• Title/Summary/Keyword: Science-Gifted Student

Search Result 276, Processing Time 0.026 seconds

Development of a Convergent Teaching-Learning Materials based on Logic Gates using Water-flow for the Secondary Informatics Gifted Students (물의 흐름을 이용한 논리 게이트 기반 융합형 중등 정보과학 영재 교수·학습 자료 개발)

  • Lee, Hyung-Bong;Kwon, Ki-Hyeon
    • Journal of the Korea Society of Computer and Information
    • /
    • v.19 no.12
    • /
    • pp.369-384
    • /
    • 2014
  • Since the start of gifted education in 2002, educational support system has now been established, and sufficient growth in quantitative aspects has been achieved in Korea. On the other hand, they report that there are insufficient points in terms of education quality. In other words, most of the gifted education simply expands knowledge by prior-learning. In order to improve the quality of gifted education, they should enhance critical-thinking and creativity able to apply interdisciplinary principles or phenomena for solving problems. In this study, we designed and developed a convergent teaching-learning materials based on the concept of integrated education, which explore the process that basic logic operations such as AND, OR, XOR do the role of computer cells. A survey result showed that student satisfaction(usefulness, understanding, interest) of the materials is significantly higher than that of other traditional learning topics, and the design intent was met.

The Effects of Explicit Instructions on Nature of Science for the Science-gifted (과학 영재를 대상으로 한 명시적 과학의 본성 프로그램의 효과)

  • Park, Eun-I;Hong, Hun-Gi
    • Journal of The Korean Association For Science Education
    • /
    • v.30 no.2
    • /
    • pp.249-260
    • /
    • 2010
  • The main purpose of this study is to examine the effects of explicit instructions on the nature of science (NOS) on the understanding of science-gifted students. Participants were engaged in 8 explicit NOS instructions spanning 6 months. Data were collected before and after the instructions from 20 science-gifted students using student worksheets, open-ended questionnaires (Views of Nature Of Science, VNOS), and in-depth interviews. The results of this study showed that explicit instructions were helpful in improving the understanding of the tentativeness in science and socially and culturally embedded aspects of science. However, participants not only still possess naive views on the nature of science about the distinction of law and theory and the empirical aspects of science, but also had conflicting views and misconceptions in some areas. The study has implication for development of science-gifted program that the explicit instructions on NOS and science inquiry should be provided concurrently, given the complementary relationship of the two activities.

Developing the Rubric for Measurement in Levels by Areas for the Characteristics of Task Commitment Shown in the Science Gifted (과학 영재의 과제집착력 특성 수준 측정을 위한 루브릭 개발)

  • Jang, Jyungeun;Kim, Sung-Won
    • Journal of The Korean Association For Science Education
    • /
    • v.34 no.7
    • /
    • pp.657-666
    • /
    • 2014
  • To identify the gifted, it is essential to perform overall evaluation on cognitive and affective aspects considering all the characteristics of the science gifted. Nowadays, not only cognitive factors but also affective factors are being emphasized. Among the affective factors of the gifted, the task commitment is an important factor to describe the gifted and their outstanding achievements. From this research, by measuring the characteristics of task commitment shown in the science gifted, this can offer good implications regarding the selection of the gifted and the education. We developed the rubric of the gifted students by analyzing the students' experience of showing task commitment. By applying the rubric, we measured the levels by areas of the characteristics of task commitment shown in the experiences which the science gifted had by deeply exploring the cause or the principle. To better understand the characteristics of the science gifted students' task commitment, each and every students' characteristics were specifically described. The students' task commitment can be measured objectively and effectively by using the measuring tool in the form of rubric based on the characteristics of the task commitment. Specifically describing the students' characteristics on the basis of their performance criteria is the grounds for the level judgment and enhances the understanding of the characteristics of students' task commitment.

Characteristics of Middle School Students in a Biology Special Class at Science Gifted Education Center: Self-regulated Learning Abilities, Personality Traits and Learning Preferences (과학영재교육원 생물반 중학생들의 특성: 자가조절학습능력에 따른 개인적 성향 및 학습선호도)

