1 1/2 cup kidney beans
The factor used to determine percent purity of sodium hypochlorite is the amount of available chlorine. This is typically expressed as a percentage and is used to indicate the concentration of the active ingredient in the sodium hypochlorite solution.
The amount of NaCl in the final solution is 5g, and the total volume of the solution is 45mL. To find the percent strength, divide the mass of NaCl by the total volume of the solution and multiply by 100: (5g / 45mL) x 100 ≈ 11.1%.
To determine the molality of a solution using the mass percent of the solute, you need to first convert the mass percent to grams of solute per 100 grams of solution. Then, calculate the moles of solute using its molar mass. Finally, divide the moles of solute by the mass of the solvent in kilograms to find the molality of the solution.
For normal acids, pH is most accurate. For hydrofluoric acid, pH is NOT a good indicator--a 1-percent HF solution has a lower pH than a 50-percent solution does, and a 10-percent HF solution has the highest pH of all. The range is from 3.1 (for a 1-percent solution) to 4.5 (for a 10-percent solution). HF is considered a weak acid--not all the HF molecules dissociate when the HF gas is put into water--but it's the most corrosive acid around.
To calculate the grams of phosphate in a solution, you first need to determine the molarity of the solution. Once you know the molarity, you can use the molecular weight of phosphate to determine the grams present in the solution. Can you provide the concentration or volume of the K2HPO4 solution?
0.1125% of polymer solution.
Knowing the right percent strength of a solution is important because it ensures that the solution will be effective for its intended purpose. Inaccurate percent strength can result in the solution being either too weak to be effective or too strong and potentially harmful. Proper knowledge of the percent strength also facilitates consistency and reproducibility in scientific experiments or processes.
A 3 percent solution is 1.5 times as strong as a 2 percent solution.
To make a 50% solution of 100 ml, you would need to weigh 50g of the active ingredient. This is because in a 50% solution, half of the solution is the active ingredient and half is the solvent.
No - 1% solution is 1/100th the strength of the original.
You need to determine the percent of hydrogen (pH) molecules in the solution.
4314.9 grams
Simple equality. (100ml)(7%) = (500ml)(X%) = 1.4%
The factor used to determine percent purity of sodium hypochlorite is the amount of available chlorine. This is typically expressed as a percentage and is used to indicate the concentration of the active ingredient in the sodium hypochlorite solution.
The amount of NaCl in the final solution is 5g, and the total volume of the solution is 45mL. To find the percent strength, divide the mass of NaCl by the total volume of the solution and multiply by 100: (5g / 45mL) x 100 ≈ 11.1%.
1.5L = 1500ml17.5 X 1500 / 100 =262.5ml
To determine the molality of a solution using the mass percent of the solute, you need to first convert the mass percent to grams of solute per 100 grams of solution. Then, calculate the moles of solute using its molar mass. Finally, divide the moles of solute by the mass of the solvent in kilograms to find the molality of the solution.