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R. C. Harwood – International Journal of Mathematical Education in Science and Technology, 2024
After waiting in a long line for your favourite cup of coffee, you finally sit down with your mug and find that the coffee is still scalding hot! How long do you need to wait before you can enjoy it? Once it cools enough, how much time do you have to enjoy it? Are there ways to speed up the process? These questions motivate the presented modelling…
Descriptors: Heat, Thermodynamics, Science Experiments, Food
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Perea Martins, J. E. M. – Physics Education, 2018
This work describes a simple experiment to measure the resistor temperature as a function of the applied power and proves that it is an efficient way to introduce some important physical concepts in classroom, including the Joule's first law, hot-spot temperature, thermal resistance, thermal dissipation constant, time constant and the Newton's law…
Descriptors: Physics, Energy, Science Experiments, Scientific Concepts
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Vollmer, Michael; Möllmann, Klaus-Peter – Physics Education, 2018
Video analysis with a 30 Hz frame rate is the standard tool in physics education. The development of affordable high-speed-cameras has extended the capabilities of the tool for much smaller time scales to the 1 ms range, using frame rates of typically up to 1000 frames s[superscript -1], allowing us to study transient physics phenomena happening…
Descriptors: Physics, Science Education, Motion, Time
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Ashbaugh, Henry S. – Chemical Engineering Education, 2010
Successful teaching of the Second Law of Thermodynamics suffers from limited simple examples linking equilibrium to entropy maximization. I describe a thought experiment connecting entropy to a lottery that mixes marbles amongst a collection of urns. This mixing obeys diffusion-like dynamics. Equilibrium is achieved when the marble distribution is…
Descriptors: Thermodynamics, Scientific Concepts, Science Instruction, College Science
Coe, Lee – Amer J Phys, 1969
Descriptors: Matter, Physical Sciences, Resource Materials, Scientific Concepts
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Aklonis, J. J. – Journal of Chemical Education, 1981
Mechanical properties (stress-strain relationships) of polymers are reviewed, taking into account both time and temperature factors. Topics include modulus-temperature behavior of polymers, time dependence, time-temperature correspondence, and mechanical models. (JN)
Descriptors: Chemistry, College Science, Fluid Mechanics, Higher Education
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Kyle, Benjamin G. – Chemical Engineering Education, 1988
Illustrates qualitative and metaphoric applications of entropy in the areas of cosmology, the birth and death of the universe and time; life and evolution; literature and art; and social science. (RT)
Descriptors: Art, Chemical Engineering, College Science, Evolution
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Doughty, Noel A. – American Journal of Physics, 1981
Compares the magnitude of the proper acceleration of a static observer in a static, isolated, spherically symmetric space-time region with the Newtonian result including the situation in the interior of a perfect-fluid star. This provides a simple physical interpretation of surface gravity and illustrates the global nature of the event horizon.…
Descriptors: College Science, Fluid Mechanics, Higher Education, Kinetics