• Title/Summary/Keyword: 달의 위상

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An Analysis of 'The Phases of the Moon', Contents of 9th Grade Science Textbook (중학교 3학년 과학 교과서의 '달의 위상변화' 문제점 분석)

  • Chae, Dong-Hyun
    • Journal of The Korean Association For Science Education
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    • v.29 no.8
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    • pp.874-885
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    • 2009
  • The purpose of this study is to analyze illustrations, contents, and experiments in 6 kinds of science textbook from the 9th grade covering the phases of the Moon (on the phases of the Moon in six 9th grade science textbook) and to suggest coherent and effective contents and frame of the science textbook. Hence, the researcher decided the study problem. The study problems are as follows; 'Are the illustrations in the science textbook presented to help understand the phases of the Moon depending on the position of the observer?', 'Does the contents of the book clearly mention the phases of the Moon?', 'Can students understand the phases of the Moon through the experiments in the science textbook?', 'Do illustrations, contents, and experiment of the science textbook consistently explain the phases of the Moon?'. 10 persons (9graduate students including the researcher) took part in this study. All things unanimously agreed upon by all participants were reflected in the results. The results are as follows: First, the universal observer's view point is mixed with the earth observer's view in the illustration of these science textbook regarding the phases of the Moon. Moreover, illustrations of some textbooks are presented with such words as 'sunrise', 'midnight' and consequently contain too much. Second, the contents of the science textbook concerning the phases of the Moon is not described clearly. In addition, they don't give clear and detailed explanations for the reason of these changes. Third, all of the textbooks, except one textbook, describe the experiment regarding the phases of the Moon with the earth observer's view point but don't specifically mention that the view point is that of the earth observer's view point. Fourth, illustrations, contents, and experiments in the science textbook don't coherently explain the phases of the Moon. In addition, it is confirmed through the process of the result analysis that the described contents in the science curriculum is not well constructed or logical.

The Development and Application of the New Model of Moon Phases (새로운 달 위상 모형의 개발과 그 적용)

  • Chae, Dong-Hyun
    • Journal of Korean Elementary Science Education
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    • v.27 no.4
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    • pp.385-398
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    • 2008
  • The purpose of this study is to understand the effect of The Model of Phases of the Moon on conception changes for preservice teachers. The researcher interviewed two preservice teachers under the agreement with them on their participation in the research just before he performed a class using The New Model of Phases of the Moon. The post-interview with the same content as the pre-interview was preformed one month later. The main content of the interview is as follows; 'Explain the shape of the Moon by drawing it.', 'Explain the relative different position among the Sun, Earth, and Moon depending on phases of the Moon by drawing them.', 'What do you think of the cause of phases of the Moon?', 'Draw a picture to explain why we always see only one side of the moon.' The results of the research are as follows. First, the class with New Model of Phases of the Moon was able to perceive the relationship of Sun, Earth, and Moon in three-dimensions rather than in two-dimensions and it helped to change their misconception that the Moon's shadow causes the Moon's shape. Secondly, the class with New Model of Phases of the Moon helped preservice teachers understand better the different positional relationships among the Sun, Earth, and Moon depending on the Moon shapes. Third, the class adopting the New Model of Phases of the Moon help preservice teachers form scientific conceptions on the causes of phase change of the Moon. Fourth, the class with the New Model of Phases of the Moon is not appropriate for explaining the reason why only one face of the Moon is seen. Based upon the results above, the researcher realized the limitation of this model and suggested that this model would help learners understand phase change of the Moon and increase space perception ability.

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High School Students' Conceptual Change of the Lunar Phases on Instyuction Using the Lunar Phases Drawing Module (달의 위상 작도 모듈 활용 수업에 의한 고등학생들의 달의 위상 개념 변화)

  • Kim, Jong-Hee
    • Journal of the Korean earth science society
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    • v.27 no.4
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    • pp.353-363
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    • 2006
  • This study investigates how the lunar phases drawing module-applied instruction affects high school students' conceptual changes of the lunar phases. 46 juniors in a high school were given the module instruction on drawing the lunar phases, and then interviews were conducted to verify conceptual changes in subjects' recognition structures. The types of students' misconceptions of the lunar phases change before the instruction were as follows. Type S is that the Earth's shadow covers the moon. Type SR is that one has both misconception of Type S and a scientific concept at the same time according to the positional relationships. The scientific concept means that an observer sees a moon's part which reflects sunlight. Type SB is that the Earth's shadow covers the moon or the moon can be seen or not by the background's brightness according to the positional relationships. The last Type SRB includes all three above-mentioned types, and it explains the lunar phases at each position. As a result of the module-based instruction, 26 out of 36 subjects built up the scientific concept and 10 students did not. 7 out of the 11 Type S and 3 out of the 17 Type SR students did not, either. Especially, type S students did not change their preconception that the phases of moon change were done by the earth's shadow. Here, their preconception is too much strong; as they solve problems, their preconception is more beneficial, comparing to the method which it is presented from the module. This fact supports that it is difficult for students to discard preconception.

