Question
Question: What is the mass of oxalic acid, \({H_2}{C_2}{O_4}\) , which can be oxidized by \(C{O_2}\) by \(100m...
What is the mass of oxalic acid, H2C2O4 , which can be oxidized by CO2 by 100mL of MnO4− solution, 10mL of which is capable of oxidizing 50mL of 1.00N I− to I2 ?
A. 2.25g
B. 52.2g
C. 25.2g
D. 22.5g
Solution
We need to realize that oxalic corrosive is having the equation H2C2O4 . It is likewise called crab corrosive. It is really a white glasslike strong which is by and large found to get broken up in arrangement and colourless. The equation used to ascertain the load for oxalic corrosive must be given underneath,
N1V1=MolarmassWeight×Valencyfactor×1000
Here,
N1 = Normality of MnO4−
V1 = Volume of MnO4−
Complete answer:
We need to know, the arrangement that is the 100mL of MnO4− , at that point it is inquired as to whether we add 10mL in 50mL of 10N I− , at that point it will be completely changed over into , so we can compose its condition,
Mn+7+5e−→Mn+2
Then,
I−+e−→I2
We can write the expression as,
{N_1}{V_1} = {N_2}{V_2}$$$$$
Here,
{N_1}=NormalityofMnO_4^ - {V_1}=VolumeofMnO_4^ - {N_2}=Normalityof{I^ - }{V_2}=Volumeof{I^ - }Tocalculatethenormality{N_1},Applyinggivenvaluesintheaboveexpression,{N_1} \times 10 = 50 \times 10Then,{N_1} = 5Now,wehavetocalculatemassofthe{H_2}{C_2}{O_4}bytheuseofthevalueofmolarmassof{H_2}{C_2}{O_4}.Themolarmassof{H_2}{C_2}{O_4}=90g/mol.Where,wecanseethatcarboninoxaliccorrosivein + 3state,anditisevolvingto,sothevalencyofthisis2,andreciprocalsaresomethingsimilar.{N_1}{V_1} = \dfrac{{Weight \times Valencyfactor}}{{Molarmass}} \times 1000Applyinggivenvaluesintheaboveequation,5 \times 10 = \dfrac{{w \times 2}}{{90}} \times 100Then,tofindouttheweight,w = \dfrac{{5 \times 10 \times 90}}{{2 \times 100}} = \dfrac{{4500}}{{200}} = 22.5Therefore,Theweightis22.5g$
Hence, the option (D) is correct.
Note:
We need to establish ordinariness too. In this way, we ought not to get confused regarding ordinariness and molarity. At the point when ordinariness is the quantity of the same solute disintegrated per liter of arrangement. N is represented as normality, and M is represented as molarity.