(iii) Write out the expression for the approximate form of the Marcus-Hush equation for a heteronuclear redox reaction and briefly define each of its terms. (iv) Utilise the Marcus-Hush equation to calculate the rate constant k12 for the cross-reaction between the above complexes: [Ru(NH3)6]2+ + [Co(NH3)6]³+ → [Ru(NH3)6]³+ + [Co(NH3)6]²+ The following data are given: K₁1 = 104 M-¹ S-¹ k22 = 106 M-¹ S-1 fiz = 1 K12 = 344.

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(iii) Write out the expression for the approximate form of the Marcus-Hush
equation for a heteronuclear redox reaction and briefly define each of its
terms.
(iv) Utilise the Marcus-Hush equation to calculate the rate constant k12 for the
cross-reaction between the above complexes:
[Ru(NH3)6]2+ + [Co(NH3)6]³+ → [Ru(NH3)6]³+ + [Co(NH3)6]²+
The following data are given:
K₁1 = 104 M-¹ S-¹
k22 = 106 M-¹ S-1
fiz=1
K12 = 344.
Transcribed Image Text:(iii) Write out the expression for the approximate form of the Marcus-Hush equation for a heteronuclear redox reaction and briefly define each of its terms. (iv) Utilise the Marcus-Hush equation to calculate the rate constant k12 for the cross-reaction between the above complexes: [Ru(NH3)6]2+ + [Co(NH3)6]³+ → [Ru(NH3)6]³+ + [Co(NH3)6]²+ The following data are given: K₁1 = 104 M-¹ S-¹ k22 = 106 M-¹ S-1 fiz=1 K12 = 344.
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