Many gas-phase reactions require some inert body, usually represented as M , to absorb or supply energy in a collision in order to proceed. In the spontaneous decomposition of ozone, O 3 , we can suggest the mechanism O 3 + M → O 3 * + M O 3 * → RDS O 2 + ⋅ O ⋅ ⋅ O ⋅ + O 3 → 2 O 2 for the overall reaction 2O 3 → 3O 2 In the mechanism, O 3 * refers to an ozone molecule in some energetically excited state that can react spontaneously to form O 2 and O atoms. Determine the rate law of the proposed mechanism in terms of O 3 and M , where the second step is the rate-determining step. Will adding an inert gas like Ar to a sample of ozone increase or decrease the rate of the reaction ?
Many gas-phase reactions require some inert body, usually represented as M , to absorb or supply energy in a collision in order to proceed. In the spontaneous decomposition of ozone, O 3 , we can suggest the mechanism O 3 + M → O 3 * + M O 3 * → RDS O 2 + ⋅ O ⋅ ⋅ O ⋅ + O 3 → 2 O 2 for the overall reaction 2O 3 → 3O 2 In the mechanism, O 3 * refers to an ozone molecule in some energetically excited state that can react spontaneously to form O 2 and O atoms. Determine the rate law of the proposed mechanism in terms of O 3 and M , where the second step is the rate-determining step. Will adding an inert gas like Ar to a sample of ozone increase or decrease the rate of the reaction ?
Solution Summary: The author explains that the rate of a reaction depends on several factors such as the concentration of the reactant and temperature.
Many gas-phase reactions require some inert body, usually represented as
M
, to absorb or supply energy in a collision in order to proceed. In the spontaneous decomposition of ozone,
O
3
, we can suggest the mechanism
O
3
+
M
→
O
3
*
+
M
O
3
*
→
RDS
O
2
+
⋅
O
⋅
⋅
O
⋅
+
O
3
→
2
O
2
for the overall reaction
2O
3
→
3O
2
In the mechanism,
O
3
*
refers to an ozone molecule in some energetically excited state that can react spontaneously to form
O
2
and
O
atoms. Determine the rate law of the proposed mechanism in terms of
O
3
and
M
, where the second step is the rate-determining step. Will adding an inert gas like
Ar
to a sample of ozone increase or decrease the rate of the reaction?
Definition Definition Study of the speed of chemical reactions and other factors that affect the rate of reaction. It also extends toward the mechanism involved in the reaction.
Predict the major products of the following organic reaction:
O O
+
A
?
Some important notes:
• Draw the major product, or products, of the reaction in the drawing area below.
• If there aren't any products, because no reaction will take place, check the box below the drawing area instead.
• Be sure to use wedge and dash bonds when necessary, for example to distinguish between major products that are
enantiomers.
Explanation Check
Click and drag to start drawing a structure.
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(EXM 2, PRBLM 3) Here is this problem, can you explain it to me and show how its done. Thank you I need to see the work for like prbl solving.
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