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Pols, Freek; Diepenbroek, Patrick – Physics Education, 2023
In practical work focussing on conceptual development, students spend valuable in-class time on collecting data rather than making sense out of it. This provides a barrier to learning about the targeted concept. To address this problem, we developed an approach that we coin "collaborative data collection." Using a practical on the topic…
Descriptors: Science Instruction, Concept Formation, Scientific Concepts, Data Collection
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Goldoni, Emanuele; Stefanini, Ledo – Physics Education, 2020
In 1919, Eddington and Dyson led two famous expeditions to measure the bending of light during a total solar eclipse. The results of this effort led to the first experimental confirmation of Einstein's General Relativity and contributed to create its unique and enduring fame. Since then, similar experiments have been carried out all around the…
Descriptors: Science Instruction, Light, Physics, Scientific Concepts
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Robinson, Ian; Robinson, Saul; Robinson, Nathan – Physics Education, 2020
Described here is a well established opensource geophysics project to monitor atmospheric infrasound 24/7. It employs a modern digital, I[superscript 2]C enabled differential pressure sensor--unlike the older analog devices more commonly used. Python software automatically uploads plots whilst data is stored in standard ".mseed" format…
Descriptors: Science Instruction, Geophysics, Educational Technology, Technology Uses in Education
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Pierratos, Theodoros – Physics Education, 2021
Due to the conditions imposed worldwide by the pandemic, students' access to school laboratories is limited, if not impossible. To provide students with raw experimental data to assess, analyse and reason out, we have filmed experiments that can be used in a flipped classroom. This paper presents an experiment which makes use of an array of six…
Descriptors: Science Instruction, Physics, Flipped Classroom, Science Laboratories
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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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Pincelli, M. M.; Otranto, S. – Physics Education, 2013
In this paper, we propose a set of activities based on the use of a celestial simulator to gain insights into the retrograde motion of Mars as seen from the Earth. These activities provide a useful link between the heliocentric concepts taught in schools and those tackled in typical introductory physics courses based on classical mechanics for…
Descriptors: Hands on Science, Computer Simulation, Learning Activities, Motion
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Scott, Robert; Xinrong, Shen; Mulley, Ian; Pan, Zili – Physics Education, 2013
The introduction of a planetary science topic into teaching provides an opportunity for teachers to broaden the science base and offer an enrichment activity outside the National Curriculum. It enables students to undertake independent learning by engaging in a scientific investigation relevant to the real world. Here, more able students are given…
Descriptors: Science Instruction, Physics, Scientific Concepts, Measurement Techniques
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Ireson, Gren; Twidle, John – Physics Education, 2008
The National Curriculum for 14-16 year old students in England contains a mandatory element called "How science works". Included in this material is interpretation of data, collecting data from primary sources, using ICT tools, and developing an argument and drawing conclusions. What follows is an activity, based on magnetic braking,…
Descriptors: Prediction, Foreign Countries, Science Instruction, Scientific Concepts