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Time required to decompose $\mathrm{SO}_{2} \mathrm{Cl}_{2}$ to half of its initial amount is 60 minutes. If the decomposition is a first order reaction, calculate the rate constant of the reaction.
Chemistry 102
Chapter 4
Chemical Kinetics
Section 6
Collision Theory of Chemical Reactions
Kinetics
Carleton College
Rice University
University of Toronto
Lectures
03:07
A liquid is a nearly incom…
04:38
A liquid is a state of mat…
01:16
The decomposition of $\mat…
01:44
03:59
01:37
In the first-order decompo…
01:06
01:18
04:26
In a first-order decomposi…
02:27
As described in Exercise 1…
03:21
In the first-order reactio…
08:51
For the reaction $A \longr…
soared more for this reaction that this is first order. And so in order to solve something like this was for sort of ready to use the first order. It's very grateful, which is that the natural log of the concentration of whatever we're looking at is equal to minus Katie, plus the natural log of the initial concentration. And so let's see what we're given. Well, we're doing the rate constant K. We'll do this in a different color. It's 2.8 time sense in negative 30 minutes. It looks like the time is what we're looking for. A Not the initial concentration is 1.24 times sensitive. Third A is 0.31 time Cincinnati 1/3. This is the amount that is at time T that we're looking for. And so, as you can see, you know, we've done all the plugging in. You just have to use a car, Claire, for this And the tea that I'm gonna get is 495 0.1. So now where? The units of this time, while the rate constant is in inverse minutes special in that and so the rate constant t is, or that the time is gonna be advantaged to you could turn that into seconds. If you really care
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