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If the azomethane decomposition discussed in the class follows the mechanism: (CH3)2N2 + (CH3)2N2 K1 (CH2)2N2 + [(CH3)2N2] [(CH3)2N2] + (CH3)2N2 K2 (CH3)2N2 + (CH3)2N2

If the azomethane decomposition discussed in the class follows the mechanism: (CH3)2N2 + (CH3)2N2 K1 (CH2)2N2 + [(CH3)2N2] [(CH3)2N2] + (CH3)2N2 K2 (CH3)2N2 + (CH3)2N2 [(CH3)2N2] K3 C3H6 + N2 (CH3)2N2+ M K4 [(CH3)2N2] + M [(CH3)2N2] + M K5 (CH3)2N2 + M Derive the rate of production of ethane in terms of all the rate constants (k1 to k5) and the concentrations of azomethane and the inert bath gas, M

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