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1.575 g of oxalic acid (CO OH)(2).xH(2)O...

1.575 g of oxalic acid `(CO OH)_(2).xH_(2)O` are dissolved in water and the volume made up to 250 mL. On titration 16.68 mL of this soltuion requires 25 mL of `(N)/(15)NaOH` solution for complete neutralisation. Calculate x.

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1.575 g of oxalic acid (COOH)_(2).xH_(2)O are dissolved in water and the volume made up to 250 mL. On titration 16.68 mL of this solution requires 25 mL of N/15 NaOH solution for complete neutralisation. Calculate the value of x.

1.575 g of oxalic acid (COOH)_2. xH_2O are dissolved in water and the volume made upto 250 mL. On titration 16.68 mL of this solution requires 25 mL of N/15 NaOH solution for complete neutralization. Calculate x.

In a binary solution, the component present in smaller proportion is called solute while the one in excess is known as solvent. The solution containing 1 mole of the solute in 1L of solution is known as one molar solution while the solution in which 1 mole of solute is dissolved in 1 kg of the solvent is called one molal solution. The ratio of the no. of moles of a particular component to the total no. of moles in the solution is known as its mole fraciton 1.57 g of oxalic acid (COOH)_(2)xH_(2)O are dissolved in water and the volume is made upto 250 mL. On titrating 6.68 mL of this solution requires 25 mL of N/15 NaOH solution for complete neutralisation. The value of x is :

3.150 g of oxalic acid [(COOH)_(2).xH_(2)O] are dissolved in water and volume made up to 500 mL . On titration 28 mL of this solution required 35 mL of 0.08N NaOH solution for complete neutralization. Find the value of x .

Fill in the blanks. a. 2.24 L ammonia at STP neutralised 100 mL of a solution of H_(2) SO_(4) . The molarity of acid is…….. b. The equivalent weight of a metal carbonate 0.84 g of which reacts exactly with 40 mL of N//2 H_(2) SO_(4) is ........ c. 1.575 g , of hydrated oxalic acid (COOH)_(2). nH_(2) O is dissolved in water and the solution is made to 250 mL On titration, 16.68 mL of this solution is required for neutralisation of 25 mL of N//15 NaOH . The value of water crystallisation, i.e., n , is............ d. 1 mL of H_(3) PO_(4) was diluted to 250 mL . 25 mL this solution requried 40.0 mL of 0.10 N NaOH for neutralisation using phenolphthanlen as indicator. The specific gravity of acid is.............. The density of 1.48 mass percent calcium hydroxide solution is 1.25 g mL^(-1) . The volume of 0.1 M HCl solution required to neutralise 25 mL of this solution is........

Fill in the blanks. a. 2.24 L ammonia at STP neutralised 100 mL of a solution of H_(2) SO_(4) . The molarity of acid is…….. b. The equivalent weight of a metal carbonate 0.84 g of which reacts exactly with 40 mL of N//2 H_(2) SO_(4) is ........ c. 1.575 g , of hydrated oxalic acid (COOH)_(2). nH_(2) O is dissolved in water and the solution is made to 250 mL On titration, 16.68 mL of this solution is required for neutralisation of 25 mL of N//15 NaOH . The value of water crystallisation, i.e., n , is............ d. 1 mL of H_(3) PO_(4) was diluted to 250 mL . 25 mL this solution requried 40.0 mL of 0.10 N NaOH for neutralisation using phenolphthanlen as indicator. The specific gravity of acid is.............. The density of 1.48 mass percent calcium hydroxide solution is 1.25 g mL^(-1) . The volume of 0.1 M HCl solution required to neutralise 25 mL of this solution is........

0.7 g "of" Na_(2)CO_(3).xH_(2)O were dissolved in water and the volume was made to 100 mL, 20 mL of this solution required 19.8 mL "of" N//10 HCl for complete neutralization. The value of x is:

0.7 g " of " Na_(2)CO_(3).xH_(2)O were dissolved in water and the volume was made to 100 mL, 20 mL of this solution required 19.8 mL " of " N//10 HCl for complete neutralization. The value of x is: