A heat capacity equation for the acetylene is given by: Cp 9.89 +0.8273 ×10²T - 0.3783×10-5 T² + 0.7457 × 10° T³ where T is in °F and Cp is in Btu/(lb mol) (°F). i- Convert the Cp equation so that T can be inserted in the equation in °R, and the units of Cp will be Btu/(lb mol)(CR).

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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In Btu.
Q2)
A heat capacity equation for the acetylene is given by:
Cp 9.89 +0.8273 ×102T - 0.3783×10-5 T² + 0.7457 × 10º T³
where T is in °F and Cp is in Btu/(lb mol) (°F).
i- Convert the Cp equation so that T can be inserted in the equation in °R, and the
units of Cp will be Btu/(lb mol)(°R).
ii- Convert the Cp equation so that T can be inserted in the equation in K and the
units of Cp will be J/(g mol) (K).
03)
Grom 40O
100°C. Calçulate AH by
Transcribed Image Text:In Btu. Q2) A heat capacity equation for the acetylene is given by: Cp 9.89 +0.8273 ×102T - 0.3783×10-5 T² + 0.7457 × 10º T³ where T is in °F and Cp is in Btu/(lb mol) (°F). i- Convert the Cp equation so that T can be inserted in the equation in °R, and the units of Cp will be Btu/(lb mol)(°R). ii- Convert the Cp equation so that T can be inserted in the equation in K and the units of Cp will be J/(g mol) (K). 03) Grom 40O 100°C. Calçulate AH by
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