Answer:
The answer is "
".
Step-by-step explanation:
Please find the complete question in the attached file.
Total Moles of
= moles of
![= (mass)/(molar \ mass \ of MgSO_4)\\\\= (0.450)/(120.37)\\\\ = 0.0037385 \ mol](https://img.qammunity.org/2021/formulas/chemistry/college/3q33143o30abmuxbz4q2i35st19f6d8or3.png)
![Mg_2^(+) + EDTA4^(-) \longrightarrow Mg(EDTA)2^(-)](https://img.qammunity.org/2021/formulas/chemistry/college/z5uzqh06nl0ygsjv3n6bip6590jo9628o1.png)
EDTA mol in 37.6 mL of solution = 50.0 mL of
![Mg2^(+)](https://img.qammunity.org/2021/formulas/biology/college/ntvrzmnhyewh2floqxn2ybkifkrfgs4ogc.png)
total moles of
![Mg2^(+)](https://img.qammunity.org/2021/formulas/biology/college/ntvrzmnhyewh2floqxn2ybkifkrfgs4ogc.png)
![= (50.0)/(500) * 0.0037385\\\\= 3.7385 * 10^((-4)) \ mol\\](https://img.qammunity.org/2021/formulas/chemistry/college/5xyejs229pw1xccg131b84cigfv4f00yf3.png)
![Ca2^(+) + EDTA4^(-) \longrightarrow Ca(EDTA)2^(-)](https://img.qammunity.org/2021/formulas/chemistry/college/v0kshx4673z6nzoc4whvxafxtra9fo5se7.png)
EDTA moles in a solution of 1.40 mL
the solution of EDTA moles.
![= (1.40)/(37.6) * 3.7385 * 10^((-4)) \\\\= 1.392 * 10^((-5))\ mol\\\\](https://img.qammunity.org/2021/formulas/chemistry/college/tf04zcf8bchuxexn9bdz1g9ygg373umb62.png)
Mass of
mole
the molar mass of
![= 1.392 * 10^((-5)) * 100.09\\\\= 0.00139 \ g\\\\ = 1.39 \ mg](https://img.qammunity.org/2021/formulas/chemistry/college/mo3rjsg6tlzn1zwdz07e0yq3vqir3dcpik.png)