2 moles of ideal oxygen gas are kept at 273 K in a volume of 11.35 dm3 with a molar heat capacity at constant pressure, Cp of 29.4 J K–1 mol–1 (independent of temperature). If the gas is heated to 373 K at constant volume in a reversible manner. a. Calculate how much work has been done in the system. b. Compute the quantity of heat that has been added to the system. c. What is the gas's final pressure? d. What is the final value of the PV product? e. What is the increase in the gas's enthalpy, ΔH? f. What is the increase in the internal energy of the gas, ΔU? Kindly indicate the given. Thank you

Physical Chemistry
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ISBN:9781133958437
Author:Ball, David W. (david Warren), BAER, Tomas
Publisher:Ball, David W. (david Warren), BAER, Tomas
Chapter2: The First Law Of Thermodynamics
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Problem 2.32E: Many compressed gases come in large,heavy metal cylindersthat are so heavy that they need a special...
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2 moles of ideal oxygen gas are kept at 273 K in a volume of 11.35 dm3 with a molar heat capacity at constant pressure, Cp of 29.4 J K–1 mol–1 (independent of temperature). If the gas is heated to 373 K at constant volume in a reversible manner. a. Calculate how much work has been done in the system. b. Compute the quantity of heat that has been added to the system. c. What is the gas's final pressure? d. What is the final value of the PV product? e. What is the increase in the gas's enthalpy, ΔH? f. What is the increase in the internal energy of the gas, ΔU? Kindly indicate the given. Thank you
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