Reactivity 2.2.6—Many reactions occur in a series of elementary steps. The slowest step determines the rate of the reaction. Evaluate proposed reaction mechanisms and recognize reaction intermediates. Distinguish between intermediates and transition states, and recognize both in energy profiles of reactions.
Description
[N/A]Directly related questions
- 19M.1A.HL.TZ1.21: Which is correct for the reaction mechanism shown?
- 19M.1A.HL.TZ1.21: Which is correct for the reaction mechanism shown?
- 19M.1A.HL.TZ1.21: Which is correct for the reaction mechanism shown?
- 19M.1A.HL.TZ1.21: Which is correct for the reaction mechanism shown?
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19M.2.SL.TZ2.2c(ii):
It has been suggested that the reaction occurs as a two-step process:
Step 1: N2O (g) → N2 (g) + O (g)
Step 2: N2O (g) + O (g) → N2 (g) + O2 (g)
Explain how this could support the observed rate expression.
-
19M.2.SL.TZ2.2c(ii):
It has been suggested that the reaction occurs as a two-step process:
Step 1: N2O (g) → N2 (g) + O (g)
Step 2: N2O (g) + O (g) → N2 (g) + O2 (g)
Explain how this could support the observed rate expression.
-
19M.2.SL.TZ2.c(ii):
It has been suggested that the reaction occurs as a two-step process:
Step 1: N2O (g) → N2 (g) + O (g)
Step 2: N2O (g) + O (g) → N2 (g) + O2 (g)
Explain how this could support the observed rate expression.
-
19M.2.SL.TZ2.2c(ii):
It has been suggested that the reaction occurs as a two-step process:
Step 1: N2O (g) → N2 (g) + O (g)
Step 2: N2O (g) + O (g) → N2 (g) + O2 (g)
Explain how this could support the observed rate expression.
-
19M.2.SL.TZ2.2c(ii):
It has been suggested that the reaction occurs as a two-step process:
Step 1: N2O (g) → N2 (g) + O (g)
Step 2: N2O (g) + O (g) → N2 (g) + O2 (g)
Explain how this could support the observed rate expression.
-
19M.2.SL.TZ2.c(ii):
It has been suggested that the reaction occurs as a two-step process:
Step 1: N2O (g) → N2 (g) + O (g)
Step 2: N2O (g) + O (g) → N2 (g) + O2 (g)
Explain how this could support the observed rate expression.
- 20N.2.HL.TZ0.7b: Nitrogen monoxide reacts with oxygen gas to form nitrogen dioxide. Deduce, giving a reason,...
- 20N.2.HL.TZ0.7b: Nitrogen monoxide reacts with oxygen gas to form nitrogen dioxide. Deduce, giving a reason,...
- 20N.2.HL.TZ0.b: Nitrogen monoxide reacts with oxygen gas to form nitrogen dioxide. Deduce, giving a reason,...
- 20N.2.HL.TZ0.7b: Nitrogen monoxide reacts with oxygen gas to form nitrogen dioxide. Deduce, giving a reason,...
- 20N.2.HL.TZ0.7b: Nitrogen monoxide reacts with oxygen gas to form nitrogen dioxide. Deduce, giving a reason,...
- 20N.2.HL.TZ0.b: Nitrogen monoxide reacts with oxygen gas to form nitrogen dioxide. Deduce, giving a reason,...