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Problem 1 Problem 2 Problem 3 Problem 4 Problem 5 Problem 6 Problem 7 Problem 8 Problem 9 Problem 10 Problem 11 Problem 12 Problem 13 Problem 14 Problem 15 Problem 16 Problem 17 Problem 18 Problem 19 Problem 20 Problem 21 Problem 22 Problem 23 Problem 24 Problem 25 Problem 26 Problem 27 Problem 28 Problem 29 Problem 30 Problem 31 Problem 32 Problem 33 Problem 34 Problem 35 Problem 36 Problem 37 Problem 38 Problem 39 Problem 40 Problem 41 Problem 42 Problem 43 Problem 44 Problem 45 Problem 46 Problem 47 Problem 48 Problem 49 Problem 50 Problem 51 Problem 52 Problem 53 Problem 54 Problem 55 Problem 56 Problem 57 Problem 58 Problem 59 Problem 60 Problem 61 Problem 62 Problem 63 Problem 64 Problem 65 Problem 66 Problem 67 Problem 68 Problem 69 Problem 70 Problem 71 Problem 72 Problem 73 Problem 74 Problem 75 Problem 76 Problem 77 Problem 78 Problem 79 Problem 80 Problem 81 Problem 82 Problem 83 Problem 84 Problem 85

Problem 23 Easy Difficulty

Nitrosyl chloride, NOCl, decomposes to NO and Cl$_2.$ $2 {NOCl}(g) \longrightarrow 2 {NO}(g)+{Cl}_{2}(g)$
Determine the rate equation, the rate constant, and the overall order for this reaction from the following data:

Answer

$8.0 \times 10^{-8} \mathrm{M}^{-1} \mathrm{h}^{-1}$

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Problem 11
Problem 12
Problem 13
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Problem 16
Problem 17
Problem 18
Problem 19
Problem 20
Problem 21
Problem 22
Problem 23
Problem 24
Problem 25
Problem 26
Problem 27
Problem 28
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Problem 31
Problem 32
Problem 33
Problem 34
Problem 35
Problem 36
Problem 37
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Problem 39
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Problem 46
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Problem 48
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Problem 53
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Problem 75
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Problem 80
Problem 81
Problem 82
Problem 83
Problem 84
Problem 85

Video Transcript

So we're giving the decomposition. Were ashinoff animals. Oh, um, and every police and the and Korean gas. So with father Rade equation, we constant before, Although that we assure so we give Also keep in the spring medo data. Or so, um, let's start with the weights equation. We know there's the weight, because today, um, very constant, it's time to concentration of overreaction to the power of off em. Oh, yes. So, fistful, we're going to found a very off em. Okay, So when we go back to rotator, you'll see that from 0.1 to see upon churches, the put a bow in their concentration. Um, the weight increase of 8.1 times in that tent. Two people nighttime tend to left the night. So from here, we can see there's the four time you quiz. Okay, if we further, um, increased from silk from 1 to 6.3. So we're looking at a single point. Went to see upon foodie. Ah, we can see that the weight increase from, um 8.0, Teoh. 7.2 times left. Nine. So if they will be nine times increase where we have a free time the inquiries in our concentration. So you another word from here? We can conclude that I am must be hosted to in order to have tempering concentration, Call triple in the weight. Okay, so wait, He goes to a constant time. Concentration will and oocl. Ah, tooth out of two. All right, so the off overall, there will be two. So we have the net. Okay, The next tablets are we. We also find out their rage equation partially because you still have to find a way constant so that let's say we're going to find a way constant so you can see that the recall instances eagles to the weights divide by this square off their concentration off the, um, health of reactive. So that's t, um are condition one. So you have a 0.0 time tend to left 10 your bicep on one square, and then we should be able to find us. He goes to eight point over time, tend to left eight motor to power. That's one also, our two part that fort. So this will be our we constant. So the overweight, though she will be equals two. Wait a point over time tend to that of eight later if I want, and then times a concentration off our ah reaction to powerful too.

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Paul Flowers, Klaus Theopold, Richard Langley, William R. Robinson

Chemistry

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