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The conjugate acid of HC6H6O6 is C6H6O6H+.
The conjugate base of H3PO4 is H2PO4-. The formula for the conjugate base can be found by removing one proton (H+) from the acid molecule.
The conjugate base of NH4+ is NH3. The formula for the conjugate base of an acid can be obtained by removing a proton (H+) from the acid molecule.
The conjugate base of HCO3 is CO3^2-.
The conjugate base of HF is the fluoride ion F-
The conjugate acid of HC6H6O6 is C6H6O6H+.
The conjugate base of H3PO4 is H2PO4-. The formula for the conjugate base can be found by removing one proton (H+) from the acid molecule.
The conjugate base of NH4+ is NH3. The formula for the conjugate base of an acid can be obtained by removing a proton (H+) from the acid molecule.
The conjugate base of HCO3 is CO3^2-.
The conjugate base of HF is the fluoride ion F-
The conjugate base of SO2-4 is HSO3-.
The conjugate acid of the base SO4 is HSO4- (bisulfate ion). The formula for the conjugate acid can be determined by adding a proton (H+) to the base molecule.
The conjugate acid of HC6H6O6- (ascorbate ion) is H2C6H6O6 (ascorbic acid) because it can accept a proton (H+) to form a neutral molecule.
H2C6H6O6 (ascorbic acid, vitamin C) behaves as a weak acid in water. It can donate a proton (H+) to water molecules, resulting in the formation of its conjugate base (HC6H6O6-). As a weak acid, it only partially dissociates in water and has a relatively low tendency to donate protons compared to strong acids.
To write the conjugate base of HPO4 2-, simply remove one hydrogen ion (H+) from the molecule. The formula for the conjugate base would be H2PO4 -.
The chemical formula for ethoxide is C2H5O-. It is the conjugate base of ethanol.
The conjugate acid of the sulfate ion (SO4^2-) is sulfuric acid (H2SO4). To form the conjugate acid, you add a proton (H+) to the base molecule.