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'a' g KHC(2)O(4) are required to reduce ...

`'a' g KHC_(2)O_(4)` are required to reduce `100mL` of `0.02M KMnO_(4)` in acid medium and `'b' g KHC_(2)O_(4)` neutralises `100mL` of `0.05M Ca(OH)_(2)` then `:`

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'a' gm KHC_(2)O_(4) is used to neutralize 100 mL of 0.02 M KMnO_(4) in acid medium, where as 'b' gm KHC_(2)O_(4) is used to neutralize 100 mL of 0.02 M Ca(OH)_(2) then,

X gm of KHC_(2)O_(4) requires 100 ml of 0.02 M KMnO_(4) in acidic medium. In another experiment, y gm of KHC_(2)O_(4) requires 100 mkl of 0.05 M Ca(OH)_(2) . The ratio of x and y is

X gm of KHC_(2)O_(4) requires 100 ml of 0.02 M KMnO_(4) in acidic medium. In another experiment, y gm of KHC_(2)O_(4) requires 100 mkl of 0.05 M Ca(OH)_(2) . The ratio of x and y is

Mass of KHC_(2)O_(4) (potassium acid oxalate) required to reduce 100 ml of 0.02 M KMnO_(4) in acidic medium (to Mn^(2+) ) is x g and to neutralise 100 ml of 0.05 M Ca(OH)_(2) is y g , then

Moles of KHC_(2)O_(4) (potassium acid oxalate) required to reduce 100 mL of 0.02M KMnO_(4) in acidic medium (to Mn^(2+) ) is

Moles of KHC_(2)O_(4) (potassium acid oxalate) required to reduce 100ml of 0.02M KMnO_(4) in acidic medium (to Mn^(2+) ) is :

Moles of KHC_(2)O_(4) (potassium acid oxalate) required to reduce 100ml of 0.02M KMnO_(4) in acidic medium (to Mn^(2+) ) is :