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Moggio, L.; Onorato, P.; Gratton, L. M.; Oss, S. – Physics Education, 2017
We propose the use of a smartphone based time-lapse and slow-motion video techniques together with tracking analysis as valuable tools for investigating thermal processes such as the response time of a thermometer. The two simple experimental activities presented here, suitable also for high school and undergraduate students, allow one to measure…
Descriptors: Reaction Time, Handheld Devices, Computation, Measurement Techniques
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Pendrill, Ann-Marie; Karlsteen, Magnus; Rodjegard, Henrik – Physics Education, 2012
A roller coaster ride comes to an end. Magnets on the train induce eddy currents in the braking fins, giving a smooth rise in braking force as the remaining kinetic energy is absorbed by the brakes and converted to thermal energy. In this paper an IR camera was used to monitor the temperature of the first braking fin, before, during and after the…
Descriptors: Climate, Kinetics, Photography, Heat
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El-Fouly, Tarek H. M.; El-Saadany, Ehab F.; Salama, Magdy M. A. – Bulletin of Science, Technology & Society, 2008
This article investigates the impacts of proper modeling of the wake effects and wind speed delays, between different wind turbines' rows, on the dynamic performance accuracy of the wind farms models. Three different modeling scenarios were compared to highlight the impacts of wake effects and wind speed time-delay models. In the first scenario,…
Descriptors: Meteorology, Causal Models, Climate, Energy