Using the van der Waals equation, calculate the pressure of 56 moles ammonia gas present in a 54.7 L container at 35°C. Van der Waals Constants: a: 4.170 atm L2/mol2 b: 0.03707 L/mol Round your answer to 2 decimal places.

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Use the necessary constant in solving this problem. See the second image.
Using the van der Waals equation, calculate the pressure of 56 moles ammonia gas present in a 54.7 L
container at 35°C.
Van der Waals Constants:
a: 4.170 atm L2/mol2
b: 0.03707 L/mol
Round your answer to 2 decimal places.
Transcribed Image Text:Using the van der Waals equation, calculate the pressure of 56 moles ammonia gas present in a 54.7 L container at 35°C. Van der Waals Constants: a: 4.170 atm L2/mol2 b: 0.03707 L/mol Round your answer to 2 decimal places.
Units oF Pressure
760mm Hg
1 atm
1 atm
760 torr
1 atm - 101 , 325 Pa
1 atm =
14.7 pei
univercal gar conctant
-R= 0.08 206 L
atm
mo/ k-1
- used in most gas
equations
8. 314
-R =
-1
mol
- uved in equations
involving energY
1 mol gas STP= 22.41 L
Transcribed Image Text:Units oF Pressure 760mm Hg 1 atm 1 atm 760 torr 1 atm - 101 , 325 Pa 1 atm = 14.7 pei univercal gar conctant -R= 0.08 206 L atm mo/ k-1 - used in most gas equations 8. 314 -R = -1 mol - uved in equations involving energY 1 mol gas STP= 22.41 L
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