The degree of ionization of 0.4 M acetic acid will be (Ka = 1.8 × 10)
6.71 × 10-3
1.6 × 10-3
0.4 × 1.8 × 10-3
1.8 × 10-5
The product of molar concentrations of hydrogen ions and hydroxide ions in a 0.01 M aqueous solution of sodium chloride is known as
hydrolysis constant of salt
dissociation constant of acid
dissociation constant of base
ionic product of water
D.
ionic product of water
Sodium chloride is a salt of strong base NaOH and strong acid HCl. In its aqueous solution, following equilibrium is observed.
NaCl + H2O Na+ + Cl-+ H2O
Hence, no hydrolysis takes place in this case, and the solution remains neutral. Thus, here the product of molar concentrations of hydrogen ions and hydroxide ions is ionic product of water.
A solution contains Cl-, I- and SO ions in it. Which of the following ion is capable to precipitate all of the above when added in this solution?
Pb2+
Ba2+
Hg2+
Cu2+
What is the pH of millimolar solution of ammonium hydroxide which is 20% dissociated?
3.699
10.301
4.691
9.301
Which of the following compounds is most acidic in nature?
4-chlorobutanoic acid
3-chlorobutanoic acid
2-chlorobutanoic acid
Butanoic acid
Solubility of which among the following solids in water changes slightly with temperature?
KNO3
NaNO3
KBr
NaBr
In the ln K vs plot of a chemical process having S° > 0 and H° < 0, the slope is proportional to (where K is equilibrium constant).
-|H°|
|H°|
S°
-S°
For the process,
A → B, at 298 K, G° is 163 kJ mol-1. The composition of the reaction mixture is [B] = 1 and [A] = 10000. Predict the direction of the reaction and the relation between reaction quotient (Q) and the equilibrium constant (K).
Forwards direction because Q > K
Reverse direction because Q > K
Forward direction because Q < K
Reverse direction because Q < K