  • Seo, Hae-Ae
    • Journal of Gifted/Talented Education
    • /
    • v.19 no.3
    • /
    • pp.457-476
    • /
    • 2009
  • The research aimed to investigate characteristics of middle school students in a biology class as science gifted education in terms of self-regulated learning abilities, personality traits and learning preferences. The twenty subject in the study responded to questionnaires of a self-regulated learning ability instrument, a personality trait tool, and a learning preference survey in March, 2009. It was found that the research subjects showed higher levels of cognitive strategies, meta-cognition, and motivation than those students in a previous study(Jung et. al., 2004), while environment was opposite. The level of cognitive strategies was significantly correlated with meta-cognition(r=.610, p=.004) and motivation (r=.538, p=.014) and meta-cognition with environment(r=.717, p=.000). Those students who showed highest levels of self-regulated learning ability displayed various personality traits. One male student with the highest level of self-regulated learning ability showed a personality of hardworking, tender-minded, and conscientious traits and wanted to be a medical doctor. The female student with the second highest level of self-regulated learning ability presented a personality as creative, abstract and divergent thinker and she showed a strong aspiration to be a world-famous biologist with breakthrough contribution. The five students with highest levels of self-regulated learning ability showed a common preference in science learning: they dislike memory-oriented and theory-centered lecture with note-taking from teacher's writings on chalkboard; they prefer science learning with inquiry-oriented laboratory work, discussion among students as well as teachers. However, reasons to prefer discussion were diverse as one student wants to listen other students' opinions while the other student want to present his opinion to other students. The most favorable science teachers appeared to be who ask questions frequently, increase student interests, behave friendly with students, and is a active person. In conclusion, science teaching for the gifted should employ individualized teaching strategies appropriate for individual personality and preferred learning styles as well as meeting with individual interests in science themes.

Analysis of the Differences in Perception about Scientists between Science Class and Convergence Class Applicants in Gifted Science Education Center (과학영재교육원의 과학반과 융합반에 지원한 학생들의 과학자에 대한 인식 차이 분석)

  • Park, Seon-Ok;Lim, Hyo-Sun;Chung, Duk-Ho
    • Journal of Gifted/Talented Education
    • /
    • v.23 no.6
    • /
    • pp.1019-1034
    • /
    • 2013
  • The purpose of this study is to investigate the characteristics of convergence gifted students through the their perception of the differences about scientists between Science class and Convergence class in gifted science education center. Consequently, this article reports that there are differences in the perception about scientists was distinction between applicants of Convergence and Science class. Science class applicants mainly recognized scientists as pure scientists, but Convergence class applicants recognized scientist were including mathematician, artist, architect, etc. Also Convergence class applicants thought that affective domain including 'effort', 'patience', 'interest' was more important that Science class applicants. On the other hand, when they described the scientists, Science class applicants knew their achievements as scientists more specifically than Convergence class. And to conclude, the characteristics were different between Convergence and Science class applicants in gifted science education center. Based on the result of this study, this paper suggests the following: Firstly, conceptual study is urgent about convergence gifted students in their definition and characteristics. Secondly, information regarding the criteria to select student for convergence class in gifted science education center. Finally, when teaching convergence gifted students, attention should be paid to their characteristics such affective domain.

Comparative Analysis of Successful Intelligence and Learning Strategies for the Scientific Gifted and the Regular Students in Elementary School (초등과학 영재학생과 일반학생의 성공지능과 학습전략의 비교 분석)

  • Park, Young-Hee;Choi, Sun-Young
    • Journal of Science Education
    • /
    • v.38 no.3
    • /
    • pp.612-624
    • /
    • 2014
  • The purpose of this study was to analyze successful intelligence and learning strategies for the scientific gifted and the general students in elementary school. For this purpose, we conducted a survey targeting 327(including 159 gifted students) 5th - 6th grader elementary students in Incheon Metropolitan City. We were utilized to evaluate the students' successful intelligence(Song, 2002) and learning strategies(Kim, 2005). The results of this study were as follows. First, successful intelligence and learning strategies of the scientific gifted students in elementary school were higher than the regular class students, it was a significant difference statistically(p < .001). Second, when compared according to grade level, the scientific gifted students class higher than the general class students, it was a significant difference statistically(p < .001). Third, when compared according to gender, the scientific gifted students were higher than the general class in both men and women, it was a significant difference statistically(p < .001)

  • PDF

Research on Development and Operation of Flipped Learning Based Learner-Centered Science Gifted Education Program (플립드 러닝 기반 학습자 주도형 과학영재 교육 프로그램 개발 및 운영 연구)

  • Lee, Dong Yub;Kim, Dong Hyun;Jo, Soo Jin;Kang, Hyun Syug
    • Journal of Digital Convergence
    • /
    • v.17 no.11
    • /
    • pp.81-89
    • /
    • 2019
  • In order to foster talented people needed for the 4th Industrial Revolution, learner-centered classes that meet the characteristics and needs of students are needed. In particular, the learner-centered student-active class is more meaningful for gifted students who have diverse needs and interests. In order to meet these demands, this study developed a learner-centered science gifted education teaching-learning model based on flipped learning, and analyzed various results revealed after applying the developed program to the gifted class. Based on the results, we proposed a plan for more efficient operation of future learner-centered science gifted education programs.

