Home
Class 11
CHEMISTRY
M(2)SO(4) (M^(o+) is a monovalent metal ...

`M_(2)SO_(4) (M^(o+)` is a monovalent metal ion) has a `K_(sp)` of `3.2 xx 10^(-6)`at `298 K`. The maximum concentration of `SO_(4)^(2-)` ion that could be attained in a saturated solution of this solid at `298 K` is

Promotional Banner

Similar Questions

Explore conceptually related problems

At 298 K , the K_(sp) of M_(2) SO_(4) is 3.2 xx 10^(-5) . The maximum concentration of SO_(4)^(2-) ion that could be attained in a saturated solution of this solid at 298 K is

At 298 K the Ksp of M_(2)SO_(4) is 3.2 10^(-5) . The max. concentration of SO_(4)^(-2) ions that colud be attain in saturated solution of this solid at 298 K is ?

The K_(sp) for X_(2) SO_(4) at 25^(@) (X^(+) is a monovalent ion) is 3.2 xx 10^(-5) The maximum concentration of X^(+) that could be attained in a saturated solution of this solid at 25^@C is

The K_(sp) for X_(2) SO_(4) at 25^(@) (X^(+) is a monovalent ion) is 3.2 xx 10^(-5) The maximum concentration of X^(+) that could be attained in a saturated solution of this solid at 25^@C is

K_sp = 1.2 xx 10^-5 of M_2SO_4 ( M^+ is monovalent metal ion) at 298 K find the maximum concentration of M^+ ions that could be attaiined in a saturated solution of this solid at 298 K.

The K_(sp) of BaCrO_(4) is 2.4xx10^(-10)M^(2) . The maximum concentration of Ba(NO_(3))_(2) possible without precipitation in a 6xx10^(-4)M K_(2)CrO_(4) solution is

The solubility product of Cr(OH)_(3) at 298 K is 6.0xx10^(-31) . The concentration of hydroxide ions in a saturated solution of Cr(OH)_(3) will be :

The solubility product of Cr(OH)_(3) at 298 K is 6.0xx10^(-31) . The concentration of hydroxide ions in a saturated solution of Cr(OH)_(3) will be :

The value of K_(sp) is HgCl_(2) at room temperature is 4.0 xx 10^(-15) . The concentration of Cl^(-) ion in its aqueous solution at saturation point is