Heating 4.5 mol O₂ at a constant external pressure results in the temperature changing from 264K to 350K. The constant pressure molar heat capacity of O2 is given by Cp = 29.96 + (4.18 * 10−³K−¹) * T - (J/mol - K) Calculate the change in entropy, AS, for this heating process. 1.67 * 105K² T²
Heating 4.5 mol O₂ at a constant external pressure results in the temperature changing from 264K to 350K. The constant pressure molar heat capacity of O2 is given by Cp = 29.96 + (4.18 * 10−³K−¹) * T - (J/mol - K) Calculate the change in entropy, AS, for this heating process. 1.67 * 105K² T²
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![Heating 4.5 mol O₂ at a constant external pressure results in the temperature changing from 264K
to 350K. The constant pressure molar heat capacity of O2 is given by
Cp
(J/mol - K)
Calculate the change in entropy, AS, for this heating process.
=
29.96+ (4.18 * 10−³K−¹) * T -
-
1.67 * 105K²
T²](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Faba5746d-e0e8-46ca-a0bb-ec14000055d1%2F78a9868a-3aae-4648-8ce4-7948a2bdc7d4%2Fsse82g8_processed.png&w=3840&q=75)
Transcribed Image Text:Heating 4.5 mol O₂ at a constant external pressure results in the temperature changing from 264K
to 350K. The constant pressure molar heat capacity of O2 is given by
Cp
(J/mol - K)
Calculate the change in entropy, AS, for this heating process.
=
29.96+ (4.18 * 10−³K−¹) * T -
-
1.67 * 105K²
T²
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