4. The heat capacity of a substance in Cp 8.41 +2.4346 × 10-5T where T = temperature in K (Kelvin). Develop an equation for Cp so that T can be introduced into the equation in R instead of K. = can be calculated using the equation: gmol-K

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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J
gmol-K
4. The heat capacity of a substance in
Cp: 8.41 +2.4346 × 10-5T
where T = temperature in K (Kelvin). Develop an equation for Cp so that I can be introduced into the equation in R instead of K.
can be calculated using the equation:
Transcribed Image Text:J gmol-K 4. The heat capacity of a substance in Cp: 8.41 +2.4346 × 10-5T where T = temperature in K (Kelvin). Develop an equation for Cp so that I can be introduced into the equation in R instead of K. can be calculated using the equation:
1. Using the table of conversion factors, convert the following and express answers in scientific notation
lbm
2,500-
ft².hr
O
O
kJ
o 1,725
→
kg-K
2. Express the following quantities in MLtT and FLtT
BTU
O
lbm
m².min
lbm R
kW
m².K
ft·lbf
lbm-R
Transcribed Image Text:1. Using the table of conversion factors, convert the following and express answers in scientific notation lbm 2,500- ft².hr O O kJ o 1,725 → kg-K 2. Express the following quantities in MLtT and FLtT BTU O lbm m².min lbm R kW m².K ft·lbf lbm-R
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