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What is the n factor for acid and how is it calculated class 11 . . . From the above reaction we can say that the “n” factor for oxalic acid dihydrate is 2 as 2 hydrogen ions are replaced in the reaction In Oxalic acid, the number of replaceable hydrogen ions is 2 Molecular weight of oxalic acid is 126 Oxalic acid is acidic in nature
How to calculate valence factor (n-factor) for a element? This demonstration reveals that even without knowing the change in oxidation number during the reaction, you can find the n -factor Note: This finding shows that the given answer for the question is incorrect
N Factor Calculator | Calculate N Factor How to calculate N Factor using this online calculator? To use this online calculator for N Factor, enter Molecular Weight (MW) Equivalent Weight (W eq) and hit the calculate button
What will be the n factor on oxidation of oxalic acid and . . . - Filo For oxalic acid (H2 C2 O4 ) oxidized to carbon dioxide (CO2 ), we compare the change in oxidation number of carbon in the reactant and product Let the oxidation state of carbon in oxalic acid be x Each oxalic acid molecule has 2 carbons n-factor = 2 for the oxidation of oxalic acid to carbon dioxide
Sir please solve this problem regarding equivalent concept I will be . . . Assuming that the solution is acidic and contains an oxidizing agent such as KMnO4, the oxalic acid gets oxidized to CO2 in a redox reaction Oxidation number of H2C2O4, x can be given by 2+2x+ (4*-2)=0, i e x=+6 O N of CO2, y=0+4 =+4, 2y=+8 Thus, n-factor of H2C2O4 is 8-6 = 2
N factor of oxalic acid - Brainly. in Answer: The Formula of oxalic acid is H2C2O4 2H2O Therefore, the equivalent weight of the acid ismolecular weight (126 g mol) divided by n-factor (valency=2)Therefore,126 2 = 63
Oxalic Acid Formula - Structure and Equivalent Weight Oxalic Acid Formula is C2H2O4 This article will explore various aspects of oxalic acid formula , including its structure, n-factor, molar mass, equivalent weight, and mass
If valence factor (n-factor) of compound NaHC (2)O (4). 2H (2)C (2)O (4 . . . To solve the problem, we need to determine the n-factor (valence factor) of the compound in two different types of titrations: acid-base titration and redox titration Let's break down the steps: Step 1: Determine the n-factor in Acid-Base Titration (X) 1 Identify the number of acidic protons (H⁺) in the compound: