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Why is water so highly cohesion?

Water molecules are highly cohesive due to hydrogen bonding. The partially positive hydrogen atoms are attracted to the partially negative oxygen atoms of neighboring water molecules, creating a strong bond between them. This cohesion results in surface tension and other important properties of water.


When water freezes to form ice what connects the water molecules?

hydrogen bonds


What are examples of The main interactions between molecules of hydrogen chloride?

The main interactions between molecules of hydrogen chloride are dipole-dipole interactions. Hydrogen chloride is a polar molecule with a partially positive hydrogen end and a partially negative chlorine end. These partial charges attract neighboring hydrogen chloride molecules, resulting in dipole-dipole interactions.


How do hydrogen bonds happened between neighboring water molecules?

The oxygen in the water molecule is Partially negative and the Hydrogen in the water molecule is partially Positive . Thus they bond up to form Hydrogen Bond.


What weak fleeting bonds are adjacent water molecules attracted to?

Adjacent water molecules are attracted to each other through hydrogen bonding, a weak electrostatic attraction between the partially positive hydrogen atom of one water molecule and the partially negative oxygen atom of another water molecule. This attraction is what gives water its unique properties such as high surface tension and cohesive behavior.


When placed between oppositely charged metal plates the region of a water molecule attracted to the negative plate is what?

partially positively charged hydrogen end of the molecule.


Does Hydrogen Bromide exhibit dipole-dipole interactions?

Yes, hydrogen bromide exhibits dipole-dipole interactions due to the difference in electronegativity between hydrogen and bromine, creating a permanent dipole moment. This leads to attractive interactions between the partially positive hydrogen atom and the partially negative bromine atom in neighboring molecules.


What kind of intermolecular bonding occurs between carboxylic acids?

Carboxylic acids can form intermolecular hydrogen bonds due to the hydrogen atom attached to the oxygen atom in the -COOH group. These hydrogen bonds form between the partially positive hydrogen atom and the partially negative oxygen atom of a neighboring carboxylic acid molecule, leading to a higher boiling point and stronger intermolecular attractions.


When are hydrogen bonds formed?

Short Answer: a partially positive hydrogen atom gets attracted to a partially negatively charged atom. _______________________ Take water for example. There is an Oxygen atom (which pulls electrons towards it-- making it partially negative) There are also two hydrogen atoms. The (negatively charged) electron on each H atom is being pulled towards the O atom, making the Hydrogen partially positive. Now, when two water molecules come together, the partially positively charged H's on one water molecule are attracted to the partially negatively charged O's on the other molecule. This attraction between oppositely charged atoms on different molecules creates a 'hydrogen bond'.


An individual water molecule shows what?

An individual water molecule shows polar covalent bonding due to the electronegativity difference between oxygen and hydrogen atoms. This causes the oxygen atom to become partially negative, while the hydrogen atoms become partially positive. Additionally, water molecules exhibit hydrogen bonding, where the partially positive hydrogen atom of one water molecule is attracted to the partially negative oxygen atom of another water molecule.


How does hydrogen bond occur in water in one molecule?

In a water molecule, the oxygen atom attracts the shared electrons more strongly than the hydrogen atoms, giving it a partial negative charge. This creates a partial positive charge on the hydrogen atoms. These partial charges lead to hydrogen bonding, where the partially positive hydrogen atom of one water molecule is attracted to the partially negative oxygen atom of another water molecule.


What type of weak chemical bond formed when the slightly positive hydrogen atom of a polar covalent bond in one molecule is attracted to the slightly negative atom of a polar covalent bond in another?

A hydrogen bond is formed in this scenario. It is a weak electrostatic attraction between a partially positively charged hydrogen atom in a molecule and a partially negatively charged atom, like oxygen or nitrogen, in another molecule.