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Dear 5110 student, You are right, F is more electronegative than Cl, and if the only factor were electronegativity, HF would be stronger than HCl.

You can never tell HCl is Stronger than H2SO4, because H2SO4 can donate two protons in reaction. Reason : S is more electronegative than P, conjugate base HS- is more stable than H 2 P-. HAsO42- H3AsO4 Because It Has More Charge (is More Unstable). Question: HCl Is A Stronger Acid Than H2S Because Cl Is More Electronegative Than S. H3AsO4 Is A Stronger Acid Than HAsO42- Because It Has More Acidic H Atoms. Question: HCl is a stronger acid than H2S because Cl is more electronegative than S. H3AsO4 is a stronger HCl is a stronger acid than H 2 S because Cl is more electronegative than S. H 3 AsO 4 is a stronger acid than HAsO 4 2-because it has more acidic H atoms.

H2Se is a stronger acid than H2S. (a) Both A and R are true and R is the correct explanation of A (b) Both A and R are true but R is not correct explanation of A The reason behind that first is the electronegativity of $\ce{Cl}$ is higher than $\ce{S}$, so, in a polar medium, it becomes easier for the $\ce{H-Cl}$ bond to break than the other one. The HCl bond should be less polarized than the HF bond. Because of strong affinity of fluorine for hydrogen so it strongly holds hydrogen and don't loose it very easily. Therefore, H2Se is expected to be a stronger acid than H2S. So H2SO4 is seems stronger. Consider simply aqueous solutions of $\ce{H2S}$ and $\ce{HCl}$.It is pretty much known that $\ce{HCl}$ is stronger than $\ce{H2S}$ in water.

That's still I have some confusion.

But it isn't, HF is a weak acid. The bond energy of H2Se is less than H2S, making it easier for the hydrogen atom to leave the molecule. Assertion : H 2 S is stronger acid than PH 3. As in HCl due to lesser H-Cl bond dissociation enthalpy as compared to HF, HCl is stronger acid than HF.This is the basic concept for the reason why HF is a weaker acid than HCl. H3PO3 Is A Stronger Acid Than H3PO4 Because It Has Fewer Oxygens Surrounding The Central P Atom.

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