First of all, water molecules have covalent bonds. Meaning the atoms share electrons. Hydrogen and oxygen have different electronegativities. Because oxygen has a higher electronegativity the electrons shared between the atoms are drawn closer to the oxygen atom. This means the molecule is polar as it has a negative (oxygen) and positive (hydrogen) end.
A bond between polar covalent molecules is called a hydrogen bond. It is a weak type of bond that forms between a partially positive hydrogen atom and a partially negative atom (such as oxygen or nitrogen) in another molecule.
In water and many other compounds hydrogen and oxygen are held by covalent bonds.Between water molecules and between other polar molecules hydrogen of one molecule and oxygen of a different molecule are held by hydrogen bonds.
The bond between the oxygen and the hydrogen is polar because the electrons are more attracted to the oxygen than they are to the hydrogen. This is true for every oxygen -hydrogen bond throughout the water. Each water molecule then holds to the ones around it because of the polarity, and this is hydrogen bonding.
Hydronium ion (H3O+) is polar due to its asymmetrical shape and the unequal distribution of charge between the hydrogen and oxygen atoms. The oxygen atom is more electronegative than hydrogen, leading to a partial negative charge on oxygen and a partial positive charge on hydrogen.
The bond between oxygen and hydrogen would be classified as a polar covalent bond due to the difference in electronegativity between the two atoms. Oxygen is more electronegative than hydrogen, leading to an uneven sharing of electrons in the bond.
A bond between polar covalent molecules is called a hydrogen bond. It is a weak type of bond that forms between a partially positive hydrogen atom and a partially negative atom (such as oxygen or nitrogen) in another molecule.
The bond between Hydrogen and Oxygen is covalent because these elements are both non-metals. The is called polar covalent bond . oxygen is delta negative.hydrogen is delta positive
In water and many other compounds hydrogen and oxygen are held by covalent bonds.Between water molecules and between other polar molecules hydrogen of one molecule and oxygen of a different molecule are held by hydrogen bonds.
The bond between Hydrogen and Oxygen is covalent because these elements are both non-metals. The is called polar covalent bond . oxygen is delta negative.hydrogen is delta positive
The bond between the oxygen and the hydrogen is polar because the electrons are more attracted to the oxygen than they are to the hydrogen. This is true for every oxygen -hydrogen bond throughout the water. Each water molecule then holds to the ones around it because of the polarity, and this is hydrogen bonding.
A water molecule is polar because there is an uneven distribution of electrons between the oxygen and hydrogen atomsAnswerA water molecule is polar because there is an uneven distribution of electrons between the oxygen and hydrogen atoms. The negative pole is near the oxygen atom and the positive pole is between the hydrogen atoms.
polar covalent,
Hydronium ion (H3O+) is polar due to its asymmetrical shape and the unequal distribution of charge between the hydrogen and oxygen atoms. The oxygen atom is more electronegative than hydrogen, leading to a partial negative charge on oxygen and a partial positive charge on hydrogen.
The bond between oxygen and hydrogen would be classified as a polar covalent bond due to the difference in electronegativity between the two atoms. Oxygen is more electronegative than hydrogen, leading to an uneven sharing of electrons in the bond.
The bonds between hydrogen and oxygen in a water molecule are classified as polar covalent bonds. In a polar covalent bond, electrons are shared between the atoms but are not shared equally, leading to a partial negative charge near the oxygen atom and a partial positive charge near the hydrogen atoms.
Cohesion. Oxygen is electronegative, and Hydrogen is electropositive.
A carbon-oxygen bond is more polar than a carbon-hydrogen bond, because the difference in electronegativity between carbon and oxygen is greater than the difference in electronegativity between carbon and hydrogen.