By inspection of the reaction profile for the reaction A to D given below, answer the following questions. Reaction pathway a) How many intermediates are there in the reaction? 2 (B and C) b) How many transition states are there? 2 c) Which is the fastest stepin the reaction? 3 d) What is the reactant in the rate determining step? e) Is the first of the reaction exothermic or endothermic? f) Is the overall reaction exothermic or endothermic? One proposed mechanism for the condensation of propanone. ((CH3)2CO), is as follows: (CH),CO(aq) + OH¯(aq) = CH3C(O)CH, (aq) + H20(1) CH;C(O)CH2 (aq) + (CH3)2CO(aq) product Use the steady-state approximation to determine the rate of formation for the product. Potential energy

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By inspection of the reaction profile for the reaction A to D given below, answer the following
questions.
B
D
Reaction pathway
a) How many intermediates are there in the reaction? 2 (B and C)
b) How many transition states are there? 2
c) Which is the fastest stepin the reaction? 3
d) What is the reactant in the rate determining step?
e) Is the first of the reaction exothermic or endothermic?
f) Is the overall reaction exothermic or endothermic?
One proposed mechanism for the condensation of propanone. (CH3)2CO), is as follows:
(CH3)2CO(aq) + OH (aq) = CH3C(O)CH, (aq) + H2O(1)
CH;C(O)CH2 (aq) + (CH3)2CO(aq) → product
Use the steady-state approximation to determine the rate of formation for the product.
Potential energy
Transcribed Image Text:By inspection of the reaction profile for the reaction A to D given below, answer the following questions. B D Reaction pathway a) How many intermediates are there in the reaction? 2 (B and C) b) How many transition states are there? 2 c) Which is the fastest stepin the reaction? 3 d) What is the reactant in the rate determining step? e) Is the first of the reaction exothermic or endothermic? f) Is the overall reaction exothermic or endothermic? One proposed mechanism for the condensation of propanone. (CH3)2CO), is as follows: (CH3)2CO(aq) + OH (aq) = CH3C(O)CH, (aq) + H2O(1) CH;C(O)CH2 (aq) + (CH3)2CO(aq) → product Use the steady-state approximation to determine the rate of formation for the product. Potential energy
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