Answer : The solubility of nitrogen in water at an atmospheric pressure will be,
![2.5125* 10^(-4)mole/L](https://img.qammunity.org/2020/formulas/chemistry/college/lpf0614irw6n6nijnzgy5agr5ad2jlamvp.png)
Explanation :
First we have to calculate the partial pressure of nitrogen.
Formula used :
![p_(N_2)=X_(N_2)* P_(atm)](https://img.qammunity.org/2020/formulas/chemistry/college/yqf7kkfgsc8bl76qbcb3g0zgy2k9ce480j.png)
where,
= partial pressure of nitrogen = ?
= mole fraction of nitrogen =
![7.81* 10^(-1)](https://img.qammunity.org/2020/formulas/chemistry/college/xt610zyjc4h4w80cqy6lk5tn6nxnexj2an.png)
= atmospheric pressure = 0.480 atm
Now put all the given values in the above formula, we get :
![p_(N_2)=7.81* 10^(-1)* 0.480 atm](https://img.qammunity.org/2020/formulas/chemistry/college/ot4m1zroskf96un707qvc908c302anwfgl.png)
![p_(N_2)=0.375atm](https://img.qammunity.org/2020/formulas/chemistry/college/2kwfmqzij3l0p2io3xa08x9hdydl5oroog.png)
Now we have to calculate the solubility of nitrogen in water.
Formula used :
![s_(N_2)=p_(N_2)* K_H](https://img.qammunity.org/2020/formulas/chemistry/college/cun2a5qxcjvfufmcfqoma392sr4ay7zyku.png)
where,
= partial pressure of nitrogen = 0.375 atm
= solubility of nitrogen in water = ?
= Henry's constant =
![6.70* 10^(-4)mole/L.atm](https://img.qammunity.org/2020/formulas/chemistry/college/n9qlpwiwlhp1k9ry4lb2icbhy1logn7sex.png)
Now put all the given values in the above formula, we get :
![s_(N_2)=0.375atm* 6.70* 10^(-4)mole/L.atm](https://img.qammunity.org/2020/formulas/chemistry/college/xdztezkyg1hru7x9clg2z4g9td3t77os8j.png)
![s_(N_2)=2.5125* 10^(-4)mole/L](https://img.qammunity.org/2020/formulas/chemistry/college/zh9iedfkssczfys4ae3b1j20ld3d26rr2o.png)
Therefore, the solubility of nitrogen in water at an atmospheric pressure will be,
![2.5125* 10^(-4)mole/L](https://img.qammunity.org/2020/formulas/chemistry/college/lpf0614irw6n6nijnzgy5agr5ad2jlamvp.png)