• Title/Summary/Keyword: learning concepts

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Multidimensional Scaling Analysis of the Proximity of Photosynthesis Concepts In Korean Students

  • Kim, Youngshin;Jeong, Jae-Hoon;Lim, Soo-Min
    • Journal of The Korean Association For Science Education
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    • v.33 no.3
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    • pp.650-663
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    • 2013
  • Multidimensional scaling can be used to identify relationships among concepts, revealing the structure of the cognitive framework by measuring distances within perceptual maps. The current study sought to examine the relationships among concepts related to photosynthesis in 2,844 $3^{rd}-11^{th}$ grade science students. The questionnaire included items on 'location,' 'products,' 'reactants,' and 'environmental factors', presenting images related to each theme. Students provided responses corresponding to particular topics, and reported the extent to which the concept was related to the topic on a scale from 1 to 30. The survey results were as follows: first, students were not able to clearly distinguish between or understand the four main topics. Second, students organized their cognitive structures by closely associating related concepts after learning. Third, the presented concepts revealed a mixture of scientific and non-scientific concepts, suggesting that students needed to clearly distinguish the preconceptions through which they organized concepts, so that they are suitable for cognitive structures based on learning. Furthermore, non-scientific concepts within perceptions were consistently maintained throughout learning, affecting the proximity of scientific concepts.

Development of a Web-based Courseware to Improve the Understanding of Numerical Concepts for Elementary Students with Learning Difficulties (초등학교 학습장애 학생의 수 개념 향상을 위한 웹 코스웨어 개발)

  • Jang, Jin-Guk;Moon, Gyo-Sik
    • Journal of The Korean Association of Information Education
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    • v.8 no.2
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    • pp.141-153
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    • 2004
  • Pupils with learning impediments in elementary schools have difficulties in learning numerical calculations. Numerical concepts, the basis of numerical calculations, require repetitious exercises, and it has been widely reported that computer-mediated learning motivates the learners to concentrate on their learning for longer hours. The aim of the research is to develop and apply a Web-based courseware to experimental groups to improve learning numerical concepts of the learners with learning difficulties in elementary school and to discuss the effects of the results. The courseware is designed to improve the numerical concepts of the learners through many thought activities. The experiment shows effectiveness of the learning activities to improve learning numerical concepts for students with learning difficulties, categorized into two groups - an experimental group and a control group, and also it shows positive responses on improvement of their calculation ability.

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Patterns of mathematical concepts and effective concept learning - around theory of vectors (수학적 개념의 유형과 효과적인 개념학습 - 벡터이론을 중심으로)

  • Pak, Hong-Kyung;Kim, Tae-Wan;Lee, Woo-Dong
    • Journal for History of Mathematics
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    • v.20 no.3
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    • pp.105-126
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    • 2007
  • The present paper considers how to teach mathematical concepts. In particular, we aim to a balanced, unified achievement for three elements of concept loaming such as concept understanding, computation and application through one's mathematical intuition. In order to do this, we classify concepts into three patterns, that is, intuitive concepts, logical concepts and formal concepts. Such classification is based on three kinds of philosophy of mathematics : intuitionism, logicism, fomalism. We provide a concrete, practical investigation with important nine concepts in theory of vectors from the viewpoint of three patterns of concepts. As a consequence, we suggest certain solutions for an effective concept learning in teaching theory of vectors.

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A Study on Perception of 'Environmental Pollution' Concepts In the Elementary School Students (초등학생들의 환경오염 개념에 대한 인식 수준 연구)

  • Hong, Seung-Ho
    • Hwankyungkyoyuk
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    • v.22 no.3
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    • pp.63-71
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    • 2009
  • The aim of this study is to provide the basic data on misconception correction through the investigation of perception extent for 'environmental pollution' concepts in the elementary school students. For this, 18 investigation questions for concepts were created. And then a questionnaire was inputted for 446 elementary school students. The rate of average wrong answer for total questions was 34.9%. The eight questions were appeared as rate of wrong answers over average, suggesting that the misconception extent for 'environmental pollution' was still high. The extent of concepts for total questions between living environments of the study subjects did not show any significant differences. However, the urban students had significantly higher rate of wrong answers than rural students in the three questions, indicating that it is necessary to develop various teaching-learning materials on 'environmental pollution'. Therefore, the teachers have to study the various ways to induce the cognition conflicts through the application of proper teaching-learning for correction of 'environmental pollution' concepts.

