• Title/Summary/Keyword: 화학성취도

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Exploration of the Path Model among Goal Orientation, Self-efficacy, Achievement Need, Entity Theory of Intelligence, Learning Strategy, and Self-handicapping Tendency in Chemistry Education (화학교육의 목표지향성, 자기효능감, 성취욕구, 지능신념, 자기핸디캡경향 및 학습전략 간의 경로모형 탐색)

  • Ko, Young Chun
    • Journal of the Korean Chemical Society
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    • v.57 no.1
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    • pp.147-158
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    • 2013
  • This study is to search an optimal model on causal relationships of the motivations to learn and motivation strategy in chemistry education. The participants in this study are consisted of G and I high schools students (487) in Gwangju. They all answered to the questionnaire. Model I is hypothesized to be path model of the mediation between 'self-efficacy, achievement need, and entity theory of intelligence' and 'learning strategy and self-handicapping tendency of motivation strategy' by goal orientation to explore variables of study effecting the motivation strategy. And Model II is hypothesized path model of the mediation between goal orientation and 'learning strategy and self-handicapping tendency' by 'self-efficacy, achievement need, and entity theory' to explore variables of study effecting the motivation strategy. Based on these models, structural equation modeling techniques are used to evaluate for the path model among goal orientation(learning, performance approach, and performance approach goal orientation), self-efficacy, achievement need, entity theory of intelligence, self-handicapping tendency, and learning strategy in chemistry education. As the results, Model II is considered. Goodness-of-fit indexes of this model related modification models are identified and analyzed in phases. And this model is accomplished by correcting the model the fifth time to enhance goodness-of-fit indexes. In this optimal model II-5 (Fig. 3) on causal relationships of the motivations to learn and learning strategy (p

A Study on the Effect of Cooperative Computer-Assisted Instruction by Previous Achievement Level (사전 성취 수준에 따른 협동적 컴퓨터 보조 수업의 효과)

  • No, Tae-Hui;Cha, Jeong-Ho;Yun, Seon-Ae;Gang, Seok-Jin
    • Journal of the Korean Chemical Society
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    • v.46 no.4
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    • pp.377-384
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    • 2002
  • In this study, the effect of cooperative computer-assisted instruction upon students' conceptual under-standing,application ability, and learning motivation were investigated by a previous achievement level. The treatment and the control groups (2 classes) were selected from a middle school in Seoul, and taught about the motion of molecule for 5 class periods. Prior to the instructions, a learning motivation test was administered and used as covariate. The scores of a previous achievement test were also used as covariate. The scores of the mid-term science examination were used as blocking variable. After the instructions, the conceptions test, the application test, and the learning motivation test were administered. Two-way ANCOVA results revealed that there were no significant differences in the scores of the con-ceptions test and the application test. However, the scores of the treatment group were found to be significantly higher than those of the control group in the learning motivation test.

Analysis of Inquiry Activities in High School Chemistry II Textbooks based on the 2009 Revised Science Curriculum: Focus on 8 Science Practices (2009 개정 교육과정에 따른 화학II교과서에 포함된 탐구 활동 분석: 8가지 과학 실천을 중심으로)

  • Jeon, Young;Choi, Aeran
    • Journal of the Korean Chemical Society
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    • v.60 no.1
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    • pp.59-68
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    • 2016
  • The cultivation of scientific literacy in recent science education can be improved by experiencing and understanding scientific inquiry by which scientific knowledge is formed. The National Research Council(NRC) released the Next Generation Science Standards (NGSS) including 8 practices of science that help students experience scientists' inquiry and subdividing achievement standards to perform 8 practices of science into by grade clusters. This study was intended to examine science inquiry activities included in 4 high school chemistry II textbooks developed by the 2009 revised curriculum using the 8 scientific practices and their achievement standards for 9th-12th grade. The science inquiry activities and the science practices included in the 4 textbooks were 173 and 678. The science practices included in the inquiry activities of 4 textbooks included the most ‘analyzing and interpreting data.’ The ‘engaging in argument from evidence’, ‘Obtaining, Evaluating, and Communicating Information’ were less than other practices. The ‘asking questions and defining problem’ and ‘developing and using models’ were not nearly included in the 4 high school chemistry II textbooks.

