• Title/Summary/Keyword: gifted student in science

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Student apprentices' and mentors' perceptions on a science research apprenticeship program (과학 분야 사사 프로그램에 대한 학생 및 교수들의 인식 조사)

  • 임희준
    • Journal of Gifted/Talented Education
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    • v.14 no.1
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    • pp.29-46
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    • 2004
  • This study investigated a 7-week summer science research apprenticeship program for gifted high school students in U.S. The purpose of the study was to examine the reasons why the high school student participated in the program, the students' perceptions on the benefits of the apprenticeship program, and to investigate mentors' perceptions on assessment and mentorship of the students' projects. For this study, laboratory works and group meetings were observed, students' journal and research products were analyzed, and interviews were administrated with student apprentices and some mentors. The result revealed that the main reasons of students' participation were to perform research with university professionals, to understand the scientific research, and to explore their college/career decisions. Students' participation was strongly associated with their internal motivation and interests. The students perceived the benefits of the apprenticeship program as providing them with the experience of the nature of real scientific research, of learning of scientific knowledge on the focus area, and wiser college/career decisions. Students' projects were assessed and guided through on-going interactions and cognitive apprenticeship between mentors and student apprentices.

Investigation of Scientific Argumentation in the Classes for Elementary Gifted Students (초등 단위 학교 영재 수업에서 나타나는 과학적 논증 과정에 대한 탐색)

  • Lim, Hyeon-Ju;Shin, Young-Joon
    • Journal of Korean Elementary Science Education
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    • v.31 no.4
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    • pp.513-531
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    • 2012
  • This study was to analyze the characteristic of scientific argumentation in the classes for the gifted of elementary school. The participants of this study were 5 fifth graders and 9 sixth graders, 14 in total, from the basic unit schools for gifted students of J elementary school in Incheon city. And it constituted small scale groups made up of 2~3 students with similar or identical ability in scientific reasoning. It had set up hypothesis for each group before the experiment, and students had a group discussion as a whole after the experiment. Classes were conducted 4 times, all courses were recorded as a sound/video. The ability in scientific reasoning of the students was inspected, making use of SRT II by means of pre-survey, and their argumentation levels were analyzed, utilizing 'Rubric for scientific argumentation course assessment.' As a result, argumentations did not incurred in every class. Analysis in argumentations of the students resulted in low level argumentation. This means argumentation cannot incur based on that with the limit in understanding the principle of experiments over the threshold of textbook no matter that he is an gifted student or not. The student both in formal operational period and transition period (2B/3A), the ability of scientific thinking in upper level, was improved of his argumentative ability in an overall aspect. However, a student of concrete operational period, the ability of scientific thinking in lower level, had argumentation with still lower level even after the experiment at the moment of discussing with the students on the upper level of scientific thinking ability.

Development of the Scientific Creative Problem Solving Test for the Selection of Gifted Science Students in Elementary School (초등학교 과학영재학급 학생선발을 위한 과학 창의적 문제해결력 검사도구 개발)

  • Choi, Sun-Young;Kang, Ho-Kam
    • Journal of Korean Elementary Science Education
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    • v.25 no.1
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    • pp.27-38
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    • 2006
  • The purpose of this study was to develop a test of a creative problem solving (CPS) for the selection of gifted science students in elementary school. For this, the methods and procedures of the selection of gifted science students was investigated through the internet homepages 23 gifted science education centers of universities and 16 city. province offices of education. The results of this study were as follows: Most of the gifted science students were selected through a multi-step examination process. They were selected on the basis of their records by recommendation of a principal or a classroom teacher in their school, by operation of standardized tests (ex. intelligence quotient score, achievements in science and mathematics, interest and attitude/aptitude for science as well as through other means), as well as through intensive observation of those gifted science students who are selected by interview and oral tests. The selection of gifted students was not evaluated through creativity testing; giftedness in city. province office of education. Testing of CPS was found to be especially lacking in these organizations. For the development of the test items of CPS in science, the five elements were extracted through the framework for the content analysis of the CPS: problem exploration, problem statement, solution thinking, experiment design, and assesment. In addition, suggestions were made regarding an appropriate scoring system for the test of the CPS. As the result of the developed test was applied to the 4th grade of the gifted and general student, we found that gifted students were superior to general students. In conclusion, it was that the CPS test developed in this study should be used to evaluate the CPS for the selection of gifted students.