The Effect of Observing Material on the Phase Change of Moon Considering the Orbits of Earth and Moon (지구와 달의 공전궤도를 고려한 달의 위상 변화 관찰 교구의 효과)

  • Park, Ji-Hyun;Hyun, Dong-Geul;Shin, Ae-Kyung
    • Journal of the Korean Society of Earth Science Education
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    • v.9 no.3
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    • pp.323-340
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    • 2016
  • The purpose of this study is to investigate the effect of observing material on the phase change of moon considering the orbits of earth and moon for elementary school students. For this study, the material which shows the orbit of moon tilted at $5^{\circ}$ with the orbit of earth is developed. 110 6th grade students in an elementary school are sampled. They are divided into the experimental group and the control group. The lessons using the material developed in this study are implemented to the experimental group, and the lessons using the material proposed in ordinary textbook are implemented to the control group. The pre, post, delayed concept tests on the phase change of moon are administered to the students of the experimental group and the control group, and semi-structured interviews are conducted for each concept level. According to students' responses, the concept levels are divided into 'Phase recognition', 'Space viewpoint', 'Earth viewpoint', and 'No recognition'. The experimental group and the control group are homogeneous in the pre-test. The result of this study shows that the experimental group gains significantly more scores than the control group in the post and delayed tests. Also, in the post and delayed tests, more students of the experimental group are in the highest level 'Phase recognition' than the control group. Finally, students of the experimental group who were in the 'Phase recognition' and 'Space viewpoint' explain more scientifically than the students of the control group. Therefore the results of this study show that the observing material on the phase change of moon considering the orbits of earth and moon is effective.

Complementary Models for Helping Secondary School Students to Develop Their Understanding of Moon Phases (중.고등학생이 이해하는 달의 위상 변화 모델 분석을 통한 보완 모델 제안)

  • Lee, Mi-Ae;Choe, Seung-Urn
    • Journal of the Korean earth science society
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    • v.29 no.1
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    • pp.60-77
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    • 2008
  • We investigated the textbook model explaining a phase of the Moon and compared it with student models at the secondary levels in Korea. 20 high school students and 36 middle school students from suburb area participated in this study. Participants were interviewed to explain understandings about the cause of the Moon's phase with drawing their models. The results of this study showed that the textbooks now in use explain the phase of the Moon with one unique scientific model, while students displayed 6 different kinds of models including the scientific model. Furthermore the students tend to have comparatively scientific model modes as their grades increase and their scholastic ability levels become higher. Although the students have learned the Moon's phase in school, they still have alternative models because the textbook does not explain enough for the students to overcome their alternative conceptions. In the textbook, the model presented without explanation of the limitation of the model, so there can be a gap between the model in the textbooks and the models in the mind of students. With these findings, we propose complementary models for helping secondary school students to develop their understanding of moon phases.

Exploring 6th Graders Learning Progression for Lunar Phase Change: Focusing on Astronomical Systems Thinking (달의 위상 변화에 대한 초등학교 6학년 학생들의 학습 발달과정 탐색: 천문학적 시스템 사고를 중심으로)

  • Oh, Hyunseok;Lee, Kiyoung
    • Journal of the Korean earth science society
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    • v.39 no.1
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    • pp.103-116
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    • 2018
  • The purpose of this study was to explore $6^{th}$ graders learning progression for lunar phase change focusing astronomical systems thinking. By analyzing the results of previous studies, we developed the constructed-response items, set up the hypothetical learning progressions, and developed the item analysis framework based on the hypothetical learning progressions. Before and after the instruction on the lunar phase change, we collected test data using the constructed-response items. The results of the assessment were used to validate the hypothetical learning progression. Through this, we were able to explore the learning progression of the earth-moon system in a bottom-up. As a result of the study, elementary students seemed to have difficulty in the transformation between the earth-based perspective and the space-based perspective. In addition, based on the elementary school students' learning progression on lunar phase change, we concluded that the concept of the lunar phase change was a bit difficult for elementary students to learn in elementary science curriculum.

