Positive. Since the Oxygen atom has a higher electronegativity (it is more likely to draw in electrons) than the Hydrogen atoms, the electrons that are shared in the two oxygen/hydrogen bonds will move closer to the Oxygen atom. This will give the Oxygen atom a slightly positive charge and the 2 Hydrogen atoms a slighty negative charge. Because of this, a water molecule is considered polar.
The water molecule does not have a negative charge. The oxygen end of the molecule has a partial negative charge and the hydrogen end has a partial positive charge. This is because the oxygen atom is more electronegative than the hydrogen atoms, and tends to hold the shared electrons more tightly than the hydrogen atoms.
Yes, the oxygen atom in a water molecule has a slight negative charge because oxygen is more electronegative than hydrogen. This causes the shared electrons to be closer to the oxygen atom, giving it a partial negative charge.
the object has to have more positive charges than negative charges.
atoms often gain or lose electrons,which causes them to have a temporary negative or positive charge.
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.
Hydrogen peroxide is a polar molecule because it has polar covalent bonds due to the difference in electronegativity between hydrogen and oxygen atoms. This causes an uneven distribution of electrons leading to a slight positive charge on the hydrogen atoms and a slight negative charge on the oxygen atoms.
The water molecule is polar because the oxygen atom attracts electrons more strongly than the hydrogen atoms. This causes the oxygen end to have a partial negative charge, while the hydrogen ends have a partial positive charge.
Water is polar due to its bent molecular structure, which causes an uneven distribution of charge. It has a partial positive charge on the hydrogen atoms and a partial negative charge on the oxygen atom, resulting in an overall polar molecule.
The phosphate group in the DNA backbone has a negative charge due to its phosphate ions. This negative charge causes the DNA molecule to move towards the positive pole in processes such as gel electrophoresis.
When you put hydrogen and oxygen together, the electrons spend most of their time on oxygen since it is more electronegative than hydrogen. This causes there to be a "partial charge" on both hydrogen and oxygen. Since oxygen has the electrons spending more time on it, it is more negative than hydrogen. So in H2O, the hydrogens are slightly more positive than the oxygens. When water molecules come near each other, the slightly positive hydrogens are then attracted to the slightly negative oxygens, and you end up having hydrogen bonding.
HF has a polar covalent bond. The electronegativity difference between hydrogen and fluorine causes the electrons to be unequally shared, leading to a polar bond where fluorine is partially negative and hydrogen is partially positive.
The attraction of one water molecule toward another is due to hydrogen bonding. This occurs because the oxygen atom in one water molecule is slightly negative while the hydrogen atoms are slightly positive, creating a partial positive and negative charge that allows them to attract each other.
positive and negative charges
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The water molecule does not have a negative charge. The oxygen end of the molecule has a partial negative charge and the hydrogen end has a partial positive charge. This is because the oxygen atom is more electronegative than the hydrogen atoms, and tends to hold the shared electrons more tightly than the hydrogen atoms.
When the atom hydrogen bonds directly to a small atom with a high electronegativity such as nitrogen, oxygen and fluorine. The Hydrogen atom then has a slightly positive charge and the other atom a slightly negative charge. This causes forces of attraction between molecules which is known as hydrogen bonding.
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