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Hachmi, A.; El Moussaouy, A.; Ouariach, A.; Essaadaoui, R.; Kerkour-El Miad, A.; Mommadi, O.; El Hadi, M. – Physics Education, 2021
In this study, which aims to help grade nine students overcome the misconceptions about electric current, we identified their misconceptions about this concept and then designed and implemented a playground activity as an analogy of electric current. Through the conceptual change texts approach, which we have enhanced with experience, we use this…
Descriptors: Playground Activities, Scientific Concepts, Energy, Physics
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Sharifov, Galib Movsum oghlu – Physics Education, 2020
This article analyses the impact of the role and significance of the virtual laboratory on ninth-grade lyceum students' attainment of more-in depth scientific knowledge and improved practical skills in the physics topic area of electromagnetism. Pedagogical experiments were conducted at the Baku European Lyceum. The results show that the virtual…
Descriptors: Virtual Classrooms, Science Laboratories, Problem Solving, Physics
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Balaton, M. C.; Da Silva, L. F.; Carvalho, P. S. – Physics Education, 2020
In this paper, we aim to show strategies for improving graph interpretation skills at middle and high school students using OZOBOT® BIT, a small and relatively low-cost programmable robot which had been used to teach programming to young children. OZOBOT's speed can be controlled by drawing lines with colour codes, as well as through a visual…
Descriptors: Middle School Students, High School Students, Skill Development, Graphs
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Hechter, Richard P. – Physics Education, 2020
'It is the belt!' This is how middle school teachers in a science teaching professional development program rationalized why they believe Orion is the most recognizable of all constellations in the night sky. It was from this foundation that we chose Orion to be the focus of a four-phase ethnoastronomy-based project reported here. Ethnoastronomy,…
Descriptors: Middle School Teachers, Science Teachers, Science Instruction, Faculty Development
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Kota, Srividya Durga; Cornish, Scott; Sharma, Manjula Devi – Physics Education, 2019
Electricity is taught in junior high school science in Australia and many other countries. While electricity is all around us and one would say that its context and relevance are obvious, students generally do not find learning about electricity engaging. The objective of this paper is to describe the development and evaluation of an open inquiry…
Descriptors: Junior High School Students, Science Instruction, Teaching Methods, Spreadsheets
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Hansson, Lena; Arvidsson, Åsa; Heering, Peter; Pendrill, Ann-Marie – Physics Education, 2019
It has long been argued that nature of science (NOS) is an important part of science teaching. In the literature, many different approaches to NOS have been suggested. This article focuses on a storytelling approach, and builds on data from audio recordings from three middle-school (school year 6) classrooms. The three science classes are run by…
Descriptors: Case Studies, Scientific Principles, Story Telling, Science Instruction
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Lu, Meishu; Su, Jun; Wang, Weiguo; Lu, Jianlong – Physics Education, 2017
For this article, we use a 3D printer to print a surface similar to universal gravitation for demonstrating and investigating Kepler's laws of planetary motion describing the motion of a small ball on the surface. This novel experimental method allows Kepler's laws of planetary motion to be visualized and will contribute to improving the…
Descriptors: Science Instruction, Scientific Concepts, Astronomy, Physics
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Michelsen, Claus – Physics Education, 2017
In 1820 the Danish scientist Hans Christian Ørsted discovered the relationship between electricity and magnetism by his famous wire-compass experiment. Ørsted was one of the foremost scientists of the nineteenth century, and he was also one of the leading figures in Denmark in the 19th century with a vital influence in the fields of aesthetics,…
Descriptors: Scientists, Physics, Energy, Foreign Countries
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Balta, Nuri; Çetin, Ali – Physics Education, 2017
This study is aimed at first introducing a well-known discrepant event; inseparable phone books and second, turning it into an experiment for high school or middle school students. This discrepant event could be used especially to indicate how friction force can be effective in producing an unexpected result. Demonstration, discussion, explanation…
Descriptors: Physics, Science Instruction, Teaching Methods, Scientific Concepts
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Rossi, Sabrina; Giordano, Enrica; Lanciano, Nicoletta – Physics Education, 2015
Many researchers have documented the difficulties for learners of different ages and preparations in understanding basic astronomical concepts. Traditional instructional strategies and communication media do not seem to be effective in producing meaningful understanding, or even induce misconceptions and misinterpretations. In line with recent…
Descriptors: Physics, Science Education, Earth Science, Astronomy
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Mota, A. R.; Lopes dos Santos, J. M. B. – Physics Education, 2014
Students' misconceptions concerning colour phenomena and the apparent complexity of the underlying concepts--due to the different domains of knowledge involved--make its teaching very difficult. We have developed and tested a teaching device, the addition table of colours (ATC), that encompasses additive and subtractive mixtures in a single…
Descriptors: Color, Misconceptions, Science Instruction, Scientific Concepts
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Haglund, Jesper; Jeppsson, Fredrik; Hedberg, David; Schönborn, Konrad J. – Physics Education, 2015
Thermal cameras offer real-time visual access to otherwise invisible thermal phenomena, which are conceptually demanding for learners during traditional teaching. We present three studies of students' conduction of laboratory activities that employ thermal cameras to teach challenging thermal concepts in grades 4, 7 and 10-12. Visualization of…
Descriptors: Photography, Teaching Methods, Heat, Science Laboratories
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Kamata, Masahiro; Abe, Mayumi – Physics Education, 2012
A thick line drawn on a sheet of paper with a 6B pencil is electrically conductive and its resistance can be roughly estimated using a simple tester made of a light-emitting diode (LED) and a lithium coin-type cell. Using this hand-drawn resistor and the LED tester, we developed teaching materials that help students to understand how electrical…
Descriptors: Energy, Science Instruction, Physics, Light
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Kamata, Masahiro; Hara, Chiho – Physics Education, 2005
A new type of ammeter (PikoPikoII) has been developed which indicates the measured current by the movement of a spot of light and the voltage by the colour of the spot. Since this tool can make students feel as if they are observing a visual image of electricity, it is easy to prepare schematic explanations on electric circuits that match the…
Descriptors: Junior High School Students, Junior High Schools, Energy, Measurement Equipment
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Kamata, Masahiro; Takeuchi, Noriko; Akahane, Hisao; Shoji, Ryuichi – Physics Education, 2002
Although ammeters are very important tools for science classes in elementary and junior high schools, many ordinary ones are not easy to handle nor sufficiently educational. From this viewpoint, the authors have investigated the possibility of using clamp-on ammeters, which are very common among professional electricians, for educational purposes.…
Descriptors: Junior High School Students, Secondary School Science, Laboratory Equipment, Science Laboratories
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