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2. Assume temperature at 121 km and 548 km altitude to be 275 K and 1192 K, respectively a) Write a MATLAB code to plot

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2. Assume temperature at 121 km and 548 km altitude to be 275 K and 1192 K, respectively a) Write a MATLAB code to plot the Maxwell-Boltzmann speed distribution for atomic Argon in the thermosphere for the above heights. Include your code script, your Command Window result, and your plot. b) Compute the rms speed of the Argon atoms for each of the temperatures and indicate the speed in your graphs in part a. c) Compute the collision frequency and the mean free path for the Argon atoms for the above two heights, respectively. Assume a radius of 1.5 x 10-10 m for the Argon atoms. 2. Assume temperature at 121 km and 548 km altitude to be 275 K and 1192 K, respectively a) Write a MATLAB code to plot the Maxwell-Boltzmann speed distribution for atomic Argon in the thermosphere for the above heights. Include your code script, your Command Window result, and your plot. b) Compute the rms speed of the Argon atoms for each of the temperatures and indicate the speed in your graphs in part a. c) Compute the collision frequency and the mean free path for the Argon atoms for the above two heights, respectively. Assume a radius of 1.5 x 10-10 m for the Argon atoms

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