• Title/Summary/Keyword: Affective domain

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A longitudinal analysis on trend of mathematical affective domain (수학 교과에 대한 정의적 특성의 종단적 추이 분석)

  • Kim, Hyunju;Kim, Won Kyung
    • The Mathematical Education
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    • v.55 no.4
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    • pp.447-465
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    • 2016
  • The purpose of this study is to analyze longitudinal trends of students' mathematical affective domain by use of the data mining method. For this purpose, we used the Korea education longitudinal study(KELS 2005) which was the survey data for students' achievement test, affective domain test, teachers' evaluation, and parents' evaluation from $7^{th}$ grader in the year of 2005 to $11^{th}$ grader in the year of 2010. Subjects of this study is a total of 5040 students who answered to the mathematical affective domain survey in KELS 2005. The result findings are as follows. First, students' affective domain had changed negatively as they went up to higher grade. Second, if students' affective domain had built at a certain level in $7^{th}$ grade, the level did not change easily until $11^{th}$ grade. Third, major factors of students' affective domain were shown to be self-efficacy, intrinsic motivation, efforts and patient, and time management.

The Effects of Portfolio Applied Science Instruction on the Students Scientific Affective Domain and Perceptions of Portfolio in Elementary Schools (자연과 포트폴리로 적용 수업이 초등학생의 과학 정의적 특성과 포트폴리오 인식에 미치는 영향)

  • 문유정;김효남
    • Journal of Korean Elementary Science Education
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    • v.19 no.2
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    • pp.29-41
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    • 2000
  • The purpose of this study is to examine the effects of the Portfolio applied science instruction on the students' scientific affective domain and perceptions of portfolio in elementary schools. Portfolio applied science instruction of the 6th grade science unit 'Environment pollution and Nature protection' was developed for this study. Traditional instruction was implemented to the control group and portfolio applied science instruction was implemented to the experimental group. Pretests of the scientific affective domain were administered to both groups. The treatment was given for about seven weeks for both groups. Instruments about scientific affective domain were administered to both groups. A questionnaire on perception of portfolio applied science instruction was given to the experimental group after the treatment. The results were analyzed using t-test on the students' scientific affective domain. The results of this study are as follows: 1. Portfolio applied science instruction program for elementary schools was developed. Students themselves determine the portfolio learning goal in a portfolio applied science instruction. Students construct the portfolio and they evaluate themselves and other colleagues. Also teachers go on portfolio applied science instruction considering portfolio purpose, concepts, evaluation. 2. There was not a statistically meaningful difference between an experimental group and a control group o]1 the students' scientific affective domain. In three sub categories of a scientific affective domain, the science perception, the interest on science and scientific attitude, there were not statistically meaningful difference among them. 3. As the results of the questionnaire on perceptions of portfolio, they didn't understand it very well but after learning portfolio, they showed positive attitude to perceptions of portfolio. Students in portfolio applied science instruction like more the portfolio applied science instruction than general instruction. 4. Portfolio applied science instruction has an useful value as a method of teaching and evaluation. Students and teachers can produce various portfolios products in portfolio applied science instruction. As a conclusion, portfolio applied science instruction was not statistically meaningful on the students' scientific affective domain, but it gives positive effects on perceptions of portfolio in elementary schools. Therefore, portfolio has an educational value as a method of teaching and evaluation for students' growth. In the future, teachers and students must have interaction and feedback in portfolio applied science instruction.

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Teaching World Geography Using Travelog To Reinforce Affective Domain (세계지리 수업에서 여행기를 활용한 정의적 영역의 보완)

  • Son, Myong Cheol
    • Journal of the Korean association of regional geographers
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    • v.22 no.3
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    • pp.730-744
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    • 2016
  • This study aims to seek for solution to reinforce affective domain in World Geography instruction using travelog. The result can be summarized as follows. First, The World Geography textbooks are given too much emphasis on cognitive domain. This overevaluation is due to the fact that official World Geography curriculum is concentrated in cognitive domain. Second, Travelogs can be effectively used for reinforcing affective domain in World Geography education. They can reinforce the various attitudes and values that students need. I hope that this study could activate discussion on affective domain and graphic skills in geography education.

