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12. The strongest intermolecular forces between molecules of NO are (2 Points)dipole dipole interactions_hydrogen bonds.London forcesionic bonds;covalent = bonds...

Question

12. The strongest intermolecular forces between molecules of NO are (2 Points)dipole dipole interactions_hydrogen bonds.London forcesionic bonds;covalent = bonds

12. The strongest intermolecular forces between molecules of NO are (2 Points) dipole dipole interactions_ hydrogen bonds. London forces ionic bonds; covalent = bonds



Answers

Under the right conditions, hydrogen gas, $\mathrm{H}_{2}$, can be liquefied. Which is the most important intermolecular force that is responsible for allowing hydrogen molecules to be liquefied? hydrogen bonding dipole-dipole interactions London (dispersion) forces covalent bonds ion-dipole forces

So to start this question, let's first go back to our definitions of intro versus in turn, molecular forces. So an intra molecular force is gonna be an attractive force that holds Adams together within a molecule. Some examples of an intra molecular force would be a co Vaillant bond or an Ionic bond. The's bonds are very strong in comparison to inter molecular forces, which are weaker in terms. Molecular forces are attractive forces that are found in between molecules. Some examples of these are I and I people interactions London dispersion forces. Or is we'll talk about later. In this question, hydrogen bonds, which are a type of dye, pulled. I pulled interaction. Now, moving on, just talking specifically about water in a water molecule, we have to hide regions in an oxygen. Now, if we look closely the bond that is connecting our hydrogen toe our oxygen within each individual water molecule, it's gonna be our intra molecular bond. Specifically, it is a polar co Vaillant baht. But if we look at the force that's holding together the water molecules, so one water molecule here to this one over here, it's gonna be an inter molecular force more specifically a hydrogen bond. So when answering this question to sum it up, we can say that the forces within a water molecule connecting our hydrogen to our oxygen argument intra molecular force, whereas the forces that are connecting our water molecules together, for instance, and Ice Cube are gonna be inter molecular forces.

This problem. Asked whether inter molecular Covalin bonds or inter molecular hydrogen bonds are stronger, So intra versus inter molecular is an important distinction, which is why I have highlighted those pieces of the words so intra molecular means within a molecule so within a molecule, while in turn means between two molecules. So an intra molecular bond I'm use water as an example for bullet is an intra molecular bond. Covalin Bond is like these. That's what bonds the H and the O together. So it's what's keeping the molecule together. And inter molecular bond is between two different molecules. So if we use water again, you have to draw another molecule of water and show there's a hydrogen bond between and H and M O. And this would be an example of an inter molecular hydrogen bond. So if we're talking about which one is stronger, um, the intra molecular Kobelev bonds are gonna be stronger because there was actually holding the molecule together. It takes a lot more energy to take one of these off, like to break an H off of the water and make it hydroxide than it does to break a hydrogen bomb between two different water molecules because, ah, hydrogen bond isn't really ah bond. In the sense that we think of a Kobe Lamond, it's more of an attraction than a bond. So it's a lot easier to break this attraction right here between the two different malt water molecules than it is to break a bond with a name molecule.

For this question, you are given five different compounds and you were asked to identify the most important type of forces among the atoms or the molecules present in the solids of each of these substances. So, essentially, what are the most significant inter molecular forces creating the solid For the first one? We have a molecule with a whole bunch of carbon and floor. Eanes Florina is the most electoral negative of all of the elements. So we're definitely going to create some polar bonds. And we're in addition likely to have these long chain polymers be moderately polar also. So the most significant force would be disciple disciple. Next we have co two, we have two non metals. So this is not an ionic compound. It is a covalin compound. So we can draw the Lewis structure to determine whether or not it itself is polar. And the molecule ends up being linear with the two C double bonds. Oh, Bonds canceling their polarities. So the molecule is non polar and the most significant force is London dispersion. Next we have an AI, which is a metal with the non metal medals with non metals are ionic compounds so this would be Ionic. Next. We have a poly atomic ion with chloride with an anti on. So this is also Ionic. And last of all, we have magnesium chloride, which is a metal with a nonmetal, identifying it as an ionic compound with Ionic forces.

Here in this question, we have to explain it. Which one is more stronger? And I pulled dipole interaction between two molecules are calling bonding between two items. So here diapers die. Paul. Interaction are typically only about 1% as strong s golden bones. Wow. Golden bond. He's sharing. Uh huh. Sharing of electrons between atoms. Mm. Where is Guy Paul Diebold? Okay. And corruption? Yeah. Yes. And electrostatic attraction between. Okay, Partially negative charges, which is relatively very weak. What then? Colin Bond? Black. Okay, all right.


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