• Title/Summary/Keyword: 물리 교육과정

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The Actual Status of Physics Teachers' Perception on the Concept of Radiation (물리 교사들의 방사선 개념에 대한 인식 실태)

  • Park, Sang-Tae;Choi, Hyuk-Joon;Kim, Jun-Tae;Jung, Ki-Ju;Lee, Hee-Bok;Yuk, Keun-Cheol
    • Journal of The Korean Association For Science Education
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    • v.25 no.5
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    • pp.603-609
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    • 2005
  • Students obtain most concepts through textbooks, and teaching-learning activities between teachers and students. Accordingly, if science teachers already have misconceptions they will inevitably affect students' scientific concept. This study found many problems in teachers' cognition on the concepts of nuclear radiation. Because 12th grade physics II is classified as an optional subject in the 7th curriculum, teachers have few chances to teach it and, more importantly, have difficulty in teaching it because of the need to prepare students for the university entrance examination. The concept of radiation must be taught correctly because of its emergence in the 'environment' unit of 10th grade Science. Finally, results from this study can help science teachers teach these difficult concepts more correctly. In addition, results can also be useful in in-service retraining programs.

Development of Practical Problem-Based Home Economics Teaching.Learning Process Plans by Blended Learning Strategy - Focusing on a Unit 'the Youth and Consumer Life' - (Blended Learning(BL) 전략을 활용한 실천적 문제 중심 가정과 교수 학습 과정안 개발 - '청소년과 소비생활' 단원을 중심으로 -)

  • Lee, Jin-Hee;Chae, Jung-Hyun
    • Journal of Korean Home Economics Education Association
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    • v.20 no.4
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    • pp.19-42
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    • 2008
  • The purpose of this study was to develop practical problem-based home economics teaching.learning process plans about a unit 'the youth and consumer life' of middle school eighth-grade Technology and Home Economics by applying blended learning(BL) strategy. According to ADDIE instructional design model, this study was conducted in the following procedure: analysis, design/development, implementation, and evaluation. In the stage of design and development, the selected unit was converted into a practical problem-based unit, and practical problem-based teaching. learning process plans were designed in detail by using BL strategy. An online study room for practical problem-based home economics instruction grounded in BL strategy was prepared by using Edunet(http://community.edunet4u.net/${\sim}$consumer2). Eight-session lesson plans were mapped out, and study aids for students and materials for teachers were prepared. In the implementation stage, the first-session teaching plans that dealt with a minor question 'what preparations should be made to become a wise consumer' were utilized when instruction was provided to 115 eighth graders who were in three different province, and the other one was in a middle school in the city of Daejeon. The experimental teaching was implemented for two weeks in the following procedure: preliminary program, pre-online learning, main instruction and post- online learning. The preliminary program was carried out in a session in the classroom, and pre-online learning was provided before the main instruction was given in a session in the classroom. After the main instruction was completed, post-online learning was offered. In the evaluation stage, a survey was conducted on all the learners and teachers to find out their opinions and suggestions.

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Development of educational vibration equipment with multiple function (교육용 복합 진동실험장치 개발)

  • Rim, Kyung-Hwa;Park, Geun-Yun;Ryu, Ho-Min;Choi, Woo-Cheol;Moon, Seong-Jun;Shin, Hye-Jung
    • The Journal of Korean Institute for Practical Engineering Education
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    • v.2 no.2
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    • pp.74-82
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    • 2010
  • As the basic knowledge during designing most moving mechanical structures, vibration engineering is a subject teaching the theory on vibration control and isolation, which also cultivating the ability of analyze variety of vibration problems. However, vibration engineering is more difficult to understand than other dynamics courses in mechanical field, so the development of educational equipments in order to help understanding physical theory of vibration is really necessary. So in this paper we could see the effect after doing simple experiment process using the educational vibration equipment with multiple function, students could easily understand physical theory of vibration. The educational vibration equipment with multiple function and its application range are introduced, which could performance four kinds of typical vibration phenomenon: vibration of multidegree of freedom system, vibration of beam, vibration of beam, and vibration of plate. Finally, assessments of response and improvement plan are proposed through a survey.

