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[" Illustration "4.40" .Mechanism of the...

[" Illustration "4.40" .Mechanism of the reaction is: "],[[A_(2)(h)/(R)2A],[A+B_(2)(k_(1))/(B)C+B],[B+A_(2)(k_(2))/(dx)C+A]]

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Mechanism of the reaction is: A_(2) underset(k')overset(k)hArr 2A A + B_(2) overset(k_(2))rarr C + B B + A_(2) overset(k_(2))rarr C + A What is (-d[A_(2)])/(dt)

Mechanism of the reaction is: A_(2) underset(k')overset(k)hArr 2A A + B_(2) overset(k_(2))rarr C + B B + A_(2) overset(k_(2))rarr C + A What is (a) (-d[A_(2)])/(dt) ,(b) (-d[A])/(dt) , ( c) (d[B])/(dt) ,(d) (d[C])/(dt)

Mechanism of the reaction is: A_(2) overset(k_(2))hArr 2A A + B overset(k_(2))rarr C A_(2) + C overset(k)rarr D + A What is (a) (-d[A_(2)])/(dt) , (b) (-d[A])/(dt) , (c ) (d[C])/(d t) , (d) (d[D])/(dt) ?

Mechanism of the reaction is: A_(2) overset(k_(2))hArr 2A A + B overset(k_(2))rarr C A_(2) + C overset(k)rarr D + A What is (d[D])/(dt) ?

The K_(c) for given reaction will be A_(2(g))+2B_((g))hArrC_((g))+2D_((g))

If the ratio of the roots of a_(1)x^(2) + b_(1) x + c_(1) = 0 be equal to the ratio of the roots of a_(2) x^(2) + b_(2)x + c_(2) = 0 , then (a_(1))/(a_(2)) , (b_(1))/(b_(2)) , (c_(1))/(c_(2)) are in :

if quad /_=[[a_(1),b_(1),c_(1)a_(2),b_(2),c_(2)a_(3),b_(3),c_(3)]]

For reaction A rarr B , the rate constant K_(1)=A_(1)(e^(-E_(a_(1))//RT)) and the reaction X rarr Y , the rate constant K_(2)=A_(2)(e^(-E_(a_(2))//RT)) . If A_(1)=10^(9) , A_(2)=10^(10) and E_(a_(1)) =1200 cal/mol and E_(a_(2)) =1800 cal/mol , then the temperature at which K_(1)=K_(2) is : (Given , R=2 cal/K-mol) a) 300K b) 300 xx 2.303 K c) (300)/(2.303 )K d) None of these