4. For the following elementary reaction: 2 Br° → Br2. The rate of consumption of the reactant and rate of formation of product is given by which set of expressions? d[Br* dt d[Br,] dt 1 d'Br d[Br. dt dt O ! dBr* d[Br,] dt dt dBr" 2dBr. dt 2 dt 5. 2 NOB1 (g) → 2 NO(g) + Br2 (g) follows second order reaction kinetics, where the rate of reaction = k[NOB1]². The integrated form of the rate equation is: 1 NOB - NOB, = 2kt -2kt NOBI] %3D NOBr Jo O NOBI] – [NOB1], = 2kt O NOBI 1 2kt

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4. For the following elementary reaction: 2 Br° → Br2. The rate of consumption of the reactant and
rate of formation of product is given by which set of expressions?
d[Br*
dt
d[Br,]
dt
1 d'Br
d[Br.
dt
dt
O ! dBr*
d[Br,]
dt
dt
dBr"
2dBr.
dt
2
dt
5. 2 NOB1 (g) → 2 NO(g) + Br2 (g) follows second order reaction kinetics, where the
rate of reaction = k[NOB1]². The integrated form of the rate
equation is:
1
NOB - NOB, = 2kt
-2kt
NOBI]
%3D
NOBr
Jo
O NOBI] – [NOB1], = 2kt
O NOBI
1
2kt
Transcribed Image Text:4. For the following elementary reaction: 2 Br° → Br2. The rate of consumption of the reactant and rate of formation of product is given by which set of expressions? d[Br* dt d[Br,] dt 1 d'Br d[Br. dt dt O ! dBr* d[Br,] dt dt dBr" 2dBr. dt 2 dt 5. 2 NOB1 (g) → 2 NO(g) + Br2 (g) follows second order reaction kinetics, where the rate of reaction = k[NOB1]². The integrated form of the rate equation is: 1 NOB - NOB, = 2kt -2kt NOBI] %3D NOBr Jo O NOBI] – [NOB1], = 2kt O NOBI 1 2kt
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