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Study on Attitude of the Elderly among College Students in Physical Therapy through social science convergence (사회과학적 융합을 통한 물리치료학과 학생들의 노인에 대한 태도 조사)

  • Moon, So-Ra;Kim, Myung-Chul;Lee, Min-Su;Kim, Nam-Jae
    • Journal of the Korea Convergence Society
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    • v.6 no.5
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    • pp.157-163
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    • 2015
  • Purpose is the purpose of this study is to develop medical services for the elderly and qualitatively enhance physical therapy for them by analyzing Korean students' attitudes of the elderly through social science convergence. Methods is a total of 1027 male/female undergraduate students majoring in physical therapy were selected to examine the attitudes of the elderly. T-test, One-way-ANOVA and Scheff test were used. Result is positive attitudes toward the elderly was 46.0%. 51.48% in the population over 30, and 47.52% in the male group was more positive. In addition, when the elderly with no experience in the relevant lecture course (t = -2.035, p = 0.0042) in elderly and when the living experience more positive attitudes (t = 2.951, p = 0.003). Conclusion is education of students in the process of aging of the elderly in a positive standpoint, lectures and hands-on so that you can see the need to change direction.

Development of the Interdisciplinary - Multistrategic Science Education Program(IMSEP) for the Education of the Gifted in Science (과학 영재 교육을 위한 통합교과적-다중교수전략적 과학 교육 프로그램(Interdisciplinary - Multistrategic Science Education Program: IMSEP) 및 예시의 개발)

  • 배혜경;김훈;안정훈;배새벽;김용주;박선미;심재영;박은영;김충기
    • Journal of Gifted/Talented Education
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    • v.13 no.1
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    • pp.21-42
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    • 2003
  • The Interdisciplinary-Multistrategic Science Education Program(IMSEP) is designed as an efficient program for the education of the gifted in science. An example of the contents is developed, which encompasses mathematics, physics, chemistry, astronomy, and biology. In the program, the complexity(interdisicplinarity) of scientific contents and instructional strategies used to deliver the scientific contents are designed to be correlated to each other in such a way that as the scientific contents gets more complex, the scientific skill to be taught by the instructional strategy becomes deeper. Through the careful balance between the scientific contents and the instructional strategies student's scientific knowledge and scientific skill will develop balanced and the effectiveness of science education will be maximized.

Textbook Analysis about Length Estimation and Exploration for an Alternatives (길이 어림과 관련된 교과서 분석 및 대안 모색)

  • Ko, Jung-Hwa
    • Communications of Mathematical Education
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    • v.24 no.3
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    • pp.587-610
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    • 2010
  • This paper investigates the ways for estimation ability improvement in length, which is recently emphasized in measurement area of mathematics education. According to preceding studies, students' length estimation ability is considerably low. Revision curriculum tried to pursue estimation and feeling of massiveness responsive to trends in mathematics education. But, Such efforts are not reflected in textbooks and they are rather weak in the aspect of estimation and feeling of massiveness. This paper analyzes the contents related to length estimation in current textbooks critically and explores an alternatives. This paper is suggestive for textbook development to improve ability to estimate length.

