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What Is the Solubility Product Expression for La(OH)3?
A) Ksp=[La3+][3OH]K _ { \mathrm { sp } } = \left[ \mathrm { La } ^ { 3 + } \right] \left[ 3 \mathrm { OH } ^ { - } \right]

Question 51

Multiple Choice

What is the solubility product expression for La(OH) 3?


A) Ksp=[La3+][3OH]K _ { \mathrm { sp } } = \left[ \mathrm { La } ^ { 3 + } \right] \left[ 3 \mathrm { OH } ^ { - } \right]
B) Ksp=[La3+][3OH]3K _ { \mathrm { sp } } = \left[ \mathrm { La } ^ { 3 + } \right] \left[ 3 \mathrm { OH } ^ { - } \right] ^ { 3 }
C) ? Ksp=[La3+][OH]3K _ { \mathrm { sp } } = \left[ \mathrm { La } ^ { 3 + } \right] \left[ \mathrm { OH } ^ { - } \right] ^ { 3 }
D) ? Ksp=[La3+][OH][La3+(OH3) ]K _ { \mathrm { sp } } = \frac { \left[ \mathrm { La } ^ { 3 + } \right] \left[ \mathrm { OH } ^ { - } \right] } { \left[ \mathrm { La } ^ { 3 + } \left( \mathrm { OH } _ { 3 } \right) \right] }
E) ? Ksp=[La3+(OH3) ][La3+][OH]K _ { \mathrm { sp } } = \frac { \left[ \mathrm { La } ^ { 3 + } \left( \mathrm { OH } _ { 3 } \right) \right] } { \left[ \mathrm { La } ^ { 3 + } \right] \left[ \mathrm { OH } ^ { - } \right] }

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