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We have desigu - with only one replication possible. If we want to use blocks_ how many factors are needed t0 be confounded t0 implement this design?...

Question

We have desigu - with only one replication possible. If we want to use blocks_ how many factors are needed t0 be confounded t0 implement this design?

We have desigu - with only one replication possible. If we want to use blocks_ how many factors are needed t0 be confounded t0 implement this design?



Answers

How many copies of each type of core histone would it take to wrap the entire human genome into nucleosomes? How has evolution solved the problem of producing such a large number of proteins in a relatively short period of time?

What is a replication? Well, replication fault is found during DNA replication where we have two strands coming out of one strand as we have to daughter in a disease from a single Erin Felix. How many could he finds on the average human girls on what you can start a replication for wherever you can find the origin of replication on the average crimson has hundreds of these, so you can have hundreds of replication forks at any one time.

So here we went to assume that there's a bacterial chromosome that has one origin of replication under some conditions of rapid cell division replication concerning the origin before the proceeding replication cycle is complete. So how many replication forks would there be if this would happen? There have to be six. The first replication start, um, would have to replication forex proceeding to completion. So you have to see you have one, and then you have two forks. Um, and now the replicated origins would each star a replication again, and each would have two more replication for extra. A total of, um one, 23456 Replication forks.

Well, the first thing we notice is that the corner box in stage one is one in the corner box of stage two is too and stay Streets, streets. So that makes sense. In stage one, you have basically won one box. So stage 111 box it stays to you're gonna have, um, you know, there's two in the corner, so two and then 34 of those ones. So four boxes and stays three. You're gonna if you count these up, you have three in the corner and then tooth of five. And then two more. So seven and then one on one So that B 99 total boxes. So if you think about this, these three stage what you do with the stage number is really If you square them all one squared is 12 squared is 43 squared is nine. So that what works seems to follow a pattern. So if I think about 10 stage 10 I would literally just square it and it should be. Should be a thing drawn arrow here. 100 100 boxes to make stage 10

So here I have the nucleus of a cell. And the question is, what is the advantage of having DNA replication happened in different areas as opposed, just happening arbitrarily and all over the place? Randomly? Well, it kind of creates organization to the chaos. So let's just say here I have a chromosome here. I have another chromosome all over the place. And if the DNA is being replicated in these various spots, it starts to create order. So what's gonna happen is that eventually when the cell is ready to divide, remember these chromosomes make it all the way to the center plane for that division. So the advantage of having smaller replications in different specific areas of folky, as opposed to just arbitrary, um, all over the nucleus is that this way, the chromosomes have a little more order and organization to the process.


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