6. For the following reaction set: Az (g) 24 Fast -→ 2A(g) k3 4 (g) + BXA3 (g)XA (g) + BA,(g) Slow A(g) + BA, (g) Determine the OVERALL reaction by adding the reactions together. BA4 (g) Fast a. A219) + Bx4る(g)-×4c)+BA4lg) b. What is/are the intermediate(s) for the reaction? A (91 , BA3 (g) C. What is the predicted rate law. Think of rapid pre-equilibrium. DO NOT SIMPLIFY THE RATE CONSTANT. Yate = K3 [AJE BXA3] rate = %3D ヒー -[ ーフ Aコ= %3D KICA2] ヒ-1 d. Draw the reaction profile. Label all transition states with the double dagger symbol. Label all reaction intermediates with the reaction that occurs. Label the X- and Y- axis. Ensure that your activation energy values are proportional to one another, but do not need have number values. Note that this overall reaction is exothermic.

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Need help with number 6 D
actul
6. For the following reaction set:
k1
A2 (g)
+→ 24(g) Fast
k2
k3
A(g)+ BXA3 (g)→ XA (g) + BA3(g) Slow
k4
A(g) + BA (g) BA4 (g) Fast
Determine the OVERALL reaction by adding the reactions together.
a.
Az rg) + BXA3 (9)
ー ×4co) →3A4Lg)
b. What is/are the intermediate(s) for the reaction?
BA3 (g)
ノ
C.
What is the predicted rate law. Think of rapid pre-equilibrium. DO NOT SIMPLIFY THE RATE CONSTANT.
Yate = K3 [AJE BXA3]
rate =
%3D
Ki[Az] =ky[AJ
3DDA]²-7 CAJ=
KICA2]'
ヒ-」
d. Draw the reaction profile. Label all transition states with the double dagger symbol. Label all reaction
intermediates with the reaction that occurs. Label the X- and Y- axis. Ensure that your activation energy values
are proportional to one another, but do not need have number values. Note that this overall reaction is
exothermic.
Transcribed Image Text:actul 6. For the following reaction set: k1 A2 (g) +→ 24(g) Fast k2 k3 A(g)+ BXA3 (g)→ XA (g) + BA3(g) Slow k4 A(g) + BA (g) BA4 (g) Fast Determine the OVERALL reaction by adding the reactions together. a. Az rg) + BXA3 (9) ー ×4co) →3A4Lg) b. What is/are the intermediate(s) for the reaction? BA3 (g) ノ C. What is the predicted rate law. Think of rapid pre-equilibrium. DO NOT SIMPLIFY THE RATE CONSTANT. Yate = K3 [AJE BXA3] rate = %3D Ki[Az] =ky[AJ 3DDA]²-7 CAJ= KICA2]' ヒ-」 d. Draw the reaction profile. Label all transition states with the double dagger symbol. Label all reaction intermediates with the reaction that occurs. Label the X- and Y- axis. Ensure that your activation energy values are proportional to one another, but do not need have number values. Note that this overall reaction is exothermic.
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