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Chemical Reaction Rates Videos 15 videos
AP Chemistry 1.3 Chemical Reaction Rates. What is the overall order of the reaction?
AP Chemistry 1.5 Chemical Reaction Rates. What is the rate law for the reaction?
AP® Chemistry: Reaction Rates Drill 1, Problem 1. Which of the following influences the rate of a chemical reaction?
AP Chemistry 3.1 Chemical Reaction Rates 3 Views
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AP Chemistry 3.1 Chemical Reaction Rates. A graph of which of the following data will give a straight line graph for a first order reaction?
Transcript
- 00:03
Here’s your Shmoop du jour, brought to you by lines, helping scientists get dates since
- 00:08
1811. [Boy and girl looking at paintings]
- 00:09
Because what's dating without a little…chemistry?
- 00:12
Alright, here’s today’s question:
- 00:14
A graph of which of the following data will give a straight-line graph for a first order
Full Transcript
- 00:18
reaction?
- 00:19
And here are your potential answers: All right, so we know that for a first order
- 00:25
reaction, the rate is proportional to the concentration of the reactant. [First order reaction equation]
- 00:29
That means that as the reaction proceeds, the concentration of the reactant decreases
- 00:33
more and more slowly.
- 00:35
To be a little more specific, the concentration of [A] decays exponentially.
- 00:40
Just like your concentration in the math class you have right before lunch. [Students in math class]
- 00:44
If your eyes are in proper working order, you can tell by looking at the graph that
- 00:47
this is not a straight line. [Graph with a sloping line]
- 00:49
If it looks like one to you, we highly recommend a quick visit to the optometrist. [Girl conducting an eye-exam]
- 00:52
Anyway, since this is a graph of the concentration of A versus time, we can eliminate A).
- 00:58
Options C) and D) could be right if the reaction orders were different.
- 01:01
But, unfortunately, teachers don’t give credit for potential correctness. [Answers C and D crossed out]
- 01:05
So that means that a graph of B would give you a straight line for a first order reaction.
- 01:10
For first-order reactions, the graph of the natural log of the concentration of the reactant
- 01:15
versus time will be a straight line.
- 01:18
So B will take you straight to the finish line. [B crossing the finish line on a running track]
- 01:21
We’d tell you another chemistry pick up line, but all the good ones argon. [Periodic table and Argon asks to call me]
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