Patterns of Observation Type of Elementary Science-gifted Students in Visit Activities of the Science Museum (과학박물관 탐방활동에서 나타난 초등 과학 영재 학생들의 관찰 유형 분석)

  • Kim, Mimoa;Jeong, Jinwoo;Kim, Hyoungbum
    • The Journal of the Korea Contents Association
    • /
    • v.15 no.3
    • /
    • pp.57-67
    • /
    • 2015
  • The aim of this study was to categorize and analyze the patterns of the observation type in the experiential learning through the science museum for elementary gifted students in science. Ten science-gifted students were included and analyzed in this study and during experiential learning in the science museum, the participants freely expressed their observation of their own languages and all observations and dialogue were recorded. The results are listed below. The cognitive aspect, especially question and response activity without their personal opinion, was the most frequently used item. Among the affective aspects, item for 'recommendation' was often used. In accordance to observation type, most participants overall observed single object independently of time. Also, participants mostly observed objects visually using qualitative method without manipulation. Therefore verbal interaction through question might have a positive effect on frequency and diversity of observation. Project learning, such as particular exhibition hall, exploratory time of concentration by students, or study paper will be capable of creating a effective observation learning in order to induce a variety of observation of science gifted students in the experiential learning through the science museum.

Construction of cooperative teaching system to support dynamics in gifted students' social studies learning (영재학생들의 사회과 학습의 역동성을 지원하는 협력교수 체제의 구안)

  • Park, Hae-Jin;Back, Sun-Hwa;Nam, Youl-Soo;Noh, Kyung-Hyun;Lee, Su-Seong
    • Journal of Gifted/Talented Education
    • /
    • v.15 no.1
    • /
    • pp.11-36
    • /
    • 2005
  • Cooperative teaching emerged as one of the interesting topics on curriculum administration and teaching-learning method in BSA(Busan Science Academy). The purpose of this study is to do research on social studies learning with respect to cooperative teaching, and to develop the model of cooperative teaching. The results of this study are as follows: First, We surveyed both the concept of cooperative teaching in all aspects and the methodological application on cooperative teaching. Second, We searched all teaching-learning methods in BSA in terms of cooperative teaching. Third, We studied cooperative teaching system on social studies considering current environmental factors. Forth, We performed seminar class which is constructed as one of the cooperative teaching models. The topic of seminar was 'The distortion and falsification of Koguryeo history in China'. The participants of seminar were volunteer students and social studies teachers whose subjects were geography, history, social studies, and ethics. And the participants conducted the research and cooperative learning based on teacher's subjects and subtopics. Fifth, The interactions between teacher and teacher, student and student, and teacher and student in the process of seminar preparation and publication were conducted very excitedly. Especially we found the possibility of cooperative teaching by the interaction between teachers. Finally, students developed the mind-frame to participate in social studies learning actively, and learned the method to research social affairs for themselves, and extended the eyes to approach social affairs with different opinions.

A Study on the Problem Solving Styles according to Left/Right Brain Preference of Earth Science Gifted Students (좌우뇌 활용 선호도에 따른 지구과학 영재들의 문제해결방식에 관한 연구)

  • Chung, Duk-Ho;Park, Seon-Ok
    • Journal of the Korean earth science society
    • /
    • v.31 no.2
    • /
    • pp.172-184
    • /
    • 2010
  • This study is to investigate the problem solving styles according to the left /right brain preference among earth science gifted students. We took the R/LCT and the test of BPI to investigate the brain preference of earth science gifted students (N=16), and took S-CPST to investigate the problem solving styles on them. In the R/LCT, the earth science gifted students were classified into 3 groups (8 left-brain preference students, 7 right-brain preference students, 1 middle-brain preference student). In the BPI, 8 students had the appearance of left-brain preference, whereas 8 students had the appearance of right-brain preference. According to the result of S-CPST, first the left brain preference students tended to resolve a problem into simple components, then they put together each simple component. They prefer to solve a problem using numbers and mathematical signs logically, but they were afraid of giving trouble to describe own idea with pictures. Whereas the right brain preference students solved a problem with 3 steps. First, they saw an overall form of problem. Second, they tried to analyze each simple component of it, and then, made up all in one. Also, the right brain preference students observed the intuitive pattern of problem first, and then suggested the various problem solving methods later, and they took a solving plan using a picture in detail. In sum, earth science gifted students are unequal in problem solving styles according to the left/right brain preference. Thus, a teaching-learning method needs to be developed based on left/right brain preference for more effective gifted education.