MaVa=MbVb
(6.0M NaOH)(x)=(0.10M solution)(1.0L)
x=0.017L of 6.0M NaOH
Convert to mL (1000mL in 1L)
17mL of 6.0M NaOH
To prepare 1 mM NaOH solution, you would dissolve 0.040 g of NaOH in enough water to make 1 liter of solution. This concentration is equivalent to 1 millimole of NaOH per liter of solution. Be cautious when handling NaOH as it is a caustic substance.
To prepare a 1N NaOH solution, you would need to dissolve 40 grams of NaOH in water to make 1 liter of solution. This amount is used because 1N solution means 1 mole of NaOH per liter of solution, and the molar mass of NaOH is 40 g/mol, so 40 grams of NaOH is needed to have 1 mole in 1 liter of solution.
To prepare a 0.1N solution of NaOH, dissolve 4g of NaOH pellets in enough distilled water to make 1 liter of solution. This will result in a solution with a concentration of 0.1N of NaOH.
To prepare a 0.02M NaOH solution, weigh out 0.08g of NaOH (based on its molecular weight) and dissolve it in enough water to make 1 liter of solution. Remember to wear appropriate safety gear like gloves and goggles when handling NaOH due to its caustic nature.
To prepare a 10 N solution of NaOH, you would dissolve 400 g of NaOH pellets in enough distilled water to make 1 liter of solution. Remember to add the NaOH to the water slowly and carefully due to the exothermic nature of the reaction. Finally, stir the solution until all of the NaOH has fully dissolved.
To prepare 1 mM NaOH solution, you would dissolve 0.040 g of NaOH in enough water to make 1 liter of solution. This concentration is equivalent to 1 millimole of NaOH per liter of solution. Be cautious when handling NaOH as it is a caustic substance.
To prepare a 1N NaOH solution, you would need to dissolve 40 grams of NaOH in water to make 1 liter of solution. This amount is used because 1N solution means 1 mole of NaOH per liter of solution, and the molar mass of NaOH is 40 g/mol, so 40 grams of NaOH is needed to have 1 mole in 1 liter of solution.
To prepare a 0.1N solution of NaOH, dissolve 4g of NaOH pellets in enough distilled water to make 1 liter of solution. This will result in a solution with a concentration of 0.1N of NaOH.
To prepare a 0.02M NaOH solution, weigh out 0.08g of NaOH (based on its molecular weight) and dissolve it in enough water to make 1 liter of solution. Remember to wear appropriate safety gear like gloves and goggles when handling NaOH due to its caustic nature.
To prepare a 10 N solution of NaOH, you would dissolve 400 g of NaOH pellets in enough distilled water to make 1 liter of solution. Remember to add the NaOH to the water slowly and carefully due to the exothermic nature of the reaction. Finally, stir the solution until all of the NaOH has fully dissolved.
To prepare a 0.1N NaOH solution, dissolve 4g of sodium hydroxide (NaOH) pellets in enough water to make 1 liter of solution. Use a volumetric flask to accurately measure the final volume. Remember to handle NaOH with caution as it is a caustic substance.
To prepare a 10 ppm (parts per million) NaOH solution, you would need to dissolve 10 mg of NaOH in 1 liter of water. This concentration is achieved by adding a very small amount of NaOH to ensure the solution contains 10 parts of NaOH for every 1 million parts of water. Be sure to wear appropriate safety gear and handle NaOH with caution.
To prepare a 0.25N solution of NaOH, you can dissolve 10 grams of NaOH in sufficient distilled water to make 1 liter of solution. Use a volumetric flask to accurately measure the volume of water. Remember to wear appropriate personal protective equipment and follow safety protocols when handling NaOH as it is a caustic substance.
One liter of a one molar solution of NaOH in water contains 40g of NaOH. The quantity must be known.
To prepare the phenoxide, dissolve 23.5 grams of Csl-IsOl-I in 875 milliliters of toluene. On a separate dish, dissolve 10 grams of NaOH in 150 milliliters of methyl alcohol. Pour the solution into a flask and mix.
To prepare a 6N NaOH solution, you would need to dissolve 240 grams of sodium hydroxide (NaOH) pellets in enough distilled water to make 1 liter of solution. This will result in a 6N (Normal) solution of NaOH. Remember to handle NaOH with caution as it is a strong base and can cause burns.
6N NaOH refers to a solution of sodium hydroxide (NaOH) that has a concentration of 6 normal (6N) strength. This means that the solution contains a high concentration of NaOH, which is a strong base commonly used in laboratory settings for various chemical reactions.