Q.1. If you wish to determine the reaction order and rate constant for the reaction, . a) What data would you collect? b) How would you use these data to determine whether the reaction is zeroth or first order?
Step 1. Data to collect. For 2AB2 -> A2 + 2B2, measure the concentration of AB2 (or, if gaseous, the total pressure of the reaction mixture, which can be converted to [AB2] as in Section 6.5.7) at a series of known time points from the start of the reaction.
Step 2. Testing zero order. Plot [AB2]t (remaining concentration) against t. If the data fall on a straight line, the reaction is zero order (per Section 6.5.8, [A]t = -kt + [A]0), and the rate constant k is the negative of the slope.
Step 3. Testing first order. If the [AB2]t vs t plot is instead curved, plot log10[AB2]t against t (or, equivalently, log10([AB2]0/[AB2]t) against t). If THIS gives a straight line, the reaction is first order (per Section 6.5.5), with k obtainable from the slope (-k/2.303, or k/2.303 for the second form).
Step 4. Whichever plot comes out straight identifies the order, and its slope directly yields the rate constant k for that order.
Collect concentration (or total pressure, for a gas) of AB2 at a series of known time intervals during the reaction. To test the order: plot [AB2]t versus t -- if this is a straight line, the reaction is zero order; if instead a plot of log10[AB2]t versus t (or log10([AB2]0/[AB2]t) versus t) gives a straight line, the reaction is first order. The rate constant k is then read off the slope of whichever plot is linear.
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