Calculate AHrxn for the reaction: C5H12(0) – 5 C(s) + 6 H2(9) Use the following reactions and given AH's. C5H120 + 8 02(g) 5 CO2(9) + 6 H20(g) AH = -3284.8 kJ C(s) + 02(g) → CO2(g) AH = -393 5 kJ H2(g) 1/2 02(g) – H20(g) AH = -241.8 kJ A. -173 5 KJ O B. 273 5 KJ OC 133.5 KJ O D.-73.5 KJ O E. 173.5 KJ

Introduction to Chemical Engineering Thermodynamics
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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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Calculate AHrxn for the reaction:
C5H12(0) – 5 C(s) + 6 H2(9)
Use the following reactions and given AH's.
C5H120 + 8 02(g)
5 CO2(9) + 6 H20(g)
AH = -3284.8 kJ
C(s) + 02(g)
→ CO2(g)
AH = -393 5 kJ
H2(g) 1/2 02(g)
– H20(g)
AH = -241.8 kJ
A. -173 5 KJ
O B. 273 5 KJ
OC 133.5 KJ
O D.-73.5 KJ
O E. 173.5 KJ
Transcribed Image Text:Calculate AHrxn for the reaction: C5H12(0) – 5 C(s) + 6 H2(9) Use the following reactions and given AH's. C5H120 + 8 02(g) 5 CO2(9) + 6 H20(g) AH = -3284.8 kJ C(s) + 02(g) → CO2(g) AH = -393 5 kJ H2(g) 1/2 02(g) – H20(g) AH = -241.8 kJ A. -173 5 KJ O B. 273 5 KJ OC 133.5 KJ O D.-73.5 KJ O E. 173.5 KJ
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