To prepare 0.5 N sulfuric acid, you can mix 49 g of sulfuric acid (H2SO4) into enough water to make 1 liter of solution. This will give you a solution that has a concentration of 0.5 N, meaning it contains 0.5 moles of H2SO4 per liter of solution. Remember to always add acid to water slowly while stirring to avoid splashing and to ensure a safe preparation process.
For preparation of 4N solution of sulphuric acid Dissolve 196 gm H2SO4 in 1000 ml DM water. Calculation N E V Weight = ------------ 1000 Where N= Normality E= Equivalent weight V= Volume
To prepare N-phenylanthranilic acid indicator, dissolve 0.1 g of N-phenylanthranilic acid in 100 ml of ethanol or methanol. This will create a stock solution of the indicator that can be diluted further as needed for specific applications.
To prepare 0.1 N oxalic acid solution, you would need to dissolve 0.634 g of oxalic acid dihydrate (H2C2O4·2H2O) in distilled water and make up the solution to a final volume of 1 liter. This will give you a 0.1 N (normality) solution of oxalic acid.
To prepare 0.02 N sulfuric acid, dilute concentrated sulfuric acid with water in a specific ratio. For example, to prepare 100 ml of 0.02 N sulfuric acid, you would mix 0.4 ml of concentrated sulfuric acid (98% purity) with 99.6 ml of water. It's crucial to handle concentrated sulfuric acid with caution due to its corrosive nature.
how do prepare 0.1 N Oxalic acid
For preparation of 4N solution of sulphuric acid Dissolve 196 gm H2SO4 in 1000 ml DM water. Calculation N E V Weight = ------------ 1000 Where N= Normality E= Equivalent weight V= Volume
when we add water n sulphuric acid then dilute sulphuric acid is formed. But we have to mix concentrated acid to water not water to acid otherwise the container in which u r mixing may explode because this reaction is highly exothermic.
Yes
To prepare N-phenylanthranilic acid indicator, dissolve 0.1 g of N-phenylanthranilic acid in 100 ml of ethanol or methanol. This will create a stock solution of the indicator that can be diluted further as needed for specific applications.
To prepare 0.1 N oxalic acid solution, you would need to dissolve 0.634 g of oxalic acid dihydrate (H2C2O4·2H2O) in distilled water and make up the solution to a final volume of 1 liter. This will give you a 0.1 N (normality) solution of oxalic acid.
To prepare 0.02 N sulfuric acid, dilute concentrated sulfuric acid with water in a specific ratio. For example, to prepare 100 ml of 0.02 N sulfuric acid, you would mix 0.4 ml of concentrated sulfuric acid (98% purity) with 99.6 ml of water. It's crucial to handle concentrated sulfuric acid with caution due to its corrosive nature.
how do prepare 0.1 N Oxalic acid
Octyl benzoate can be formed by reacting octanol (alcohol) and benzoic acid in the presence of a catalyst like sulfuric acid. The reaction will produce octyl benzoate and water as byproduct.
To prepare a solution of n-phenylanthranilic acid in a liquid form, you would typically dissolve the acid in a suitable solvent such as ethanol or water with the aid of gentle heating or stirring. The exact concentration of the solution will depend on the specific experimental requirements. It is important to handle the acid with care as it may be hazardous in its pure form.
To prepare 0.125 N sulfuric acid, you would first need to calculate the amount of sulfuric acid needed by using the formula: (desired normality) x (equivalent weight) x (volume in liters) = mass of the substance. Then, weigh out the required amount of sulfuric acid and dissolve it in water to make the desired volume of solution.
To prepare a 0.5 N acetic acid solution, first calculate the molarity needed using the formula Molarity (M) = Normality (N) x Equivalent weight. Then, use this information to dissolve the appropriate amount of acetic acid in water to make 1 liter of solution. Finally, adjust the volume with water as needed.
Yes, mixing Strip-n-All with sulfuric acid can be dangerous as it can release harmful gases and potentially cause a chemical reaction that produces heat or even an explosion. It is not recommended to mix these two substances.