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PuII: Fuccuun-"unt Eat cT Tn 0o7 nut , Lutrtr nned~lanl mn 417 abtnk ALhn I ing ukrnulln +ERuhe LErulu-unreellmkIl DF LE {nulk tlolibeten Hulnthatt munuuenltean Arneu; murar Iunti Rin I0 brIE4AMe WlautrrdinIl_ AIIELAAE44entrmLNaklWld~ictn Juncthc 771nt46 Mala ~aeruthoiu RenflEnkEm4 Mm_Jl AALebfuntor tDtr son Itnttri Mtneil fn LLDiditine itatae ELeLt Kae EcLudEn Autrn RrEEIkr unuKT Uurl WEI TE Aelalaku kuuath Lan Jucht Line nrnnant 40 [Eanc (,Laa In I JeIImt TeLr Thron Aunct Luum Il& Me

PuII: Fuccuun- "unt Eat cT Tn 0o7 nut , Lutrtr nned~lanl mn 417 abtnk ALhn I ing ukrnulln +ERuhe LErulu-unreellmkIl DF LE {nulk tlolibeten Hulnthatt munuuenltean Arneu; murar Iunti Rin I0 brIE 4AMe WlautrrdinIl_ AIIELAAE44entrmLNakl Wld~ictn Juncthc 771nt46 Mala ~aeruthoiu RenflEnkEm4 Mm_Jl AALebfuntor tDtr son Itnttri Mtneil fn LLDiditine itatae ELeLt Kae Ec LudEn Autrn RrEEIkr unuKT Uurl WEI TE Aelalaku kuuath Lan Jucht Line nrnnant 40 [Eanc (,Laa In I JeIImt TeLr Thron Aunct Luum Il& Mern rLxug I ELitcieene cae Cttnn Mutd Hce Inat4i Intec mun [Uh uut Kicurif LUEUKRUEmIRTlkn UKALIE ELAcKEHcuurodbu Anikulin U 4 linl irlat Lr Fint mdr Amlenlnnute 01da MSdaenn Wacmcicntna Fhm Iinkt ultltaclia lur U[ Rcte4l Uql' Jeekuiaku LeeEuemnk : uean. WaenetitdaaeueaAdbua Aikun-Ue[ Arglk< Cnm #lrttetui Cneelelcnaectcd {teft Berdt Laim4u J [in] u: nt uuclracltn LExEL



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BIO Ancient meat eating. The amount of meat in prehistoric diets can be determined by measuring the ratio of the isotopes nitrogen- 15 to nitrogen- 14 in bone from human remains. Carnivores concentrate ${ }^{15} \mathrm{~N},$ so this ratio tells archaeologists how much meat was consumed by ancient people. Suppose you use a velocity selector to obtain singly ionized (missing one electron) nitrogen atoms of speed $8.50 \mathrm{~km} / \mathrm{s}$ and bend them along a semicircle within a uniform magnetic field. If the ${ }^{14} \mathrm{~N}$ atoms travel along a semicircle with a diameter of $29.2 \mathrm{~cm},$ find the separation of the ${ }^{14} \mathrm{~N}$ and ${ }^{15} \mathrm{~N}$ isotopes at the detector. The measured masses of these isotopes are $2.32 \times 10^{-26} \mathrm{~kg}\left({ }^{14} \mathrm{~N}\right)$ and $2.49 \times 10^{-26} \mathrm{~kg}\left({ }^{15} \mathrm{~N}\right)$

