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Question 6 (1 point) Saved Which compound below has polar covalent bonds?CHzOHKOHCalOHIzNaOHCHaPrevious PageNext PagePage 6 of 12...

Question

Question 6 (1 point) Saved Which compound below has polar covalent bonds?CHzOHKOHCalOHIzNaOHCHaPrevious PageNext PagePage 6 of 12

Question 6 (1 point) Saved Which compound below has polar covalent bonds? CHzOH KOH CalOHIz NaOH CHa Previous Page Next Page Page 6 of 12



Answers

Which compound(s) amorsg the following contain an ionic bond? (a) $\mathrm{NaOH}$ (b) $\mathrm{HCl}$ (c) $\mathbf{K}_{2} \mathrm{~S}$ (d) LiH

So we've just got a couple examples off some bonds in the middle. We've got L i b r, followed by CLC out, followed by Casey L. So we're gonna be identifying the most polar bond and the least polar bonds. So let's just discuss polarity in a bit more detail before doing so. So the bigger difference in election negativity between the two atoms are bonded means that the bond is more polarized. So the more Electra negative atom is able to pull the electron pair closer towards itself within that cur Vaillant Bond. So when we're looking at the most polar, we want the biggest difference in electro negativity, which is also known as doubts a try and that drawing that symbol up on the screen. So what most polar is our Casey out? We have the biggest difference in electro negativity between these two atoms and then followed by our least polar. Would you see LCL because we have ah, homo die atomic. Here they have the exact same electro negativity value, so there is no difference in order to polarize any sort of bond

So we have this compound K o h. And we want to name it. So the first time will be the break this compound down to its ionic components. So the first component is K plus or passing by on and the second commander iso ation dinosaur hydroxide. So the name of this compound is ah, potassium hydroxide. Remember, the cat iron comes first and the car is potassium.

Students for this question on us. Which of the following will behaviors producing sugar and caveats solution? Okay, so the compounds having this kind of bonds like C double bone, O. H. This is early hide or C double bond or the skin tone or you can see or and ohh bones, this is heavy and settle. These kind of groups can behaviors reducing sugars. Okay, so in this compound and the option we can see that I'm given this kind of compound. Okay. And if I'm sure the groups these kind of groups are attached Which is having CH 20. H here and hydrogen here, which and hydrogen or which in hydrogen and here it have CH two, which and it have a few Tony group. Okay, you can see that it contains a catatonic group. So this compound can act as producing sugar because if I react this compound, if I react this compounded. If I take this component K. Which Okay, it will release ch three C double O minus K plus. Okay, and it will form, it will take up this compound, it will former or negative over here. Okay. Which can react over here and ultimately it will give me alpha hydroxy ketone. Okay. And which will look something like this or minus and it will have a double want carbon here and CH two. Oh, each year. Okay, I know. Oh I joined here. Oh, enjoy it here. Yeah, C H 20 H over here. Okay, so this will be my ultimate compound. This compound can only behave as ready using sugar. This is nothing but alpha hydroxy ketone. Okay, so according to this option, B is the correct option. Okay, so that's it. Thank you.

So the electric negativity is defined as the measure of the ability of an atom in a molecule to draw bonding electrons towards itself. And so generally, electro negativity does increase from left to right across the periodic table and it increases from top to bottom. So a polar bond is equivalent bond where the bonding electrons are unequally distributed between the two atoms. And so the polarity of a bond does depend upon the electro negativity difference between the two atoms. So the higher the difference in electro negativity, the more polar the bond. So here we're looking at chlorine hydrogen sofa silicon for, I mean arsenic. So the valleys are not .9 97 99 for the difference in electro negativity ease. So the least polar bond here is the sole basilica known because we have the smallest value. And then the remaining two examples, the chlorine, hydrogen and the bremen arsenic are the same because they're both not .9.


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