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Chuasontia, Itsarapong; Sirirat, Tanita – Physics Education, 2021
This research aimed to design an instructional module to teach light diffraction by a grating to secondary students applying a science, technology, engineering, and mathematics (STEM)-integrated approach. Based on this approach, instructional management integrated the disciplines of physics and mathematics with engineering design process…
Descriptors: Science Instruction, Light, STEM Education, Grade 11
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Ceuppens, S.; Deprez, J.; Dehaene, W.; De Cock, M. – Physics Education, 2018
To improve the teaching and learning materials for a curriculum it is important to incorporate the findings from educational research. In light of this, we present creative exercises and experiments to elicit, confront and resolve misconceptions in geometrical optics. Since ray diagrams can be both the cause and the solution for many…
Descriptors: Misconceptions, Optics, Creative Activities, Science Experiments
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Ribeiro, Jair Lúcio Prados – Physics Teacher, 2015
Our high school optics course finishes with an assignment that students usually appreciate. They must take pictures of everyday situations representing optical phenomena such as reflection, refraction, or dispersion, and post them on Instagram. When the photos were presented to the class, one student revealed an intriguing photo, similar to Fig.…
Descriptors: Optics, Light, Scientific Concepts, Scientific Principles
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Chu, Hye-Eun; Treagust, David F. – Journal of Science Education and Technology, 2014
This study focuses on elucidating and explaining reasons for the stability of and interrelationships between students' conceptions about "Light Propagation" and "Visibility of Objects" using contextualized questions across 3 years of secondary schooling from Years 7 to 9. In a large-scale quantitative study involving 1,233…
Descriptors: Optics, Secondary School Students, Secondary School Science, Scientific Concepts
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Suppapittayaporn, Decha; Panijpan, Bhinyo; Emarat, Narumon – Physics Teacher, 2010
After learning how to trace the principal rays [Fig. 1(i)] through a thin lens in order to form the image in the conventional way, students sometimes ask whether it is possible to use other rays emanating from the object to form exactly the same image--for example, the two arbitrary rays shown in Fig. 1(ii). The answer is a definite yes, and this…
Descriptors: Light, Problem Solving, Scientific Concepts, Science Instruction
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Bhattacharya, Kolahal – European Journal of Physics, 2011
We show that in the grounded conducting sphere image problem, all the necessary information about the image charge can be found from a mirror equation and a magnification formula. Then, we propose a method to solve the image problem for an extended charge distribution near a grounded conducting sphere. (Contains 4 figures.)
Descriptors: Optics, Methods, Physics, Scientific Concepts
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Gojkošek, Mihael; Sliško, Josip; Planinšic, Gorazd – Center for Educational Policy Studies Journal, 2013
The transfer of knowledge is considered to be a fundamental goal of education; therefore, knowing and understanding the conditions that influence the efficiency of the transfer from learning activity to problem solving play a decisive role in the improvement of science education. In this article, the results of a study of 196 high school students'…
Descriptors: Foreign Countries, Learning Activities, Student Improvement, Skill Development
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Mihas, Pavlos – European Journal of Physics, 2008
A historical discussion of the theories which deal with the formation of real images in mirrors and lenses is presented in this paper. Speculations on mirrors appeared as early as Plato. Euclid's, Hero's and Ptolemy's approaches to visual rays are described. The theory on burning mirrors starts with Diocles and later was continued by the Arabs. Al…
Descriptors: Optics, Physics, Theories, Scientific Concepts
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Ciferno, Thomas M.; And Others – Physics Teacher, 1995
Describes the construction and use of an electrooptic apparatus that can be incorporated into the classroom to test liquid crystal displays (LCDs) and introduce students to experiments of an applied physics nature with very practical implications. Presents experiments that give students hands-on experience with technologies of current interest to…
Descriptors: Hands on Science, Optics, Physics, Problem Solving
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Nassar, Antonio B. – Physics Teacher, 1994
Discusses a well-known optical refraction problem where the depth of an object in a liquid is determined. Proposes that many texts incorrectly solve the problem. Provides theory, equations, and diagrams. (MVL)
Descriptors: Higher Education, Light, Misconceptions, Optics
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Eylon, Bat-Sheva; And Others – Journal of Science Education and Technology, 1996
Explores the potential of the RAY learning environment in improving learning about optics. Results indicate that this environment, which includes a flexible ray-tracing simulation, had a significant effect on the spontaneous and correct use of the model by students in solving problems and a limited effect on conceptual understanding, but promoted…
Descriptors: Case Studies, Computer Uses in Education, Educational Technology, Foreign Countries