10. An ideal monatomic gas goes through the following cycle. It starts at a point a with a pressure1.00 x10ʻPa , a volume of 3.00m² and a temperature of 300K. Then there is an isochoric increase in pressure to 2.50x10ʻPa . Next there is an isothermal expansion to a point c until the pressure is again 1.00x10ʻPa. Finally, there is an isobaric return to point a . a. Sketch the process in a pV-diagram. b. What are the volumes and temperatures at points b and c ? Fill in the missing values on the following table. Point Volume, Pressure, Temperature, v (m³) p(10ʻPa) T(K) 3.00 1.00 300 a 2.50 1.00 c. What are Q, W , and AE, for each of the processes a →b,b→c and c→a? Fill in the values for each of the processes in the following table. (These values correspond to the First Law of Thermodynamics written as: AE„ =Q+W.) Process Change in internal Work done to gas, Heat added to gas, w (10ʻ3) e(10°) energy, AE, (10ʻ1) a →b
10. An ideal monatomic gas goes through the following cycle. It starts at a point a with a pressure1.00 x10ʻPa , a volume of 3.00m² and a temperature of 300K. Then there is an isochoric increase in pressure to 2.50x10ʻPa . Next there is an isothermal expansion to a point c until the pressure is again 1.00x10ʻPa. Finally, there is an isobaric return to point a . a. Sketch the process in a pV-diagram. b. What are the volumes and temperatures at points b and c ? Fill in the missing values on the following table. Point Volume, Pressure, Temperature, v (m³) p(10ʻPa) T(K) 3.00 1.00 300 a 2.50 1.00 c. What are Q, W , and AE, for each of the processes a →b,b→c and c→a? Fill in the values for each of the processes in the following table. (These values correspond to the First Law of Thermodynamics written as: AE„ =Q+W.) Process Change in internal Work done to gas, Heat added to gas, w (10ʻ3) e(10°) energy, AE, (10ʻ1) a →b
Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
Problem 1.1P
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