Write the rate law for the reaction, from the following data :
| [A] mol dm s (Initial) | [B] mol dm s (Initial) | Initial rate mol dm s |
|---|---|---|
| (i) 0.4 | 0.2 | 4.0 10 |
| (ii) 0.6 | 0.2 | 6.0 10 |
| (iii) 0.8 | 0.4 | 3.2 10 |
The two concentration-column headers are printed exactly as shown, with "s" appended -- a concentration's unit is mol dm (s belongs only to the rate column). The solution uses mol dm for [A] and [B].
(ii)/(i): 1.5 = (0.6/0.4) gives x = 1; (iii)/(i): 8 = 2 2 gives y = 2 -- rate = [A][B].
Step 1. Write rate = [A][B] and take ratios of experiments.
Step 2 (order in A). Dividing (ii) by (i), [B] constant: , hence x = 1.
Step 3 (order in B). Dividing (iii) by (i): , so 2 = 4 and y = 2 (the book's "Alternatively" box reaches the same x and y by direct substitution).
The rate law is then rate = [A][B] -- digit-for-digit the textbook's printed final.
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