The Effect of Computer-Assisted Instruction Using Molecular-Level Animation and Worksheet in High School Chemistry Class (고등학교 화학 수업에서 입자수준의 애니메이션과 활동지를 이용한 컴퓨터 보조수업의 효과)

  • Noh, Tae-Hee;Cha, Jeong-Ho;Kim, Chang-Min
    • Journal of The Korean Association For Science Education
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    • v.19 no.1
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    • pp.128-136
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    • 1999
  • The effects of computer-assisted instruction (CAl) using molecular-level animation and worksheet upon students' achievement, conceptual understanding, and learning motivation were investigated. Treatment and control groups (2 classes) were selected from a girls' high school in Seoul, and taught about dissolution for 3 class hours. Before the instructions, the Patterns of Adaptive Learning Survey (PALS) was administered, and the grade for a previous science course was obtained. The PALS score was used as a covariate, and the other as a blocking variable. After the instructions, the achievement test, the conceptions test, and the Instructional Materials Motivation Scale (lMMS) were administered. Two-way ANCOVA results revealed that the scores of the CAl group in the achievement and the conceptions tests were significantly higher than those of the control group. The CAl group also performed better in all subtests of the IMMS except the subtest of relevance.

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Analyses on the Degree of Learning Achievement by Students and on Differences of Explaining in High School Chemistry-II Textbooks for the Atomic Models and Electron Configurations (원자모형과 전자배치 단원에 대한 고등학교 학생들의 학습 성취도 및 화학 II 교과서의 설명방식의 차이점에 대한 분석)

  • Chang Kon Kim
    • Journal of the Korean Chemical Society
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    • v.47 no.3
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    • pp.273-282
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    • 2003
  • A questionnaire on "atomic models and electron configuration" was performed on 34 of 11th grade and 38 of 12th grade students who took the Chemistry-II course in order to examine the degree of learning achievement. Also eight Chemistry-II textbooks published in the 6th curriculum were analyzed for the similarities and differences in dealing with this topic and possible improvements were discussed in conjunction with the questionnaire. The results of this questionnaire showed that the degree of learning achievement on the topics between two different classes were not much different in general, although a little difference was found. This indicates that the topics have been taught in early 11th grade but subsequent supplemental teaching has not been performed. To study on the topics of "atomic models and electron configuration" effectively and systematically, knowledge on the basic spectroscopy and quantum mechanics should be preceeded. However this could be practically difficult under the current high school curriculum. Therefore It would be necessary to describe the basic concepts for the quantum mechanics and spectroscopy schematically in the "Reference Materials" section of the textbook, even if it is not very long. On the other hand, the Chemistry-II textbooks analyzed in this work reveal, in general, to have the similar organization and explanation modes. However it has been analyzed that a connection between the Bohr and electron-cloud atomic models might be insufficient or position of electrons might be possible to be misunderstood by students in some textbooks.

The Effects of Taking Elective Science Courses in High School on Studying Science at the University Level (고등학교 과학 선택과목 이수가 대학에서의 과학 학습에 미치는 영향)

  • Hong, Mi-Young;Kim, Joo-Ah;Park, Hyun-Ju
    • Journal of The Korean Association For Science Education
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    • v.31 no.6
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    • pp.836-847
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    • 2011
  • This study investigated the effects of taking elective science courses in high school on studying science at the university level. The research methods undertaken for this study included surveys of college students in science areas. For physics and biology major students, no significant differences in achievement in the basic courses at the university level were found between the groups that took only Science I courses and the group took Science I and II courses. For chemistry major students, achievement for the group that took Chemistry I and II courses was significantly higher in the basic courses, while no significant differences between the two groups was found in the advanced courses. The perceptions of college students regarding the effects of their science learning experience in high school on learning science at the university level were investigated. All the college students perceived that whether or not they took Science II courses in high school, it did not affect their learning in basic science courses in college. They also perceived that students were able to overcome difficulties by making extra effort even if they did not take Science II courses in high school.

