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Ben-Shalom, Amir; Gluck, Paul – Physics Education, 2013
By attaching LEDs and lasers to moving objects, and shining their light on photochromic surfaces below them, we can display traces of many motions of interest in introductory physics courses and science museums.
Descriptors: Science Instruction, Physics, Motion, Scientific Concepts
Theilmann, Florian; Grusche, Sascha – Physics Education, 2013
Teaching prismatic colours usually boils down to establishing the take-home message that white light consists of "differently refrangible" coloured rays. This approach explains the classical spectrum of seven colours but has its limitations, e.g. in discussing spectra from setups with higher resolution or in understanding the well…
Descriptors: Science Instruction, Physics, Color, Scientific Principles
Featonby, David – Physics Education, 2010
This article examines several readily available "magic tricks" which base their "trickery" on physics principles, and questions the use of the word "magic" in the 21st century, both in popular children's science and in everyday language. (Contains 18 figures.)
Descriptors: Physics, Science Instruction, Teaching Methods, Scientific Principles
Hughes, S. W. – Physics Education, 2009
What colour is a shadow? Black, grey, or some other colour? This article describes how to use a digital camera to test the hypothesis that a shadow under a clear blue sky has a blue tint. A white sheet of A4 paper was photographed in full sunlight and in shadow under a clear blue sky. The images were analysed using a shareware program called…
Descriptors: Photography, Light, Hypothesis Testing, Science Instruction

Freeman, K. G. – Physics Education, 1970
Descriptors: Color, Industry, Light, Optics