
  • Mentorship as an enrichment program as well as a promising educational method in the 21st century for the gifted students in science provides young scientists with opportunities to develop their abilities and attitudes regarding research. Kyungnam Institute of Gifted Education in Science (KIGES) has run mentorship program for five years. Many advantages of mentorship program for the science gifted students are reviewed including those of KIGES. A mentorship model for future student research programs is proposed as a way to facilitate the process of mentorship.

Development of the Interdisciplinary - Multistrategic Science Education Program(IMSEP) for the Education of the Gifted in Science (과학 영재 교육을 위한 통합교과적-다중교수전략적 과학 교육 프로그램(Interdisciplinary - Multistrategic Science Education Program: IMSEP) 및 예시의 개발)

  • 배혜경;김훈;안정훈;배새벽;김용주;박선미;심재영;박은영;김충기
    • Journal of Gifted/Talented Education
    • /
    • v.13 no.1
    • /
    • pp.21-42
    • /
    • 2003
  • The Interdisciplinary-Multistrategic Science Education Program(IMSEP) is designed as an efficient program for the education of the gifted in science. An example of the contents is developed, which encompasses mathematics, physics, chemistry, astronomy, and biology. In the program, the complexity(interdisicplinarity) of scientific contents and instructional strategies used to deliver the scientific contents are designed to be correlated to each other in such a way that as the scientific contents gets more complex, the scientific skill to be taught by the instructional strategy becomes deeper. Through the careful balance between the scientific contents and the instructional strategies student's scientific knowledge and scientific skill will develop balanced and the effectiveness of science education will be maximized.

The Effects of STEAM Program on the Scientific Communication Skills and the Learning Flow of Elementary Gifted Students (STEAM 프로그램이 초등영재학생의 과학적 의사소통능력과 학습몰입에 미치는 영향)

  • Bak, Aerina;Kim, Yong Kwon
    • Journal of Korean Elementary Science Education
    • /
    • v.33 no.3
    • /
    • pp.439-452
    • /
    • 2014
  • The purpose of this study is to find out the effect of STEAM program on the scientific communication skills and the learning flow of elementary gifted students. The main findings of this study are as follows: First, STEAM program that mathematical, technical, engineering and art factors were combined based on basic concepts of science were developed. Seconds, the change in the scientific communication skills of experimental group applying STEAM program had statistically meaningful difference (p<.05). Third, the flow of experimental class improved, but it had no meaningful difference statistically (p>.05). But it is expected that continuing level adjusted STEAM program might have positive effect on improving the flow with the following three reasons: 1) The gifted students' flow level on learning before experiment was rather too high to expect short term effect. 2) It was hard for them to achieve flow experience because topic difficulties and students' capacities were not balanced. 3) topic commitments and autotelic behaviors of gifted students were observed during classes. Fourth, by the result of the student satisfaction questionnaire survey on this program, students actively participated in the STEAM program with interest and curiosity. As achieved self-directed problem solving, versatile communication activities and success experiences, their class satisfaction was high. Based on such results, it was expected that the gifted class applied of STEAM program could enhance scientific communication capacity of the elementary gifted students and would further positively influence flow of learning as well. In addition, it was considered to have integrated approach value to elementary gifted and talented education in the aspect that it could satisfy various educational demands of gifted students.

An investigation of students' understanding of relativity for the gifted education in science (과학영재교육에서의 상대론적 개념에 대한 학생 사례 분석)

  • Bae, Sae-Byok;Kim, Yeong-Hwa;Kim, Young-Min
    • Journal of Gifted/Talented Education
    • /
    • v.14 no.4
    • /
    • pp.71-91
    • /
    • 2004
  • For the education of scientifically gifted high-school students in the field of relativity, we have executed a research on the understanding of relativistic concepts through the case study of its students of Busan Science Academy appointed as a high school for the gifted education in science. We showed the analysis of the changes in students, understanding in the field of (special) relativity and their possible causes. The comparison of the pre-test and the post-test tends to support that the students attained better understanding through the instruction of relativity. Students' understanding and misconception of relativistic concepts were also investigated through the case study. The students showed low degree of understanding in the validity of the principle of relativity, the influence of the constancy of the speed of light on the classical physics, etc. It seems that the analysis of these concepts of insufficient understanding can make a contribution to designing the education of relativity for scientifically gifted students.

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

  • Lim, Cheong-Hwan;Lim, Gui-Sook
    • Journal of Korean Elementary Science Education
    • /
    • v.30 no.2
    • /
    • pp.213-231
    • /
    • 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.

Development of a Matrix-focused Instructional Materials for Personal Education for the Gifted Middle School Students of Computer Science (중등 정보과학 영재 사사지도 행렬중심 교수학습 자료 개발)

  • Lee, Hyung-Bong
    • Journal of the Korea Society of Computer and Information
    • /
    • v.16 no.12
    • /
    • pp.139-155
    • /
    • 2011
  • In recent years, parents of students and government have been taking a growing interest in education for the gifted students and there are many research reports about the gifted education. Most of the reports, however, focuses on the conceptional feature of the gifted education program such as organization, operation, management, evaluation, etc,. In other words, there are very few researches on instructional materials for gifted students even though the materials is a critical factor for successful education programs. So, this paper introduces a lecture notes used in a personal education for gifted students to contribute in developing education contents in computer science area. The instructional materials titled as "The Necessity and Application of Matrix in Computer Science" is based on linear equation to usher the students into creative problem recognition and groping for solutions. Also, the instructional materials is useful for students to understand the tight mathematics-computer science relationship and the basic concept of liner algebra.