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Try this 6.3.2 · Q1

Q.For the reaction, NO2(g)+CO(g)⟶NO(g)+CO2(g)\mathrm{NO_2(g) + CO(g) \longrightarrow NO(g) + CO_2(g)}, the rate of reaction is experimentally found to be proportional to the square of the concentration of NO2_2 and independent that of CO. Write the rate law.

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Step 1. The reaction is NO2(g) + CO(g) -> NO(g) + CO2(g).

Step 2. It is stated that the rate is experimentally proportional to the SQUARE of [NO2], i.e. rate ∝\propto [NO2]^2.

Step 3. It is also stated that the rate is independent of [CO], i.e. the order in CO is 0, so [CO]^0=1 contributes nothing to the rate law.

Step 4. Combining these: rate = k[NO2]^2, second order in NO2, zero order in CO, second order overall -- the same real reaction used as an example of a zero-order dependence in Section 6.3.3.

✓Final answer

rate = k[NO2]^2.

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