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The Effect of Science Journal Writings on the cognitive and affective features of the science gifted students (과학일지 쓰기가 과학영재의 인지적 ${\cdot}$ 정의적 특성에 미치는 영향)

  • Lee, Jeong-Hee;Woo, Kyu-Hwan
    • Journal of Gifted/Talented Education
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    • v.14 no.4
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    • pp.15-45
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    • 2004
  • The purpose of this study is to find out the effect of science journal writings on the cognitive and affective features of the science gifted students. In this research, the tasks of on-line science journal writings were assigned for 6 months and the subjects in this study were 21 students of Chemistry Division of the Center for Science Gifted Education, Seoul National University. Consequently in science journals, science concepts are found in various aspects according to the writing formats, and psychological and behavioral characteristics of the science-gifted are revealed in positive or negative aspects. In cognitive prospect, science journal writing equips students with better understanding about science concepts and scientific research. In affective prospect, science journal writing help students improve observation and attitude toward science as wren as writing skills. Accordingly, science journal writing has positive effect on cognitive and affective characteristics of the science-gifted. In conclusion, acknowledged by most of science-gifted students as both beneficial and appropriate in their education program, science journal writing should be emphasized in education for science-gifted students.

Development of a Question List in Accordance with Stage of Research, Which Guides Open Inquiry of Gifted Students in Science (과학영재의 자유탐구를 안내하는 연구단계별 질문목록 개발)

  • Cheong, Yong Wook;Kim, Eunhae;Jung, Minseok;Lee, Jaikoo
    • Journal of Gifted/Talented Education
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    • v.24 no.1
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    • pp.63-80
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    • 2014
  • The open inquiry is one of the representative learning approaches for gifted students. However, a gifted student should develop various complicated competencies to succeed in the open inquiry because of its complexity. This study develops a question list in accordance with each stage of inquiry so that the list could provide scaffolding in the process of open inquiry and students develop near-professional competencies and produce distinguished outcomes. For the purpose, we have reviewed various literatures related to research methodologies, academic writings, and learning of inquiry. Based on the review, we identified the open inquiry as cognitive, metacognitive, and sociocultural processes and set up the direction of the development of the question list. We also have elaborated the goals of the open inquiry, provided a model of the stage of inquiry, and developed the guiding question list belonging to each stage. As a discussion, we provided several noteworthy issues in the situation of when the list is used in the teaching of the open inquiry for the gifted.

Research on Difficulties and Supporting Measures of Teachers Who Teach Gifted Students in Invention (발명 영재를 지도하는 교사의 어려움과 지원 방안 연구)

  • Kim, Joojin;Chae, Donghyun
    • Journal of the Korean Society of Earth Science Education
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    • v.13 no.1
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    • pp.64-73
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    • 2020
  • The purpose of this study is to analyze the difficulties of teachers who teach gifted students in invention and to help address their concerns. To this end, the researcher interviews four teachers with more than three years of experience in guiding gifted students in invention. As a result, they have the difficulties such as difficulties in themselves, relationship with parents, in teaching students, relationship with school and relationship with education office. Supporting measures are 1) strengthening incentives for inventive gifted teachers, 2) continuing in service education, 3) improving the student selection process for gifted students in invention, 4) improving parents' perception of gifted students in invention, 5) improving awareness of school administrators, 6) consistent and continuous administration.

A Study on the Relation of Science-gifted Student's Triarchic Intelligence, Thinking Styles and Academic Performance (과학영재의 학업성취에 대한 삼원지능과 사고양식의 영향 연구)

  • Lim, Jae-Ryung;Yoo, Gu-Sik;Na, Dong-Jin
    • Journal of Gifted/Talented Education
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    • v.13 no.4
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    • pp.95-117
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    • 2003
  • This study is to suggest the alternative to limits of intelligence focused on Psychometric tests. Through this study, it was found that triarchic theory of intelligence and thinking styles, which were suggested by Sternberg, were useful. The subjects are 122 student who are at three science-high-schools. The results show that the subjects preferred judicial, executive, and hierarchical rather than conservative styles of thinking, and they had strong analytical, creative, and practical ability. The correlation between academic achievement and triarchic intelligence except automation was significant. The difference of academic achievements was not significant by styles of thinking related to creativity and pattern of triarchic intelligence. There was no interaction between two variables as we expected. The practical ability illustrated the total academic performance very well. And executive, judicial thinking styles were prediction variable in case of considering with triarchic intelligence. Through the results, it could be suggested that triarchic intelligence and thinking styles of non cognitive concept could be important standard referred to selection for the science-gifted, and argued that the reform of the science-high-school was needed to produce the creative-productive science-gifted student.

