Question
Question: Calculate the molarity of each of the following solution: (a) \({\rm{30}}\;{\rm{g}}\) of \({\rm{C...
Calculate the molarity of each of the following solution:
(a) 30g of Co(NO3)2.6H2O in 4.3L of solution
(b) 30mLof 0.5M H2SO4 diluted to 500mL.
Solution
We know that the molar mass is needed for calculating or identifying the number of moles of the given substance. The molarity is the combination of substances’ mole and the volume of the solution.
Complete step by step solution
(a).Given, the mass of cobaltous nitrate hexahydrate that is {\rm{Co}}{\left( {{\rm{N}}{{\rm{O}}_{\rm{3}}}} \right)_{\rm{2}}}{\rm{.6}}{{\rm{H}}_{\rm{2}}}{\rm{O}} \\\ is 30g and the volume of the solution is {\rm{4}}{\rm{.3}}\;{\rm{L}} \\\.
The molar mass of {\rm{Co}}{\left( {{\rm{N}}{{\rm{O}}_{\rm{3}}}} \right)_{\rm{2}}}{\rm{.6}}{{\rm{H}}_{\rm{2}}}{\rm{O}} \\\ is 291.04g/mol,
The number of moles of Co(NO3)2.6H2O can be calculated by using the formula given below.
Numberofmoles=MolarmassMass
Substitute all the respective values in the above equation.
Numberofmoles=291.04g/mol30g =0.103mol
The moles of cobaltous nitrate hexahydrate is 0.103mol.
The molarity of the solution can be calculated by using the formula given below.
Molarity=VolumeNumberofmoles
Substitute all the respective values in the above equation.
Molarity=4.3L0.103mol =0.0239M ≈0.024M
Hence, the molarity of the solution in question (a) is 0.024M.
(b) Given, the volume of sulphuric acid that is H2SO4 is 30mL and molarity of H2SO4 is 0.5M.
The volume of the diluted solution is 500mL.
The molarity of the solution can be calculated by using the formula given below.
M1V1=M2V2
Where, M1 is the molarity of sulphuric acid, V1 is the volume of sulphuric acid, M2 is the molarity of diluted solution, and V2 is the volume of diluted solution.
Substitute all the respective values in the above equation.
30mL×0.5M=M2×500mL ⇒M2=50015M =0.03M
Hence, the molarity of diluted solution In question (b) is 0.03M.
Note:
The dilution equation is very necessary for the determination of unknown molarity of the given aqueous solutions.