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Huseby, Anders; Bungum, Berit – Physics Education, 2019
Quantum physics is challenging for young students, but also a source of fascination. "Observation" is a key concept in order to understand how principles and experimental results in quantum physics differ from what we are used to in classical physics and everyday experiences. In this study we investigate how pre-university physics…
Descriptors: Observation, Secondary School Students, Quantum Mechanics, Secondary School Science
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Kersting, Magdalena – Physics Education, 2019
The first direct observation of gravitational waves in 2015 has led to an increased public interest in topics of general relativity (GR) and astronomy. Physics teachers and educators respond to this interest by introducing modern ideas of gravity and spacetime to high school students. Doing so, they face the challenge of finding suitable models…
Descriptors: Physics, Scientific Concepts, Science Instruction, Foreign Countries
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Bjurholt, Nikolai; Bøe, Maria Vetleseter – Physics Education, 2023
The COVID-19 pandemic forced the world into unknown territories of closed schools and remote teaching, and gave teachers a range of new experiences with physics teaching. We studied these experiences by using survey responses from 85 upper secondary physics teachers in Norway. We found that home-school physics instruction was characterised by a…
Descriptors: Physics, Science Instruction, Foreign Countries, Secondary School Teachers
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Bungum, Berit – Physics Education, 2013
This paper presents a study of images in Norwegian physics textbooks for upper secondary school, and how they invite students into physics by means of visual communication. The concept of "framing" is used to investigate how the perspective in the image provides a sense of participation. It is found that older textbooks, where objects…
Descriptors: Science Instruction, Physics, Foreign Countries, Illustrations
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Henriksen, Ellen K.; Bungum, Berit; Angell, Carl; Tellefsen, Catherine W.; Frågåt, Thomas; Bøe, Maria Vetleseter – Physics Education, 2014
In this article, we discuss how quantum physics and relativity can be taught in upper secondary school, in ways that promote conceptual understanding and philosophical reflections. We present the ReleQuant project, in which web-based teaching modules have been developed. The modules address competence aims in the Norwegian national curriculum for…
Descriptors: Quantum Mechanics, Physics, Secondary School Science, Secondary School Curriculum
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Quale, Andreas – Physics Education, 2012
In the teaching of physics at upper secondary school level (K10-K12), the students are generally taught to solve problems analytically, i.e. using the dynamics describing a system (typically in the form of differential equations) to compute its evolution in time, e.g. the motion of a body along a straight line or in a plane. This reduces the scope…
Descriptors: Physics, Spreadsheets, Teaching Methods, Equations (Mathematics)
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Henriksen, Ellen K.; Angell, Carl – Physics Education, 2010
The use of electronic audience response systems (ARS) in undergraduate science instruction is increasing. In this article, we argue for combining such a teaching approach with a more active use of student small-group discussions, demonstrating with examples from a Norwegian physics course how "talking physics" is central to the…
Descriptors: Audience Response, Physics, Science Instruction, Teaching Methods
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Angell, Carl; Kind, Per Morten; Henriksen, Ellen K.; Guttersrud, Oystein – Physics Education, 2008
In this paper we describe a teaching approach focusing on modelling in physics, emphasizing scientific reasoning based on empirical data and using the notion of multiple representations of physical phenomena as a framework. We describe modelling activities from a project (PHYS 21) and relate some experiences from implementation of the modelling…
Descriptors: Physics, Teaching Methods, Mathematical Models, Secondary School Science