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An Analysis of the Studies on Scienctific Concepts and Instructional Models (과학 개념의 특성과 학습지도 방법에 관한 연구의 분석)

  • Cho, Hee-Hyung
    • Journal of The Korean Association For Science Education
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    • v.16 no.1
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    • pp.77-86
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    • 1996
  • The purpose of this study was to review the studies related to concept learning forcusing on the meanings, kinds, and characteristics of concepts. Then the characteristics of the concepts were analyzed in the three positions: metaphysics, epistemology, and psychology. It was identified that the word 'concept' were confused with the other words such as conception, construct, idea, notion, identity. It was also found that researchers defined the concepts by the use of various meanings. The instructional strategies for scientific concepts were also analyzed in this study. The study found that the instructional strategies for concept learning were developed according to the views about the nature of concepts. Described on the paper are three types of instructional models for science concepts suggested by constructivists as follows: concept formation, concept differentiation, and exchange. They developed the models based on the current research on the misconceptions of major scientific concepts.

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Possibility of Science Concept Learning in Scientific Practice-Based Science Education: A Review Focused on Situated Learning Theories and Conceptual Agency (과학적 실행 기반의 과학 교육에서 개념 학습의 가능성 고찰 -상황 학습 이론과 개념적 행위 주체성을 중심으로-)

  • Oh, Phil Seok
    • Journal of The Korean Association For Science Education
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    • v.42 no.4
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    • pp.477-486
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    • 2022
  • This study explored a possibility of science concept learning in scientific practice-based science instruction through the review of literature about situated learning theories and practice-based science education. It was revealed that the situated learning theories were closely related to the recent trend in science education which emphasizes students' active engagement in scientific practices. From the perspective of situated learning, concept learning occurs in the process in which learners make use of concepts as resources and further develop the concepts through the emergence of conceptual agency during their participation in practices. The study also found that the situated learning perspectives could apply to science concept learning in scientific practice-based instruction: Science concepts are used as resources in practice-based science learning, students can better engage in scientific practices as they take advantage of science concepts as resources, and the emergence of conceptual agency can facilitate science concept learning during the participation in scientific practices. Implications for school science education were suggested.

An Comparative Study of Articulation on Science Textbook Concepts and Extracted Concepts in Learning Objectives Using Semantic Network Analysis - Focus on Life Science Domain - (언어 네트워크 분석을 이용한 초등학교 과학 교과서 개념과 성취 기준 추출 개념의 연계성 비교 연구 - 생명과학 영역을 중심으로 -)

  • Kim, Youngshin;Kwon, Hyoung-Suk
    • Journal of Korean Elementary Science Education
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    • v.35 no.3
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    • pp.377-387
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    • 2016
  • Whether textbooks faithfully reflect the curriculum contents is an important educational issue. The previous studies on the textbooks did not analyze the relationship described in the textbooks or the structure. In this regard, this study aims to analyze how the concept of life science area in the elementary school science textbooks developed on the basis of the 2009 revised curriculum is linked. In addition, it seeks to analyze how the concept presented in the learning content achievement standards of the curriculum is connected to other concepts. Towards this end, the conceptual linkage of eight units in the life science domain of elementary school science textbooks based on the 2009 revised curriculum was analyzed. The contents of the life science domain in the science textbooks were analyzed through a semantic network analysis, and the semantic network on the concept linked to the one described in curriculum's learning objectives was also analyzed. The results are as follows: 1) It will be difficult for students to understand the concept due to the complexity of the semantic network resulting from a number of concepts. 2) The curriculum's learning objectives presented in the curriculum are not faithfully reflected in the textbooks. 3) The textbooks are described on the basis of specific curriculum's learning objectives. Based on the findings of this study, the number of concepts described in the elementary school science textbooks needs to be significantly reduced so that the concepts can be meaningfully linked to each other.