Elementary School Students' Images of Science Class and Factors Influencing Their Formations (초등학생들의 과학 수업에 대한 이미지와 이미지 형성에 영향을 미치는 요인)

  • Kang, Hun-Sik;Lee, Ji-Young
    • Journal of The Korean Association For Science Education
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    • v.30 no.4
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    • pp.519-531
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    • 2010
  • In this study, we investigated the elementary school students' images of science class and the factors influencing their formations. 280 sixth graders were selected from nine elementary schools in Gyeonggi province and Gangwon province and the DASCT-C (Draw-A-Science-Class-Test Checklist) was administered. In addition, four students were individually interviewed in order to investigate their responses deeply. Analyses of the results revealed that the students' images of science class for four science subjects (physics, chemistry, biology, and earth science) were more 'student-centered' than 'teacher-centered' or 'neutral'. The students of the teacher with student-centered image of science class had also more student-centered images than those with teacher-centered images. Many students answered that the main factors affecting their images of science class were the experiences of impressed or funny science classes, the perceptions of wanted science classes, the active science learning experiences, the educational experiences outside the school curriculum, and the negative science learning experiences. Educational implications of these findings are discussed.

Analysis of 'Electric Current' and 'Battery' Units in Elementary and Middle School Science Textbooks on the Basis of Particle and Energy Concepts (입자와 에너지 관점에서 분석한 초등학교와 중학교 전류와 전지 단원의 문제점)

  • Yoo, Seoung-Lee;Paik, Seong-Hey
    • Journal of The Korean Association For Science Education
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    • v.20 no.3
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    • pp.432-442
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    • 2000
  • In this study, the contents of 'electric current' and 'battery' units in elementary and middle school science textbooks were analyzed on the basis of particle and energy concepts. Many problems, reported previously on students' misconceptions about those area, were found in science textbooks. Electric current and battery were covered in both physics and chemistry parts of science textbooks. However, the lack of particle concept in physics units and the lack of energy concept in chemistry units seemed to make it difficult for students to learn those concepts. The descriptions about the two concepts were also not consistent even in the same discipline units. In order to solve these problems, the integration of the views on the particulate nature of matter and energy in the science curriculum and reconstruction of science textbooks were needed.

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A Case of IT Confusion Education: Simulation for Furniture Placement based on Virtual Reality (IT융합교육 사례: 가상현실에 기반한 가구배치 시뮬레이션)

  • Song, Eun-Jee
    • Journal of Practical Engineering Education
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    • v.7 no.1
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    • pp.25-30
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    • 2015
  • Virtual reality is a combination of various studies, such as programming, simulation, and computer graphics. This type of new cultural paradigm requires novel concept of contents development and information exchange. This research uses 3D virtual reality technology in new equipment called I-Bench Mobile which let user to interact with the equipment for completing furniture disposition task. The simulation is manufactured in 3D with application of physics, and the ultimate goal of it is to increase customers' satisfaction by allowing them to enjoy snap shot function for arranging furniture at exact desired place. This research requires not only coding techniques but also educating process in both engineering and art, such as computer science, media art design, and visual communication; therefore, the development of software by facilitating Virtual/Augmented Reality technology in this research is a good example of fusion IT technique education.

The Effects of a Robot Based Programming Learning on Learners' Creative Problem Solving Potential (로봇 활용 프로그래밍 학습이 창의적 문제해결성향에 미치는 영향)

  • Lee, EunKyoung;Lee, YoungJun
    • 대한공업교육학회지
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    • v.33 no.2
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    • pp.120-136
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    • 2008
  • Using the tangible programming tools, which combines physical objects (e.g. robot) and educational programming language, may help to encourage learners' creative thinking as well as to enhance problem solving ability. That is, learners can have opportunities to simulate problem solving processes through the physical objects, such as robots. Therefore, they can minimize an fixation about problem solving process. These experience is effective to induce creative thinking that is useful to find new solutions and change environment actively. Therefore, we developed a robot based programming teaching and learning curriculum and implemented it in college level introductory programming courses. The result shows that the robot based programming learning has a positive effect in all three factors of learners' creative problem solving potential, especially in a cognitive factor. The cognitive factor includes general problem solving abilities as well as factors that explain creativity, such as divergent thinking, problem recognition, problem representation. These result means that the developed robot based programming teaching and learning curriculum give positive effect to creative problem solving abilities.