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The Effect of Problem-posing Activities on the Affective Domain of Mathematics (문제제기 활동이 수학에 대한 정의적 영역에 미치는 영향)

  • Oh, Yeongsu;Jeon, Youngju
    • The Journal of the Korea Contents Association
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    • v.18 no.2
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    • pp.541-552
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    • 2018
  • The purpose of this study was to investigate the effects of 'problem posing from mathematical problems' on the students' affective domain of mathematics, and to conduct evaluation and management of teachers' respectively. The quantitative and qualitative approaches were combined to analyze the changes in the affective achievement of all the students and individual students in the study. The conclusions of this study are as follows: First, problem-posing class improved the problem-solving ability and meaningful experience in the learning activity itself, thus improving students' self-confidence, interest, value, and desire to learn. Second, The students' affective domain of mathematics should be emphasized, and systematic evaluation and management should be carried out from the first grade of middle school to high school senior in mathematics. Third, it is necessary to present and disseminate them in detail on the national-level to evaluation system and method of affective domain of mathematics. Therefore, the teacher should actively implement the problem-posing teaching and learning in the classroom lesson and help students' affective achievement. and teachers need to measure and manage the affective achievement of all students on a regular basis.

A Study on the Mathematics Teachers' Gender Difference in Teachers' Perceptions of the Affective Domain in Teaching Practice (교사의 성별에 따른 수학 수업의 각 단계에서 정의적 특성에 대한 인식 및 실태 차이에 관한 연구)

  • Han, Hyesook;Choi, Kyehyen
    • Communications of Mathematical Education
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    • v.26 no.4
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    • pp.363-381
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    • 2012
  • The purpose of the study was to examine teachers' gender difference in teachers' perceptions of the affective domain in teaching practice. This study was conducted with 327 secondary mathematics teachers in Gyeonggi-do by survey method. According to the results, female teachers showed more positive responses in perceptions of the affective domain and teaching practices in the aspect of affective domain at the stage of planning lessons, assessing students, and reflecting lessons. Especially, female group showed higher mean scores than male group in the perception of the value of mathematics at the all stages of teaching.

Designing Cultural Syllabus and Lesson Plan Based on Developmental Stages of Acculturation of Intercultural Communicative Competence

  • Jang, Eun-Suk
    • English Language & Literature Teaching
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    • v.17 no.1
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    • pp.37-52
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    • 2011
  • The purposes of this study were to review developmental stages of acculturation, to establish dimensions and components of intercultural communicative competence, and to suggest teaching methods in the elementary school based on the dimensions and the components of the stages. In order to achieve these purposes, theoretical research on the nature of intercultural communicative competence and teaching methods of intercultural dimensions and components was carried out in terms of developmental stages of acculturation. The stages of acculturation have relation to cognitive domain, affective domain, and cultural awareness. In the domain of cognitive development, the models such as Cummins (1981), Wong-Fillmore (1983), and Ausubel (1968) were presented. In the affective domain of second language research, the models of Gardener and Lambert (1972), Maslow (1954), and Bloom (1974) were argued. Modifying the models of Ausubel, Cummins, Wong-Fillmore, the dimensions and components of intercultural communicative competence were established. In addition, it was suggested that cultural syllabus and lesson plan based on tourist and survivor stage should be considered.

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Self-Regulated Learning Ability Related to Science Inquiry Skill and Affective Domain of Science in Middle School Students (중학생의 자기조절학습능력 수준에 따른 과학의 탐구능력 및 과학의 정의적 영역 특징 분석)

  • Kim, Soon-Ok;Seo, Hae-Ae
    • Journal of Science Education
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    • v.35 no.2
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    • pp.307-323
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    • 2011
  • The study aims to investigate self-regulated learning ability (SRLA) of students and analyze its relationship to their science inquiry skill and affective domain of science in middle schools in Korea. For this end, the research questions include the followings: First, what level is SRLA of middle school students? Second, how does the relationship between SRLA and science inquiry skill look like? Third, how does the relationship between SRLA and affective domain of science look like? A research method employed in the study is the survey utilizing three questionnaires: a) a questionnaire of SRLA (Jung et al., 2004); b) a questionnaire of problem finding ability of the science inquiry skill (Jung et al., 2004); and c) a questionnaire of science affective domain (Seo et al., 2008, adopted from 2006 PISA Student Questionnaire). Responses to three questionnaires by 704 students from seven middle schools in Busan, Ulsan, and Gyeongnam in Korea were analyzed. The research findings were as follows: First, mean average scores of SRLA is 3.02 (${\pm}0.63$) in 5 Likert scale (1 = strongly disagree; 5 = strongly agree). Second, students with higher scores in science inquiry skill showed significantly (p<.05) higher scores in SRLA than others. Third, boys scored higher on self-efficacy scale than girls. As students advance their grade level, their affective domain levels of science significantly (p=.048) decreases, in particular, their self-efficacy level most significantly (p=.002) decreases. Fourth, SRLA was significantly (p=.000) correlated with science inquiry skill and affective domain of science. In conclusions, it appeared that the higher SRLA level of students in middle schools is, the higher level of science inquiry skill and affective domain of science is.

