At a pressure of 3 atm, the gas is held in a volume of 24.6 liters. It is compressed so that its temperature decreases from 400 K to 350 K. Calculate the final pressure of the gas after this isometric compression.

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Suppose we are dealing with an ideal gas contained in a cylinder equipped with a movable collection. The gas undergoes different types of thermodynamic transformations while interacting with the environment. Let us consider that the gas undergoes a series of transformations under different conditions of pressure and volume. For all exercises, use the general gas law PV=nRT to perform the calculations and remember to indicate the units correctly.
 
Isometric Transformation:
At a pressure of 3 atm, the gas is held in a volume of 24.6 liters. It is compressed so that its temperature decreases from 400 K to 350 K. Calculate the final pressure of the gas after this isometric compression.

 

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