Comparison of the Characteristics of each Educational Achievement Level of Elementary and Middle School Students Shown in the Chemistry Items of the National Assessment of Educational Achievement (국가수준 학업성취도 평가의 화학 문항에서 나타난 초.중학교 학생의 성취수준별 특징 비교)

  • Choi, Wonho
    • Journal of The Korean Association For Science Education
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    • v.33 no.6
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    • pp.1186-1201
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    • 2013
  • We investigated student's characteristics in each educational achievement level using the results of the NAEA (National Assessment of Educational Achievement) in 2009, 2010, and 2011 for Grade 6 students, and compared the characteristics between elementary and middle school students. The analysis of representative items for each educational achievement level of elementary and middle school students revealed that (a) advanced level students from both elementary and middle school could exactly understand the achievement criteria of the curriculum, (b) proficient level students from both elementary and middle school were understanding the achievement criteria of the curriculum superficially, for example, they could not understand concepts exactly but could memorize terms, and so should have compensational education under situations that ask for short answer or essay type items instead of multiple choice items, and (c) basic level students from both elementary and middle school almost could not understand the achievement criteria of curriculum, and so should have compensational education under situations that only deal with a simple situation. Science concepts treated in science curriculum are hierarchically organized by level of school, and simple compensational education for the students of below basic level will not solve learning deficits in science education. Differentiated education by educational achievement should be largely expanded instead.

The Influence of Cognitive Style and Cognitive Level of High School Students on Chemistry Problem Solving (고등학교 학생들의 인지 양식과 인지 수준이 화학 문제 해결에 미치는 영향)

  • Kwon, So-Hyeon;Choi, Byung-Soon
    • Journal of The Korean Association For Science Education
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    • v.22 no.1
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    • pp.132-140
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    • 2002
  • The purpose of this study was to find the influence of students' cognitive styles and cognitive levels on chemistry problem solving. 322 11th grade students were administered Group Embedded Figures Test(GEFT), Group Assesment of Logical Thinking(GALT), and chemistry problem solving task about mole and stoichiometry. Chemistry task was made of ten items, 5 items of them include misleading factor(irrelevant information). The students who are field-independent and in formal operational stage got higher scores than those who are field-dependent and in transitional stage. In 5 items which have no misleading factor GALT had significantly contributed to the regression equation, while in 5 items which have misleading factor GEFT was significant contribution to the regression equation. In two items of misleading items, students who used the irrelevant information were significantly more field dependent than those who did not use this information.

The Impact of Motivational and Cognitive Variables on Multiple-Choice Algorithmic Chemistry Problem Solving: Achievement Goal, Perceived Ability, Learning Strategy, and Self-Regulation (동기 및 인지 변인이 화학 선다형 수리 문제 해결에 미치는 영향: 성취 목적, 유능감, 학습 전략, 자기 조절 능력)

  • Jeon, Kyung-Moon;Park, Hyun-Ju;Noh, Tae-Hee
    • Journal of The Korean Association For Science Education
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    • v.26 no.1
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    • pp.1-8
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    • 2006
  • This study investigated the causal relationships between high school student multiple-choice algorithmic chemistry problem solving and 1) the motivational variables of achievement goal (task goal/performance goal/performance-avoidance) and perceived ability, and 2) the cognitive variables of learning strategy (deep learning/surface learning) and self-regulation. Path analysis supported a causal model in which perceived ability and task goal were found to positively influence algorithmic chemistry problem-solving ability via self-regulation. In particular it was found that perceived ability directly influenced algorithmic chemistry problem-solving ability. Moreover, deep learning was found to have been influenced by perceived ability and task goal, while surface learning was influenced by performance-avoidance goal. Lastly, there did not appear to be any causal relationship between learning strategy and algorithmic chemistry problem-solving ability.