Home
Class 11
CHEMISTRY
Calculate the mass of oxalic acid (H(2)C...

Calculate the mass of oxalic acid `(H_(2)C_(2)O_(4))` which can be oxidised to `CO_(2)` by `100.0mL` of `MnO_(4)^(-)` solution, `10 mL` of which is capable of oxidising `50.0mL` of `1.0NI^(-)` to `I_(2)`?

Promotional Banner

Similar Questions

Explore conceptually related problems

Calculate the mass of anhydrous oxalic acid, which can be oxidised to CO_2(g) by 100mL of an MnO_4^- solution, 10mL of which is capable of oxiding 50mL of 1NI^- to I_2 .

Calculate the mass of anhydrous oxalic acid, which can be oxidised to CO_2(g) by 100mL of an MnO_4^- solution, 10mL of which is capable of oxiding 50mL of 1N I^- to I_2 .

H_(2)C_(2)O_(4).2H_(2)O (Mol wt =126) can be oxidised into CO_(2) by acidified KMnO_(4) . 6.3 gms of oxalic acid can not be oxidised

H_(2)C_(2)O_(4).2H_(2)O (Mol wt =126) can be oxidised into CO_(2) by acidified KMnO_(4) . 6.3 gms of oxalic acid can not be oxidised

Calculate the number of molecules of oxalic acid ( H_2C_2O_4 ) in 100 mL of 0.2 N oxalic acid

Calculate the number of molecules of oxalic acid (H_(2)C_(2)O_(4).2H_(2)O) in 100 mL of 0.2 N oxalic acid solition.

Calculate the number of molecules of exalic acid (H_(2)C_(2)O_(4)2H_(2)O) in 100 mL of 0.2 N oxalic acid solution.

The mass of oxalic acid crystals (H_(2)C_(2)O_(4).2H_(2)O) required to prepare 50 mL of a 0.2 N solution is: