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Serttas, Seçil; Türkoglu, Ayse Yenilmez – Participatory Educational Research, 2020
The purpose of the study was to diagnose students' misconceptions of a number of basic astronomy concepts, namely, the Universe, the Sun, Comets and Constellations. The study was designed as a mixed method research and the sample was composed of a total of 110 seventh grade students. Data were collected through concept cartoons and interviews. In…
Descriptors: Educational Diagnosis, Misconceptions, Scientific Concepts, Cartoons
Slater, E. V.; Morris, J. E.; McKinnon, D. – International Journal of Science Education, 2018
Alternative conceptions in astronomy are a road block to new learning. Astronomy content is included in the Australian Curriculum (AC) from Year 3 and then intermittently in Year 5, Year 7 and Year 10. In accepting that science is socio-culturally constructed, it is important for teachers to have a clear understanding of the alternative…
Descriptors: Foreign Countries, Astronomy, Science Instruction, Scientific Concepts
Ashmann, Scott – Science Scope, 2012
The Moon is an ever-present subject of observation, and it is a recurring topic in the science curriculum from kindergarten's basic observations through graduate courses' mathematical analyses of its orbit. How do students come to comprehend Earth's nearest neighbor? What is needed for them to understand the lunar phases and other phenomena and…
Descriptors: Astronomy, Misconceptions, Science Curriculum, Observation
Töman, Ögr. Gör. Ufuk; Ergen, Yusuf – Online Submission, 2014
Today's World is in period of rapid development of science and technology. There is science and technology education that not based on rote, practical on the basis of development in science and technology. Misconceptions are a major obstacle in order to take the desired efficiency. Because concepts that learned wrong obstacle attainment of right…
Descriptors: Foreign Countries, Science Education, Astronomy, Scientific Attitudes
Lee, Hyun Ju – ProQuest LLC, 2012
This study reports middle school astronomy classes that implemented photographs and classroom response systems (CRSs) in a discussion-oriented pedagogy with a curriculum unit for the topics of "day-night" and "cause of seasons." In the new pedagogy, a teacher presented conceptual questions with photographs, her 6th grade…
Descriptors: Middle School Students, Grade 6, Secondary School Science, Astronomy
Jarman, Ruth; McClune, Billy – Research in Science & Technological Education, 2009
Despite calls that the school science curriculum should develop among students an ability to understand and respond critically to science-related media reports, very little research has been directed toward an important matter relevant to that aim, namely, how children and young people, untutored, react to science in the news. This study sought,…
Descriptors: News Reporting, Misconceptions, Science Instruction, News Media
Cohen, Michael R.; Lucas, Keith B. – 1999
The paper identifies possible factors associated with changes in style and presentation of diagrams of lunar phases and eclipses in school textbooks and other resources. Science curriculum resource materials used extensively during the past two hundred and fifty years in North America and Australia provide insights into teaching and learning of…
Descriptors: Astronomy, Epistemology, Foreign Countries, Misconceptions

Sharp, John G.; Bowker, Rob; Mooney, Claire M.; Jeans, Rachel; Grace, Marcus – School Science Review, 1999
Challenges some commonly-held beliefs about what primary children can and cannot learn about astronomy. (Contains 16 references.) (Author/WRM)
Descriptors: Academic Ability, Astronomy, Elementary Education, Elementary School Students

Sadler, Philip M. – Journal of Research in Science Teaching, 1998
Reports on a study that uses psychometric modeling to rank the appeal of a variety of children's astronomical ideas on a single uniform scale. Findings support the view that alternative conceptions may be markers of progress toward understanding. Contains 82 references. (DDR)
Descriptors: Astronomy, Concept Formation, Data Analysis, Educational Strategies

Lombardi, Olimpia – Science and Education, 1999
In science teaching, Aristotelian physics is often presented in a fragmentary and oversimplified way which distorts the true meaning of Aristotelian concepts. Discusses some mistakes that originate from a partial reading of Aristotle's work. Contains 32 references. (Author/WRM)
Descriptors: Astronomy, Concept Formation, Higher Education, Mathematical Concepts

Coyle, Harold P. – Mercury, 1994
Explains the philosophy that forms the basis of a high school physical science course based on astronomy and the activity-based textbook that accompanies it. Cites specific examples of misconceptions related to astronomy and recommends various diagnostic and concept change strategies. (DDR)
Descriptors: Astronomy, Cognitive Structures, Concept Formation, Course Content

Mallon, Gerald L. – Science Teacher, 1987
Describes a program for sixth grade students developed by the Methacton School District (Norristown, PA) Planetarium staff. Provides brief outlines of eight teaching units designed to provide students with hands-on activities in astronomy. Includes a reproducible worksheet for an activity which involves students in creating and decoding…
Descriptors: Astronomy, Audiovisual Aids, Elementary Education, Elementary School Science
Vosniadou, Stella – 1992
This document examines children's and adults' knowledge of observational astronomy and characterizes the kinds of mental models students form when asked questions in astronomy. Mental models were grouped into three categories: intuitive, synthetic, and scientific. Implications for the design of curricula and for instruction are identified. In…
Descriptors: Astronomy, Beliefs, Cognitive Processes, Cognitive Restructuring