Hello there students today. We're gonna be answering these three part questions. Let's start with the first part in part A. So far to go about answering this question they are bringing up the F. One plants for assaulting. Mhm. From. Yeah. The cross. Yes. Between. I'm sorry. You heard helping? Yeah. Between bulk. That's not working. Two boys. These embry parents. Yeah. Yeah. Show yeah. Oh. Mhm. The fans and the bands are your A more okay. Yeah. You too. A. Three four B. One B. Two. He'll be very okay. You go back for part A. So for part B. How you go about that? Is that brand? Mhm. Any band? He won? Thank you. Mhm. Okay. Hello. I have my pain. Okay. Band A one is present. Yeah. Oh yeah. The angry. Yeah wines. Yeah. Yeah. So. Okay. Cannot things use. Yeah. Four recombination. Sure. Yeah mapping. For hard to see how we go about that. Okay. Yes it is careful. Okay. Yeah that. Do me have one plant. Okay. Or no curls. Yeah. Yes. Two plates possessing. Mhm. Only creams. Day one. Okay. Four. Yeah. Oops. In A. Three. Mhm. Let's proceed. Okay. Four something. Mhm. Friend. Yeah. To get the table. Yeah. C. D. D. N. A. Yeah. One. Mhm. Mhm. Okay. Just ask me you know this one. Okay. Sure. Do you yeah recognized what? Uh huh. Oh FL. S. L. P. Which? Mhm. Physical. Yeah. Let me face your life. Mhm. Mhm. Yeah. Thank you. And and A. Four. Yeah. Yeah. Mhm. And 82 83 C. G. M. A. Mhm. And this sick king pro recognized. Mhm. Yeah. Yeah. We also have more space recognize, right? Yeah. One car fell. Okay. Yeah. Rich. Okay. He fixed the sea. For which such a plan B. Federal Life. Okay. Mhm. Mhm. That's been good. three. Yeah. Damon. I am. Okay. What? Okay. Yeah. B. Two Linkage. Yeah. Distance. Yeah. Grateful. The time person. And, yep. That is it? Help you found this helpful and please take care. Okay.

This question refers back to the process of making amino acid residues from code ons. Now in this specific question were given that a C. A poli poli code on is given. So we have a continuous C A C A C A. And this will give two amino acid rescues. It will give both reunion and history. Now the code ons that are used to the in the process of making these two recipes is see A C and A C. A. And as we can see on the polly code on sequence, there's C. A C. And how a CIA can also be read. So we have to figure it out which one of these two code arms Will be the code on four to your reunion And which one will be the code on for history. Now to solve this, were given another piece of information, an artificial M R N A. Again, also a poli code on sequence. This one is going to be C A C A C A. And continuously since. Since since it's an artificial M. RNA. You can also be read in different directions and were given that it could also read a C. A C. A. Or it could also read a A C A a C. Continuously. So we will have three types of readings from that artificial Mariana. And these three types of readings will give, well three poly change of recipes. The first one we pull you through union, second we poorly glutamine and the third one we bloody a spur. Again. Now we noticed that the second one also codes for a three union which is which correlates to our first one. Which is part of our question. Also we have to notice that A C. A. Is a code on that also matches a C. A. From the first question since the re owning is the only rest of you That also matches The 1st 1, then A. C. A. Must be the code on 4th reunion, and thus C A C must be coming for history. And this is how we solved for the currents of each of universal recipe.

This question that we're looking at B details of the nuclear pore complex. We're looking at a particular protein that, in a wild type would be found women nucleus because it is involved in crime scene assembly. But in this experiment, we have some parts of protein. They have been injected into Selves. So we have the intact wild type. We have the wild type of only one tail wild type with only heads and then only tales. We've injected them into the nucleus, and we've injected them into the cytoplasm. And our question is, what do our results show us about? Accumulation of particular proteins in the nucleus debate diffuse for Are we actively transported there? Um, and we have the figure in the text book that shows these results more quickly. Supports A is, um what portion of the nuclear plasma molecule is responsible for localization? Well, if you notice, um, almost all of the proteins will move towards the nucleus when injected into the cytoplasm. Except for the one with only beheads I evil one without the tales. As we can say that the portion responsible are the tails because any that have at least one tail ends up in the nucleus. Then for part B, the more complicated part. What did What did he say about active transport versus passive diffusion? So for this, we ignore the tales. But we have a look at the heads only experiment and you notice if it is injected into the cytoplasm, it does not go to the nucleus. If it is injected into the nuclear spoke, it stays there, which indicates that we're not seeing diffusion. If we were seeing diffusion in both cases, there would be some spread, um, between the nucleus and cytoplasm. So no passive diffusion here. Probably the protein is too large to pass through reports. So what we're seeing is active transport of the molecule up into the nucleus.


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