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Oxygen atoms and water molecules do not bond because they have different chemical structures that prevent them from forming stable bonds. Water molecules consist of two hydrogen atoms bonded to an oxygen atom, while an oxygen atom by itself is highly reactive and typically forms bonds with other oxygen atoms to create molecules like O2 or O3 (ozone).

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1y ago

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Which two molecules choose to be partners in a hydrogen bond between water molecules?

The two molecules that choose to be partners in a hydrogen bond between water molecules are the oxygen atom of one water molecule and a hydrogen atom of another water molecule.


What are the bonds that connect the hydrogen molecules to the oxygen molecules?

The bonds that connect hydrogen molecules to oxygen molecules in water are covalent bonds. In a water molecule, each hydrogen atom forms a covalent bond with the oxygen atom by sharing electrons.


What can water molecules form hydrogen bonds with?

Water is composed of Two Hydrogen atoms that form a polar covalent bond with an oxygen atom.


What bond forms water molecules?

A covalent bond forms water molecules, specifically a polar covalent bond. This bond is formed between the oxygen atom and the hydrogen atoms in water molecules, where the oxygen atom shares electrons unequally with the hydrogen atoms, creating a partial negative charge on the oxygen atom and partial positive charges on the hydrogen atoms.


What bond is found between water molecules?

Hydrogen bonds are found between water molecules. These bonds are formed between the oxygen atom of one water molecule and a hydrogen atom of another water molecule.


What bond bonds water molecules with other water molecules?

Hydrogen bonds bond water molecules with other water molecules. These bonds are formed between the hydrogen atom of one water molecule and the oxygen atom of another water molecule. Hydrogen bonding gives water its unique properties such as high surface tension and the ability to dissolve many substances.


What is the type of bond that forms the water molecule?

The weak bond that exists between water molecules is called a hydrogen bond. In a water molecule, H2O, each hydrogen atom forms a covalent bond with the oxygen atom. Because the oxygen atom is so much larger than the hydrogen atoms, it is more electronegative and holds the electrons more tightly. Because of this, the oxygen atom develops a slightly negative charge, and the hydrogen atoms develop a slightly positive charge. This causes the water molecule to be polar, like a bar magnet. Weak attractions (hydrogen bonds) form between adjacent water molecules, so that the slightly negative oxygen atom forms a weak bond with a slightly positive hydrogen atom.


What bond is really more an attraction and occurs between water molecules?

Hydrogen bonds are the type of bond that is more of an attraction between water molecules. This bond forms when the positive charge of a hydrogen atom in one water molecule is attracted to the negative charge of an oxygen atom in another water molecule.


What chemical bond is involved with the formation of water molecules?

A covalent bond is involved in the formation of water molecules. It is a type of bond where electrons are shared between atoms, in the case of water, between one oxygen atom and two hydrogen atoms.


What are two atoms that bond with a oxygen atom to form a water molecule?

two atoms that bond with a oxygen atom to form a water molecule


What type of bond typically holds two separate water molecules together in a water solution?

A hydrogen bond typically holds two separate water molecules together in a water solution. This bond forms between the slightly positive hydrogen atom of one water molecule and the slightly negative oxygen atom of another water molecule.


What is the type of bond that forms between water molecules and contributes to cohesion?

Hydrogen bonding is the type of bond that forms between water molecules and contributes to cohesion. It occurs between the hydrogen atom of one water molecule and the oxygen atom of another water molecule.