Characteristics of Teaching Orientation and PCK of Science Teachers in Online-offline Mixed Learning Environment (온-오프라인 혼합 학습환경에서 과학교사의 교수 지향과 PCK 특징)

  • Jisu Kim;Aeran Choi
    • Journal of the Korean Chemical Society
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    • v.67 no.6
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    • pp.441-461
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    • 2023
  • This study explore characteristics of teaching orientation and pck of science teachers in online-offline mixed learning environment. Data consisted of open-ended survey, semi-structured interview, class observation, field notes from 12 science teachers. We categorized teaching orientation considering both science education goals and science teaching·learning orientation. There were 8 different teaching orientations such as 'understanding science concepts-lecture centered' 'constructing science concepts-inquiry based' 'applying science concepts and inquiry-inquiry based' 'applying science concepts and inquiry-lectured centered' 'analyzing and judging science information-inquiry based' 'developing scientific attitude-inquiry based' 'developing scientific attitude-lecture centered' and 'developing perception of interrelationships among science, technology, and society-inquiry based'. Teachers with inquiry based teaching·learning orientation seemed to have knowledge of science curriculum specific to online learning environment for student inquiry. While teachers with 'understanding science concepts-lecture centered' teaching orientation appeared to have questioning strategy of checking student understanding and strategy of repeating a lecture, teachers with 'constructing science concepts-inquiry based' teaching orientation appeared to have knowledge of instructional strategies to perform online group activities targeting student construction of knowledge and to replace face-to-face group activities with virtual experiments and individual experiments. While teachers with 'understanding science concepts-lecture centered' teaching orientation did not show knowledge of student science learning, teachers with 'constructing science concepts-inquiry based' teaching orientation appeared to have knowledge of student difficulties in inquiry based learning.

An Ontology-based e-Learning System for supporting Self-Directed Learning (자기주도적 학습을 지원하기 위한 온톨로지 기반의 이러닝 시스템)

  • Choi, Sook-Young;Yang, Hyung-Jung
    • The Journal of Korean Association of Computer Education
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    • v.13 no.5
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    • pp.29-38
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    • 2010
  • In this study we developed an ontology-based e-learning system for supporting self-directed learning. In this system, a domain ontology of a learning topic was constructed and relation properties were defined to indicate the relations among the learning concepts. The learning concepts and their relationships are structured visually through the domain ontology. It also boosts understandabilities of students by means of the visualization of relationships among the pre and post concepts. In addition, the system provides reasoning so that learners can do intelligent query when they want to learn more or they are curious about the high-level knowledge while they are learning a topic. These features of the system would help learners' self-directed and active learning.

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The Effects on Earth Science Concepts about Seasonal Changes by Generative Learning Strategy (발생학습 전략의 적용이 계절변화 관련 지구과학개념 변화에 미친 효과)

  • Jeong, Jin-Woo;Yoon, Sang-Wha;Lee, Hang-Ro
    • Journal of the Korean earth science society
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    • v.24 no.3
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    • pp.160-171
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    • 2003
  • This study was designed to analyze the types of concepts about earth science related to seasonal changes, so as to develop a generative learning model focused on dissolving cognitive conflicts between the aforementioned concepts through debates and using said debates to find out how effectively the model works. There are 100 types of earth science concepts concering seasonal changes, 66 of which are unscientific in nature, including misconceptions. Through a second field trial and a research and development (R&D) process, a test on these concepts was developed, consisting of 14 items. For the experimental group, a four-phase generative learning strategy that reflects the types of earth science concepts and cognitive conflicts between such concepts was developed through pre-analysis and discussion, respectively. On the other hand, a traditional teaching and teaming strategy was used for the control group. A meaningful statistic gap found between the two groups through a covariance analysis, the significance level of which was 0.05. This result may be interpreted to mean that the generative teaming strategy is a possible alternative for correcting misconceptions about scientific concepts of seasonal changes.