Strong acid
No, NaH2PO4 is not a strong base. It is actually a weak acid and its conjugate base, Na2HPO4, is a weak base.
Hypochlorous acid is a weak acid. It is a fairly weak acid compared to strong acids like hydrochloric acid.
<p>No, it wouldn't. HCl is a strong acid, buffers usually consist of a weak acid or weak base in solution with the salt of the weak acid or base. Although apparently it can work for ph 1-1.2, but don't ask me why or how, and the multiple question floating around on this topic (Which of these mixtures CANNOT produce and effective buffer solution...? A) HCl and KCl B) Na2HPO4 and Na3PO4 C) NaHCO3 and Na2CO3 D) NaH2PO4 and Na2CO3 D) NaH2PO4 and Na2HPO4 E) HF and NaF) is definitely asking for HCl and KCl.<p> No, it wouldn't. HCl is a strong acid, buffers usually consist of a weak acid or weak base in solution with the salt of the weak acid or base. Although apparently it can work for ph 1-1.2, but don't ask me why or how, and the multiple question floating around on this topic (Which of these mixtures CANNOT produce and effective buffer solution...? A) HCl and KCl B) Na2HPO4 and Na3PO4 C) NaHCO3 and Na2CO3 D) NaH2PO4 and Na2CO3 D) NaH2PO4 and Na2HPO4 E) HF and NaF) is definitely asking for HCl and KCl.
NaHCO3 is a weak base, with a conjugate acid of H2CO3+.
Hypochlorous acid is a weak acid.
No, NaH2PO4 is not a strong base. It is actually a weak acid and its conjugate base, Na2HPO4, is a weak base.
NaH2PO4 is an acid salt because it is derived from a weak acid (H3PO4) and a strong base (NaOH). This salt will have acidic properties when dissolved in water.
Hypochlorous acid is a weak acid. It is a fairly weak acid compared to strong acids like hydrochloric acid.
<p>No, it wouldn't. HCl is a strong acid, buffers usually consist of a weak acid or weak base in solution with the salt of the weak acid or base. Although apparently it can work for ph 1-1.2, but don't ask me why or how, and the multiple question floating around on this topic (Which of these mixtures CANNOT produce and effective buffer solution...? A) HCl and KCl B) Na2HPO4 and Na3PO4 C) NaHCO3 and Na2CO3 D) NaH2PO4 and Na2CO3 D) NaH2PO4 and Na2HPO4 E) HF and NaF) is definitely asking for HCl and KCl.<p> No, it wouldn't. HCl is a strong acid, buffers usually consist of a weak acid or weak base in solution with the salt of the weak acid or base. Although apparently it can work for ph 1-1.2, but don't ask me why or how, and the multiple question floating around on this topic (Which of these mixtures CANNOT produce and effective buffer solution...? A) HCl and KCl B) Na2HPO4 and Na3PO4 C) NaHCO3 and Na2CO3 D) NaH2PO4 and Na2CO3 D) NaH2PO4 and Na2HPO4 E) HF and NaF) is definitely asking for HCl and KCl.
NaHCO3 is a weak base, with a conjugate acid of H2CO3+.
It is a weak acid
Hypochlorous acid is a weak acid.
A strong acid dissociates more completely than a weak acid.
When weak acids react with strong acids, the strong acid will donate a proton to the weak acid, resulting in the weak acid being protonated. This protonation increases the concentration of the weak acid cation. The conjugate base of the weak acid is formed as a result.
i thing strong acid
HSO4- is a weak acid. It is the conjugate base of sulfuric acid (H2SO4), which is a strong acid. However, HSO4- itself is a weak acid and partially dissociates in water.
CH3COOH is a acid. It is a weak acid.