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Classify lhe species given below by the intermolecular forces present In pure sample 0f each:PFsHCNCHaOHHzSCHzChz:BrClNHiDispersionDipole-DipoieH BondDese...

Question

Classify lhe species given below by the intermolecular forces present In pure sample 0f each:PFsHCNCHaOHHzSCHzChz:BrClNHiDispersionDipole-DipoieH BondDese

Classify lhe species given below by the intermolecular forces present In pure sample 0f each: PFs HCN CHaOH HzS CHzChz: BrCl NHi Dispersion Dipole-Dipoie H Bond Dese



Answers

Determine the kinds of intermolecular forces that are present in each element or compound.
a. N2
b. NH3
c. CO
d. CCl4

So in this podcast we're continuing on with into molecular forces and we're going to be discussing cement molecular forces that may be acting upon different molecules so fastly, What we have is ch three ch two on LH. So our alcohol chain gives us dispassion forces on Because of our alcohol group, we can have hydrogen bonding in the next molecule. What? We have a ch three c h two ch three. Here All we have is dispassion forces. Lastly, we have one more molecule ch three ch two c e o. So here we have dispassion forces again because we have that non polar alcohol chain. But then because we have a polar molecule here, we can have dipole dipole interactions because of the Electra negativity difference between carbon and chlorine. Chlorine is a lot more Electra negative.

You were looking at some different compounds molecules in determining whether they are bionic, disciple, disciple or hydrogen bonding in terms of their inter molecular forces. So first you have n. f. three, so this is polar. So we have died paul di paul interactions. Next we have C. L. F. And we have a very small difference in electric negativity. So we mostly have dispassion forces present with this molecule next the FBI too. Again not polar. We have two special forces Nitro CS 20, which is a very high difference collection negativity between the elements. So this is ionic Next week. I'll see for each 10. So the main bonding here is Covalin. So we just have dispassion forces supporting this. Next we have C. H three H. So because we have the alcohol group we can have hydrogen bonding. What? Mhm.

Forces hold molecules or atoms together in liquids and solids. And so the strength of the inter molecular forces in a substance does determine its state. So for example, if we have dispassion forces, dipole dipole forces, or hydrogen bonding, and even iron dipole forces. So firstly what we have is p three analogous to ammonia. And so this is a polar molecule. So what we have is dispersion forces and we also have dipole dipole forces. Secondly, we have H. P. R. And so what we have is again another polar molecules. So we do have dispersion forces and dipole dipole forces. Continuing on to the next example, we have C. H. 30 H. So this is a polar molecule, so it does contain hydrogen bonding because we have the H group and again dispersion forces. And I poll Guy Poole forces. So the final example we have I too. So this is a non polar molecule. And so all we have is dispersion forces.

Explanation for the given christiania. We have to explain the type of inter molecular forces present in each a lament our compound given. So here in part we have given molecule is into Yeah, nitrogen is a guy atomic molecule in this type of molecule, the type of inter molecular forces, the type of inter molecular My 4th present in die atomic molecule list dispersion forces. And next in party we have and it's three. And the street is the formula of what is the formula of ammonia. And this polar molecule. So polar molecules contain dispersion force, Number one is dispersion force. This prison forces, number two is die Pontypool forces and number three is hydrogen bonding and next is part C C O. Carbon monoxide is non polar non polar molecule and so it contains London dispersion forces. The next party given compound is cecile for carbon tetrachloride. So carbon tetrachloride is a non polar molecule. So it contained it contains dispersion forces.


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