Given the enthalpies of combustion of propane (C3 H8), carbon and hydrogen, C3H3(g) + 502(g) → 3CO2(8) + 4H2O(I) AHº=-2219.9 kJ %3D C(s) + O2(g) → CO2(g) AHº = -393.5 kJ 2H2(8) + O2 → 2H2O(I) AHº = -571.6 kJ %3D Calculate the enthalpy of formation of propane. The reaction is shown below. 3C(s) + 4H2(g) → C3H8(g) a) -103.8 kJ O b) 1255 kJ c) 467.8 kJ

Chemistry & Chemical Reactivity
10th Edition
ISBN:9781337399074
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter5: Principles Of Chemical Reactivity: Energy And Chemical Reactions
Section5.7: Enthalpy Calculations
Problem 5.10CYU: Calculate the standard enthalpy of combustion for benzene, C6H6. C6H6() + 15/2 O2(g) 6 CO2(g) + 3...
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Given the enthalpies of combustion of propane (C3 H8), carbon and hydrogen,
C;H8(g) + 502(g) → 3CO2(g) + 4H2O(1) AHº= -2219.9 kJ
C(s) + O2(8) → CO2(g)
AHº = -393.5 kJ
2H2(g) + O2 → 2H20(1)
AHº = -571.6 kJ
Calculate the enthalpy of formation of propane. The reaction is shown below.
3C(s) + 4H2(g) → C3H3(g)
O a) -103.8 kJ
O b) 1255 kJ
O c) 467.8 kJ
Transcribed Image Text:Given the enthalpies of combustion of propane (C3 H8), carbon and hydrogen, C;H8(g) + 502(g) → 3CO2(g) + 4H2O(1) AHº= -2219.9 kJ C(s) + O2(8) → CO2(g) AHº = -393.5 kJ 2H2(g) + O2 → 2H20(1) AHº = -571.6 kJ Calculate the enthalpy of formation of propane. The reaction is shown below. 3C(s) + 4H2(g) → C3H3(g) O a) -103.8 kJ O b) 1255 kJ O c) 467.8 kJ
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