or the total change in en the initial system temp- e., Tsys = 160 K, 170 k- Our plot Label the plot %3D

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Problem #2
For heat exchange between a thermal reservoir at 300 K and a constant volume system
containing one mole of monatomic ideal gas:
a) Derive the equation for the total change in entropy for a designed initial system
temperature Tj.
b) Plot AStotal vs. Tsys for the initial system temperature ranging from 160 K to 500 K in
increments of 10 K (i.e., Tsys = 160 K, 170 K, ... , 500 K). Use Matlab, Excel or similar
plotting software for your plot. Label the plot axes and include units.
%D
Transcribed Image Text:Problem #2 For heat exchange between a thermal reservoir at 300 K and a constant volume system containing one mole of monatomic ideal gas: a) Derive the equation for the total change in entropy for a designed initial system temperature Tj. b) Plot AStotal vs. Tsys for the initial system temperature ranging from 160 K to 500 K in increments of 10 K (i.e., Tsys = 160 K, 170 K, ... , 500 K). Use Matlab, Excel or similar plotting software for your plot. Label the plot axes and include units. %D
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