Why is pyridine soluble in water?

Why is pyridine soluble in water?

Pyridine will dissolve in water because of the strong hydrogen bonds (or dipole-dipole intermolecular interactions) that exist between the lone pair of electrons on pyridine’s nitrogen atom and the solvent water molecules.

Why is cl2 boiling point higher than HCL?

Why does chlorine have a higher boiling point than hydrogen chloride? Chlorine has a boiling point of 238 K while hydrogen chloride has a boiling point of 188 K. Hydrogen chloride has dipole-dipole forces so I would expect it to have greater inter-molecular forces and thus a higher boiling point.

Is dimethyl ether polar or nonpolar?

The C-O bonds of methoxymethane (dimethyl ether) (CH3-O-CH3) are polar. The geometry of the molecule is angular, resulting in an overall molecular dipole. Hence the molecule will be subject to dipole-dipole and dipole/induced dipole interactions as well as the stronger dispersion forces.

Does acetone hydrogen bond with water?

Acetone can form hydrogen bonds with water.

Is CH3COOH capable of hydrogen bonding?

Only dispersion forces are present and these are largest in the longer chain alkane as it has more electrons (more bonds). Both molecules possess dipole moments but CH3COOH contains hydrogen bonded to an electronegative element so H-bonding is possible.

Is ch2o capable of hydrogen bonding?

It doesnt form hydrogen bonds with other formaldehyde molecules but it can form them with molecules that do have a hydrogen atom bonded to O,N,F like water for example. No, but it will polymerize. It’s a hydrogen bond acceptor. It will hydrogen bond with water.

Is CH3OH capable of hydrogen bonding?

Only CH₃NH₂ and CH₃OH can have hydrogen bonds between other molecules of the same kind. To have hydrogen bonding, you need an N, O, or F atom in one molecule and an H attached to an N, O, or F atom in another molecule. CH₃OH has an O atom and an O-H bond. It can form hydrogen bonds with other CH₃OH molecules.

Can CH3NH2 form hydrogen bonds?

Answer and Explanation: CH3NH2 is able to form hydrogen bonds because hydrogen atoms are bound to a more electronegative atom, nitrogen.