Analysis of Elementary School Pre-service Teachers' Explanation Types and Characteristics in Description of Observable Lunar Phases (관찰 가능한 달의 위상에 대한 초등 예비교사의 설명 유형과 특징 분석)

  • Shin, Yoonjoo;Ahn, Yumin
    • Journal of the Korean earth science society
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    • v.41 no.2
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    • pp.194-207
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    • 2020
  • The purpose of this study is to identify the types and characteristics of elementary school pre-service teachers revealed in the process of resolving the change of lunar phases, which emphasizes the context of actual observation, and to provide suggestions for areas to be considered in the elementary school teacher training program. To this end, we analyzed the 30 pre-service teachers' explaining the observable lunar phases, and the main research results are as follows. First, the phase change of the moon was often explained by introducing the timetable for each phase of the moon rather than based on observation of the phenomenon and scientific reasoning. Second, an alternative concept of the type that the moon is invisible when the sun rises or that the moon can always be observed has been identified. Third, there was a case of explaining that the time and orientation for observing the moon can be observed regardless of the position of the sun or when observing the sun. Also, the date of observing the moon was assumed to be approached by assuming the lunar calendar. Based on the above results, pedagogical implications were discussed.

An Explanatory Consistency of Preservice Secondary Teachers' Explanations about the Lunar Phases (달의 위상 변화 설명에 대한 예비 중등 교사의 설명적 일관성)

  • Oh, Jun-Young
    • Journal of the Korean earth science society
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    • v.27 no.6
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    • pp.606-619
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    • 2006
  • In this paper we investigated the types of the explanatory consistency of preservice secondary teachers in explaining the lunar phase. The explanatory consistencies were proposed into four discrete mental models depending on their attributes. The four types based on the explanatory consistency by the preservice secondary teachers' explanations are as follows: ad hoc expansion, competitive theory addition, transition of unexplainable each, and transition using in context of several situations.

Polarimetry of the Moon through the eyes of PolCam: Phase-angle coverage

  • Sim, Chae Kyung;Kim, Sungsoo S.;Jeong, Minsup;Choi, Young-Jun;Hong, Sukbum A.;Baek, Kilho
    • The Bulletin of The Korean Astronomical Society
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    • v.44 no.1
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    • pp.55.2-55.2
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    • 2019
  • 한국형 시험용 달 궤도선(KPLO)에 실릴 과학 탑재체 가운데 하나인 광시야 편광 카메라(PolCam)는 최초로 달 표면전체의 편광 특성을 관측한다. 편광 특성은 태양-달-관측기기 사이의 각도인 위상각에 따라 달라지므로, 다양한 위상각에서의 반복 관측을 통해 달 전 지역에 대한 각각의 편광곡선을 얻을 예정이다. 편광곡선으로부터 달 표면의 입자 크기와 성분 등의 분포를 알 수 있다. 이는 과학적으로도 흥미로울 뿐 아니라, 미래의 달 탐사 임무를 위한 착륙지 선정 시에도 중요한 참고자료가 된다. 여기에서는, PolCam이 1년간의 KPLO 임무 동안 관측할 수 있는 지역 및 위상각의 분포를 소개한다. 또한, 임무 도중 관측이 일시중지되거나 임무 자체가 비정상종료되는 경우 불완전한 관측 자료로부터 편광곡선을 구하는 방법에 대해 알아본다.

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양방향 분포 함수가 적용된 달의 3D 광학 모델

  • Yu, Jin-Hui
    • Bulletin of the Korean Space Science Society
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    • 2011.04a
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    • pp.31.3-31.3
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    • 2011
  • 달의 양방향 분포 함수는 Hapke에 의하여 처음 이론적 모델이 만들어졌고, 이후 Foote에 의해 아폴로 11호의 달 토양 샘플 10084의 양방향 분포 함수가 측정된 바 있다. 이 연구에서는 실제 크기의 달의 표면에 Hapke의 양방향 분포 함수를 적용하여 광학 모델은 개발하였다. 달 표면의 산란특성 중 반 무한하고 매끄러운 지면에 적용되는 후방산란 효과와 산란각에 따른 위상 함수가 적용된 모델이 사용되었으며, 위상함수로는 Henyey-Greenstein 함수가 사용되었다. 달의 3D 모델에 사용된 매개 변수는 Foote가 측정한 Hapke의 변수를 따랐으며 달의 단일 산란 알베도는 w=0.33, 핫스팟의 넓이는 h=0.017, Legendre 다항 계수인 b와 c에는 각각 b=0.308, c=0.425의 값이 사용되었다. 구성된 달의 양방향 분포 함수를 이용한 통합적 광선 추적 수치 모사 결과, 달 반사광의 복사 휘도율은 1차 근사 해석적 방법을 이용한 계산 결과의 복사 휘도율과 측정 오차 범위 이내의 오차를 보였다.

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