Answer: The concentration of
ions in the solution is
![7.81* 10^(-4)M](https://img.qammunity.org/2021/formulas/chemistry/college/c9ysb3y8j0i7558axwesjoqllcgelt8a0y.png)
Step-by-step explanation:
We are given:
Concentration of hydroxide ion =
![3.90* 10^(-6)M](https://img.qammunity.org/2021/formulas/chemistry/college/t2wk0afu672j0wg1tlogpa92qth5sar89y.png)
Solubility product is defined as the product of concentration of ions present in a solution each raised to the power its stoichiometric ratio.
The equation for the ionization of the hydroxyapatite is given as:
![Ca_(10)(PO_4)_6(OH)_2(s)\leftrightharpoons 10Ca^(2+)(aq.)+6PO_4^(3-)(aq.)+2OH^-(aq.)](https://img.qammunity.org/2021/formulas/chemistry/college/ww9yrlgasrmmn4wbm6sermdfvvqj4h95w8.png)
10s 6s
![(3.90* 10^(-6)+2s)](https://img.qammunity.org/2021/formulas/chemistry/college/qy1hznvyuooh2i0ollgq27dq7zwe6onqpe.png)
The expression for the solubility product of hydroxyapatite will be:
![K_(sp)=[Ca^(2+)]^10[PO_4^(3-)]^6[OH^-]^2\\\\K_(sp)=(10s)^(10)* (6s)^6* (3.90* 10^(-6)+2s)^2=4.6656* 10^(14)* s^(16)* (3.90* 10^(-6)+2s)^2](https://img.qammunity.org/2021/formulas/chemistry/college/l64kkt407q3fq2wyina6evtiazph4p8s25.png)
We are given:
Putting values in above equation, we get:
![2.34* 10^(-59)=4.6656* 10^(14)* s^(16)* (3.90* 10^(-6)+2s)^2\\\\s=7.81* 10^(-5),-7.86* 10^(-5)](https://img.qammunity.org/2021/formulas/chemistry/college/ck72gifpo8ba75wvx8dik8303y8fpl8fge.png)
Neglecting the negative value of 'x' because concentration cannot be negative.
So, the concentration of calcium ions in the solution = 10s =
![[10* (7.81* 10^(-5))]=7.81* 10^(-4)M](https://img.qammunity.org/2021/formulas/chemistry/college/8zriyre20cy8himbj6y6v3it6mlu238mpz.png)
Hence, the concentration of
ions in the solution is
![7.81* 10^(-4)M](https://img.qammunity.org/2021/formulas/chemistry/college/c9ysb3y8j0i7558axwesjoqllcgelt8a0y.png)