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Gomez, Elaine; Paul, Melissa; Como, Charles; Barat, Robert – Chemical Engineering Education, 2014
This experiment and analysis offer an effective experience in greenhouse gas reduction. Ammoniated water is flowed counter-current to a simulated flue gas of air and CO2 in a packed column. The gaseous CO2 concentrations are measured with an on-line, non- dispersive, infrared analyzer. Column operating parameters include total gas flux, dissolved…
Descriptors: Science Experiments, College Science, Science Laboratories, Undergraduate Study
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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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Lopes, Fernando S.; Coelho, Lucia H. G.; Gutz, Ivano G. R.; Vitz, Ed – Journal of Chemical Education, 2010
Vast quantities, on the order of megatons, of pollutants are emitted monthly to the atmosphere both by natural and anthropogenic sources. The evaluation of rainwater composition has great importance in understanding the atmospheric chemical composition, as water drops scavenge particles and soluble atmospheric pollutants. Most students are aware…
Descriptors: Chemistry, Pollution, Science Instruction, Scientific Principles
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Goldader, Jeffrey D. – Physics Teacher, 2008
The Celsius and Kelvin temperature scales, we tell our students, are related. We explain that a change in temperature of 1 degree C corresponds to a change of 1 Kelvin and that atoms and molecules have zero kinetic energy at zero Kelvin, -273 degrees C. In this paper, we will show how students can derive the relationship between the Celsius and…
Descriptors: Kinetics, Physics, Climate, Science Instruction