For the given reaction entropy value ΔG o has to be calculated at 298 K 2 H 2 S ( g ) + 2 O 2 ( s ) ⇌ 2 H 2 O ( s ) + S O 2 ( g ) ; K = 6.57 × 10 173 Concept introduction: Standard free energy change: Standard free energy change is measured by subtracting the product of temperature and standard entropy change from the standard enthalpy change of a system. ΔG o = ΔH o - TΔS o where, ΔG o - standard free energy change ΔH o - standard enthalpy change ΔS o - standard entropy change and T - temperature . Relationship between Δ G o a n d K : The relationship between free energy change and equilibrium constant is given by ΔG o = -RTlnK where, ΔG o - standard free energy change R - gas constant 8 .314 J/mol × K T - temperature 298K K - equilibrium constant .
For the given reaction entropy value ΔG o has to be calculated at 298 K 2 H 2 S ( g ) + 2 O 2 ( s ) ⇌ 2 H 2 O ( s ) + S O 2 ( g ) ; K = 6.57 × 10 173 Concept introduction: Standard free energy change: Standard free energy change is measured by subtracting the product of temperature and standard entropy change from the standard enthalpy change of a system. ΔG o = ΔH o - TΔS o where, ΔG o - standard free energy change ΔH o - standard enthalpy change ΔS o - standard entropy change and T - temperature . Relationship between Δ G o a n d K : The relationship between free energy change and equilibrium constant is given by ΔG o = -RTlnK where, ΔG o - standard free energy change R - gas constant 8 .314 J/mol × K T - temperature 298K K - equilibrium constant .
For the given reaction entropy value ΔGo has to be calculated at 298K
2H2S(g)+2O2(s)⇌2H2O(s)+SO2(g);K=6.57×10173
Concept introduction:
Standard free energy change:
Standard free energy change is measured by subtracting the product of temperature and standard entropy change from the standard enthalpy change of a system.
For the given reaction entropy value ΔGo has to be calculated at 298K
H2SO4(l)⇌H2O(l)+SO3(g);K=4.46×10−15
Concept introduction:
Standard free energy change:
Standard free energy change is measured by subtracting the product of temperature and standard entropy change from the standard enthalpy change of a system.
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The Laws of Thermodynamics, Entropy, and Gibbs Free Energy; Author: Professor Dave Explains;https://www.youtube.com/watch?v=8N1BxHgsoOw;License: Standard YouTube License, CC-BY