C3H8 (g)  +  5 O2 (g) →   3 CO2 (g)   +  4 H2O (l)  Calculate the Gibb’s Free Energy at 2000.°C using the formula:  ΔG = ΔH – TΔS.  Page Break  Thermodynamic Data for 25°C.  Substance  Δ Hf° (kJ/mole)  Δ Gf° (kJ/mole)  Sf° (J/K mole)  C3H8 (g)  -103.8  -23.5  269.9  CO2 (g)  -393.5  -394.4  213.7  H2O (l)  -285.8  -237.1  69.9  H2O (g)  -241.8  -228.6  188.8  O2 (g)  0  0  205.1

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  C3H8 (g)  +  5 O2 (g) →   3 CO2 (g)   +  4 H2O (l) 

  1. Calculate the Gibb’s Free Energy at 2000.°C using the formula:  ΔG = ΔH – TΔS. 
  1. Page Break 

Thermodynamic Data for 25°C. 

Substance 

Δ Hf° (kJ/mole) 

Δ Gf° (kJ/mole) 

Sf° (J/mole) 

C3H8 (g) 

-103.8 

-23.5 

269.9 

CO2 (g) 

-393.5 

-394.4 

213.7 

H2O (l) 

-285.8 

-237.1 

69.9 

H2O (g) 

-241.8 

-228.6 

188.8 

O2 (g) 

205.1 

 

 

 

 

 

 

 

 

 

 

 

 

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