The heat capacity of carbon dioxide gas is given by Cp = 0.1978 +1.059 x 10-4t-2.395 x 10-8² where C p is in Btu/(lb°F) and t is in °F. Change the equation into the form in which Cp is given in kJ/(kmol K) and temperature is in K. a. Cp = 26.5386 +4.24 x 10-2T- 1.4295 x 10-5T² b. Cp = 83.0025 +1.12 x 102T-1.4295 x 106T² c. Cp=83.0025 +1.12 x 10-2T-1.4295 x 10-5T² d. Cp = 26.5386 +4.24 x 102T-1.4295 x 10-6T²

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
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22. The heat capacity of carbon dioxide gas is given by
Cp = 0.1978 + 1.059 x 104 - 2.395 x 1082
where C p is in Btu/(lb°F) and t is in °F. Change the equation into the
form in which Cp is given in kJ/(kmol K) and temperature is in K.
a. Cp = 26.5386 +4.24 x 10-2T- 1.4295 x 10-5T²
b. Cp=83.0025 +1.12 x 10-2T-1.4295 x 10-6T²
c. Cp = 83.0025 +1.12 x 10-2T-1.4295 x 10-5T²
d. Cp = 26.5386 +4.24 x 10-2T-1.4295 x 10-6T2
Transcribed Image Text:22. The heat capacity of carbon dioxide gas is given by Cp = 0.1978 + 1.059 x 104 - 2.395 x 1082 where C p is in Btu/(lb°F) and t is in °F. Change the equation into the form in which Cp is given in kJ/(kmol K) and temperature is in K. a. Cp = 26.5386 +4.24 x 10-2T- 1.4295 x 10-5T² b. Cp=83.0025 +1.12 x 10-2T-1.4295 x 10-6T² c. Cp = 83.0025 +1.12 x 10-2T-1.4295 x 10-5T² d. Cp = 26.5386 +4.24 x 10-2T-1.4295 x 10-6T2
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