Johnson BV standardization of 60cm telescope at Gyeonggi Science High School for the Gifted

  • Ahn, Hojae;Oh, Seungjun;Lee, Hyundong;Park, Woojin;Lee, Ho;Kim, Hyunjong;Pak, Soojong
    • The Bulletin of The Korean Astronomical Society
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    • v.45 no.1
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    • pp.66.4-67
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    • 2020
  • Gyeonggi science high school for the gifted (GSHS) installed 60cm telescope, which is waiting for student observers. It is essential to understand the characteristics of the photometric system, consisting of telescope, filter, and CCD, to get reliable data. CCD images of SA98 Landolt standard field and M67 were obtained on 19th March 2020. The images of each field were combined by filters, i.e., we ignored the monochromatic atmospheric extinction since the photometric objects themselves are standard stars. 24 standard stars in SA98 field and 12 standard stars in M67 were used to derive the tentative transformation equation between our bv photometric system and Johnson BV photometric system. In this poster, we present the preliminary standardization result for Johnson BV photometric system in GSHS 60cm telescope. The reproductivity is discussed by comparing color coefficients of two fields. We plan to extend this process to Johnsons-Cousins BVRI photometric system and narrow-band filters for flux calibration.

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New index for the gifted students(G-Index) with EEG analysis (뇌파검사 자료를 기반으로 한 과학영재 판별 지수(G-Index) 개발과 적용)

  • Kim, Kyung-Hwa;Kim, Kyu-Han;Lee, Sun-Kil;Hur, Myung;Kim, Yong-Jin
    • Journal of Gifted/Talented Education
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    • v.15 no.1
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    • pp.67-84
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    • 2005
  • In this study we investigated the adequacy of tools for distinction gifted students through the comparison these mutual relation on the basis of data, like paper test, the depths interview score, and the rest data((TTCT: Torrance Tests of Creative Thinking, IQ test, FASP: Find A Shape Puzzle, V.T: Visualization Tests and Exp: experimental ability test), and analysis data of EEG test for examining the adequacy of tools for identification gifted students. So, we developed Brain Wave gifted Index(G-Index) for finding another distinction ability as using brain waves data. The standard of index development use gifted brain characteristic in closed-eyes rest state which is judged like that characteristic of distinction between gifted and normal students is the most clear and consistence. That is, the degree of unified pattern between each object and gifted PCA pattern was defined by Pearson method which added spatial mutual index to weight concept. This refer to mean number of spatial PCA pattern. Searching for the possibility of distinction gifted gave distinction effect in 76%. The result of regression analysis on the basis of mutual relation between the rest data is . The probability formula for distinct gifted group is as follow. $$P=\frac 1{1+e^{-[-0.018(TTCT)+0.057(IQ)+1.916(FASP)+0.682(V.T)+0.088(Exp.)+0.034(G-Index)-57.510]}}$$ The result of this calculation showed that probability for distinct in gifted group was very good(95.0%). On the basis of upper result, tools for identification gifted students should be estimated as using many-sided estimation data whatever possible. And following study about development, and operation of tools for distinction suitable to gifted student in science should be progressed.

Development and Application of Physics, Mathematics and Information Integrated Program Base on Heat Transfer & Numerical Analysis for Gifted Student (열전달 및 수치해석을 주제로 한 물리, 수학, 정보의 통합적 영재 프로그램 개발과 적용)

  • Nam, Hyun-Wook
    • Journal of Engineering Education Research
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    • v.10 no.2
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    • pp.87-105
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    • 2007
  • In this research, Integrated program base on heat transfer & numerical analysis was developed. Also, reaction of gifted student and possibility of application of this program was surveyed. This program consist in three parts. The first part is computer programing language, the second part is numerical modeling of physical phenomena, and the third part is numerical analysis. 4 students are selected who belong to mathematic class of CNUE(Cheoungju National Univ. of Edu.)'s Gifted Student Education Center. The Program consists in 15th lessens, and each lessen need 4hr. Application possibility and student's satisfaction of the program are studied through the interview and report of the student. Three of four students are accomplish the goal of the progarm. Computer programing and numerical analysis parts were relatively well understood, but numerical modeling part was difficult to students. The satisfaction of the program is dependent on the characteristics of the student. Most of the student thought that this program was one of the science education program. The student who have interested in only mathematics shows that low satisfaction but the one who have interested in science or information technology shows that high satisfaction.