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Zendri, G.; Valdan, M.; Gratton, L. M.; Oss, S. – Physics Education, 2015
Wind musical instruments are affected in their intonation by temperature. We show how to account for these effects in a simple experiment, and provide results in languages accessible to both physics and music professionals.
Descriptors: Science Instruction, Musical Instruments, Scientific Concepts, Physics
Zendri, G.; Gratton, L. M.; Oss, S. – Physics Education, 2014
We discuss the popular question concerning the difference in weight between 1 kg of iron and 1 kg of feathers, by taking into account the non-trivial aspect of the semantic interpretation of "weight" and the weighting procedure. The inclusion of air buoyancy makes the correct answer an interesting one. We describe and comment on the…
Descriptors: Scientific Concepts, Physics, Science Experiments, Scientific Methodology
Lopez-Arias, T.; Gratton, L. M.; Zendri, G.; Oss, S. – Physics Education, 2011
The forces acting on a ball in an air jet have been measured using simple equipment. Such measurements allow quite a precise, non-ambiguous description and understanding of the physical mechanism which explains the famous levitating ball experiment. (Contains 7 figures.)
Descriptors: Physics, Science Experiments, Measurement, Science Activities
G. Calza, Gratton, L. M.; Lopez-Arias, T.; Oss, S. – Physics Education, 2012
We construct a thermometer exploiting the electric resistance of the filament of a small lamp used in micro-illumination settings. The instrument may guarantee a response time better than 10 ms, i.e. much faster than commercial thermocouples or other quite expensive devices. This makes our thermometer a useful one in several processes which are…
Descriptors: Reaction Time, Heat, Energy, Light
Calza, G.; Gratton, L. M.; Lopez-Arias, T.; Oss, S. – Physics Education, 2009
We discuss three methods of measuring the density of air most commonly used in a teaching context. Emphasis is put on the advantages and/or difficulties of each method. In particular, we show that the 'rubber balloon' method can still be performed with meaningful physical insight, but it requires a very careful approach. (Contains 4 figures and 3…
Descriptors: Teaching Methods, Measurement Techniques, Physics, Science Instruction
Calza, G.; Oss, S. – Physics Education, 2011
As is well known, scientific entertainment can be a fruitful way to attract people of any age to science. Depending on the specific purpose, different mixtures of science and amusement can be considered, so emphasizing scientific education with respect to fun aspects or vice versa. Moreover, when proposing "hands-on" activities in such learning…
Descriptors: Informal Education, Museums, Teaching Methods, Science Experiments
Lopez-Arias, T.; Calza, G.; Gratton, L. M.; Oss, S. – Physics Education, 2009
A simple experiment is presented to visualize inferior and superior mirages in the laboratory. A quantitative analysis is done using ray tracing with both photographic and computational techniques. The mirage's image, as seen by the eye or the camera lens, can be used to analyse the deflection and inversion of light rays. (Contains 6 footnotes, 1…
Descriptors: Photography, Optics, Science Experiments, Science Instruction
Gratton, L. M.; Lopez-Arias, T.; Calza, G.; Oss, S. – Physics Education, 2009
We discuss some simple experiments dealing with intriguing properties of light and its interaction with matter. In particular, we show how to emphasize that light reflection, refraction and scattering can provide a proper, physical description of human perception of the "colour" white. These experiments can be used in the classroom with an enquiry…
Descriptors: Light, Science Instruction, Scientific Concepts, Science Experiments