Consider an ideal gas enclosed in a 1.00 L container at an internal pressure of 22.0 atm. Calculate the work, w, if the gas expands against a constant external pressure of 1.00 atm to a final volume of 22.0L. -2127.825 Now calculate the work done if this process is carried out in two steps. 1. First, let the gas expand against a constant external pressure of 2.20 atm to a volume of 10.0 L. 2. From the end point of step 1, let the gas expand to 22.0 L against a constant external pressure of 1.00 atm. -2006.235 Incerrect

Chemistry: An Atoms First Approach
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Chapter7: Chemical Energy
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Problem 97AE: Consider the following cyclic process carried out in two steps on a gas: Step 1: 45 J of heat is...
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Consider an ideal gas enclosed in a 1.00 L container at an internal pressure of 22.0 atm.
Calculate the work, w, if the gas expands against a constant external pressure of 1.00 atm to a final volume of 22.0 L.
w =
-2127.825
J
Now calculate the work done if this process is carried out in two steps.
1. First, let the gas expand against a constant external pressure of 2.20 atm to a volume of 10.0 L.
2. From the end point of step 1, let the gas expand to 22.0 L against a constant external pressure of 1.00 atm.
-2006.235
w =
J
Incorrect
Transcribed Image Text:Consider an ideal gas enclosed in a 1.00 L container at an internal pressure of 22.0 atm. Calculate the work, w, if the gas expands against a constant external pressure of 1.00 atm to a final volume of 22.0 L. w = -2127.825 J Now calculate the work done if this process is carried out in two steps. 1. First, let the gas expand against a constant external pressure of 2.20 atm to a volume of 10.0 L. 2. From the end point of step 1, let the gas expand to 22.0 L against a constant external pressure of 1.00 atm. -2006.235 w = J Incorrect
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