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Exploring the direction of mathematics education to improve the affective achievement of students (학생의 정의적 성취 신장을 위한 수학교육 개선 방향 탐색)

  • Lee, Hwayoung;Ko, Ho Kyoung;Park, Ji Hyun;Oh, Se Jun;Lim, Miin
    • The Mathematical Education
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    • v.61 no.4
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    • pp.631-651
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    • 2022
  • It has been alerted that Korean students' mathematical affective achievement is very low. In order to solve this problem, various policies related to mathematical affective domains have been promoted, but it is necessary to examine various existing policies and explore the direction for improving them in more essential aspects. Based on previous studies that the growth mindset helps to increase students' affective achievement, this study focused on improving students' math-related growth mindset and ultimately exploring policies that can increase mathematical affective achievement. Therefore, the current status of mathematical affective achievement of Korean students was examined, and the policies and related cases in the mathematical affective domain were investigated. Based on the results, some keywords were derived and then the directions of policy for improving the math-related growth mindset and the affective achievement of students were suggested.

The Effects of MBL Programs on Academic Achievement and Science-Related Affective Characteristics of Elementary School Students in Laboratory Instructions (과학 실험 수업에서 MBL의 적용이 초등학생의 학업 성취도 및 과학 관련 정의적 특성에 미치는 효과)

  • Park, Sang-Yong;Park, Jae-Keun;Yeo, Sang-Ihn
    • Journal of Korean Elementary Science Education
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    • v.25 no.4
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    • pp.454-464
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    • 2006
  • The purpose of this study was to develop MBL(Microcomputer Based Laboratory) programs for sixth-grade elementary students in science laboratory instructions and to ascertain the effects of this program on academic achievement and science-related affective characteristics. In laboratory instructions, using the MBL was found to be effective in improving academic achievement for elementary students, especially in the domain of knowledge. In addition, it helped students to improve science-related affective characteristics. The experimental group showed higher levels, especially in the domains of cognition and interest. When our findings were analyzed in detail, the sub-domains that showed positive effects included 'cognition of science' in the domain of cognition, and interest toward science', 'interest toward science learning', 'interest toward science related activities', and 'anxiety for science' in the domain of interest. Male students exhibited improvement in the domain of cognition while female students showed improvement in the domain of interest. In conclusion, utilizing MBL programs as an experimental measurement in the real field of elementary science education can be said to be both positive and desirable.

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Meta-Analysis of Effects of Self-directed and Self-regulated Learning Programs on the Cognitive and Affective Domains of Math (자기주도학습과 자기조절학습 프로그램이 수학의 인지적 영역과 정의적 영역에 주는 효과에 대한 메타분석)

  • Ko, Ho Kyoung;Kim, Hyoungsik;Son, Bokeun;Son, Jeong-Im;Ee, Jihye;Lee, Hyoungju
    • The Mathematical Education
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    • v.55 no.3
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    • pp.357-382
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    • 2016
  • The purpose of this study was to report the effects of self-directed and self-regulated learning programs on elementary, middle, and high school students through meta-analysis of previous studies. For this research, 22 of previous studies were selected which were all conducted in the country, and calculated the effect size of 'standardized change of the mean difference' for many factors included in each research. The findings were as follows: first, the overall effect sizes of self-directed and self-regulated learning programs on elementary, middle, and high school students were .665 and .702 in the affective and cognitive domain, respectively, meaning that the self-directed and self-regulated learning programs had average or greater effects on elementary, middle, and high school students and exerted somewhat greater effects in the cognitive domain. Second, when the areas of moderating effects were divided into self-directed and self-regulated learning, the former and latter had more influences on the cognitive and affective domains, respectively. Third, the elementary school level recorded a larger effect size both in the affective and cognitive domains than the secondary school level. Fourth, the findings show that the characteristics of affective domain, "reflective thinking" and "self-confidence," recorded a very large effect size both at the elementary and secondary school levels. Finally, the programs were more effective when the application period was one to four weeks in the affective domain and more than four weeks in the cognitive domain. And, Significance and implications of this research were discussed.