The net dipole is the sum of all moment dipoles from a chemical molecule.
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The isoelectric point (pI) is the pH at which a molecule has no net charge. To find pI from the Henderson-Hasselbalch equation, set the net charge of the molecule equal to zero and solve for pH. This equation is derived by considering the acidic and basic dissociation constants of the molecule to calculate the pH at which the net charge is zero.
A nonpolar molecule is formed when all atoms in a molecule have an equal attraction to the shared electrons. This means there is no separation of charge, resulting in no net dipole moment within the molecule.
Yes, a molecule can exhibit bond dipole moments if there is a difference in electronegativity between the atoms that make up the bond. However, if these bond dipole moments are arranged symmetrically and cancel each other out, the molecule will not have a net molecular dipole moment.
No, h2 does not have a net charge. It is a neutral molecule.
The net dipole is the sum of all moment dipoles from a chemical molecule.
Yes, a polar molecule has a net dipole moment because it has a separation of charges, creating a partial positive and a partial negative end within the molecule. This results in an overall dipole moment, making the molecule polar.
the presence of a net charge that does not cancel out
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No, a molecule of oxygen (O2) does not have a net charge because it consists of two oxygen atoms sharing electrons equally to form a stable covalent bond.
A molecule that is nonpolar can also be called apolar. This means that the molecule has an equal distribution of charge and does not have a net dipole moment.
2 Atp molecule
the presence of a net charge that does not cancel out
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Glycolysis yields a net of 2 ATP molecules per glucose molecule.
No, a polyatomic ion is a molecule composed of two or more atoms covalently bonded that carries a net charge. A molecule of dissimilar elements with a net charge is generally referred to as an ion, but not specifically as a polyatomic ion unless it contains multiple atoms of different elements.