For the given reaction the value of ΔG o and ΔS o has to be calculated at 458 o C . 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 T - temperature and K - equilibrium constant .
For the given reaction the value of ΔG o and ΔS o has to be calculated at 458 o C . 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 T - temperature and K - equilibrium constant .
Solution Summary: The author explains the relationship between free energy change and equilibrium constant.
For the given reaction the value of ΔGoandΔSo has to be calculated at 458oC.
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 the value of ΔGoandΔSo has to be calculated at 458oC.
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.
How can Beer’s Law be used to determine the concentration in a selected food sample. Provide an in-depth discussion and examples of this.
b)
H3C-
H3C
Me
CH 3
I
HN
Me
H+
Using Luther's rule, determine the reference potentials of the
electrodes corresponding to the low stability systems Co³+/Co and
Cr²+/Cr from the data in the table.
Electrodo
ΕΝ
Co²+/Co
Co3+/Co²+
-0,28
+1,808
Cr³+ / Cr
-0,508
Cr3+ / Cr²+
-0,41
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell