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The michaelis-menten equation is based on the initial rate approximation What reaction is ignored when using this approximation?...

Question

The michaelis-menten equation is based on the initial rate approximation What reaction is ignored when using this approximation?

The michaelis-menten equation is based on the initial rate approximation What reaction is ignored when using this approximation?



Answers

What is the approximate initial rate of the second order reaction?

So to figure out the rate constant for our zeroth order reaction, we're gonna use the integrated rate law. And so this is all I have here on the screen. It's now we're just gonna plug. But we can use any day this points that we want. And so I just used first for tiny zero. We have an initial amount, which is one more. When we use the second time period, which is at 25 seconds. T will be 25 seconds. The amount we have is 0.75 more. And so you can rearrange this. You'll find that we have 0.25 Moeller or equal, uh, K times 25 seconds. And so then K, we'll see, will come out to the 0.1 bulls per leaders per second. This is the crack tunes for our value of K. This makes sense

A chemical reaction is defined as a chemical process where substance does act mutually on each other and are changed into other substances or a substance changes into one other substances. So we're looking at starting materials, becoming products, in other words, so here we're focusing on comparing two different reactions. So as the reaction progress is progressing, the rate at which the reef magnons decreased on backwards reaction would increase with time, so the second rate would be less than the first rate, as the effective concentrations off reactant has increased has decreased with time.

The lead off reaction is the speed at which the chemical reaction happened. It is measured in term, off concentration. It is measured in terms off change in concentration, off reactions with respect to time. The raid off reaction depends on the concentration off substrate in such OVI that an increase in concentration off substrate will increase in read off reaction substrate our domed as reactant. So increase in terms off substrate relieve toe increase in read off reaction are exam this increase in lead off reaction arcas up to a certain extent, and after that it would not change the read off reaction. After a certain point, the rate off reaction seizes, and it will be independent upon the concentration off substrate. Hence, in the given graph, Deco, or from depicting the larger concentration has the highest read off reaction.

We had to explain that what counts circumstances The specific concepts is no longer a constant. And also we have to you also explain how the size off we're way constant affect overweight. Ah, fistful of this stuff. You our how standard reaction we have. Ah, single react to me, comrade baby. And then we can apply the waist Lord equation. We goes to the way constant time, the concentration off reacting to the order off. Okay, so when we are half a reaction concentration to be one, then I'll wait with vehicles to our way Constant. So I'm good Under this condition, we will call away constant the specific were constant. Okay, that for this specific Johansson and also for we constant, they also depend on temperature. So when we have temperature change, then I will. We constantly change fun. So you first of we're going down. Um, when the temperature it's going down Swell. Okay. So ah, to summarize where in temperature change, then the way constant or specific one, we constantly change. Okay, So the second public question is we have to explain how the size off the K if that sofa wait'll we Asher Okay, so soon we have Ah ah Reaction concentration at one them Wait Well Beanie Kosuke, as shown before. Okay. Therefore, when kay increase Ah, wait off reaction Also increase at this at the same time where in k decrees our car, we overreaction also decrease. And that's how the size of the Kate half fat, the weight off reaction.


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