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Alvarez, Gustavo; Schulte, Jurgen; Stockton, Geoffrey; Wheeler, David – Physics Education, 2018
The real power of calculus is revealed when it is applied to actual physical problems. In this paper, we present a calculus inspired physics experiment suitable for high school and undergraduate programs. A model for the theory of the terminal velocity of a falling body subject to a resistive force is developed and its validity tested in an…
Descriptors: Secondary School Science, Science Instruction, High Schools, Science Laboratories
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Castano, Diego J. – European Journal of Physics, 2011
Although nowadays there are mythbusting teams ready to empirically confirm or deny advertising claims that may seem too good to be true, it is often economically prohibitive to perform the kinds of experiments that are called for. It is therefore sometimes more sensible and efficacious to perform a thought experiment instead, especially if the…
Descriptors: Physics, Motor Vehicles, Calculus, Scientific Concepts
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Beddard, Godfrey S. – Journal of Chemical Education, 2011
Thermodynamic quantities such as the average energy, heat capacity, and entropy are calculated using a Monte Carlo method based on the Metropolis algorithm. This method is illustrated with reference to the harmonic oscillator but is particularly useful when the partition function cannot be evaluated; an example using a one-dimensional spin system…
Descriptors: Thermodynamics, Scientific Concepts, Calculus, Computation
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Reid, Thomas F.; King, Stephen C. – PRIMUS, 2009
A common example of real-world motion that can be modeled by a differential equation, and one easily understood by the student, is the simple pendulum. Simplifying assumptions are necessary for closed-form solutions to exist, and frequently there is little discussion of the impact if those assumptions are not met. This article presents a…
Descriptors: Mathematical Models, Motion, Calculus, Science Instruction